WO2017152380A1 - 一种城市污水处理装置 - Google Patents

一种城市污水处理装置 Download PDF

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Publication number
WO2017152380A1
WO2017152380A1 PCT/CN2016/075925 CN2016075925W WO2017152380A1 WO 2017152380 A1 WO2017152380 A1 WO 2017152380A1 CN 2016075925 W CN2016075925 W CN 2016075925W WO 2017152380 A1 WO2017152380 A1 WO 2017152380A1
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Prior art keywords
frame
filter
fixedly connected
precipitation
pipe
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PCT/CN2016/075925
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English (en)
French (fr)
Inventor
张舒维
Original Assignee
张舒维
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Publication date
Application filed by 张舒维 filed Critical 张舒维
Priority to PCT/CN2016/075925 priority Critical patent/WO2017152380A1/zh
Publication of WO2017152380A1 publication Critical patent/WO2017152380A1/zh

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  • the invention relates to the technical field of environmental protection, and in particular to an urban sewage treatment device.
  • the sewage generated in the process of human life is one of the main sources of pollution of water bodies.
  • most of the current sewage treatment methods are treated by chemical methods, which are prone to secondary pollution.
  • a large amount of solid impurities are generated, and these solid impurities are precipitated, which in turn produces a large amount of sludge, which is far from meeting national emission standards.
  • An urban sewage treatment device comprising a first filtration device, a cylinder device located below the first filtration device, a second filtration device located below the cylinder device, and the second filtration device a lower first precipitation device, a stirring device on the right side of the first precipitation device, a heating device on the right side of the stirring device, a third filtering device located below the heating device, and a third filtering device a second precipitation device below and a receiving device located below the second precipitation device.
  • the urban sewage treatment device of the invention can quickly and effectively purify urban sewage, and can firstly be applied to the city.
  • the solid impurities in the sewage are pulverized to prevent the solids from being clogged in the device, and then filtered through the filter for multiple times, the filtration effect is good, and then the filtered sewage is filtered through the bristles and filtered, and then precipitated. So that the solid impurities are deposited on the bottom, then the upper liquid is drawn into the stirring frame, filtered, and then the filtered liquid is heated, sterilized, and partially evaporated.
  • FIG. 1 is a schematic structural view of a municipal sewage treatment device of the present invention.
  • the municipal sewage treatment apparatus of the present invention comprises a first filtering device 1, a cylinder device 2 located below the first filtering device 1, a second filtering device 3 located below the cylinder device 2, and located at the a first precipitating device 4 below the second filtering device 3, a stirring device 5 located on the right side of the first precipitating device 4, a heating device 6 located on the right side of the agitating device 5, and a portion located below the heating device 6.
  • the first filtering device 1 includes a first feeding hopper 11 , a first pulverizing frame 12 located below the first feeding hopper 11 , and a first portion below the first pulverizing frame 12 .
  • a filter frame 13 a filter frame 13 , a first crushing wheel 14 located in the first crushing frame 12 , a first filter 15 located below the first crushing wheel 14 , and a second filter below the first filter 15 18.
  • a first baffle 16 located below the first filter screen 15 and a first shunt block 17 located above the first baffle 16.
  • the cross section of the first feed hopper 11 is an isosceles trapezoid. a lower surface of the first feed hopper 11 and the first A crushing frame 12 is fixedly connected.
  • the first filter frame 13 has a hollow rectangular parallelepiped, and the upper surface of the first filter frame 13 is fixedly connected to the first crushing frame 12, and the first surface of the first filter frame 13 is provided with a first through hole 131. .
  • the first pulverizing wheel 14 is provided with two left and right sides respectively located inside the first pulverizing frame 12, the first pulverizing wheel 14 is a cylinder, and the first pulverizing wheel 14 is connected with a motor.
  • the first pulverizing wheel 14 is provided with a plurality of first pulverizing teeth 141, and the first pulverizing teeth 141 are evenly distributed on the first pulverizing wheel 14, the first pulverizing teeth 141 and the first pulverizing wheel 14
  • the fixed connection is such that when the first pulverizing wheel 14 rotates, the first pulverizing teeth 141 can pulverize solid impurities in the sewage.
  • the first filter 15 is provided with two left and right sides respectively located inside the first filter frame 13 , and the first filter 15 is curved, and the lower end of the first filter 15 is opposite to the first
  • the inner surface of a filter frame 13 is fixedly connected, and the first filter frame 15 can filter impurities in the sewage.
  • the second filter net 18 is curved, and the end of the second filter net 18 is fixedly connected to the side of the first filter net 15 , and the second filter net 18 and the first filter net 15 are mutually connected.
  • the combination can filter most of the impurities in the sewage to complete the initial filtration of the sewage.
  • the first baffle 16 is fixedly connected to the inner surface of the first filter frame 13 , and the first baffle 16 is provided with a second through hole 161 extending through the upper and lower surfaces thereof, the second through hole There are two 161.
  • the lower surface of the first shunt block 17 is fixedly connected to the upper surface of the first baffle 16, and the upper surface of the first shunt block 17 is curved so that the sewage is directed to the first shunt block 17.
  • the left and right sides flow, and then enter the lower side of the first baffle 16 through the second through hole 161.
  • the cylinder device 2 includes a first cylinder 21 , a first push rod 23 located above the first cylinder 21 , a first push plate 24 located above the first push rod 23 , and is disposed on a first seal ring 25 on the first push plate 24, a first bracket 22 on the left side of the first cylinder 21, and a second portion below the first seal ring 25 a bracket 26, a first positioning rod 27 disposed on the first bracket 22, a third bracket 28 located on the right side of the first cylinder 21, a fourth bracket 29 disposed on the third bracket 28, and The first support rod 20 below the fourth bracket 29.
  • the first cylinder 21 is located below the first filter frame 13 .
  • the first bracket 22 has a concave shape, and one end of the first bracket 22 is fixedly connected to the left surface of the first cylinder 21, and the other end of the first bracket 22 is opposite to the left of the first filter frame 13.
  • the surface is fixedly connected to fix the first cylinder 21.
  • the lower end of the first push rod 23 is connected to the first cylinder 21 such that the first cylinder 21 drives the first push rod 23 to move up and down, and the upper end of the first push rod 23 is opposite to the first
  • the lower surface of the push plate 24 is fixedly coupled. The first push plate 24 is received in the first filter frame 13 .
  • the first sealing ring 25 is annular, the first sealing ring 25 is horizontally placed, and the inner surface of the first sealing ring 25 is fixedly connected to the side of the first push plate 24, the first sealing ring
  • the upper and lower surfaces of 25 are in the same plane as the upper and lower surfaces of the first push plate 24, and the outer surface of the first seal ring 25 is slidably coupled to the inner surface of the first filter frame 13 such that the first seal
  • the ring 25 and the first push plate 24 are slidable up and down, and the water above the first push plate 24 is prevented from flowing into the lower side of the first push plate 24.
  • the second bracket 26 is disposed at two sides and is respectively located on the left and right sides of the first push rod 23, and one end of the second bracket 26 is fixedly connected to the side of the first push rod 23, and the second The other end of the bracket 26 is fixedly coupled to the lower surface of the first seal ring 25 to support the first seal ring 25.
  • the lower end of the first positioning rod 27 is fixedly connected to the first bracket 22, and the arrangement of the first positioning rod 27 can prevent the first push plate 24 from moving excessively downward.
  • One end of the third bracket 28 is fixedly connected to the right surface of the first filter frame 12 .
  • One end of the fourth bracket 29 is fixedly connected to the third bracket 28, and the other end of the fourth bracket 29 is vertical, so that the first push plate 24 can be prevented from moving excessively downward.
  • the upper end of the first support rod 20 is The lower surface of the fourth bracket 29 is fixedly connected.
  • the second filter device 3 includes a second filter frame 31 , a first pipe 32 located on the right side of the second filter frame 31 , and a first support block located in the second filter frame 31 . 33.
  • the first spacer above the second filter frame 31 is described.
  • the second filter frame 31 has a hollow rectangular parallelepiped, the lower end of the first support rod 20 is fixedly connected to the upper surface of the second filter frame 31, and the second filter frame 31 is provided on the right surface thereof.
  • the third through hole 311 and the fourth through hole 312 on the left surface thereof.
  • One end of the first duct 32 is aligned with the first through hole 131 and is fixedly connected to the right surface of the first filter frame 13 such that the inside of the first duct 32 and the first filter frame 13
  • the first end of the first duct 32 is aligned with the third through hole 311 and is fixedly connected to the right surface of the second filter frame 31.
  • the first duct 32 is provided with a first valve 321 and a first crossbar 322, a left end of the first crossbar 322 is fixedly connected to a right surface of the third bracket 28, and a right end of the first crossbar 322 is fixedly connected to the first duct 32, thereby
  • the first conduit 32 serves as a support.
  • the upper surface and the left surface of the first support block 33 are fixedly coupled to the inner surface of the second filter frame 31.
  • the third filter net 34 has a hollow hemisphere shape, the right surface of the third filter net 34 is fixedly connected to the inner surface of the second filter frame 31, and the third filter net 34 is located at the third pass.
  • the left side of the hole 311 is such that the sewage flowing out from the third through hole 311 needs to be filtered through the third filter 34.
  • the first bristles 35 are provided on the right surface of the first support block 33, and the first bristles 35 are horizontally placed, and the left end of the first bristles 35 and the first support block 33 The right surface is fixedly connected to re-filter the sewage filtered through the third filter 34.
  • the fourth filter net 36 is disposed in a plurality of positions, and the fourth filter net 36 is vertically disposed. The lower surface of the fourth filter net 36 is fixedly connected to the inner surface of the second filter frame 31.
  • the upper surface of the fourth filter net 36 is fixedly connected to the lower surface of the first support block 33, so that not only the sewage can be filtered, but also the first support block 33 can be supported.
  • the fifth filter frame 37 is provided with a plurality of and is located between the fourth filter nets 36.
  • the fifth filter net 37 is a rectangular parallelepiped, and the fifth filter net 37 is horizontally placed.
  • the fifth filter net is disposed.
  • the side surface of the 37 is fixedly connected to the fourth filter net 36, so that the sewage filtered through the first bristles 35 can be filtered again, and the filtering effect is good and fast.
  • the second support rod 38 has a rectangular parallelepiped shape, the second support rod 38 is vertically placed, and the upper end of the second support rod 38 is fixedly connected with the first duct 32, thereby playing against the first duct 32.
  • the fifth bracket 39 is L-shaped, one end of the fifth bracket 39 is fixedly connected to the left surface of the second filter frame 31, and the other end of the fifth bracket 39 is lower than the first bracket 22
  • the surface is fixedly connected.
  • the first spacer has a rectangular parallelepiped shape, and a lower surface of the first spacer is fixedly connected to an upper surface of the second filter frame 31, and a lower surface of the first cylinder 21 and an upper surface of the first spacer The surface is fixedly connected.
  • the first precipitating device 4 includes a first precipitation frame 41, a first triangular block 42 located in the first precipitation frame 41, and a second conduit located on the left side of the first precipitation frame 41. 43.
  • a filter swash plate 44 located in the first precipitation frame 41, a second block 45 located above the first precipitation frame 41, and a sixth bracket 46 located on the right side of the first precipitation frame 41.
  • the cross section of the first precipitation frame 41 is a hollow right-angled trapezoid, and the first precipitation frame 41 is provided with a fifth through hole 411 at a left surface thereof, the first sinker
  • the lower surface of the frame 41 is inclined.
  • the first triangular block 42 has a triangular cross section, and the right and lower surfaces of the first triangular block 42 are fixedly connected to the inner surface of the first precipitation frame 41, and the first triangular block 42 can liquid Focused on the left side of the first triangular block 42.
  • the second duct 43 has a concave shape, and one end of the second duct 43 is aligned with the fourth through hole 312 and is fixedly connected with the left surface of the second filter frame 31, so that the second duct 43 is The inside is communicated with the inside of the second filter frame 31, and the other end of the second duct 43 is aligned with the fifth through hole 411 and is fixedly connected to the left surface of the first precipitation frame 41.
  • the filter swash plate 44 is inclined, and the filter swash plate 44 is received in the first precipitation frame 41.
  • the side surface of the filter swash plate 44 is fixedly connected to the inner surface of the first precipitation frame 41.
  • the filter swash plate 44 is located on the right side of the fifth through hole 411.
  • the lower surface of the second spacer 45 is fixedly connected to the upper surface of the first precipitation frame 41, and the upper surface of the second spacer 45 is fixedly connected to the lower surface of the second filter frame 31, thereby
  • the second filter frame 31 serves as a support.
  • the sixth bracket 46 has a concave shape, one end of the sixth bracket 46 is fixedly connected to the right surface of the second filter frame 31, and the other end of the sixth bracket 46 is opposite to the first precipitation frame 41.
  • the right surface is fixedly connected.
  • the third duct 47 extends through the lower surface of the first precipitation frame 41 into the first precipitation frame 41, and the third duct 47 is fixedly connected to the first precipitation frame 41, and the third
  • the pipe 47 is made of a hose, and the third pipe 47 is provided with a seventh bracket 481.
  • the seventh bracket 481 has an L shape, and one end of the seventh bracket 481 is fixedly connected to the third pipe 47.
  • the other end of the seventh bracket 481 is horizontal.
  • the floating block 48 is provided with two and respectively located on the left and right sides of the third duct 47. One end of the floating block 48 is fixedly connected with one end of the third duct 47, and the buoyant block 48 is buoyant.
  • the large material is made such that the buoyant block 48 can float on the liquid surface such that one end of the third duct 47 is always on the liquid surface.
  • the first water pump 59 is provided with an eighth bracket on the right side thereof 491 and a second crossbar 492 located on the right side of the eighth bracket 491.
  • the eighth bracket 491 is L-shaped, and one end of the eighth bracket 491 is fixedly connected to the lower surface of the first precipitation frame 41.
  • the other end of the eighth bracket 491 is fixedly coupled to the first water pump 49.
  • the left end of the second crossbar 492 is fixedly coupled to the right surface of the eighth bracket 491.
  • the stirring device 5 includes a stirring frame 51 , a first motor 53 located above the stirring frame 51 , a first rotating shaft 52 located below the first motor 53 , and a first rotating shaft disposed on the first rotating shaft a sixth filter net 54 on the 52, a first stirring rod 55 located below the sixth filter net 54, a seventh filter net 56 located below the first rotating shaft 52, and above the seventh filter net 56.
  • the stirring frame 51 has a hollow cylindrical shape, and the stirring frame 51 is provided with a sixth through hole 511 on the left surface thereof and a seventh through hole 512 on the right surface thereof, and the second cross bar 492
  • the right end is fixedly connected to the side of the stirring frame 51
  • the right end of the seventh bracket 481 is fixedly connected to the side of the stirring frame 51
  • the right end of the third duct 47 is aligned with the sixth through hole 511 and
  • the side of the stirring frame 51 is fixedly connected.
  • the first rotating shaft 52 extends through the upper surface of the stirring frame 51 to the inside of the stirring frame 51, and the first rotating shaft 52 is slidably coupled with the stirring frame 51, so that the first rotating shaft 52 can rotate.
  • the upper end of the first rotating shaft 52 is coupled to the first motor 53 such that the first motor 53 drives the first rotating shaft 52 to rotate.
  • the sixth filter net 54 is in the form of a cylinder, the sixth filter net 54 is horizontally placed, and the sixth filter net 54 is received in the stirring frame 51, the side of the sixth filter net 54 and the stirring.
  • the inner surface of the frame 51 is slidably connected, and the first rotating shaft 52 penetrates the upper and lower surfaces of the sixth filter net 54 and is fixedly connected thereto, so that the first rotating shaft 52 drives the sixth filter net 54 to rotate.
  • Said The first stirring rod 55 is disposed at two sides and respectively located on the left and right sides of the first rotating shaft 52.
  • the upper end of the first stirring rod 55 is fixedly connected with the lower surface of the sixth filter net 54, so that the liquid can be Stir.
  • the seventh filter net 56 has a hollow hemisphere shape, and a lower surface of the seventh filter net 56 is slidably connected to an inner surface of the stirring frame 51, and a lower end of the first rotating shaft 52 and the seventh filter net The 56 is fixedly coupled such that the first shaft 52 can rotate the seventh filter 56.
  • the second stirring rod 57 is disposed at two sides and is respectively located on the left and right sides of the first rotating shaft 52.
  • the second stirring rod 57 is vertical, and the lower end of the second stirring rod 57 is opposite to the first
  • the seven filters 56 are fixedly connected so that the liquid can be filtered.
  • the ninth bracket 58 is L-shaped, one end of the ninth bracket 58 is fixedly connected to the upper surface of the stirring frame 51, and the other end of the ninth bracket 58 is fixedly connected to the side surface of the first motor 53. Thereby supporting the first motor 53.
  • the third support rod 59 is a rectangular parallelepiped, the third support rod 59 is vertically placed, and the lower end of the third support rod 59 is fixedly connected to the upper surface of the first motor 53.
  • the third support rod 59 There is a second diagonal rod 591 on the left side thereof, a third cross rod 592 located above it, and a fourth cross rod 593 on the right side thereof, the second diagonal rod 591 is inclined, the second The lower end of the diagonal rod 591 is fixedly coupled to the left surface of the third support rod 59, and the upper end of the second diagonal rod 591 is fixedly coupled to the lower surface of the third cross rod 592.
  • the third crossbar 592 is horizontal, the upper end of the third support rod 59 is fixedly connected to the lower surface of the third crossbar 592, and the left end of the third crossbar 592 and the second filter frame
  • the right surface of 31 is fixedly coupled, and the lower end of the second support rod 38 is fixedly coupled to the upper surface of the third crossbar 592.
  • the fourth crossbar 593 is horizontal, and the left end of the fourth crossbar 593 is fixedly coupled to the right surface of the third support bar 59.
  • the first slanting rod 50 is fixedly connected to the second slanting rod 591, and the lower end of the first slanting rod 50 is fixedly connected to the sixth bracket 46.
  • the heating device 6 includes a heating frame 61, a fourth pipe 62 located above the heating frame 61, a second water pump 63 disposed on the fourth pipe 62, and a second valve 64. a fifth crossbar 65 on the left side of the heating frame 61, an eighth filter net 66 in the heating frame 61, and a first concentration hopper 68 located below the eighth filter net 66 in the first concentration A ninth filter 67 below the bucket 68, a heat dissipation frame 69 located below the ninth filter 67, and a fifth duct 60 located on the right side of the heating frame 61.
  • the heating frame 61 is provided with an eighth through hole 611 on the upper surface thereof and a ninth through hole 612 on the right surface thereof.
  • One end of the fourth duct 62 is aligned with the seventh through hole 512 and is fixedly connected to the side of the stirring frame 51, and the other end of the fourth duct 62 is aligned with the eighth through hole 611 and
  • the upper surface of the heating frame 61 is fixedly connected, and the fourth pipe 62 is provided with a sixth crossbar 621 on the left side thereof and a third diagonal bar 622 located above the sixth cross bar 621.
  • the sixth crossbar 621 is horizontal, the left end of the sixth crossbar 621 is fixedly connected to the right surface of the first filter frame 13, and the right end of the sixth crossbar 621 is opposite to the fourth conduit 62. Fixed connection.
  • the third diagonal rod 622 is inclined, and the lower end of the third diagonal rod 622 is fixedly connected to the upper surface of the sixth horizontal rod 621.
  • the upper end of the third diagonal rod 622 is opposite to the first fixed frame. 623 fixed connection.
  • the first fixing frame 623 is L-shaped, one end of the first fixing frame 623 is fixedly connected to the upper surface of the sixth cross bar 621, and the other end of the first fixing frame 623 is opposite to the first one.
  • the hopper 11 is fixedly connected.
  • the seventh crossbar 624 is horizontal, and the left end of the seventh crossbar 624 is The right surface of the first filter frame 13 is fixedly connected, and the right end of the seventh crossbar 624 is fixedly connected to the fourth duct 62.
  • the fourth diagonal rod 625 is inclined, and the lower end of the fourth diagonal rod 625 is fixedly connected to the upper surface of the seventh horizontal rod 624.
  • the upper end of the fourth inclined rod 625 and the fourth supporting rod The left surface of the 626 is fixedly connected.
  • An upper end of the fourth support rod 626 is fixedly coupled to a lower surface of the sixth cross bar 621, and a lower end of the fourth support rod 626 is fixedly coupled to an upper surface of the seventh cross bar 624.
  • the fifth support rod 627 is a rectangular parallelepiped, the upper end of the fifth support rod 627 is fixedly connected to the lower surface of the seventh cross rod 624, and the lower end of the fifth support rod 627 is fixed to the first duct 32. connection.
  • the right end of the eighth crossbar 628 is fixedly connected to the fourth duct 62, and the left end of the eighth crossbar 628 is fixedly connected to the first duct 32.
  • the fifth diagonal rod 629 is inclined, and the lower end of the fifth diagonal rod 629 is fixedly connected with the upper surface of the eighth horizontal rod 628.
  • the upper end of the fifth diagonal rod 629 and the fourth duct 62 Fixed connection.
  • the sixth support rod 620 has a rectangular parallelepiped shape, and the upper end of the sixth support rod 620 is fixedly connected to the lower surface of the eighth cross rod 628.
  • the lower end of the sixth support rod 620 and the third cross rod 592 The upper surface is fixedly connected.
  • the second water pump 63 is for drawing water in the stirring frame 51 into the fourth duct 62.
  • the right ends of the third crossbar 592 and the fourth crossbar 593 are fixedly connected to the fourth duct 62.
  • the fifth crossbar 65 is provided with two and respectively located on the upper and lower sides, the fifth crossbar 65 is horizontally placed, and the right end of the fifth crossbar 65 is fixedly connected with the left surface of the heating frame 61.
  • the left end of the fifth crossbar 65 is fixedly coupled to the fourth duct 62 to support the fourth duct 62.
  • the eighth filter net 66 has a hollow hemisphere shape, and an upper surface of the eighth filter net 66 is fixedly connected to an inner surface of the heating frame 61, and the eighth filter net 66 is located at the eighth through hole 611. Below, the sewage entering the heating frame 61 from the eighth through hole 611 can be filtered.
  • the ninth filter net 67 is in the shape of a rectangular parallelepiped, and the ninth filter net 67 is horizontally placed, and the ninth pass
  • the side surface of the screen 67 is fixedly coupled to the inner surface of the heating frame 61.
  • the first concentrating bucket 68 has a hollow truncated cone shape, and the upper end of the first concentrating bucket 68 is fixedly connected to the inner surface of the heating frame 61, and the lower surface of the first concentrating bucket 68 and the ninth filter are The upper surface of the net 67 is fixedly coupled to support the ninth filter 67 and to concentrate the liquid in the middle.
  • the heat dissipation frame 69 is a hollow cylinder, and the lower surface of the heat dissipation frame 69 is fixedly connected to the inner surface of the heating frame 61.
  • the heat dissipation frame 69 is made of a heat conductive material, and the heat dissipation frame 69 is provided with a heating rod 692 located inside thereof and a sixth supporting rod 691 located above it, the heating rod 692 is connected to a power source for generating heat, the sixth supporting rod 691 is a rectangular parallelepiped, and the sixth supporting rod 691 is vertical
  • the lower end of the sixth support rod 691 is fixedly connected to the upper surface of the heat dissipation frame 69, and the upper end of the sixth support rod 691 is fixedly connected to the lower surface of the ninth filter net 67.
  • the fifth duct 60 is L-shaped, and one end of the fifth duct 60 is aligned with the ninth through hole 612 and is fixedly connected with the right surface of the heating frame 61, so that the interior of the fifth duct 60 is The inside of the heating frame 61 is communicated, the other end of the fifth duct 60 is vertical, and the fifth duct 60 is provided with a third valve 601 disposed thereon, and a second fixing frame disposed thereon. 602 and a inclined tube 603 located below the third valve 601 for controlling the flow of water in the fifth duct 60.
  • the second fixing frame 602 is L-shaped, and one end of the second fixing frame 602 The other end of the second fixing frame 602 is vertically connected to the fifth pipe 60, and the inclined pipe 603 is inclined to the lower left direction. The upper end of the inclined tube 603 is fixedly connected to the lower end of the fifth duct 60.
  • the third filter device 7 includes a concentrating plate 72 , a third fixing frame 71 located below the concentrating plate 72 , and a fourth fixing frame 73 located above the concentrating plate 72 .
  • a tenth filter net 74 on the right side of the four fixing frame 73, a sixth duct 75 located below the concentrating plate 72, and a fifth fixed line on the left side of the sixth duct 75 The frame 76, the fourth valve 77 disposed on the sixth pipe 75, and the first connecting rod 78 on the left side of the third fixing frame 71.
  • the concentrating plate 72 has a hollow hemispherical shape, and the concentrating plate 72 is located below the inclined pipe 603, so that the water discharged from the inclined pipe 603 can be collected together, and the concentrating plate 72 is provided through the inside and outside.
  • the third fixing frame 71 is provided with two left and right sides respectively under the concentrating plate 72, the third fixing frame 71 is L-shaped, and one end of the third fixing frame 71 and the concentrating plate The lower surface of the 72 is fixedly connected, and the other end of the third holder 71 is horizontal.
  • the fourth fixing frame 73 is L-shaped, and one end of the fourth fixing frame 73 is fixedly connected to the lower surface of the heating frame 61, and the other end of the fourth fixing frame 73 is inside the concentration plate 72.
  • the surface is fixedly connected.
  • the tenth filter screen 74 is vertical, and the side surface of the tenth filter screen 74 is fixedly connected to the inner surface of the concentrating plate 72, so that the sewage discharged from the inclined tube 603 can be filtered.
  • the tenth filter web 74 is located on the right side of the tenth through hole 721.
  • the sixth duct 75 is vertical, and the upper end of the sixth duct 75 is aligned with the tenth through hole 721 and is fixedly connected to the lower surface of the concentrating plate 72 such that the inside of the sixth duct 75 It communicates with the inside of the concentrating plate 72.
  • the fifth fixing frame 76 is L-shaped, one end of the fifth fixing frame 76 is fixedly connected with the lower surface of the concentrating plate 72, and the other end of the fifth fixing frame 76 is opposite to the sixth pipe 75. Fixed connection on the side.
  • the first connecting rod 78 is horizontal, the right end of the first connecting rod 78 is fixedly connected to the side of the third fixing bracket 71, and the left end of the first connecting rod 78 is fixed to the fourth duct 62. connection.
  • the second precipitating device 8 includes a second precipitation frame 81, a second concentration hopper 82 located in the second precipitation frame 81, and a second connection located on the left side of the second precipitation frame 81.
  • a rod 83 a second rotating shaft 85 located below the second precipitation frame 81, a second motor 84 located below the second rotating shaft 85, and a first supporting ring 86 located below the second precipitation frame 81.
  • the second precipitation frame 81 is a hollow cylinder, and the second precipitation frame 81 is placed vertically.
  • the lower surface of the second precipitation frame 81 is provided with a plurality of eleventh through holes 811.
  • the second concentrating bucket 82 has a hollow truncated cone shape, the upper end of the second concentrating bucket 82 is fixedly connected with the inner surface of the second precipitation frame 81, and the second concentrating bucket 82 can pass the filtered sewage.
  • Concentrated to the middle of the second precipitation frame 81, the lower end of the third fixing frame 71 is slidably coupled to the outer surface of the second precipitation frame 81.
  • the second connecting rod 83 is horizontal, the left end of the second connecting rod 83 is fixedly connected with the fourth duct 62, and the right surface of the second connecting rod 83 and the side of the second precipitation frame 81 Slide the connection.
  • the second rotating shaft 85 is a cylinder, the second rotating shaft 85 is vertically placed, and the upper end of the second rotating shaft 85 is fixedly connected with the lower surface of the second precipitation frame 81, and the lower end of the second rotating shaft 85 is
  • the second motor 84 is coupled to the second motor 84 to rotate the second rotating shaft 85 to rotate the second precipitation frame 81.
  • the first support plate 87 is a cylinder, the first support plate 87 is horizontally placed, and the lower surface of the second motor 84 is fixedly connected to the upper surface of the first support plate 87.
  • the first support ring 66 is a cylinder having a circular cross section, the first support ring 66 is vertically placed, and the lower surface of the first support ring 86 is fixed to the upper surface of the first support plate 87.
  • the upper surface of the first support ring 86 abuts against and is slidably coupled to the lower surface of the second precipitation frame 81.
  • the third spacer 88 has a rectangular parallelepiped shape, and an upper surface of the third spacer 88 is fixedly connected to a lower surface of the first support plate 87.
  • the positioning frame 89 has a hollow cylindrical shape, and the positioning frame 89 has an inverted concave shape.
  • the upper surface of the positioning frame 89 is provided with a first circular hole, and the lower end of the second precipitation frame 81 is received.
  • the first circular hole is slidably coupled to the positioning frame 89 such that the second precipitation frame 81 can rotate stably.
  • the first positioning frame 80 has a concave shape, and the first One end of a positioning frame 80 is fixedly connected to the right surface of the positioning frame 89, and the other end of the first positioning frame 80 abuts on the outer surface of the second precipitation frame 81 and is slidably connected thereto, thereby
  • the second precipitation frame 81 serves as a positioning function.
  • the receiving device 9 includes a second supporting plate 91 , a supporting frame 92 located above the second supporting plate 91 , and a receiving box 95 located in the supporting frame 92 .
  • the sixth fixing frame 93 below the two supporting plates 91 and the seventh fixing frame 94 located on the right side of the sixth fixing frame 93.
  • the second support plate 91 has a rectangular parallelepiped shape, and the second support plate 91 is horizontally placed.
  • the support frame 92 has a hollow rectangular parallelepiped, and the lower surface of the support frame 92 is fixedly connected to the upper surface of the second supporting transverse plate 91.
  • the upper surface of the support frame 92 is provided with a plurality of second circular holes.
  • the second circular hole 921 is annularly distributed on the upper surface of the support frame 92, and the lower surface of the positioning frame 89 is fixedly connected to the upper surface of the support frame 92, the third pad
  • the lower surface of the block 88 is fixedly connected to the upper surface of the support frame 92.
  • the second circular hole 921 is distributed around the third block 88.
  • the front and rear surfaces of the support frame 92 communicate with each other to facilitate the removal.
  • the receiving box 95 has a hollow rectangular parallelepiped, and the lower surface and the side surface of the receiving box 95 are in contact with the inner surface of the support frame 92, so that the filtered sewage falling from the second circular hole 921 enters. Go to the receiving bin 95.
  • the sixth fixing frame 93 is L-shaped, one end of the sixth fixing frame 93 is fixedly connected to the lower surface of the second supporting plate 91, and the other end of the sixth fixing frame 93 is opposite to the stirring frame 51.
  • the sides are fixedly connected.
  • the seventh fixing frame 94 is L-shaped, one end of the seventh fixing frame 94 is fixedly connected to the lower surface of the second supporting plate 91, and the other end of the seventh fixing frame 94 is fixed to the sixth fixing.
  • the right surface of the frame 93 is fixedly connected.
  • the municipal sewage treatment device of the present invention when used, first, the sewage is poured from the first feed hopper 11 into the urban sewage, and then passed through the pulverization of the first crushing teeth 141 on the first crushing wheel 14 . Fully powdered solid waste in urban sewage Broken to prevent clogging in the present invention.
  • the pulverized urban sewage causes the pulverized solid waste to be thoroughly mixed with the sewage, and then enters the first filter frame 13, passes through the filtration of the first filter 15 and the second filter mesh 18, and enters below, due to the first filtration
  • the net 15 is curved so that a part of the sewage can be concentrated to both sides, and another part of the sewage is concentrated on the second filter 18, and then the impurities which cannot be filtered in the sewage concentrated on both sides are concentrated to the lower end of the first filter 15. So that the upper end of the first filter 15 can continue to filter the sewage.
  • both ends of the second filter 18 can continue to filter the sewage, so that the filtration can be smoothly performed. continue.
  • the upper baffle 16 is introduced, and then the shunting action of the first shunt block 17 is concentrated to both sides, and then enters through the second through hole 161.
  • the first push plate 24 and the first seal ring 25 are above, and then the first motor 21 is activated, so that the first push plate 24 and the first seal ring 25 are continuously moved up and down, so that the sewage above it continuously moves up and down, and thus The impurities deposited on the first filter 15 and the second filter 18 are no longer blocked on the first filter 15 and the second filter 18, so that the filtering effect is better.
  • the first push plate 24 continues to move downward until the height of the first push plate 24 is below the first through hole 131, so that the sewage above the first push plate 24 enters the first pipe 32, and then the first a valve 321 causes the sewage in the first pipe 32 to enter the second filter frame 31, and then moves downward through the filtering of the third filter 34 and the first bristles 35, passes through the fourth filter 36 and the fifth filter.
  • the filtration of the net 37 is performed, and at the same time, the activated carbon is placed between the fourth filter nets 36, so that the sewage passes through the activated carbon and then enters the second pipe 43 and enters the second precipitation frame 41.
  • the first motor 53 is activated to rotate the first rotating shaft 52, thereby driving the sixth filter net 54 and the seventh filter net 56 to rotate, so that the first stirring rod 55 and the second stirring rod 57 rotate accordingly, so as to enter
  • the water in the stirring frame 51 is sufficiently stirred to uniformly mix to prevent uneven distribution of impurities, thereby affecting the filtration of the sixth filter 54.
  • the water surface begins to exceed.
  • the second water pump 63 is activated, and the second valve 64 is opened, so that the water in the stirring frame 51 enters the fourth pipe 62 and then enters the heating frame 61.
  • the eighth filter net 66 After filtering through the eighth filter net 66, it enters the first concentration hopper 68, and then passes through the filtration of the ninth filter net 67, and is in full contact with the heat dissipation frame 69, and then causes the heating rod 692 to start heating, thereby starting.
  • the water around the heat-dissipating frame 69 starts to heat up, and when it rises to a certain extent, it can have the effect of sterilization and disinfection, and at the same time, partial vaporization is water vapor.
  • the third valve 601 is then opened such that the heated water in the heating frame 61 enters the third conduit 60 while a portion of the water vapor enters the third conduit 60 such that the water vapor and water pass through the third conduit 60 and the inclined tube.
  • the 603 enters the concentrating plate 72, the water vapor is emitted into the air, and since the heated water is in direct contact with the air, the cooling effect is remarkable and rapid, and then the fourth valve 77 is opened, so that the water in the concentrating plate 72 enters the sixth pipe. 75, then enters the second precipitation frame 81, and then starts the second motor 84, so that the second precipitation frame 81 rotates accordingly, so that the water in the second precipitation frame 81 can be precipitated, and then passes through the eleventh through hole 811. And the second circular hole 921 enters the collection box 95. So far, the use process of the municipal sewage treatment device of the present invention has been described.

Abstract

一种城市污水处理装置,包括第一过滤装置(1)、气缸装置(2)、第二过滤装置(3)、第一沉淀装置(4)、搅拌装置(5)、加热装置(6)、第三过滤装置(7)、第二沉淀装置(8)及收料装置(9),第一过滤装置(1)包括第一进料斗(11)、第一粉碎框(12)、第一过滤框(13)、第一粉碎轮(14)、第一过滤网(15)、第二过滤网(18)、第一挡板(16)及第一分流块(17),气缸装置(2)包括第一气缸(21)、第一推动杆(23)、第一推板(24)、第一密封环(25)、第一支架(22)、第二支架(26)、第一定位杆(27)、第三支架(28)、第四支架(29)及第一支撑杆(20),第二过滤装置(3)包括第二过滤框(31)、第一管道(32)、第一支撑块(33)、第一刷毛(35)、第三过滤网(34)、第四过滤网(36)、第五过滤网(37)、第二支撑杆(38)、第五支架(39)及第一垫块,第一沉淀装置(4)包括第一沉淀框(41)、第一三角块(42)、第二管道(43)、过滤斜板(44)。该城市污水处理装置能够对城市污水进行快速有效的净化。

Description

一种城市污水处理装置 技术领域
本发明涉及环保技术领域,尤其是涉及一种城市污水处理装置。
背景技术
人类生活过程中产生的污水,是水体的主要污染源之一,但目前多数污水处理方式均采用化学法处理,容易产生二次污染,而且处理生活污水的过程中由于沉淀以及化学反应等原因,会产生大量的固体杂质,这些固体杂质会沉淀下来,进而产生大量的污泥,远远无法达到国家排放的标准。
因此,有必要提供一种新的技术方案以克服上述缺陷。
发明内容
本发明的目的在于提供一种可有效解决上述技术问题的城市污水处理装置。
为达到本发明之目的,采用如下技术方案:
一种城市污水处理装置,所述城市污水处理装置包括第一过滤装置、位于所述第一过滤装置下方的气缸装置、位于所述气缸装置下方的第二过滤装置、位于所述第二过滤装置下方的第一沉淀装置、位于所述第一沉淀装置右侧的搅拌装置、位于所述搅拌装置右侧的加热装置、位于所述加热装置下方的第三过滤装置、位于所述第三过滤装置下方的第二沉淀装置及位于所述第二沉淀装置下方的收料装置。
与现有技术相比,本发明具有如下有益效果:本发明城市污水处理装置能够对城市污水进行快速有效的净化,其首先可以对城市 污水中的固体杂物进行粉碎,防止固体堵塞在本装置内,然后经过过滤网多次过滤,过滤效果好,然后将过滤后的污水经过刷毛的过滤及过滤网的过滤,然后对其进行沉淀,使得其中的固体杂质沉积在底部,然后将上方的液体抽入到搅拌框内,对其进行过滤,然后将过滤后的液体进行加热,对其进行杀菌消毒,并且可以使其部分的蒸发,以水蒸气的形式挥发掉,并且可以对杀菌后的液体进行过滤,然后可以再次对其进行离心沉淀,使得过滤效果更好,并且使得净化后的液体可以排放到环境中,不会污染环境,健康环保
附图说明
图1为本发明城市污水处理装置的结构示意图。
具体实施方式
如图1所示,本发明城市污水处理装置包括第一过滤装置1、位于所述第一过滤装置1下方的气缸装置2、位于所述气缸装置2下方的第二过滤装置3、位于所述第二过滤装置3下方的第一沉淀装置4、位于所述第一沉淀装置4右侧的搅拌装置5、位于所述搅拌装置5右侧的加热装置6、位于所述加热装置6下方的第三过滤装置7、位于所述第三过滤装置7下方的第二沉淀装置8及位于所述第二沉淀装置8下方的收料装置9。
如图1所示,所述第一过滤装置1包括第一进料斗11、位于所述第一进料斗11下方的第一粉碎框12、位于所述第一粉碎框12下方的第一过滤框13、位于所述第一粉碎框12内的第一粉碎轮14、位于所述第一粉碎轮14下方的第一过滤网15、位于所述第一过滤网15下方的第二过滤网18、位于所述第一过滤网15下方的第一挡板16及位于所述第一挡板16上方的第一分流块17。所述第一进料斗11的横截面呈等腰梯形。所述第一进料斗11的下表面与所述第 一粉碎框12固定连接。所述第一过滤框13呈空心的长方体,所述第一过滤框13的上表面与所述第一粉碎框12固定连接,所述第一过滤框13的右表面设有第一通孔131。所述第一粉碎轮14设有两个且分别位于所述第一粉碎框12内部的左右两侧,所述第一粉碎轮14呈圆柱体,所述第一粉碎轮14与电机连接,所述第一粉碎轮14上设有若干第一粉碎齿141,所述第一粉碎齿141均匀分布在所述第一粉碎轮14上,所述第一粉碎齿141与所述第一粉碎轮14固定连接,使得所述第一粉碎轮14旋转时,使得所述第一粉碎齿141可以对污水中的固体杂质进行粉碎。所述第一过滤网15设有两个且分别位于所述第一过滤框13内部的左右两侧,所述第一过滤网15呈弯曲状,所述第一过滤15的下端与所述第一过滤框13的内表面固定连接,所述第一过滤框15可以对污水中的杂质进行过滤。所述第二过滤网18呈弯曲状,所述第二过滤网18的端部与所述第一过滤网15的侧面固定连接,所述第二过滤网18与所述第一过滤网15相互配合可以对污水中的大部分杂质进行过滤,从而完成对污水的初步过滤。所述第一挡板16的侧面与所述第一过滤框13的内表面固定连接,所述第一挡板16上设有贯穿其上下表面的第二通孔161,所述第二通孔161设有两个。所述第一分流块17的下表面与所述第一挡板16的上表面固定连接,所述第一分流块17的上表面呈弯曲状,从而使得污水向所述第一分流块17的左右两侧流动,进而经过第二通孔161进入到所述第一挡板16的下方。
如图1所示,所述气缸装置2包括第一气缸21、位于所述第一气缸21上方的第一推动杆23、位于所述第一推动杆23上方的第一推板24、设置于所述第一推板24上的第一密封环25、位于所述第一气缸21左侧的第一支架22、位于所述第一密封环25下方的第二 支架26、设置于所述第一支架22上的第一定位杆27、位于所述第一气缸21右侧的第三支架28、设置于所述第三支架28上的第四支架29及位于所述第四支架29下方的第一支撑杆20。所述第一气缸21位于所述第一过滤框13的下方。所述第一支架22呈凹字形,所述第一支架22的一端与所述第一气缸21的左表面固定连接,所述第一支架22的另一端与所述第一过滤框13的左表面固定连接,从而用于固定所述第一气缸21。所述第一推动杆23的下端与所述第一气缸21连接,使得所述第一气缸21带动所述第一推动杆23上下移动,所述第一推动杆23的上端与所述第一推板24的下表面固定连接。所述第一推板24收容于所述第一过滤框13内。所述第一密封环25呈环状,所述第一密封环25水平放置,所述第一密封环25的内表面与所述第一推板24的侧面固定连接,所述第一密封环25的上下表面与所述第一推板24的上下表面处于同一平面内,所述第一密封环25的外表面与所述第一过滤框13的内表面滑动连接,使得所述第一密封环25与所述第一推板24可以上下滑动,并且防止第一推板24上方的水流入到所述第一推板24的下方。所述第二支架26设有两个且分别位于所述第一推动杆23的左右两侧,所述第二支架26的一端与所述第一推动杆23的侧面固定连接,所述第二支架26的另一端与所述第一密封环25的下表面固定连接,从而对所述第一密封环25起到支撑作用。所述第一定位杆27的下端与所述第一支架22固定连接,所述第一定位杆27的设置可以防止所述第一推板24过度向下移动。所述第三支架28的一端与所述第一过滤框12的右表面固定连接。所述第四支架29的一端与所述第三支架28固定连接,所述第四支架29的另一端呈竖直状,从而可以防止所述第一推板24过度向下移动。所述第一支撑杆20的上端与所 述第四支架29的下表面固定连接。
如图1所示,所述第二过滤装置3包括第二过滤框31、位于所述第二过滤框31右侧的第一管道32、位于所述第二过滤框31内的第一支撑块33、位于所述第一支撑块33右侧的第一刷毛35、位于所述第一刷毛35右侧的第三过滤网34、位于所述第一支撑块33下方的第四过滤网36、设置于所述第四过滤网36上的第五过滤网37、位于所述第一管道32下方的第二支撑杆38、位于所述第二过滤框31左侧的第五支架39及位于所述第二过滤框31上方的第一垫块。所述第二过滤框31呈空心的长方体,所述第一支撑杆20的下端与所述第二过滤框31的上表面固定连接,所述第二过滤框31上设有位于其右表面的第三通孔311及位于其左表面的第四通孔312。所述第一管道32的一端对准所述第一通孔131且与所述第一过滤框13的右表面固定连接,使得所述第一管道32的内部与所述第一过滤框13的内部相通,所述第一管道32的另一端对准所述第三通孔311且与所述第二过滤框31的右表面固定连接,所述第一管道32上设有第一阀门321及第一横杆322,所述第一横杆322的左端与所述第三支架28的右表面固定连接,所述第一横杆322的右端与所述第一管道32固定连接,从而对所述第一管道32起到支撑作用。所述第一支撑块33的上表面及左表面与所述第二过滤框31的内表面固定连接。所述第三过滤网34呈空心的半球状,所述第三过滤网34的右表面与所述第二过滤框31的内表面固定连接,所述第三过滤网34位于所述第三通孔311的左侧,使得从所述第三通孔311流出的污水需要经过第三过滤网34的过滤。所述第一刷毛35设有若干个且均匀分布在所述第一支撑块33的右表面上,所述第一刷毛35水平放置,所述第一刷毛35的左端与所述第一支撑块33的 右表面固定连接,从而对经过第三过滤网34过滤后的污水进行再次过滤。所述第四过滤网36设有若干个且左右依次排列,所述第四过滤网36竖直放置,所述第四过滤网36的下表面与所述第二过滤框31的内表面固定连接,所述第四过滤网36的上表面与所述第一支撑块33的下表面固定连接,从而不仅可以对污水进行过滤,还可以对所述第一支撑块33起到支撑作用。所述第五过滤框37设有若干个且分别位于所述第四过滤网36之间,所述第五过滤网37呈长方体,所述第五过滤网37水平放置,所述第五过滤网37的侧面与所述第四过滤网36固定连接,从而可以对经过第一刷毛35过滤后的污水进行再次过滤,过滤效果好,并且快速。所述第二支撑杆38呈长方体,所述第二支撑杆38竖直放置,所述第二支撑杆38的上端与所述第一管道32固定连接,从而对所述第一管道32起到支撑作用。所述第五支架39呈L型,所述第五支架39的一端与所述第二过滤框31的左表面固定连接,所述第五支架39的另一端与所述第一支架22的下表面固定连接。所述第一垫块呈长方体,所述第一垫块的下表面与所述第二过滤框31的上表面固定连接,所述第一气缸21的下表面与所述第一垫块的上表面固定连接。
如图1所示,所述第一沉淀装置4包括第一沉淀框41、位于所述第一沉淀框41内的第一三角块42、位于所述第一沉淀框41左侧的第二管道43、位于所述第一沉淀框41内的过滤斜板44、位于所述第一沉淀框41上方的第二垫块45、位于所述第一沉淀框41右侧的第六支架46、位于所述第一沉淀框41下方的第三管道47、设置于所述第三管道47一端的漂浮块48、设置于所述第三管道47上的第一水泵49。所述第一沉淀框41的横截面呈空心的直角梯形,所述第一沉淀框41上设有位于其左表面的第五通孔411,所述第一沉 淀框41的下表面呈倾斜状。所述第一三角块42的横截面呈三角形,所述第一三角块42的右表面及下表面与所述第一沉淀框41的内表面固定连接,所述第一三角块42可以将液体集中在所述第一三角块42的左侧。所述第二管道43呈凹字形,所述第二管道43的一端对准所述第四通孔312且与所述第二过滤框31的左表面固定连接,使得所述第二管道43的内部与所述第二过滤框31的内部相通,所述第二管道43的另一端对准所述第五通孔411且与所述第一沉淀框41的左表面固定连接。所述过滤斜板44呈倾斜状,所述过滤斜板44的收容于所述第一沉淀框41内,所述过滤斜板44的侧面与所述第一沉淀框41的内表面固定连接,所述过滤斜板44位于所述第五通孔411的右侧。所述第二垫块45的下表面与所述第一沉淀框41的上表面固定连接,所述第二垫块45的上表面与所述第二过滤框31的下表面固定连接,从而对所述第二过滤框31起到支撑作用。所述第六支架46呈凹字形,所述第六支架46的一端与所述第二过滤框31的右表面固定连接,所述第六支架46的另一端与所述第一沉淀框41的右表面固定连接。所述第三管道47一端贯穿所述第一沉淀框41的下表面延伸至所述第一沉淀框41内,所述第三管道47与所述第一沉淀框41固定连接,所述第三管道47采用软管制成,所述第三管道47上设有第七支架481,所述第七支架481呈L型,所述第七支架481的一端与所述第三管道47固定连接,所述第七支架481的另一端呈水平状。所述漂浮块48设有两个且分别位于所述第三管道47的左右两侧,所述漂浮块48的一端与所述第三管道47的一端固定连接,所述漂浮块48采用浮力较大的材料制成,使得所述漂浮块48可以漂浮在液面上,使得所述第三管道47的一端一直处于液面上。所述第一水泵59上设有位于其右侧的第八支架 491及位于所述第八支架491右侧的第二横杆492,所述第八支架491呈L型,所述第八支架491的一端与所述第一沉淀框41的下表面固定连接,所述第八支架491的另一端与所述第一水泵49固定连接。所述第二横杆492的左端与所述第八支架491的右表面固定连接。
如图1所示,所述搅拌装置5包括搅拌框51、位于所述搅拌框51上方的第一电机53、位于所述第一电机53下方的第一转轴52、设置于所述第一转轴52上的第六过滤网54、位于所述第六过滤网54下方的第一搅拌杆55、位于所述第一转轴52下方的第七过滤网56、位于所述第七过滤网56上方的第二搅拌杆57、位于所述第一电机53左侧的第九支架58、位于所述第一电机53上方的第三支撑杆59及位于所述第三支撑杆59左侧的第一斜杆50。所述搅拌框51呈空心的圆柱体状,所述搅拌框51上设有位于其左表面的第六通孔511及位于其右表面的第七通孔512,所述第二横杆492的右端与所述搅拌框51的侧面固定连接,所述第七支架481的右端与所述搅拌框51的侧面固定连接,所述第三管道47的右端对准所述第六通孔511且与所述搅拌框51的侧面固定连接。所述第一转轴52贯穿所述搅拌框51的上表面延伸至所述搅拌框51的内部,所述第一转轴52与所述搅拌框51滑动连接,使得所述第一转轴52可以旋转,所述第一转轴52的上端与所述第一电机53连接,使得所述第一电机53带动所述第一转轴52旋转。所述第六过滤网54呈圆柱体,所述第六过滤网54水平放置,所述第六过滤网54收容于所述搅拌框51内,所述第六过滤网54的侧面与所述搅拌框51的内表面滑动连接,所述第一转轴52贯穿所述第六过滤网54的上下表面且与其固定连接,使得所述第一转轴52带动所述第六过滤网54旋转。所述 第一搅拌杆55设有两个且分别位于所述第一转轴52的左右两侧,所述第一搅拌杆55的上端与所述第六过滤网54的下表面固定连接,从而可以对液体进行搅拌。所述第七过滤网56呈空心的半球状,所述第七过滤网56的下表面与所述搅拌框51的内表面滑动连接,所述第一转轴52的下端与所述第七过滤网56固定连接,从而所述第一转轴52可以带动所述第七过滤网56旋转。所述第二搅拌杆57设有两个且分别位于所述第一转轴52的左右两侧,所述第二搅拌杆57呈竖直状,所述第二搅拌杆57的下端与所述第七过滤网56固定连接,从而可以对液体进行过滤。所述第九支架58呈L型,所述第九支架58的一端与所述搅拌框51的上表面固定连接,所述第九支架58的另一端与所述第一电机53的侧面固定连接,从而对所述第一电机53起到支撑作用。所述第三支撑杆59呈长方体,所述第三支撑杆59竖直放置,所述第三支撑杆59的下端与所述第一电机53的上表面固定连接,所述第三支撑杆59上设有位于其左侧的第二斜杆591、位于其上方的第三横杆592及位于其右侧的第四横杆593,所述第二斜杆591呈倾斜状,所述第二斜杆591的下端与所述第三支撑杆59的左表面固定连接,所述第二斜杆591的上端与所述第三横杆592的下表面固定连接。所述第三横杆592呈水平状,所述第三支撑杆59的上端与所述第三横杆592的下表面固定连接,所述第三横杆592的左端与所述第二过滤框31的右表面固定连接,所述第二支撑杆38的下端与所述第三横杆592的上表面固定连接。所述第四横杆593呈水平状,所述第四横杆593的左端与所述第三支撑杆59的右表面固定连接。所述第一斜杆50呈倾斜状,所述第一斜杆50的上端与所述第二斜杆591固定连接,所述第一斜杆50的下端与所述第六支架46固定连接。
如图1所示,所述加热装置6包括加热框61、位于所述加热框61上方的第四管道62、设置于所述第四管道62上的第二水泵63、第二阀门64、位于所述加热框61左侧的第五横杆65、位于所述加热框61内的第八过滤网66、位于所述第八过滤网66下方的第一集中斗68、位于所述第一集中斗68下方的第九过滤网67、位于所述第九过滤网67下方的散热框69、位于所述加热框61右侧的第五管道60。所述加热框61上设有位于其上表面的第八通孔611及位于其右表面的第九通孔612。所述第四管道62的一端对准所述第七通孔512且与所述搅拌框51的侧面固定连接,所述第四管道62的另一端对准所述第八通孔611且与所述加热框61的上表面固定连接,所述第四管道62上设有位于其左侧的第六横杆621、位于所述第六横杆621上方的第三斜杆622、位于所述第三斜杆622左侧的第一固定架623、位于所述第六横杆621下方的第七横杆624、位于所述第七横杆624上方的第四斜杆625、位于所述第四斜杆625右侧的第四支撑杆626、位于所述第七横杆624下方的第五支撑杆627、位于所述第四管道62左侧的第八横杆628、位于所述第八横杆628上方的第五斜杆629及位于所述第八横杆628下方的第六支撑杆620。所述第六横杆621呈水平状,所述第六横杆621的左端与所述第一过滤框13的右表面固定连接,所述第六横杆621的右端与所述第四管道62固定连接。所述第三斜杆622呈倾斜状,所述第三斜杆622的下端与所述第六横杆621的上表面固定连接,所述第三斜杆622的上端与所述第一固定架623固定连接。所述第一固定架623呈L型,所述第一固定架623的一端与所述第六横杆621的上表面固定连接,所述第一固定架623的另一端与所述第一进料斗11固定连接。所述第七横杆624呈水平状,所述第七横杆624的左端与所 述第一过滤框13的右表面固定连接,所述第七横杆624的右端与所述第四管道62固定连接。所述第四斜杆625呈倾斜状,所述第四斜杆625的下端与所述第七横杆624的上表面固定连接,所述第四斜杆625的上端与所述第四支撑杆626的左表面固定连接。所述第四支撑杆626的上端与所述第六横杆621的下表面固定连接,所述第四支撑杆626的下端与所述第七横杆624的上表面固定连接。所述第五支撑杆627呈长方体,所述第五支撑杆627的上端与所述第七横杆624的下表面固定连接,所述第五支撑杆627的下端与所述第一管道32固定连接。所述第八横杆628的右端与所述第四管道62固定连接,所述第八横杆628的左端与所述第一管道32固定连接。所述第五斜杆629呈倾斜状,所述第五斜杆629的下端与所述第八横杆628的上表面固定连接,所述第五斜杆629的上端与所述第四管道62固定连接。所述第六支撑杆620呈长方体,所述第六支撑杆620的上端与所述第八横杆628的下表面固定连接,所述第六支撑杆620的下端与所述第三横杆592的上表面固定连接。所述第二水泵63用于将搅拌框51内的水抽入到所述第四管道62内。所述第三横杆592及第四横杆593的右端与所述第四管道62固定连接。所述第五横杆65设有两个且分别位于上下两侧,所述第五横杆65水平放置,所述第五横杆65的右端与所述加热框61的左表面固定连接,所述第五横杆65的左端与所述第四管道62固定连接,从而对所述第四管道62起到支撑作用。所述第八过滤网66呈空心的半球状,所述第八过滤网66的上表面与所述加热框61的内表面固定连接,所述第八过滤网66位于所述第八通孔611的下方,从而可以对从所述第八通孔611进入到所述加热框61的污水进行过滤。所述第九过滤网67呈长方体,所述第九过滤网67水平放置,所述第九过 滤网67的侧面与所述加热框61的内表面固定连接。所述第一集中斗68呈空心的圆台状,所述第一集中斗68的上端与所述加热框61的内表面固定连接,所述第一集中斗68的下表面与所述第九过滤网67的上表面固定连接,从而对所述第九过滤网67起到支撑作用,并且可以将液体集中到中间。所述散热框69呈空心的圆柱体,所述散热框69的下表面与所述加热框61的内表面固定连接,所述散热框69采用导热材料制成,所述散热框69上设有位于其内部的加热棒692及位于其上方的第六支撑杆691,所述加热棒692与电源连接,用于产生热量,所述第六支撑杆691呈长方体,所述第六支撑杆691竖直放置,所述第六支撑杆691的下端与所述散热框69的上表面固定连接,所述第六支撑杆691的上端与所述第九过滤网67的下表面固定连接。所述第五管道60呈L型,所述第五管道60的一端对准所述第九通孔612且与所述加热框61的右表面固定连接,使得所述第五管道60的内部与所述加热框61的内部相通,所述第五管道60的另一端呈竖直状,所述第五管道60上设有设置于其上的第三阀门601、位于其上的第二固定架602及位于其下方的斜管603,所述第三阀门601用于控制所述第五管道60中水的流量,所述第二固定架602呈L型,所述第二固定架602的一端与所述加热框61的右表面固定连接,所述第二固定架602的另一端呈竖直状且与所述第五管道60固定连接,所述斜管603呈右上方向左下方倾斜,所述斜管603的上端与所述第五管道60的下端固定连接。
如图1所示,所述第三过滤装置7包括集中板72、位于所述集中板72下方的第三固定架71、位于所述集中板72上方的第四固定架73、位于所述第四固定架73右侧的第十过滤网74、位于所述集中板72下方的第六管道75、位于所述第六管道75左侧的第五固定 架76、设置于所述第六管道75上的第四阀门77、位于所述第三固定架71左侧的第一连接杆78。所述集中板72呈空心的半球状,所述集中板72位于所述斜管603的下方,从而可以将从斜管603排出的水集中到一起,所述集中板72上设有贯穿其内外表面的第十通孔721。所述第三固定架71设有两个且分别位于所述集中板72下方的左右两侧,所述第三固定架71呈L型,所述第三固定架71的一端与所述集中板72的下表面固定连接,所述第三固定架71的另一端呈水平状。所述第四固定架73呈L型,所述第四固定架73的一端与所述加热框61的下表面固定连接,所述第四固定架73的另一端与所述集中板72的内表面固定连接。所述第十过滤网74呈竖直状,所述第十过滤网74的侧面与所述集中板72的内表面固定连接,从而可以对从所述斜管603排出的污水进行过滤,所述第十过滤网74位于所述第十通孔721的右侧。所述第六管道75呈竖直状,所述第六管道75的上端对准所述第十通孔721且与所述集中板72的下表面固定连接,使得所述第六管道75的内部与所述集中板72的内部相通。所述第五固定架76呈L型,所述第五固定架76的一端与所述集中板72的下表面固定连接,所述第五固定架76的另一端与所述第六管道75的侧面固定连接。所述第一连接杆78呈水平状,所述第一连接杆78的右端与所述第三固定架71的侧面固定连接,所述第一连接杆78的左端与所述第四管道62固定连接。
如图1所示,所述第二沉淀装置8包括第二沉淀框81、位于所述第二沉淀框81内的第二集中斗82、位于所述第二沉淀框81左侧的第二连接杆83、位于所述第二沉淀框81下方的第二转轴85、位于所述第二转轴85下方的第二电机84、位于所述第二沉淀框81下方的第一支撑环86、位于所述第二电机84下方的第一支撑板87、 位于所述第一支撑板87下方的第三垫块88、位于所述第二沉淀框81周围的定位框89及位于所述第二沉淀框81右侧的第一定位架80。所述第二沉淀框81呈空心的圆柱体,所述第二沉淀框81竖直放置,所述第二沉淀框81的下表面设有若干第十一通孔811。所述第二集中斗82呈空心的圆台状,所述第二集中斗82的上端与所述第二沉淀框81的内表面固定连接,所述第二集中斗82可以将经过过滤后的污水集中到第二沉淀框81的中间,所述第三固定架71的下端与所述第二沉淀框81的外表面滑动连接。所述第二连接杆83呈水平状,所述第二连接杆83的左端与所述第四管道62固定连接,所述第二连接杆83的右表面与所述第二沉淀框81的侧面滑动连接。所述第二转轴85呈圆柱体,所述第二转轴85竖直放置,所述第二转轴85的上端与所述第二沉淀框81的下表面固定连接,所述第二转轴85的下端与所述第二电机84连接,使得所述第二电机84带动所述第二转轴85旋转,进而使得第二沉淀框81旋转。所述第一支撑板87呈圆柱体,所述第一支撑板87水平放置,所述第二电机84的下表面与所述第一支撑板87的上表面固定连接。所述第一支撑环66呈横截面为圆环的柱体,所述第一支撑环66竖直放置,所述第一支撑环86的下表面与所述第一支撑板87的上表面固定连接,所述第一支撑环86的上表面顶靠在所述第二沉淀框81的下表面上且与其滑动连接。所述第三垫块88呈长方体,所述第三垫块88的上表面与所述第一支撑板87的下表面固定连接。所述定位框89呈空心的圆柱体,所述定位框89的横截面呈倒置的凹字形,所述定位框89的上表面设有第一圆孔,所述第二沉淀框81的下端收容于所述第一圆孔内且与所述定位框89滑动连接,使得所述第二沉淀框81能够稳定的旋转。所述第一定位架80呈凹字形,所述第 一定位架80的一端与所述定位框89的右表面固定连接,所述第一定位架80的另一端顶靠在所述第二沉淀框81的外表面上且与其滑动连接,从而对所述第二沉淀框81起到定位作用。
如图1所示,所述收料装置9包括第二支撑板91、位于所述第二支撑板91上方的支撑框92、位于所述支撑框92内的收料箱95、位于所述第二支撑板91下方的第六固定架93及位于所述第六固定架93右侧的第七固定架94。所述第二支撑板91呈长方体,所述第二支撑板91水平放置。所述支撑框92呈空心的长方体,所述所述支撑框92的下表面与所述第二支持横板91的上表面固定连接,所述支撑框92的上表面设有若干第二圆孔921,所述第二圆孔921呈圆环状分布在所述支撑框92的上表面上,所述定位框89的下表面与所述支撑框92的上表面固定连接,所述第三垫块88的下表面与所述支撑框92的上表面固定连接,所述第二圆孔921分布在所述第三垫块88的周围,所述支撑框92的前后表面相通,从而方便取出收料箱95。所述收料箱95呈空心的长方体,所述收料箱95的下表面及侧面与所述支撑框92的内表面接触,使得从所述第二圆孔921落下的经过过滤后的污水进入到收料箱95内。所述第六固定架93呈L型,所述第六固定架93的一端与所述第二支撑板91的下表面固定连接,所述第六固定架93的另一端与所述搅拌框51的侧面固定连接。所述第七固定架94呈L型,所述第七固定架94的一端与所述第二支撑板91的下表面固定连接,所述第七固定架94的另一端与所述第六固定架93的右表面固定连接。
如图1所示,所述本发明城市污水处理装置使用时,首先将污水从第一进料斗11倒入城市污水,然后经过第一粉碎轮14上的第一粉碎齿141的粉碎后,将城市污水中夹杂的固体废物进行充分的粉 碎,防止其堵塞在本发明中。经过粉碎后的城市污水使得粉碎后的固体废物与污水充分混合,然后进入到第一过滤框13内,经过第一过滤网15及第二过滤网18的过滤后进入到下方,由于第一过滤网15呈弯曲状,从而可以将一部分污水集中到两侧,另一部分污水集中到第二过滤网18上,然后集中到两侧的污水中不能被过滤的杂质集中到第一过滤网15的下端,从而使得第一过滤网15的上端能够继续对污水进行过滤,当杂质集中到第二过滤网18的中间时,第二过滤网18的两端能够对污水继续进行过滤,使得过滤能够顺利的持续下去。然后经过第一过滤网15及第二过滤网18的过滤后进入到第一挡板16的上方,然后经过第一分流块17的分流作用集中到两侧,然后经过第二通孔161进入到第一推板24及第一密封环25的上方,然后启动第一电机21,使得第一推板24及第一密封环25不断的上下移动,使得其上方的污水不断的上下移动,进而可以使得第一过滤网15及第二过滤网18上沉积的杂质不再堵塞在第一过滤网15及第二过滤网18上,使得过滤效果更好。然后第一推板24继续向下移动,直至第一推板24的高度位于所述第一通孔131的下方,使得第一推板24上方的污水进入到第一管道32内,然后打开第一阀门321,使得第一管道32内的污水进入到第二过滤框31内,然后经过第三过滤网34及第一刷毛35的过滤后向下移动,经过第四过滤网36及第五过滤网37的过滤,同时在第四过滤网36之间放置活性炭,使得污水经过活性炭的过滤后进入到第二管道43进入到所述第二沉淀框41内,经过过滤斜板44的过滤后,集中在第一三角块42的左侧,然后沉淀一段时间后,此时漂浮块48漂浮在液面上,沉淀后,杂质沉积在第一沉淀框41的底部,液面的水含有的杂质较少,由于漂浮块48漂浮在液面上,使得第三管道47的一 端漂浮在液面上,并插入到液面中,然后启动第一水泵49,使得第一沉淀框41内液面的水进入到第三管道47内,然后进入到搅拌框51内。然后启动第一电机53,使得第一转轴52旋转,进而带动所述第六过滤网54及第七过滤网56旋转,从而使得第一搅拌杆55及第二搅拌杆57随之旋转,使得进入到所述搅拌框51内的水进行充分的搅拌,使其混合均匀,防止杂质分布不均,进而影响第六过滤网54对其过滤,随着搅拌框51内水的逐渐增加,水面开始超过第六过滤网54,经过第六过滤网54的过滤后,启动第二水泵63,并且打开第二阀门64,使得搅拌框51内的水进入到第四管道62内,然后进入到加热框61内,然后经过第八过滤网66的过滤后,进入到第一集中斗68内,然后经过第九过滤网67的过滤后,与散热框69充分接触,然后使得加热棒692开始加热,从而开始使得散热框69周围的水开始升温,升到一定程度时可以起到杀菌消毒的效果,同时部分汽化呈水蒸气。然后打开第三阀门601,使得加热框61内的经过加热的水进入到第三管道60内,同时部分水蒸气进入到第三管道60内,使得水蒸气与水经过第三管道60及斜管603进入到集中板72内,水蒸气散发到空气中,并且由于加热的水与空气直接接触,冷却效果显著且快速,然后打开第四阀门77,使得集中板72内的水进入到第六管道75内,然后进入到第二沉淀框81内,然后启动第二电机84,使得第二沉淀框81随之旋转,使得第二沉淀框81内的水可以沉淀,然后经过第十一通孔811及第二圆孔921进入到收集箱95内。至此,本发明城市污水处理装置使用过程描述完毕。

Claims (10)

  1. 一种城市污水处理装置,其特征在于:所述城市污水处理装置包括第一过滤装置、位于所述第一过滤装置下方的气缸装置、位于所述气缸装置下方的第二过滤装置、位于所述第二过滤装置下方的第一沉淀装置、位于所述第一沉淀装置右侧的搅拌装置、位于所述搅拌装置右侧的加热装置、位于所述加热装置下方的第三过滤装置、位于所述第三过滤装置下方的第二沉淀装置及位于所述第二沉淀装置下方的收料装置,所述第一过滤装置包括第一进料斗、位于所述第一进料斗下方的第一粉碎框、位于所述第一粉碎框下方的第一过滤框、位于所述第一粉碎框内的第一粉碎轮、位于所述第一粉碎轮下方的第一过滤网、位于所述第一过滤网下方的第二过滤网、位于所述第一过滤网下方的第一挡板及位于所述第一挡板上方的第一分流块,所述气缸装置包括第一气缸、位于所述第一气缸上方的第一推动杆、位于所述第一推动杆上方的第一推板、设置于所述第一推板上的第一密封环、位于所述第一气缸左侧的第一支架、位于所述第一密封环下方的第二支架、设置于所述第一支架上的第一定位杆、位于所述第一气缸右侧的第三支架、设置于所述第三支架上的第四支架及位于所述第四支架下方的第一支撑杆,所述第二过滤装置包括第二过滤框、位于所述第二过滤框右侧的第一管道、位于所述第二过滤框内的第一支撑块、位于所述第一支撑块右侧的第一刷毛、位于所述第一刷毛右侧的第三过滤网、位于所述第一支撑块下方的第四过滤网、设置于所述第四过滤网 上的第五过滤网、位于所述第一管道下方的第二支撑杆、位于所述第二过滤框左侧的第五支架及位于所述第二过滤框上方的第一垫块,所述第一沉淀装置包括第一沉淀框、位于所述第一沉淀框内的第一三角块、位于所述第一沉淀框左侧的第二管道、位于所述第一沉淀框内的过滤斜板、位于所述第一沉淀框上方的第二垫块、位于所述第一沉淀框右侧的第六支架、位于所述第一沉淀框下方的第三管道、设置于所述第三管道一端的漂浮块、设置于所述第三管道上的第一水泵,所述搅拌装置包括搅拌框、位于所述搅拌框上方的第一电机、位于所述第一电机下方的第一转轴、设置于所述第一转轴上的第六过滤网、位于所述第六过滤网下方的第一搅拌杆、位于所述第一转轴下方的第七过滤网、位于所述第七过滤网上方的第二搅拌杆、位于所述第一电机左侧的第九支架、位于所述第一电机上方的第三支撑杆及位于所述第三支撑杆左侧的第一斜杆,所述加热装置包括加热框、位于所述加热框上方的第四管道、设置于所述第四管道上的第二水泵、第二阀门、位于所述加热框左侧的第五横杆、位于所述加热框内的第八过滤网、位于所述第八过滤网下方的第一集中斗、位于所述第一集中斗下方的第九过滤网、位于所述第九过滤网下方的散热框、位于所述加热框右侧的第五管道,所述第三过滤装置包括集中板、位于所述集中板下方的第三固定架、位于所述集中板上方的第四固定架、位于所述第四固定架右侧的第十过滤网、位于所述集中板下方的第六管道、位于所述第六管道左侧的第五固定架、设置于所述第六管道上的第四阀门、位于所述第三固定架左侧的第一连接杆,所述第二沉淀装置包括第二沉淀 框、位于所述第二沉淀框内的第二集中斗、位于所述第二沉淀框左侧的第二连接杆、位于所述第二沉淀框下方的第二转轴、位于所述第二转轴下方的第二电机、位于所述第二沉淀框下方的第一支撑环、位于所述第二电机下方的第一支撑板、位于所述第一支撑板下方的第三垫块、位于所述第二沉淀框周围的定位框及位于所述第二沉淀框右侧的第一定位架,所述收料装置包括第二支撑板、位于所述第二支撑板上方的支撑框、位于所述支撑框内的收料箱、位于所述第二支撑板下方的第六固定架及位于所述第六固定架右侧的第七固定架。
  2. 如权利要求1所述的城市污水处理装置,其特征在于:所述第一进料斗的下表面与所述第一粉碎框固定连接,所述第一过滤框的上表面与所述第一粉碎框固定连接,所述第一过滤框的右表面设有第一通孔,所述第一粉碎轮上设有若干第一粉碎齿,所述第一过滤网的下端与所述第一过滤框的内表面固定连接,所述第二过滤网的端部与所述第一过滤网固定连接,所述第一挡板的侧面与所述第一过滤框的内表面固定连接,所述第一挡板上设有第二通孔,所述第一分流块的下表面与所述第一挡板固定连接。
  3. 如权利要求2所述的城市污水处理装置,其特征在于:所述第一推动杆的下端与所述第一气缸连接,所述第一推动杆的上端与所述第一推板固定连接,所述第一密封环的内表面与所述第一推板的侧面固定连接,所述第一密封环的外表面与所述第一过滤框的内表面滑动连接,所述第一定位杆的下端与所述第一支架固定连接,所述第三支架的一端与所述第一过滤框的右表面固定连接。
  4. 如权利要求3所述的城市污水处理装置,其特征在于:所述第一支撑杆的下端与所述第二过滤框的上表面固定连接,所述第二过滤框上设有第三通孔及第四通孔,所述第一管道的一端对准所述第一通孔且与所述第一过滤框固定连接,所述第一管道的另一端对准所述第三通孔且与所述第二过滤框固定连接,所述第一管道上设有第一阀门及第一横杆,所述第一支撑块与所述第二过滤框的内表面固定连接,所述第三过滤网的右表面与所述第二过滤框的内表面固定连接,所述第一刷毛的左端与所述第一支撑块的右表面固定连接,所述第四过滤网的下表面与所述第二过滤框的内表面固定连接,所述第四过滤网的上表面与所述第一支撑块固定连接,所述第五过滤网的侧面与所述第四过滤网固定连接,所述第二支撑杆的上端与所述第一管道固定连接,所述第五支架的一端与所述第二过滤框固定连接,所述第一垫块的下表面与所述第二过滤框的上表面固定连接,所述第一气缸的下表面与所述第一垫块固定连接。
  5. 如权利要求4所述的城市污水处理装置,其特征在于:所述第一沉淀框上设有位于第五通孔,所述第一沉淀框的下表面呈倾斜状,所述第一三角块与所述第一沉淀框的内表面固定连接,所述第二管道的一端对准所述第四通孔且与所述第二过滤框固定连接,所述第二管道的另一端对准所述第五通孔且与所述第一沉淀框的左表面固定连接,所述过滤斜板的侧面与所述第一沉淀框的内表面固定连接,所述第二垫块的下表面与所述第一沉淀框固定连接,所述第二垫块的上表面与所述第二过滤框的下表面固定连接,所述第六支架的一端与所述第二过 滤框固定连接,所述第六支架的另一端与所述第一沉淀框固定连接,所述第三管道一端贯穿所述第一沉淀框的下表面延伸至所述第一沉淀框内,所述第三管道与所述第一沉淀框固定连接,所述第三管道上设有第七支架,所述漂浮块的一端与所述第三管道的一端固定连接,所述第一水泵上设有位于其右侧的第八支架及位于所述第八支架右侧的第二横杆。
  6. 如权利要求5所述的城市污水处理装置,其特征在于:所述搅拌框上设有第六通孔及位于其右表面的第七通孔,所述第三管道的右端对准所述第六通孔且与所述搅拌框的侧面固定连接,所述第一转轴贯穿所述搅拌框的上表面延伸至所述搅拌框的内部,所述第一转轴与所述搅拌框滑动连接,所述第一转轴的上端与所述第一电机连接,所述第六过滤网的侧面与所述搅拌框的内表面滑动连接,所述第一转轴贯穿所述第六过滤网的上下表面且与其固定连接,所述第一搅拌杆的上端与所述第六过滤网的下表面固定连接,所述第七过滤网呈空心的半球状,所述第七过滤网的下表面与所述搅拌框的内表面滑动连接,所述第一转轴的下端与所述第七过滤网固定连接,所述第二搅拌杆的下端与所述第七过滤网固定连接,所述第三支撑杆上设有第二斜杆、位于其上方的第三横杆及位于其右侧的第四横杆。
  7. 如权利要求6所述的城市污水处理装置,其特征在于:所述加热框上设有位于其上表面的第八通孔及位于其右表面的第九通孔,所述第四管道的一端对准所述第七通孔且与所述搅拌框的侧面固定连接,所述第四管道的另一端对准所述第八通孔且与所述加热框的上表面固 定连接,所述第四管道上设有位于其左侧的第六横杆、位于所述第六横杆上方的第三斜杆、位于所述第三斜杆左侧的第一固定架、位于所述第六横杆下方的第七横杆、位于所述第七横杆上方的第四斜杆、位于所述第四斜杆右侧的第四支撑杆、位于所述第七横杆下方的第五支撑杆、位于所述第四管道左侧的第八横杆、位于所述第八横杆上方的第五斜杆及位于所述第八横杆下方的第六支撑杆,所述第五横杆的右端与所述加热框的左表面固定连接,所述第五横杆的左端与所述第四管道固定连接,所述第八过滤网呈空心的半球状,所述第八过滤网的上表面与所述加热框的内表面固定连接,所述第八过滤网位于所述第八通孔的下方,所述第九过滤网的侧面与所述加热框的内表面固定连接,所述第一集中斗呈空心的圆台状,所述第一集中斗的上端与所述加热框的内表面固定连接,所述第一集中斗的下表面与所述第九过滤网的上表面固定连接,所述散热框的下表面与所述加热框的内表面固定连接,所述散热框上设有位于其内部的加热棒及位于其上方的第六支撑杆,所述第五管道的一端对准所述第九通孔且与所述加热框的右表面固定连接,所述第五管道的另一端呈竖直状,所述第五管道上设有第三阀门、位于其上的第二固定架及位于其下方的斜管,所述斜管的上端与所述第五管道的下端固定连接。
  8. 如权利要求7所述的城市污水处理装置,其特征在于:所述集中板上设有贯穿其内外表面的第十通孔,所述第十过滤网的侧面与所述集中板的内表面固定连接,所述第六管道的上端对准所述第十通孔且与所述集中板的下表面固定连接。
  9. 如权利要求8所述的城市污水处理装置,其特征在于:所述第二沉淀框的下表面设有若干第十一通孔,所述第二集中斗呈空心的圆台状,所述第二集中斗的上端与所述第二沉淀框的内表面固定连接,所述第二连接杆的右表面与所述第二沉淀框的侧面滑动连接,所述第二转轴的上端与所述第二沉淀框的下表面固定连接,所述第二转轴的下端与所述第二电机连接,所述第二电机的下表面与所述第一支撑板的上表面固定连接,所述第一支撑环呈横截面为圆环的柱体,所述第一支撑环的下表面与所述第一支撑板的上表面固定连接,所述第一支撑环的上表面顶靠在所述第二沉淀框的下表面上且与其滑动连接,所述第三垫块的上表面与所述第一支撑板的下表面固定连接,所述定位框的横截面呈倒置的凹字形,所述定位框的上表面设有第一圆孔,所述第二沉淀框的下端收容于所述第一圆孔内且与所述定位框滑动连接,所述第一定位架的一端与所述定位框的右表面固定连接,所述第一定位架的另一端顶靠在所述第二沉淀框的外表面上且与其滑动连接。
  10. 如权利要求9所述的城市污水处理装置,其特征在于:所述支撑框呈空心的长方体,所述所述支撑框的下表面与所述第二支持横板的上表面固定连接,所述支撑框的上表面设有若干第二圆孔,所述定位框的下表面与所述支撑框的上表面固定连接,所述第三垫块的下表面与所述支撑框的上表面固定连接,所述收料箱与所述支撑框的内表面接触,所述第六固定架的一端与所述第二支撑板的下表面固定连接,所述第六固定架的另一端与所述搅拌框的侧面固定连接。
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CN111717977A (zh) * 2020-07-18 2020-09-29 常德市俊德科技发展有限公司 一种用于回收沉淀物的自动化污水处理装置
CN111847734A (zh) * 2020-05-25 2020-10-30 安徽普偌森环保科技有限公司 一种城镇医疗污水集中处理设备
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CN113144704A (zh) * 2021-05-26 2021-07-23 邢蕾 一种医学护理废弃物用的转运式预先回收装置
CN113233677A (zh) * 2021-05-06 2021-08-10 阮志杰 一种医院废水集中处理设备
CN114180695A (zh) * 2021-12-14 2022-03-15 安徽鸿德玻璃钢环保设备有限公司 一种玻璃钢污水处理设备
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CN108218029A (zh) * 2018-01-03 2018-06-29 钟光 一种污水与杂质分离设备
CN108439684A (zh) * 2018-04-04 2018-08-24 鲍雨馨 一种生活污水处理设备
CN108862669A (zh) * 2018-04-16 2018-11-23 东莞市朝立建筑工程有限公司 一种建筑工程用废水处理装置
CN108383261A (zh) * 2018-05-11 2018-08-10 林再颐 一种工业废水处理装置
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CN111717977A (zh) * 2020-07-18 2020-09-29 常德市俊德科技发展有限公司 一种用于回收沉淀物的自动化污水处理装置
CN112063852A (zh) * 2020-09-14 2020-12-11 湘潭云萃环保技术有限公司 一种含铜污泥中回收贵金属的设备
CN113233677A (zh) * 2021-05-06 2021-08-10 阮志杰 一种医院废水集中处理设备
CN113233677B (zh) * 2021-05-06 2022-12-06 郝力耕 一种医院废水集中处理设备
CN113144704A (zh) * 2021-05-26 2021-07-23 邢蕾 一种医学护理废弃物用的转运式预先回收装置
CN114180695A (zh) * 2021-12-14 2022-03-15 安徽鸿德玻璃钢环保设备有限公司 一种玻璃钢污水处理设备
CN115367940A (zh) * 2022-07-12 2022-11-22 虞金云 一种医疗实验液处理设备

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