WO2017152331A1 - 一种高效的工业废水净化处理设备 - Google Patents

一种高效的工业废水净化处理设备 Download PDF

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Publication number
WO2017152331A1
WO2017152331A1 PCT/CN2016/075758 CN2016075758W WO2017152331A1 WO 2017152331 A1 WO2017152331 A1 WO 2017152331A1 CN 2016075758 W CN2016075758 W CN 2016075758W WO 2017152331 A1 WO2017152331 A1 WO 2017152331A1
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Prior art keywords
frame
fixedly connected
ring
rod
pipe
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PCT/CN2016/075758
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English (en)
French (fr)
Inventor
刘湘静
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刘湘静
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Application filed by 刘湘静 filed Critical 刘湘静
Priority to PCT/CN2016/075758 priority Critical patent/WO2017152331A1/zh
Publication of WO2017152331A1 publication Critical patent/WO2017152331A1/zh

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  • the invention relates to the technical field of industrial sewage treatment, in particular to an efficient industrial wastewater purification treatment device.
  • An object of the present invention is to provide an efficient industrial wastewater purification treatment apparatus which can effectively solve the above technical problems.
  • An efficient industrial wastewater purification treatment apparatus comprising: a bottom plate, an input device located above the bottom plate, a cylinder device disposed on the input device, and a sediment located below the input device a device, a motor device located on the left side of the input device, a collection device located around the sedimentation device, a conduit device located below the sedimentation device, a heating device above the conduit device, and a heating device above the heating device Discharge device.
  • the invention has the following beneficial effects: the high-efficiency industrial wastewater purification treatment device of the invention has simple structure and convenient use, and can be used for charging industrial wastewater. After the separation, the particles, sludge and other substances are removed, the removal efficiency is high, the operation is simple, the labor intensity of the worker is reduced, and the precipitation can be fully performed, and then the precipitated impurities are automatically recovered, and the degree of automation is automated. High, high sedimentation efficiency, shortening the precipitation time, saving time and cost. At the same time, the precipitated wastewater can be heated and evaporated, and discharged as water vapor to prevent harmful substances from entering the environment and preventing environmental pollution. Good protection, low cost, low price, can effectively reduce the burden on enterprises, suitable for promotion and application.
  • 1 is a schematic view showing the structure of an efficient industrial wastewater purification treatment apparatus of the present invention.
  • the high-efficiency industrial wastewater purification processing apparatus of the present invention comprises a bottom plate 1, an input device 2 located above the bottom plate 1, a cylinder device 3 disposed on the input device 2, and located below the input device 2. a precipitating device 4, a motor device 5 located on the left side of the input device 2, a collecting device 6 located around the precipitating device 4, a ducting device 7 located below the precipitating device 4, above the ducting device 7 A heating device 8 and a discharge device 9 located above the heating device 8.
  • the bottom plate 1 is a rectangular parallelepiped, and the bottom plate 1 is horizontally placed.
  • the bottom plate 1 is provided with a first support rod 11 located above the second support rod 11 and a second side located on the right side of the first support rod 11 .
  • a fourth support rod 16 located on the right side of the second support rod 12.
  • the lower end of the first support rod 11 is fixedly connected to the upper surface of the bottom plate 1.
  • the second support rod 12 has a rectangular parallelepiped shape, the second support rod 12 is vertically placed, and the lower end of the second support rod 12 is fixedly connected to the upper surface of the bottom plate 1.
  • the first bracket 13 has a concave shape, and one end of the first bracket 13 is fixedly connected to the right surface of the bottom plate 1 . The other end of the first bracket 13 is horizontal.
  • the lower end of the third support rod 14 is fixedly connected to the first bracket 13 .
  • the left end of the first crossbar 15 is fixedly coupled to the right surface of the first support bar 11.
  • the lower end of the fourth support rod 16 is fixedly coupled to the upper surface of the bottom plate 1.
  • the input device 2 includes an input tube 21 , a first valve 22 disposed on the input tube 21 , a first water pump 23 , a first frame 24 located on the right side of the input tube 21 , The first limiting block 25 disposed in the first frame 24 and the first concentrating bucket 26 located below the first frame 24 .
  • the first frame body 24 is a hollow rectangular parallelepiped, and the first frame body 24 is vertically placed.
  • the first frame body 24 has an inverted concave shape in cross section, and the first frame body 24 is located on the first frame body 24.
  • the first through hole 241 is formed in a cylindrical shape, and the first through hole 241 is in communication with the inside of the first frame 24 .
  • the input tube 21 is L-shaped, and one end of the input tube 21 is aligned with the first through hole 241 and fixedly connected with the left surface of the first frame 24, so that the inside and the inside of the input tube 21 are The inside of the first frame body 24 is communicated, and the other end of the input pipe 21 is placed in a waste water tank.
  • the first valve 22 is used to control the flow rate of the wastewater in the inlet pipe 21.
  • the first water pump 23 is used to draw wastewater in the wastewater pool into the inlet pipe 21.
  • the first limiting block 25 is disposed at two sides and is respectively located on the left and right sides.
  • the first limiting block 25 is fixedly connected to the inner surface of the first frame body 24, and the first limiting block is The upper surface of 25 is in the same plane as the upper surface of the first frame 24.
  • the cross section of the first concentrating bucket 26 is a hollow isosceles trapezoid, and the upper surface of the first concentrating bucket 26 is fixedly connected with the lower surface of the first frame body 24, so that the first concentrating bucket 26
  • the first portion of the first concentrating bucket 26 is provided with a first opening, the first opening is circular, and the first opening and the first concentrating bucket 26 are The internal communication.
  • the cylinder device 3 includes a first cylinder 31 located at the first a first push rod 32 below the cylinder 31, a first push plate 33 located below the first push rod 32, a sponge block 34 located below the first push plate 33, and a first portion located on the right side of the sponge block 34
  • the first cylinder 31 is located above the first frame 24 .
  • the second bracket 30 has a concave shape, one end of the second bracket 30 is fixedly connected to the right surface of the first cylinder 31, and the other end of the second bracket 30 is opposite to the right of the first frame 24.
  • the surface is fixedly coupled to support the first cylinder 31.
  • the first push rod 32 is a rectangular parallelepiped, the first push rod 32 is vertically placed, and the upper end of the first push rod 32 is connected to the first cylinder 31 such that the first cylinder 31 drives the first A push rod 32 moves up and down, a lower end of the first push rod 32 extends into the first frame body 24, and a lower end of the first push rod 32 is fixedly coupled to an upper surface of the first push plate 33.
  • the first push plate 33 is a rectangular parallelepiped, the first push plate 33 is horizontally placed, the first push plate 33 is received in the first frame body 24, and the side surface of the first push plate 33 is The inner surface of the first frame body 24 is slidably connected, so that the first push plate 33 can move up and down in the first frame body 24, and the first push plate 33 is caused by the setting of the first limiting block 25. It will not be removed from the first frame 24.
  • the first filter net 36 is a rectangular parallelepiped, the first filter net 36 is horizontally placed, and the side surface of the first filter net 36 is fixedly connected to the inner surface of the first frame body 24, so that the first filter net can be A through hole 241 enters the wastewater in the first frame 24 for filtration, and the first filter mesh 36 is located below the first through hole 241.
  • the lower surface of the sponge block 34 is fixedly connected to the upper surface of the first filter net 36, and the left surface of the sponge block 34 is fixedly connected to the inner surface of the first frame body 24, and the sponge block 34 is The upper surface is horizontal, the sponge block A curved surface is provided at the upper left corner of the 34, so that the wastewater entering from the first through hole 241 is concentrated on the left side of the sponge block 34, so that the wastewater can be sufficiently filtered.
  • the first spring plate 35 is a cylinder having a semi-circular cross section, the first elastic plate 35 is horizontally placed, and the side surface of the first elastic plate 35 is fixedly connected to the inner surface of the first frame body 24.
  • the left end of the first elastic plate 35 abuts against the right surface of the sponge block 34, and the first elastic plate 35 is made of an elastic material.
  • the first fixing block 37 is provided with two sides and is respectively located on the left and right sides.
  • the first fixing block 37 has a triangular cross section, and the side surface of the first fixing block 37 and the inside of the first frame body 24 are The surface is fixedly connected, and an upper surface of the first fixing block 37 is fixedly connected to a lower surface of the first filter mesh 36.
  • the second filter net 38 has a V-shaped cross section, the second filter net 38 is horizontally disposed, and the side surface of the second filter net 38 is fixedly connected to the inner surface of the first frame body 24, The upper end of the second filter net 38 is fixedly connected to the lower surface of the first filter net 36, so that not only the first filter net 36 can be supported, but also the wastewater filtered through the first filter net 36. Filtration is again performed, and the filtered impurities are concentrated to both sides to prevent clogging on the second filter 38.
  • the first bending rod 39 is provided with two and respectively located on the left and right sides, the first bending rod 39 is curved, and the upper end of the first bending rod 39 is fixedly connected with the second filter net 38.
  • the lower end of the first bending rod 39 is fixedly coupled to the inner surface of the first concentration hopper 26, and the lower end of the first bending rod 39 is provided with a first groove 391.
  • the precipitating device 4 includes a precipitation frame 41, a third filter net 42 located in the precipitation frame 41, and a first triangular ring 43 located above the third filter mesh 42 at the precipitate.
  • a first pipe 44 above the frame 41 a second valve 45 disposed on the first pipe 44, a first fixing ring 46 disposed on the first pipe 44, and a first portion disposed on the precipitation frame 41
  • the precipitation frame 41 is a hollow cylinder, the precipitation frame 41 is placed vertically, and the precipitation frame 41 is provided with a second through hole 411 on a side surface thereof and a third through hole 412 on a lower surface thereof, the second through hole
  • the hole 411 is disposed on two sides of the precipitation frame 41, and the second through hole 411 is in communication with the interior of the precipitation frame 41.
  • the third through hole 412 has a cylindrical shape.
  • the three-way hole 412 communicates with the inside of the precipitation frame 41.
  • the third filter net 42 has a hollow hemisphere shape, and the third filter net 42 is located above the third through hole 412, and the lower surface of the third filter net 42 and the inner surface of the precipitation frame 41
  • the connection is fixed such that the wastewater needs to pass through the filtration of the third filter 42 before entering the third through hole 412.
  • the first triangular ring 43 has a ring shape, the first triangular ring 43 has a triangular cross section, and the upper surface and the outer surface of the first triangular ring 43 are fixedly connected to the inner surface of the precipitation frame 41.
  • the inner surface of the first triangular ring 43 is inclined.
  • the first duct 44 is vertical, and the upper end of the first duct 44 is aligned with the first opening and is fixedly connected with the lower surface of the first concentrating bucket 26 such that the first concentrating bucket 26
  • the interior communicates with the interior of the first conduit 44.
  • the second valve 45 is used to control the flow rate of wastewater in the first conduit 44.
  • the first fixing ring 46 is annular, the first fixing ring 46 is horizontal, and the inner surface of the first fixing ring 46 is fixedly connected to the outer surface of the first duct 44, the first fixing ring
  • the lower surface of 46 is slidably coupled to the upper surface of the precipitation frame 41 such that the precipitation frame 41 can be rotated.
  • the first duct 44 extends through the upper surface of the precipitation frame 41 to the inside of the precipitation frame 41, and the first duct 44 is slidably coupled to the precipitation frame 41.
  • the first connecting ring 47 is annular, the first connecting ring 47 is horizontally placed, and the inner surface of the first connecting ring 47 is fixedly connected to the outer surface of the precipitation frame 41.
  • the first connecting ring 47 The outer surface is fixedly coupled to the inner surface of the ring gear 48.
  • the ring gear 48 is a cylinder having a circular cross section, the ring gear 48 is placed vertically, and the outer surface of the ring gear 48 has serrations.
  • the third bracket 49 is provided with two and respectively located on the left and right sides, the first The three brackets 49 are L-shaped, one end of the third bracket 49 is fixedly connected to the upper surface of the precipitation frame 41, and the other end of the third bracket 49 is fixedly connected with the inner surface of the ring gear 48, thereby The ring gear 48 serves as a support.
  • the motor device 5 includes a first support plate 51, a first motor 52 located below the first support plate 51, and a fourth bracket 53 located on the left side of the first motor 52.
  • a first rotating shaft 54 below the first motor 52 a first gear 55 located below the first rotating shaft 54, a second supporting plate 56 located on the right side of the first rotating shaft 54, and located at the right of the first motor 52 a second cross bar 57 on the side and a first diagonal bar 58 above the first support plate 51.
  • the first support plate 51 has a rectangular parallelepiped shape, the first support plate 51 is horizontally placed, and the right end of the first support plate 51 is fixedly connected to the left surface of the first frame body 24.
  • the first slanting rod 58 is inclined, and the upper end of the first slanting rod 58 is fixedly connected to the left surface of the first frame 24, and the lower end of the first slanting rod 58 is opposite to the first supporting plate.
  • the upper surface of 58 is fixedly connected.
  • the upper surface of the first motor 52 is fixedly coupled to the lower surface of the first support plate 51.
  • the fourth bracket 53 is L-shaped, one end of the fourth bracket 53 is fixedly connected to the lower surface of the first support plate 51, and the other end of the fourth bracket 53 is horizontal and the first The lower surface of the first motor 52 is fixedly coupled to provide a fixed action to the first motor 52.
  • the first rotating shaft 54 is a cylinder, the first rotating shaft 54 is vertically placed, and the upper end of the first rotating shaft 54 is connected to the first motor 52, so that the first motor 52 drives the first rotating shaft. 54 is rotated, and a lower end of the first rotating shaft 54 is fixedly coupled to an upper surface of the first gear 55.
  • the first gear 55 is in a cylindrical shape, the first gear 55 is horizontally placed, the side surface of the first gear 55 is provided with serrations, and the first gear 55 and the ring gear 48 are coupled to each other such that When the first gear 55 rotates, the ring gear 48 can be rotated to drive the precipitation frame 41 to rotate.
  • the second support plate 56 is horizontal, and the right end of the second support plate 56 and the first concentrating bucket 26
  • the side surface is fixedly connected, and the upper surface of the second support plate 56 is fixedly coupled to the lower surface of the first motor 52 to support the first motor 52.
  • the second crossbar 57 is a rectangular parallelepiped, the second crossbar 57 is horizontally placed, and the right end of the second crossbar 57 is fixedly connected to the left surface of the first frame 24, and the second crossbar 57 is 57.
  • the left end is fixedly coupled to the right surface of the first motor 52 to thereby fix the first motor 52.
  • the collecting device 6 includes a collecting frame 61 , a retaining ring 62 located in the collecting frame 61 , a positioning ring 63 disposed in the collecting frame 61 , and a level above the collecting frame 61 .
  • the collecting frame 61 is annular and located around the precipitation frame 41.
  • the collecting frame 61 has a concave cross section, and the height of the inner wall of the collecting frame 61 is lower than the height of the outer wall of the collecting frame 61.
  • the left surface of the collecting frame 61 is provided with a second groove 611, the second groove 611 is elongated, and the upper end of the first supporting rod 11 is fixedly connected with the lower surface of the collecting frame 61.
  • the upper end of the fourth support rod 16 is fixedly coupled to the lower surface of the collecting frame 61.
  • the horizontal ring 64 is provided with two and respectively located on the upper and lower sides, the horizontal ring 64 is annular, the horizontal ring 64 is horizontal, and the inner surface of the horizontal ring 64 and the outer surface of the precipitation frame 41 a fixed connection, the second through hole 411 is located between the horizontal rings 64 such that a space between the horizontal rings 64 communicates with a space in the precipitation frame 41, and a lower surface of the lower horizontal 64 It is slidably coupled to the upper surface of the collecting frame 61.
  • the retaining ring 62 is a cylinder having a circular cross section, the retaining ring 62 is placed vertically, and the retaining ring 62 is received in the collecting frame 61, and the outer surface of the horizontal ring 64 and the block The inner surface of the ring 62 is slidably connected Then, the retaining ring 62 can be moved up and down.
  • the positioning ring 63 is provided with two and respectively located on the upper and lower sides, the positioning ring 63 is annular, the positioning ring 63 is horizontally placed, and the outer surface of the positioning ring 63 and the inner surface of the collecting frame 61
  • the inner surface of the positioning ring 63 is slidably coupled to the outer surface of the retaining ring 62 such that the retaining ring 62 can only move up and down, and the retaining ring 62 can be positioned.
  • the first serrations 65 are provided on the inner surface of the retaining ring 62, and the first serrations 65 are fixedly connected to the inner surface of the retaining ring 62.
  • the first positioning frame 66 is L-shaped, one end of the first positioning frame 66 is fixedly connected to the left surface of the retaining ring 62, and the other end of the first positioning frame 66 is vertical and The first surface of the first frame 66 is fixedly connected to the first positioning frame 66.
  • the first protrusion is fixedly connected to the first positioning frame 66.
  • the first protrusion is fixedly connected to the first positioning frame 66.
  • the block 661 is received in the second groove 611 and can move up and down to position the first positioning frame 66.
  • the first roller 67 is disposed on the left and right sides, the first roller 67 is a cylinder, the first roller 67 is horizontally placed, and the first roller 67 is located in the retaining ring 62.
  • the first roller 67 can be rotated.
  • the second serration 68 is provided with a plurality of evenly distributed on the first roller 67, the second serration 68 is fixedly connected with the first roller 67, and the second serration 68 and the first serration 65 cooperates with each other such that when the first roller 67 rotates, the retaining ring 62 can be moved up and down.
  • the first positioning block 69 is a rectangular parallelepiped, the first positioning block 69 is vertically placed, and the lower surface of the first positioning block 69 is fixedly connected to the upper surface of the positioning ring 63.
  • the first support ring 60 is annular, the first support ring 60 is horizontally placed, and the outer surface of the first support ring 60 is fixedly connected to the inner surface of the collecting frame 61.
  • the first support ring 60 The second diagonal rod 601 is disposed at a lower side thereof and a second support ring 602 located above the second inclined rod 601.
  • the second inclined rod 601 is disposed at two sides and is respectively located on the left and right sides, and the second inclined rod 601 is inclined.
  • Shape The lower end of the second slanting rod 601 is fixedly connected to the inner surface of the collecting frame 61, and the upper end of the second slanting rod 601 is fixedly connected with the lower surface of the first supporting ring 60, thereby facing the first supporting ring 60 plays a supporting role.
  • the second support ring 602 is annular, the second support ring 602 is horizontally placed, and the lower surface of the second support ring 602 is fixedly connected to the upper surface of the first support ring 60, the second support The ring 602 has an L-shaped cross section, and the lower end of the precipitation frame 41 is received in the second support ring 602 and is slidably coupled to the second support ring 602, so that the precipitation frame 61 can be in the second The support ring 602 is rotated.
  • the duct device 7 includes a second duct 71, a third valve 72 disposed on the second duct 71, and a third support plate 74 located above the third valve 72.
  • the second pipe 71 has a concave shape, and one end of the second pipe 71 is provided with a sealing ring 711.
  • the sealing ring 711 has an annular shape, and a lower surface of the sealing ring 711 is fixedly connected to the second pipe 71.
  • the sealing ring 711 is aligned with the third through hole 412 and is slidably coupled to the lower surface of the precipitation frame 41 such that industrial wastewater in the precipitation frame 41 enters the second pipe 71.
  • the upper end of the second support rod 12 is fixedly connected to the second duct 71, and the second duct 71 penetrates the left and right surfaces of the fourth support rod 16 and is fixedly connected thereto, so that the second duct 71 can be played
  • the upper end of the third support rod 14 is fixedly connected to the second duct 71, and one end of the first bracket 13 is fixedly connected to the second duct 71.
  • the right end of the first crossbar 15 is fixedly connected to the first duct 71.
  • the third valve 72 is used to control the flow rate of the wastewater in the second conduit 71.
  • the second fixing ring 73 is annular, the second fixing ring 73 is horizontally placed, and the inner surface of the second fixing ring 73 is fixedly connected to the second pipe 71.
  • the third support plate 74 is horizontal, and the The third support plate 74 is fixedly connected to the second diagonal rod 601.
  • the second duct 71 penetrates the upper and lower surfaces of the third support plate 74 and is intended to be fixedly connected.
  • the lower surface of the second fixing ring 73 is The upper surface of the third support plate 74 is fixedly connected to support the second duct 71.
  • the second water pump 75 is for sucking waste water in the sedimentation frame 41 into the second duct 71.
  • the third crossbar 76 is horizontally connected, the left end of the third crossbar 76 is fixedly connected to the right surface of the collecting frame 61, and the right end of the third crossbar 76 is fixedly connected to the second water pump 75. Thereby supporting the second water pump 75.
  • the third diagonal rod 77 is inclined, the upper end of the third diagonal rod 77 is fixedly connected to the second diagonal rod 601, and the lower end of the third diagonal rod 77 is provided with a fourth cross rod.
  • the four crossbars are horizontal, the lower end of the third diagonal rod 77 is fixedly connected with the fourth crossbar, the fourth crossbar is horizontal, and the two ends of the fourth crossbar are opposite to the second
  • the pipe 71 is fixedly connected.
  • the heating device 8 includes a heating frame 81 , a third pipe 82 located below the heating frame 81 , a fourth valve 83 disposed on the third pipe 82 , and the heating frame 81 .
  • a heating rod 88 located in the heat dissipation frame 87 and a fourth support plate 89 disposed on the heat dissipation frame 87.
  • the heating frame 81 is a hollow cylinder, and the heating frame 81 is horizontally disposed.
  • the heating frame 81 is provided with a fourth through hole 811 on the upper surface thereof, a fifth through hole 812 on the lower surface thereof, and a first heating hole 81.
  • a six-way hole 813, the fourth through hole 812, the fifth through hole 812 and the sixth through hole 813 are in communication with the inside of the heating frame 81, and one end of the second pipe 71 is aligned with the fifth through hole 812 is fixedly connected to the lower surface of the heating frame 81 such that the inside of the second duct 71 communicates with the inside of the heating frame 81.
  • the third duct 82 is inclined, and the upper end of the third duct 82 is aligned with the sixth through hole 813 and the heating frame 81
  • the surface is fixedly connected such that the interior of the third duct 82 communicates with the interior of the heating frame 81 for removing excess moisture.
  • the fourth valve 83 is for controlling the flow rate of the wastewater in the third conduit 82.
  • the second positioning frame 84 is L-shaped, the upper end of the second positioning frame 84 is fixedly connected to the outer surface of the heating frame 81, and one end of the second positioning frame 84 is vertical, the second The other end of the positioning frame 84 is horizontal.
  • the fifth crossbar 85 is horizontally connected, the left end of the fifth crossbar 85 is fixedly connected to the right surface of the collecting frame 61, and the fifth crossbar 85 is provided with a second bump 851.
  • the second protrusion 851 is a rectangular parallelepiped, the lower surface of the second protrusion 851 is fixedly connected to the upper surface of the fifth crossbar 85, and the lower surface of the second positioning frame 84 is abutted against the fifth horizontal
  • the left surface of the second protrusion 851 is in contact with the right surface of the second positioning frame 84, thereby supporting the second positioning frame 84.
  • the first fixing bracket 86 is L-shaped, and one end of the first fixing bracket 86 is fixedly connected to the side of the heating frame 81, and the other end of the first fixing bracket 86 abuts against the positioning ring 63.
  • the left surface of the first positioning block 69 is in contact with the side surface of the first fixing frame 86, thereby positioning the first fixing frame 86.
  • the heat dissipation frame 87 is a hollow cylinder, the heat dissipation frame 87 is located at the center of the heating frame 81, the heating frame 81 is supported by a heat insulating material, and the heat dissipation frame 87 is made of a heat conductive material.
  • the heat dissipation frame 87 is fixedly coupled to the inner surface of the heating frame 81.
  • the heating rod 88 is received in the heat dissipation frame 87, and the heating rod 88 is connected to a power source so that the heating rod 88 can generate heat.
  • the fourth support plate 89 is disposed at two sides and is respectively located on the left and right sides of the heat dissipation frame 87.
  • the fourth support plate 89 is horizontally placed, and one end of the fourth support plate 89 and the heating frame 81 are The other end of the fourth supporting plate 89 is fixedly connected to the outer surface of the heat dissipating frame 87.
  • the fourth supporting plate 89 is provided with a seventh through hole 891 extending through the upper and lower surfaces thereof.
  • the fourth support plate 89 can support the heat dissipation frame 87 and make the fourth Water vapor below the support plate 89 can enter above.
  • the discharge device 9 includes a fourth duct 91, a second curved rod 92 located on the left and right sides of the fourth duct 91, and an air hopper 93 located above the fourth duct 91.
  • a fifth support rod 94 in the air outlet 93 a horizontal plate 95 above the fifth support rod 94, a grip ring 96 above the horizontal plate 95, and a baffle disposed on the grip ring 96 97.
  • a second fixing frame 98 located below the air outlet hopper 93 and a vertical rod 99 located below the second fixing frame 98.
  • the fourth duct 91 is vertical, and the lower end of the fourth duct 91 is aligned with the fourth through hole 811 and is fixedly connected to the upper surface of the heating frame 81 such that the inside of the fourth duct 91 It communicates with the inside of the heating frame 81.
  • the second bending rod 92 is provided with two and respectively located on the left and right sides of the fourth duct 91, the second bending rod 92 is curved, and the lower end of the second bending rod 92 is opposite to the heating frame.
  • 81 is fixedly connected, and an upper end of the second bending rod 92 is fixedly connected with the fourth duct 91 to support the fourth duct 91.
  • the air outlet hopper 93 has a hollow truncated cone shape, and the lower surface of the air outlet hopper 93 is fixedly connected to the upper surface of the fourth duct 91 such that the inside of the air outlet hopper 93 communicates with the interior of the fourth duct 91. .
  • the fifth support rod 94 is provided with two and respectively located on the left and right sides, the fifth support rod 94 is vertically placed, and the lower end of the fifth support rod 94 is fixedly connected to the inner surface of the air outlet 93.
  • the upper end of the fifth support rod 94 is fixedly connected to the lower surface of the horizontal plate 95, and the lower end of the fifth support rod 94 is provided with a third recess 941 to facilitate the discharge of water vapor.
  • the horizontal plate 95 is in the form of a cylinder, and the horizontal plate 95 is placed horizontally.
  • the holding ring 96 has a semi-annular shape, and both ends of the holding ring 96 are fixedly connected with the upper surface of the horizontal plate 95 for the user to hold.
  • the baffle 97 is horizontal, and the baffle 97 is fixedly coupled to the inner surface of the grip ring 96 to provide a fixing function.
  • the second fixing frame 98 is L-shaped, the upper end of the second fixing frame 98 is fixedly connected to the air outlet hopper 93, and the other end of the second fixing frame 98 is The second fixing frame 98 is provided with a third fixing frame 981 and a fourth diagonal rod 982 located at the right side of the third fixing frame 981.
  • the third fixing frame 981 is L-shaped, one end of the third fixing frame 981 is fixedly connected to the second fixing frame 98, and the other end of the third fixing frame 981 is opposite to the second bracket 30.
  • the right surface is fixedly connected.
  • the fourth diagonal rod 982 is inclined, the upper end of the fourth diagonal rod 982 is fixedly connected to the third fixing frame 981, and the lower end of the fourth diagonal rod 982 is fixedly connected to the second fixing frame 98. .
  • the vertical rod 99 is a rectangular parallelepiped, the vertical rod 99 is placed vertically, the upper end of the vertical rod 99 is fixedly connected with the lower surface of the second fixing frame 98, and the lower end of the vertical rod 99 is opposite to the first
  • the upper surface of the fixing bracket 86 is fixedly connected, and the vertical rod 99 is provided with a sixth crossbar 991 on the right side thereof, a seventh crossbar 993 on the left side thereof, and a section above the seventh crossbar 993.
  • the sixth cross bar 991 is horizontal, the left end of the sixth cross bar 991 and the right end of the vertical bar 99
  • the surface of the sixth crossbar 991 is fixedly connected to the side of the fourth duct 91 to support the fourth duct 91.
  • the fifth diagonal rod 992 is inclined.
  • the upper end of the fifth diagonal rod 992 is fixedly connected to the second fixing frame 98, and the lower end of the fifth diagonal rod 992 is fixedly connected to the upper surface of the seventh horizontal rod 993.
  • the seventh cross bar 993 is horizontal, the right end of the seventh cross bar 993 is fixedly connected to the left surface of the vertical bar 99, and the left end of the seventh cross bar 993 is opposite to the first concentrating bucket 26 Fixed connection on the side.
  • the fourth fixing frame 994 is L-shaped, one end of the fourth fixing frame 994 is fixedly connected to the right surface of the first frame body 24, and the other end of the fourth fixing frame 994 is opposite to the seventh horizontal frame.
  • the upper surface of the rod 993 is fixedly connected.
  • the upper end of the input pipe 21 is first connected to the waste water outlet, so that the waste water enters the input pipe 21, and then the first water pump 23 is started. Opening the first valve 22 at the same time, making the waste The water enters the first frame 24 and is located on the left side of the sponge block 34, and then the sponge block 34 and the first filter net 36 and the second filter net 38 can perform preliminary filtration on the wastewater, and can start the first A cylinder 31 accelerates the filtration, at which time the first push rod 32 pushes the first push plate 33 downward, so that the first push plate 33 presses the sponge block 34 downward, so that the sponge block 34 is compressed, when the first push plate 33 is pressed.
  • the first elastic plate 35 When moving down to the first elastic plate 35, the first elastic plate 35 is pressed down, and then the first elastic plate 35 is deformed and leans against the sponge block 34 to the left so that the sponge block 34 is horizontally and vertically. Compressed so that compression can be performed quickly, making the filtration more efficient, then moving down through the filtration of the second filter 38, into the first conduit 44, opening the second valve 45, causing the first conduit 44
  • the internal wastewater enters the precipitation frame 41, and then the first motor 52 is activated, so that the first rotating shaft 54 drives the first gear 56 to rotate, thereby rotating the ring gear 48, so that the precipitation frame 41 and the horizontal ring 64 rotate together.
  • the precipitation frame 41 and the horizontal ring 64 are made The wastewater is centrifuged so that impurities can be precipitated therein, and then the impurities are concentrated between the horizontal rings 64. After the centrifugal movement is completed, the first motor 52 is turned off, so that the precipitation frame 41 is no longer rotated, and then the precipitation frame 41 is closed. Water enters the second conduit 71 and opens the third valve 72, and then activates the second water pump 75 to draw water from the precipitation frame 41 into the heating frame 81. The first roller 67 is then activated such that the retaining ring 62 moves upwardly and then the first motor 52 is activated such that impurities between the horizontal rings 64 are trapped into the collection section 64 to facilitate collection of impurities.
  • the heating rod 88 is then activated so that the water in the heating frame 81 is heated, then evaporated, and enters the gas outlet 93 through the fourth conduit 91, and then discharged from the periphery of the horizontal plate 95, expanding the emission.
  • the area makes the water vapor diffusion more uniform, and the water in the heating frame 81 is discharged through the third pipe 82, which is energy-saving and environmentally friendly, reduces waste of resources, and can fully filter industrial wastewater. So far, the use process of the high-efficiency industrial wastewater purification treatment device of the present invention has been described.

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Abstract

一种高效的工业废水净化处理设备,包括底板(1)、输入装置(2)、气缸装置(3)、沉淀装置(4)、电机装置(5)、收集装置(6)、管道装置(7)、加热装置(8)及排出装置(9),底板(1)上设有第一支撑杆(11)、第二支撑杆(12)、第一支架(13)、第三支撑杆(14)、第一横杆(15)及第四支撑杆(16),输入装置(2)包括输入管(21)、第一阀门(22)、第一水泵(23)、第一框体(24)、第一限位块(25)、第一集中斗(26),气缸装置(3)包括第一气缸(31)、第一推动杆(32)、第一推板(33)、海绵块(34)、第一弹性板(35)、第一过滤网(36)、第一固定块(37)、第二过滤网(38)、第一弯曲杆(39)及第二支架(30),沉淀装置(4)包括沉淀框(41)、第三过滤网(42)、第一三角环(43)、第一管道(44)、第二阀门(45)、第一固定环(46)、第一连接环(47)、齿环(48)。该设备能够清除工业废水中的杂质,清除效率高,可以对其进行充分的沉淀作用,然后自动的将沉淀的杂质进行回收。

Description

一种高效的工业废水净化处理设备 技术领域
本发明涉及工业污水处理技术领域,尤其是涉及一种高效的工业废水净化处理设备。
背景技术
目前,随着社会的发展,工业和煤矿业等领域也在快速的发展,在工业等设备也在发展,而在工业和煤矿业的加工过程中,往往会产生大量的废水,这些废水中含有大量的污泥及其他有害物质,若直接排放则会造成环境的污染,但是现有的工业废水处理设备价格高昂,成本较高,并且净化效率较低,无疑会增加企业的负担,不适合推广应用。
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高效的工业废水净化处理设备。
为达到本发明之目的,采用如下技术方案:
一种高效的工业废水净化处理设备,所述高效的工业废水净化处理设备包括底板、位于所述底板上方的输入装置、设置于所述输入装置上的气缸装置、位于所述输入装置下方的沉淀装置、位于所述输入装置左侧的电机装置、位于所述沉淀装置周围的收集装置、位于所述沉淀装置下方的管道装置、位于所述管道装置上方的加热装置及位于所述加热装置上方的排出装置。
与现有技术相比,本发明具有如下有益效果:本发明高效的工业废水净化处理设备结构简单,使用方便,能够对工业废水进行充 分的过来,清除掉其中的颗粒、污泥等物质,清除效率高,操作简便,减轻工人的劳动强度,并且可以对其进行充分的沉淀作用,然后自动的将沉淀的杂质进行回收,自动化程度高,沉淀效率高,缩短沉淀的时间,节约时间成本,同时可以将沉淀后的废水进行加热蒸发,以水蒸气的形式排出,防止有害物质进入到环境中,防止环境污染,对环境起到了较好的保护作用,并且成本较低,价格低廉,可以有效的减轻企业的负担,适合推广应用。
附图说明
图1为本发明高效的工业废水净化处理设备的结构示意图。
具体实施方式
如图1所示,本发明高效的工业废水净化处理设备包括底板1、位于所述底板1上方的输入装置2、设置于所述输入装置2上的气缸装置3、位于所述输入装置2下方的沉淀装置4、位于所述输入装置2左侧的电机装置5、位于所述沉淀装置4周围的收集装置6、位于所述沉淀装置4下方的管道装置7、位于所述管道装置7上方的加热装置8及位于所述加热装置8上方的排出装置9。
如图1所示,所述底板1呈长方体,所述底板1水平放置,所述底板1上设有位于其上方的第一支撑杆11、位于所述第一支撑杆11右侧的第二支撑杆12、位于所述底板1右侧的第一支架13、设置于所述第一支架13上的第三支撑杆14、设置于所述第一支撑杆11上的第一横杆15及位于所述第二支撑杆12右侧的第四支撑杆16。所述第一支撑杆11的下端与所述底板1的上表面固定连接。所述第二支撑杆12呈长方体,所述第二支撑杆12竖直放置,所述第二支撑杆12的下端与所述底板1的上表面固定连接。所述第一支架13呈凹字形,所述第一支架13的一端与所述底板1的右表面固定连接, 所述第一支架13的另一端呈水平状。所述第三支撑杆14的下端与所述第一支架13固定连接。所述第一横杆15的左端与所述第一支撑杆11的右表面固定连接。所述第四支撑杆16的下端与所述底板1的上表面固定连接。
如图1所示,所述输入装置2包括输入管21、设置于所述输入管21上的第一阀门22、第一水泵23、位于所述输入管21右侧的第一框体24、设置于所述第一框体24内的第一限位块25、位于所述第一框体24下方的第一集中斗26。所述第一框体24呈空心的长方体,所述第一框体24竖直放置,所述第一框体24的横截面呈倒置的凹字形,所述第一框体24上设有位于其左表面的第一通孔241,所述第一通孔241呈圆柱体状,所述第一通孔241与所述第一框体24的内部相通。所述输入管21呈L型,所述输入管21的一端对准所述第一通孔241且与所述第一框体24的左表面固定连接,使得所述输入管21的内部与所述第一框体24的内部相通,所述输入管21的另一端放入废水池。所述第一阀门22用于控制所述输入管21内内废水的流量。所述第一水泵23用于将废水池内的废水吸入到所述输入管21内。所述第一限位块25设有两个且分别位于左右两侧,所述第一限位块25的一端与所述第一框体24的内表面固定连接,所述第一限位块25的上表面与所述第一框体24的上表面处于同一平面内。所述第一集中斗26的横截面呈空心的等腰梯形,所述第一集中斗26的上表面与所述第一框体24的下表面固定连接,使得所述第一集中斗26的内部与所述第一框体24的内部相通,所述第一集中斗26的下端设有第一开口,所述第一开口呈圆形,所述第一开口与所述第一集中斗26的内部相通。
如图1所示,所述气缸装置3包括第一气缸31、位于所述第一 气缸31下方的第一推动杆32、位于所述第一推动杆32下方的第一推板33、位于所述第一推板33下方的海绵块34、位于所述海绵块34右侧的第一弹性板35、位于所述海绵块34下方的第一过滤网36、位于所述第一过滤网36下方的第一固定块37、位于所述第一固定块37下方的第二过滤网38、位于所述第二过滤网38下方的第一弯曲杆39及位于所述第一气缸31右侧的第二支架30。所述第一气缸31位于所述第一框体24的上方。所述第二支架30呈凹字形,所述第二支架30的一端与所述第一气缸31的右表面固定连接,所述第二支架30的另一端与所述第一框体24的右表面固定连接,从而对所述第一气缸31起到支撑作用。所述第一推动杆32呈长方体,所述第一推动杆32竖直放置,所述第一推动杆32的上端与所述第一气缸31连接,使得所述第一气缸31带动所述第一推动杆32上下移动,所述第一推动杆32的下端延伸至所述第一框体24内,所述第一推动杆32的下端与所述第一推板33的上表面固定连接。所述第一推板33呈长方体,所述第一推板33水平放置,所述第一推板33收容于所述第一框体24内,所述第一推板33的侧面与所述第一框体24的内表面滑动连接,使得所述第一推板33可以在所述第一框体24内上下移动,由于第一限位块25的设置,使得所述第一推板33不会被移出第一框体24。所述第一过滤网36呈长方体,所述第一过滤网36水平放置,所述第一过滤网36的侧面与所述第一框体24的内表面固定连接,从而可以对从所述第一通孔241进入到所述第一框体24内的废水进行过滤,所述第一过滤网36位于所述第一通孔241的下方。所述海绵块34的下表面与所述第一过滤网36的上表面固定连接,所述海绵块34的左表面与所述第一框体24的内表面固定连接,所述海绵块34的上表面呈水平状,所述海绵块 34的左上角设有一曲面,从而方便从所述第一通孔241进入的废水集中在所述海绵块34的左侧,从而可以对废水进行充分的过滤。所述第一弹簧板35呈横截面为半圆环的柱体,所述第一弹性板35水平放置,所述第一弹性板35的侧面与所述第一框体24的内表面固定连接,所述第一弹性板35的左端顶靠在所述海绵块34的右表面上,所述第一弹性板35采用弹性材料制成。所述第一固定块37设有两个且分别位于左右两侧,所述第一固定块37的横截面呈三角形,所述第一固定块37的侧面与所述第一框体24的内表面固定连接,所述第一固定块37的上表面与所述第一过滤网36的下表面固定连接。所述第二过滤网38呈横截面为V字形的柱体,所述第二过滤网38水平放置,所述第二过滤网38的侧面与所述第一框体24的内表面固定连接,所述第二过滤网38的上端与所述第一过滤网36的下表面固定连接,从而不仅可以对第一过滤网36起到支撑作用,还可以对经过第一过滤网36过滤后的废水再次进行过滤,并且将过滤的杂质集中到两侧,防止堵塞在所述第二过滤网38上。所述第一弯曲杆39设有两个且分别位于左右两侧,所述第一弯曲杆39呈弯曲状,所述第一弯曲杆39的上端与所述第二过滤网38固定连接,所述第一弯曲杆39的下端与所述第一集中斗26的内表面固定连接,所述第一弯曲杆39的下端设有第一凹槽391。
如图1所示,所述沉淀装置4包括沉淀框41、位于所述沉淀框41内的第三过滤网42、位于所述第三过滤网42上方的第一三角环43、位于所述沉淀框41上方的第一管道44、设置于所述第一管道44上的第二阀门45、设置于所述第一管道44上的第一固定环46、设置于所述沉淀框41上的第一连接环47、设置于所述第一连接环47上的齿环48及设置于所述齿环48上的第三支架49。所述沉淀框 41呈空心的圆柱体,所述沉淀框41竖直放置,所述沉淀框41上设有位于其侧面的第二通孔411及位于其下表面的第三通孔412,所述第二通孔411设有两个且分别位于所述沉淀框41的侧面上,所述第二通孔411与所述沉淀框41的内部相通,所述第三通孔412呈圆柱体状,所述第三通孔412与所述沉淀框41的内部相通。所述第三过滤网42呈空心的半球状,所述第三过滤网42位于所述第三通孔412的上方,所述第三过滤网42的下表面与所述沉淀框41的内表面固定连接,使得废水需要经过第三过滤网42的过滤后才能进入到所述第三通孔412内。所述第一三角环43呈环状,所述第一三角环43的横截面呈三角形,所述第一三角环43的上表面及外表面与所述沉淀框41的内表面固定连接,所述第一三角环43的内表面呈倾斜状。所述第一管道44呈竖直状,所述第一管道44的上端对准所述第一开口且与所述第一集中斗26的下表面固定连接,使得所述第一集中斗26的内部与所述第一管道44的内部相通。所述第二阀门45用于控制所述第一管道44内废水的流量。所述第一固定环46呈环状,所述第一固定环46水平状,所述第一固定环46的内表面与所述第一管道44的外表面固定连接,所述第一固定环46的下表面与所述沉淀框41的上表面滑动连接,使得所述沉淀框41可以旋转。所述第一管道44贯穿所述沉淀框41的上表面延伸至所述沉淀框41的内部,所述第一管道44与所述沉淀框41滑动连接。所述第一连接环47呈环状,所述第一连接环47水平放置,所述第一连接环47的内表面与所述沉淀框41的外表面固定连接,所述第一连接环47的外表面与所述齿环48的内表面固定连接。所述齿环48呈横截面为圆环的柱体,所述齿环48竖直放置,所述齿环48的外表面具有锯齿。所述第三支架49设有两个且分别位于左右两侧,所述第 三支架49呈L型,所述第三支架49的一端与所述沉淀框41的上表面固定连接,所述第三支架49的另一端与所述齿环48的内表面固定连接,从而对所述齿环48起到支撑作用。
如图1所示,所述电机装置5包括第一支撑板51、位于所述第一支撑板51下方的第一电机52、位于所述第一电机52左侧的第四支架53、位于所述第一电机52下方的第一转轴54、位于所述第一转轴54下方的第一齿轮55、位于所述第一转轴54右侧的第二支撑板56、位于所述第一电机52右侧的第二横杆57及位于所述第一支撑板51上方的第一斜杆58。所述第一支撑板51呈长方体,所述第一支撑板51水平放置,所述第一支撑板51的右端与所述第一框体24的左表面固定连接。所述第一斜杆58呈倾斜状,所述第一斜杆58的上端与所述第一框体24的左表面固定连接,所述第一斜杆58的下端与所述第一支撑板58的上表面固定连接。所述第一电机52的上表面与所述第一支撑板51的下表面固定连接。所述第四支架53呈L型,所述第四支架53的一端与所述第一支撑板51的下表面固定连接,所述第四支架53的另一端呈水平状且与所述第一第一电机52的下表面固定连接,从而对所述第一电机52起到固定作用。所述第一转轴54呈圆柱体,所述第一转轴54竖直放置,所述第一转轴54的上端与所述第一电机52连接,使得所述第一电机52带动所述第一转轴54旋转,所述第一转轴54的下端与所述第一齿轮55的上表面固定连接。所述第一齿轮55呈圆柱体,所述第一齿轮55水平放置,所述第一齿轮55的侧面设有锯齿,所述第一齿轮55与所述齿环48相互齿合在一起,使得所述第一齿轮55旋转时,可以带动所述齿环48转动,进而带动所述沉淀框41旋转。所述第二支撑板56呈水平状,所述第二支撑板56的右端与所述第一集中斗26 的侧面固定连接,所述第二支撑板56的上表面与所述第一电机52的下表面固定连接,从而对所述第一电机52起到支撑作用。所述第二横杆57呈长方体,所述第二横杆57水平放置,所述第二横杆57的右端与所述第一框体24的左表面固定连接,所述第二横杆57的左端与所述第一电机52的右表面固定连接,从而对所述第一电机52起到固定作用。
如图1所示,所述收集装置6包括收集框61、位于所述收集框61内的挡环62、设置于所述收集框61内的定位环63、位于所述收集框61上方的水平环64、设置于所述挡环62内表面的第一锯齿65、设置于所述挡环62外表面的第一定位架66、位于所述水平环64上方的第一滚轮67、设置于所述第一滚轮67上的第二锯齿68、位于所述定位环63上方的第一定位块69及位于所述收集框61上的第一支撑环60。所述收集框61呈环状且位于所述沉淀框41的周围,所述收集框61的横截面呈凹字形,所述收集框61内壁的高度低于所述收集框61外壁的高度,所述收集框61的左表面设有第二凹槽611,所述第二凹槽611呈长条状,所述第一支撑杆11的上端与所述收集框61的下表面固定连接,所述第四支撑杆16的上端与所述收集框61的下表面固定连接。所述水平环64设有两个且分别位于上下两侧,所述水平环64呈环状,所述水平环64水平状,所述水平环64的内表面与所述沉淀框41的外表面固定连接,所述第二通孔411位于所述水平环64之间,从而使得所述水平环64之间的空间与所述沉淀框41内的空间相通,位于下方的水平换64的下表面与所述收集框61的上表面滑动连接。所述挡环62呈横截面为圆环的柱体,所述挡环62竖直放置,所述挡环62收容于所述收集框61内,所述水平环64的外表面与所述挡环62的内表面滑动连 接,使得所述挡环62可以上下移动。所述定位环63设有两个且分别位于上下两侧,所述定位环63呈环状,所述定位环63水平放置,所述定位环63的外表面与所述收集框61的内表面固定连接,所述定位环63的内表面与所述挡环62的外表面滑动连接,使得所述挡环62只能上下移动,可以对所述挡环62起到定位作用。所述第一锯齿65设有若干个且均匀分布在所述挡环62的内表面上,所述第一锯齿65与所述挡环62的内表面固定连接。所述第一定位架66呈L型,所述第一定位架66的一端与所述挡环62的左表面固定连接,所述第一定位架66的另一端呈竖直状且与所述收集框61的左表面滑动连接,所述第一定位架66上设有第一凸块661,所述第一凸块661的左端与所述第一定位架66固定连接,所述第一凸块661收容于所述第二凹槽611内,且可以上下移动,从而对所述第一定位架66起到定位作用。所述第一滚轮67设有两个且分别位于左右两侧,所述第一滚轮67呈圆柱体,所述第一滚轮67水平放置,所述第一滚轮67位于所述挡环62内,所述第一滚轮67可以旋转。所述第二锯齿68设有若干个且均匀分布在所述第一滚轮67上,所述第二锯齿68与所述第一滚轮67固定连接,所述第二锯齿68与所述第一锯齿65相互配合,从而使得所述第一滚轮67旋转时,使得所述挡环62可以上下移动。所述第一定位块69呈长方体,所述第一定位块69竖直放置,所述第一定位块69的下表面与所述定位环63的上表面固定连接。所述第一支撑环60呈环状,所述第一支撑环60水平放置,所述第一支撑环60的外表面与所述收集框61的内表面固定连接,所述第一支撑环60上设有位于其下方的第二斜杆601及位于其上方的第二支撑环602,所述第二斜杆601设有两个且分别位于左右两侧,所述第二斜杆601呈倾斜状,所述 第二斜杆601的下端与所述收集框61的内表面固定连接,所述第二斜杆601的上端与所述第一支撑环60的下表面固定连接,从而对所述第一支撑环60起到支撑作用。所述第二支撑环602呈环状,所述第二支撑环602水平放置,所述第二支撑环602的下表面与所述第一支撑环60的上表面固定连接,所述第二支撑环602的横截面呈L型,所述沉淀框41的下端收容于所述第二支撑环602内且与所述第二支撑环602滑动连接,使得所述沉淀框61可以在所述第二支撑环602上旋转。
如图1所示,所述管道装置7包括第二管道71、设置于所述第二管道71上的第三阀门72、位于所述第三阀门72上方的第三支撑板74、设置于所述第二管道71上的第二固定环73、第二水泵75、位于所述第二水泵75左侧的第三横杆76及设置于所述第二管道71上的第三斜杆77。所述第二管道71呈凹字形,所述第二管道71的一端设有密封环711,所述密封环711呈环状,所述密封环711的下表面与所述第二管道71固定连接,所述密封环711对准所述第三通孔412且与所述沉淀框41的下表面滑动连接,使得所述沉淀框41内的工业废水进入到所述第二管道71内,所述第二支撑杆12的上端与所述第二管道71固定连接,所述第二管道71贯穿所述第四支撑杆16的左右表面且与其固定连接,从而可以对所述第二管道71起到固定作用,所述第三支撑杆14的上端与所述第二管道71固定连接,所述第一支架13的一端与所述第二管道71固定连接。所述第一横杆15的右端与所述第一管道71固定连接。所述第三阀门72用于控制所述第二管道71内废水的流量。所述第二固定环73呈环状,所述第二固定环73水平放置,所述第二固定环73的内表面与所述第二管道71固定连接。所述第三支撑板74呈水平状,所述 第三支撑板74与所述第二斜杆601固定连接,所述第二管道71贯穿所述第三支撑板74的上下表面且预期固定连接,所述第二固定环73的下表面与所述第三支撑板74的上表面固定连接,从而对所述第二管道71起到支撑作用。所述第二水泵75用于将沉淀框41内的废水吸入到所述第二管道71内。所述第三横杆76呈水平状,所述第三横杆76的左端与所述收集框61的右表面固定连接,所述第三横杆76的右端与所述第二水泵75固定连接,从而对所述第二水泵75起到支撑作用。所述第三斜杆77呈倾斜状,所述第三斜杆77的上端与所述第二斜杆601固定连接,所述第三斜杆77的下端设有第四横杆,所述第四横杆呈水平状,所述第三斜杆77的下端与所述第四横杆固定连接,所述第四横杆呈水平状,所述第四横杆的两端与所述第二管道71固定连接。
如图1所示,所述加热装置8包括加热框81、位于所述加热框81下方的第三管道82、设置于所述第三管道82上的第四阀门83、位于所述加热框81下方的第二定位架84、位于所述第二定位架84下方的第五横杆85、位于所述加热框81左侧的第一固定架86、位于所述加热框81内的散热框87、位于所述散热框87内的加热棒88、设置于所述散热框87上的第四支撑板89。所述加热框81呈空心的圆柱体,所述加热框81水平放置,所述加热框81上设有位于其上表面的第四通孔811、位于其下表面的第五通孔812及第六通孔813,所述第四通孔811、第五通孔812及第六通孔813与所述加热框81的内部相通,所述第二管道71的一端对准所述第五通孔812且与所述加热框81的下表面固定连接,使得所述第二管道71的内部与所述加热框81的内部相通。所述第三管道82呈倾斜状,所述第三管道82的上端对准所述第六通孔813且与所述加热框81 的表面固定连接,使得所述第三管道82的内部与所述加热框81的内部相通,用于排除多余的水分。所述第四阀门83用于控制所述第三管道82内废水的流量。所述第二定位架84呈L型,所述第二定位架84的上端与所述加热框81的外表面固定连接,所述第二定位架84的一端呈竖直状,所述第二定位架84的另一端呈水平状。所述第五横杆85呈水平状,所述第五横杆85的左端与所述收集框61的右表面固定连接,所述第五横杆85上设有第二凸块851,所述第二凸块851呈长方体,所述第二凸块851的下表面与所述第五横杆85的上表面固定连接,所述第二定位架84的下表面顶靠在所述第五横杆85的上表面上,所述第二凸块851的左表面与所述第二定位架84的右表面接触,从而对所述第二定位架84起到支撑作用。所述第一固定架86呈L型,所述第一固定架86的一端与所述加热框81的侧面固定连接,所述第一固定架86的另一端顶靠在所述定位环63的上表面上,所述第一定位块69的左表面与所述第一固定架86的侧面接触,从而对所述第一固定架86起到定位作用。所述散热框87呈空心的圆柱体,所述散热框87位于所述加热框81的中心处,所述加热框81采用隔热材料支撑,所述散热框87采用导热材料制成,所述散热框87与所述加热框81的内表面固定连接。所述加热棒88收容于所述散热框87内,所述加热棒88与电源连接,使得所述加热棒88可以产生热量。所述第四支撑板89设有两个且分别位于所述散热框87的左右两侧,所述第四支撑板89水平放置,所述第四支撑板89的一端与所述加热框81的内表面固定连接,所述第四支撑板89的另一端与所述散热框87的外表面固定连接,所述第四支撑板89上设有贯穿其上下表面的第七通孔891,使得所述第四支撑板89可以对所述散热框87起到支撑作用,并且使得第四 支撑板89下方的水蒸气可以进入到上方。
如图1所示,所述排出装置9包括第四管道91、位于所述第四管道91左右两侧的第二弯曲杆92、位于所述第四管道91上方的出气斗93、位于所述出气斗93内的第五支撑杆94、位于所述第五支撑杆94上方的横板95、位于所述横板95上方的握持环96、设置于所述握持环96上的挡板97、位于所述出气斗93下方的第二固定架98及位于所述第二固定架98下方的竖杆99。所述第四管道91呈竖直状,所述第四管道91的下端对准所述第四通孔811且与所述加热框81的上表面固定连接,使得所述第四管道91的内部与所述加热框81的内部相通。所述第二弯曲杆92设有两个且分别位于所述第四管道91的左右两侧,所述第二弯曲杆92呈弯曲状,所述第二弯曲杆92的下端与所述加热框81固定连接,所述第二弯曲杆92的上端与所述第四管道91固定连接,从而对所述第四管道91起到支撑作用。所述出气斗93呈空心的圆台状,所述出气斗93的下表面与所述第四管道91的上表面固定连接,使得所述出气斗93的内部与所述第四管道91的内部相通。所述第五支撑杆94设有两个且分别位于左右两侧,所述第五支撑杆94竖直放置,所述第五支撑杆94的下端与所述出气斗93的内表面固定连接,所述第五支撑杆94的上端与所述横板95的下表面固定连接,所述第五支撑杆94的下端设有第三凹槽941,方便水蒸气排出。所述横板95呈圆柱体,所述横板95水平放置。所述握持环96呈半圆环状,所述握持环96的两端与所述横板95的上表面固定连接,方便使用者握住。所述挡板97呈水平状,所述挡板97与所述握持环96的内表面固定连接,从而起到了固定作用。所述第二固定架98呈L型,所述第二固定架98的上端与所述出气斗93固定连接,所述第二固定架98的另一端 呈水平状且与所述第一框体24的右表面固定连接,所述第二固定架98上设有第三固定架981、位于所述第三固定架981右侧的第四斜杆982,所述第三固定架981呈L型,所述第三固定架981的一端与所述第二固定架98固定连接,所述第三固定架981的另一端与所述第二支架30的右表面固定连接。所述第四斜杆982呈倾斜状,所述第四斜杆982的上端与所述第三固定架981固定连接,所述第四斜杆982的下端与所述第二固定架98固定连接。所述竖杆99呈长方体,所述竖杆99竖直放置,所述竖杆99的上端与所述第二固定架98的下表面固定连接,所述竖杆99的下端与所述第一固定架86的上表面固定连接,所述竖杆99上设有位于其右侧的第六横杆991、位于其左侧的第七横杆993、位于所述第七横杆993上方的第五斜杆992及位于所述第五斜杆992左侧的第四固定架994,所述第六横杆991呈水平状,所述第六横杆991的左端与所述竖杆99的右表面固定连接,所述第六横杆991的右端与所述第四管道91的侧面固定连接,从而对所述第四管道91起到支撑作用,所述第五斜杆992呈倾斜状,所述第五斜杆992的上端与所述第二固定架98固定连接,所述第五斜杆992的下端与所述第七横杆993的上表面固定连接。所述第七横杆993呈水平状,所述第七横杆993的右端与所述竖杆99的左表面固定连接,所述第七横杆993的左端与所述第一集中斗26的侧面固定连接。所述第四固定架994呈L型,所述第四固定架994的一端与所述第一框体24的右表面固定连接,所述第四固定架994的另一端与所述第七横杆993的上表面固定连接。
如图1所示,所述本发明高效的工业废水净化处理设备使用时,首先将输入管21的上端与废水流出口连接,使得废水进入到所述输入管21内,然后启动第一水泵23,同时打开第一阀门22,使得废 水进入到所述第一框体24内,且位于所述海绵块34的左侧,然后海绵块34及第一过滤网36、第二过滤网38可以对废水进行初步过滤,同时可以启动第一气缸31,加快过滤,此时使得第一推动杆32向下推动第一推板33,使得第一推板33向下按压海绵块34,使得海绵块34被压缩,当第一推板33向下移动到顶靠第一弹性板35时,第一弹性板35被向下顶靠,然后第一弹性板35变形,并且向左顶靠海绵块34,使得海绵块34在水平及垂直方向上被压缩,从而可以快速进行压缩,使得过滤效率更好,然后经过第二过滤网38的过滤后向下移动,进入到所述第一管道44内,打开第二阀门45,使得第一管道44内的废水进入到沉淀框41内,然后启动第一电机52,使得第一转轴54带动所述第一齿轮56旋转,进而使得齿环48旋转,使得沉淀框41及水平环64一起旋转,进而使得沉淀框41及水平环64内的废水做离心运动,从而可以沉淀出其中的杂质,然后杂质集中在水平环64之间,离心运动完毕后,关闭第一电机52,使得所述沉淀框41不再旋转,然后沉淀框41内的水进入到所述第二管道71内,且打开第三阀门72,然后启动第二水泵75,将沉淀框41内的水抽入到所述加热框81内。然后启动第一滚轮67,使得挡环62向上移动,然后启动第一电机52,使得水平环64之间的杂质被甩至收集款64内,方便对杂质进行收集。然后启动加热棒88,使得加热框81内的水被加热,然后蒸发,并且经过第四管道91进入到所述出气斗93内,然后从所述横板95的周围排出,扩大了散发出去的面积,使得水蒸气扩散的更加均匀,同时加热框81内作于的水经过第三管道82排出,节能环保,减少资源的浪费,并且可以对工业废水进行充分的过滤。至此,本发明高效的工业废水净化处理设备使用过程描述完毕。

Claims (10)

  1. 一种高效的工业废水净化处理设备,其特征在于:所述高效的工业废水净化处理设备包括底板、位于所述底板上方的输入装置、设置于所述输入装置上的气缸装置、位于所述输入装置下方的沉淀装置、位于所述输入装置左侧的电机装置、位于所述沉淀装置周围的收集装置、位于所述沉淀装置下方的管道装置、位于所述管道装置上方的加热装置及位于所述加热装置上方的排出装置,所述底板上设有位于其上方的第一支撑杆、位于所述第一支撑杆右侧的第二支撑杆、位于所述底板右侧的第一支架、设置于所述第一支架上的第三支撑杆、设置于所述第一支撑杆上的第一横杆及位于所述第二支撑杆右侧的第四支撑杆,所述输入装置包括输入管、设置于所述输入管上的第一阀门、第一水泵、位于所述输入管右侧的第一框体、设置于所述第一框体内的第一限位块、位于所述第一框体下方的第一集中斗,所述气缸装置包括第一气缸、位于所述第一气缸下方的第一推动杆、位于所述第一推动杆下方的第一推板、位于所述第一推板下方的海绵块、位于所述海绵块右侧的第一弹性板、位于所述海绵块下方的第一过滤网、位于所述第一过滤网下方的第一固定块、位于所述第一固定块下方的第二过滤网、位于所述第二过滤网下方的第一弯曲杆及位于所述第一气缸右侧的第二支架,所述沉淀装置包括沉淀框、位于所述沉淀框内的第三过滤网、位于所述第三过滤网上方的第一三角环、位于所述沉淀框上方的第一管道、设置于所述第一管道上的第二阀门、设置于所 述第一管道上的第一固定环、设置于所述沉淀框上的第一连接环、设置于所述第一连接环上的齿环及设置于所述齿环上的第三支架,所述电机装置包括第一支撑板、位于所述第一支撑板下方的第一电机、位于所述第一电机左侧的第四支架、位于所述第一电机下方的第一转轴、位于所述第一转轴下方的第一齿轮、位于所述第一转轴右侧的第二支撑板、位于所述第一电机右侧的第二横杆及位于所述第一支撑板上方的第一斜杆,所述收集装置包括收集框、位于所述收集框内的挡环、设置于所述收集框内的定位环、位于所述收集框上方的水平环、设置于所述挡环内表面的第一锯齿、设置于所述挡环外表面的第一定位架、位于所述水平环上方的第一滚轮、设置于所述第一滚轮上的第二锯齿、位于所述定位环上方的第一定位块及位于所述收集框上的第一支撑环,所述管道装置包括第二管道、设置于所述第二管道上的第三阀门、位于所述第三阀门上方的第三支撑板、设置于所述第二管道上的第二固定环、第二水泵、位于所述第二水泵左侧的第三横杆及设置于所述第二管道上的第三斜杆,所述加热装置包括加热框、位于所述加热框下方的第三管道、设置于所述第三管道上的第四阀门、位于所述加热框下方的第二定位架、位于所述第二定位架下方的第五横杆、位于所述加热框左侧的第一固定架、位于所述加热框内的散热框、位于所述散热框内的加热棒、设置于所述散热框上的第四支撑板,所述排出装置包括第四管道、位于所述第四管道左右两侧的第二弯曲杆、位于所述第四管道上方的出气斗、位于所述出气斗内的第五支撑杆、位于所述第五支撑杆上方的横板、位于所述横板上方的握持环、 设置于所述握持环上的挡板、位于所述出气斗下方的第二固定架及位于所述第二固定架下方的竖杆。
  2. 如权利要求1所述的高效的工业废水净化处理设备,其特征在于:所述第一支撑杆的下端与所述底板的上表面固定连接,所述第二支撑杆的下端与所述底板的上表面固定连接,所述第一支架的一端与所述底板的右表面固定连接,所述第一支架的另一端呈水平状,所述第三支撑杆的下端与所述第一支架固定连接,所述第一横杆的左端与所述第一支撑杆的右表面固定连接,所述第四支撑杆的下端与所述底板的上表面固定连接。
  3. 如权利要求2所述的高效的工业废水净化处理设备,其特征在于:所述第一框体上设有位于其左表面的第一通孔,所述输入管呈L型,所述输入管的一端对准所述第一通孔且与所述第一框体的左表面固定连接,所述第一限位块的一端与所述第一框体的内表面固定连接,所述第一集中斗的横截面呈空心的等腰梯形,所述第一集中斗的上表面与所述第一框体的下表面固定连接,所述第一集中斗的下端设有第一开口。
  4. 如权利要求3所述的高效的工业废水净化处理设备,其特征在于:所述第二支架的一端与所述第一气缸的右表面固定连接,所述第二支架的另一端与所述第一框体的右表面固定连接,所述第一推动杆的上端与所述第一气缸连接,所述第一推动杆的下端延伸至所述第一框体内,所述第一推动杆的下端与所述第一推板的上表面固定连接,所述第一推板收容于所述第一框体内,所述第一推板的侧面与所述第一框 体的内表面滑动连接,所述第一过滤网的侧面与所述第一框体的内表面固定连接,所述第一过滤网位于所述第一通孔的下方,所述海绵块的下表面与所述第一过滤网的上表面固定连接,所述海绵块的左表面与所述第一框体的内表面固定连接,所述第一弹簧板呈横截面为半圆环的柱体,所述第一弹性板的侧面与所述第一框体的内表面固定连接,所述第一弹性板的左端顶靠在所述海绵块的右表面上,所述第一固定块的横截面呈三角形,所述第一固定块的侧面与所述第一框体的内表面固定连接,所述第一固定块的上表面与所述第一过滤网的下表面固定连接,所述第二过滤网呈横截面为V字形的柱体,所述第二过滤网的侧面与所述第一框体的内表面固定连接,所述第二过滤网的上端与所述第一过滤网的下表面固定连接,所述第一弯曲杆的上端与所述第二过滤网固定连接,所述第一弯曲杆的下端与所述第一集中斗的内表面固定连接,所述第一弯曲杆的下端设有第一凹槽。
  5. 如权利要求4所述的高效的工业废水净化处理设备,其特征在于:所述沉淀框上设有位于其侧面的第二通孔及位于其下表面的第三通孔,所述第三过滤网位于所述第三通孔的上方,所述第三过滤网的下表面与所述沉淀框的内表面固定连接,所述第一三角环的横截面呈三角形,所述第一三角环的上表面及外表面与所述沉淀框的内表面固定连接,所述第一三角环的内表面呈倾斜状,所述第一管道的上端对准所述第一开口且与所述第一集中斗的下表面固定连接,所述第一固定环呈环状,所述第一固定环的内表面与所述第一管道的外表面固定连接,所述第一固定环的下表面与所述沉淀框的上表面滑动连接,所述 第一管道贯穿所述沉淀框的上表面延伸至所述沉淀框的内部,所述第一管道与所述沉淀框滑动连接,所述第一连接环呈环状,所述第一连接环的内表面与所述沉淀框的外表面固定连接,所述第一连接环的外表面与所述齿环的内表面固定连接,所述齿环呈横截面为圆环的柱体,所述第三支架的一端与所述沉淀框的上表面固定连接,所述第三支架的另一端与所述齿环的内表面固定连接。
  6. 如权利要求5所述的高效的工业废水净化处理设备,其特征在于:所述第一支撑板的右端与所述第一框体的左表面固定连接,所述第一斜杆的上端与所述第一框体的左表面固定连接,所述第一斜杆的下端与所述第一支撑板的上表面固定连接,所述第一电机的上表面与所述第一支撑板的下表面固定连接,所述第四支架的一端与所述第一支撑板的下表面固定连接,所述第四支架的另一端呈水平状且与所述第一电机的下表面固定连接,所述第一转轴的上端与所述第一电机连接,所述第一转轴的下端与所述第一齿轮的上表面固定连接,所述第二支撑板的右端与所述第一集中斗的侧面固定连接,所述第二支撑板的上表面与所述第一电机的下表面固定连接,所述第二横杆的右端与所述第一框体的左表面固定连接,所述第二横杆的左端与所述第一电机的右表面固定连接。
  7. 如权利要求6所述的高效的工业废水净化处理设备,其特征在于:所述收集框的左表面设有第二凹槽,所述第一支撑杆的上端与所述收集框的下表面固定连接,所述第四支撑杆的上端与所述收集框的下表面固定连接,所述水平环的内表面与所述沉淀框的外表面固定连接, 所述挡环呈横截面为圆环的柱体,所述水平环的外表面与所述挡环的内表面滑动连接,所述定位环呈环状,所述定位环的外表面与所述收集框的内表面固定连接,所述定位环的内表面与所述挡环的外表面滑动连接,所述第一锯齿与所述挡环的内表面固定连接,所述第一定位架的一端与所述挡环的左表面固定连接,所述第一定位架的另一端呈竖直状且与所述收集框的左表面滑动连接,所述第一定位架上设有第一凸块,所述第一凸块的左端与所述第一定位架固定连接,所述第一凸块收容于所述第二凹槽内,所述第一滚轮位于所述挡环内,所述第二锯齿与所述第一滚轮固定连接,所述第一定位块的下表面与所述定位环的上表面固定连接,所述第一支撑环呈环状,所述第一支撑环的外表面与所述收集框的内表面固定连接,所述第一支撑环上设有位于其下方的第二斜杆及位于其上方的第二支撑环,所述第二斜杆的下端与所述收集框的内表面固定连接,所述第二斜杆的上端与所述第一支撑环的下表面固定连接,所述第二支撑环呈环状,所述第二支撑环的下表面与所述第一支撑环的上表面固定连接,所述第二支撑环的横截面呈L型,所述沉淀框的下端收容于所述第二支撑环内且与所述第二支撑环滑动连接。
  8. 如权利要求7所述的高效的工业废水净化处理设备,其特征在于:所述第二管道的一端设有密封环,所述密封环呈环状,所述密封环的下表面与所述第二管道固定连接,所述密封环对准所述第三通孔且与所述沉淀框的下表面滑动连接,所述第二支撑杆的上端与所述第二管道固定连接,所述第二管道贯穿所述第四支撑杆的左右表面且与其固 定连接,所述第三支撑杆的上端与所述第二管道固定连接,所述第一支架的一端与所述第二管道固定连接,所述第一横杆的右端与所述第一管道固定连接,所述第二固定环的内表面与所述第二管道固定连接,所述第三支撑板与所述第二斜杆固定连接,所述第二管道贯穿所述第三支撑板的上下表面且与其固定连接,所述第二固定环的下表面与所述第三支撑板的上表面固定连接,所述第三横杆的左端与所述收集框的右表面固定连接,所述第三横杆的右端与所述第二水泵固定连接,所述第三斜杆的上端与所述第二斜杆固定连接,所述第三斜杆的下端设有第四横杆,所述第三斜杆的下端与所述第四横杆固定连接,所述第四横杆的两端与所述第二管道固定连接。
  9. 如权利要求8所述的高效的工业废水净化处理设备,其特征在于:所述加热框上设有位于其上表面的第四通孔、位于其下表面的第五通孔及第六通孔,所述第二管道的一端对准所述第五通孔且与所述加热框的下表面固定连接,所述第三管道的上端对准所述第六通孔且与所述加热框的表面固定连接,所述第二定位架的上端与所述加热框的外表面固定连接,所述第二定位架的一端呈竖直状,所述第二定位架的另一端呈水平状,所述第五横杆的左端与所述收集框的右表面固定连接,所述第五横杆上设有第二凸块,所述第二凸块的下表面与所述第五横杆的上表面固定连接,所述第二定位架的下表面顶靠在所述第五横杆的上表面上,所述第二凸块的左表面与所述第二定位架的右表面接触,所述第一固定架的一端与所述加热框的侧面固定连接,所述第一固定架的另一端顶靠在所述定位环的上表面上,所述第一定位块的 左表面与所述第一固定架的侧面接触,所述散热框与所述加热框的内表面固定连接,所述第四支撑板的一端与所述加热框的内表面固定连接,所述第四支撑板的另一端与所述散热框的外表面固定连接,所述第四支撑板上设有贯穿其上下表面的第七通孔。
  10. 如权利要求9所述的高效的工业废水净化处理设备,其特征在于:所述第四管道的下端对准所述第四通孔且与所述加热框的上表面固定连接,所述第二弯曲杆的下端与所述加热框固定连接,所述第二弯曲杆的上端与所述第四管道固定连接,所述出气斗呈空心的圆台状,所述出气斗的下表面与所述第四管道的上表面固定连接,所述第五支撑杆的下端与所述出气斗的内表面固定连接,所述第五支撑杆的上端与所述横板的下表面固定连接,所述第五支撑杆的下端设有第三凹槽,所述握持环呈半圆环状,所述握持环的两端与所述横板的上表面固定连接,所述挡板与所述握持环的内表面固定连接,所述第二固定架的上端与所述出气斗固定连接,所述第二固定架的另一端呈水平状且与所述第一框体的右表面固定连接,所述第二固定架上设有第三固定架、位于所述第三固定架右侧的第四斜杆,所述第三固定架呈L型,所述第三固定架的一端与所述第二固定架固定连接,所述第三固定架的另一端与所述第二支架的右表面固定连接,所述第四斜杆呈倾斜状,所述第四斜杆的上端与所述第三固定架固定连接,所述第四斜杆的下端与所述第二固定架固定连接,所述竖杆的上端与所述第二固定架的下表面固定连接,所述竖杆的下端与所述第一固定架的上表面固定连接,所述竖杆上设有位于其右侧的第六横杆、位于其左侧的第 七横杆、位于所述第七横杆上方的第五斜杆及位于所述第五斜杆左侧的第四固定架,所述第六横杆的左端与所述竖杆的右表面固定连接,所述第六横杆的右端与所述第四管道的侧面固定连接,所述第五斜杆的上端与所述第二固定架固定连接,所述第五斜杆的下端与所述第七横杆的上表面固定连接,所述第七横杆的右端与所述竖杆的左表面固定连接,所述第七横杆的左端与所述第一集中斗的侧面固定连接,所述第四固定架的一端与所述第一框体的右表面固定连接,所述第四固定架的另一端与所述第七横杆的上表面固定连接。
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