CN205099550U - System of recycling is handled to hydrologic cycle - Google Patents
System of recycling is handled to hydrologic cycle Download PDFInfo
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- CN205099550U CN205099550U CN201520839699.0U CN201520839699U CN205099550U CN 205099550 U CN205099550 U CN 205099550U CN 201520839699 U CN201520839699 U CN 201520839699U CN 205099550 U CN205099550 U CN 205099550U
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- air flotation
- flotation pool
- water
- advection air
- dissolving
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Abstract
The utility model discloses a system of recycling is handled to hydrologic cycle, include advection air supporting pond, scraping arm, dissolve gas pitcher and microorganism pipe, the front end in advection air supporting pond is provided with the water inlet, and terminal bottom is provided with the delivery port, and the welding of advection air supporting bottom of the pool portion is provided with the bagger, and the bagger is the conical body, and the bagger bottom is provided with an album mud pit, and collection mud pit below is provided with the mud pipe, be equipped with a plurality of scraping arm on the bagger inner wall, scraping arm inclines to set up, and the angle of scraping arm slope and the tapering of bagger match the setting, and the last spiro union of scraping arm is fixed to be provided with a plurality of cleaning shoes, has been equipped with the rubber scraper blade on the cleaning shoe, rubber scraper blade and the interior conical contact of bagger, the utility model discloses effectively improving sewage treatment's area and handling capacity and processing speed, having reduced non -woven fabrics manufacturing process's process water, reduced manufacturing cost and intensity of labour, the recycle who has promoted the water resource is rateed.
Description
Technical field
The utility model relates to sewage treatment area, specifically a kind of water cycle process reutilization system.
Background technology
Spunlace non-woven cloth is that make fiber mutually entangled, thus fibre web is reinforced and possesses certain brute force, the fabric obtained is spunlace non-woven cloth by fine for high pressure water flow jet on one or more layers fibrous reticulum; Its fibrous material wide material sources can be terylene, polyamide fibre, polypropylene fibre, viscose fiber, chitin fiber, ultra-fine fibre, sky silk, silk, bamboo fibers, wood pulp cellulose, seaweed fiber etc.; At present, the mode of disc type shallow air-floatation is adopted mostly to the process of waste water after spunlace non-woven cloth water thorn; For utilizing cotton first to carry out degreasing bleaching, then carry out the cotton spunlace non-woven cloth manufacturing process of water thorn, due to de-drift step oneself must be cleaner by the short flannel in raw cotton and Impurity removal, therefore do not exist because of the water quality of waste water after raw cotton linter and impurity effect water thorn; But for the cotton spunlace non-woven cloth manufacturing process of de-drift after first water thorn, raw cotton itself, containing a large amount of impurity, earth, adds raw cotton after water thorn, containing plurality of impurities such as pectin, cured fat, short velveteen, boll hull, cotton leaves in the water that water thorn reclaims; The mode of shallow air-floatation is substantially only adapted to the production of the spunlace non-woven cloth being beneficial to experimental branch line, and for the non-woven fabrics utilizing raw cotton to carry out water thorn, de-bleaching process after especially first water thorn, it is difficult to meet need of production.
Utility model content
The purpose of this utility model is to provide a kind of water cycle process reutilization system, to solve the problem proposed in above-mentioned background technology.
For achieving the above object, the utility model provides following technical scheme:
A kind of water cycle process reutilization system, comprise advection air flotation pool, scraper arm, dissolving and microorganism pipe, the front end of described advection air flotation pool is provided with water-in, water outlet is provided with bottom end, advection air flotation pool bottom welding is provided with bucket, bucket is cone-shaped body, is provided with collection mud pit bottom bucket, and collection is provided with shore pipe below mud pit; Described bucket inwall is provided with multiple scraper arm, scraper arm is obliquely installed, and the angle that scraper arm tilts is mated with the tapering of bucket and arranged, and scraper arm is spirally connected and is fixedly installed multiple cleaning shoe, cleaning shoe has been provided with rubber flap, and rubber flap contacts with bucket inner conical surface; The aerate head of described dissolving is arranged on the bottom of advection air flotation pool, from left to right the first dividing plate and second partition is provided with successively bottom described advection air flotation pool, first dividing plate is arranged between water-in and the aerate head of dissolving, first dividing plate bottom is fixed on bottom advection air flotation pool, forms water stream channel between the top of top and advection air flotation pool; Described second partition is arranged between the first dividing plate and the aerate head of dissolving, and its top is fixed on advection air flotation pool top, forms water stream channel between the bottom of bottom and advection air flotation pool; Be provided with microorganism pipe in the middle part of described advection air flotation pool, the surface arrangement of microorganism pipe has multiple hole, and microorganism pipe is arranged on the top of dissolving, and the aperture of microorganism pore is less than the particle diameter of the microbe carrier laid in microorganism pipe.
Further, described first dividing plate and second partition are stainless material.
Further, the aerate head of described dissolving is arranged on the position near second partition.
Compared with prior art, the aperture of microorganism pore of the present utility model is less than the particle diameter of the microbe carrier laid in microorganism pipe, thus can while making that microorganism is stressed and obtaining effective dispersive propagation, effectively fixing of abundant guarantee microbe carrier, increase the propagation of distributions area of microorganism and velocity of propagation by dissolving, thus effectively improve the area of sewage disposal and treatment capacity and processing speed; The utility model is by the vibrational power flow of the first dividing plate, second partition, play the effect slowing down current, the bubble that waste water can be emerged with the aerate head of dissolving is in time mixed, the mixing time of both increases, suspended substance in water is fully condensed if having time, ensures the decontamination effect improving of the rear waste water of water thorn, thus decrease the water of productive use of non-woven fabrics manufacturing process, reduce production cost and labour intensity, improve the recovery utilization rate of water resources.
Accompanying drawing explanation
Fig. 1 is the structural representation that sharp system is used in water cycle process again.
Fig. 2 is the structural representation that scraper arm in sharp system is used in water cycle process again.
Fig. 3 is the structural representation that microorganism pipe in sharp system is used in water cycle process again.
Embodiment
Be described in more detail below in conjunction with the technical scheme of embodiment to this patent.
Refer to Fig. 1-3, a kind of water cycle process reutilization system, comprise advection air flotation pool 1, scraper arm 2, dissolving 3 and microorganism pipe 4, the front end of described advection air flotation pool 1 is provided with water-in 11, be provided with water outlet 12 bottom end, advection air flotation pool 1 bottom welding is provided with bucket 13, and bucket 13 is cone-shaped body, be provided with collection mud pit 14 bottom bucket 13, collection is provided with shore pipe 15 below mud pit 14; Described bucket 13 inwall is provided with multiple scraper arm 2, scraper arm 2 is obliquely installed, the angle that scraper arm 2 tilts is mated with the tapering of bucket 13 and is arranged, scraper arm 2 is spirally connected and is fixedly installed multiple cleaning shoe 21, cleaning shoe 21 has been provided with rubber flap 22, and rubber flap 22 contacts with bucket 13 inner conical surface; The aerate head 31 of described dissolving 3 is arranged on the bottom of advection air flotation pool 1, for ventilating to the water in advection air flotation pool 1, the first dividing plate 101 and second partition 102 is from left to right provided with successively bottom described advection air flotation pool 1, first dividing plate 101 is arranged between the aerate head 31 of water-in 11 and dissolving 3, first dividing plate 101 bottom is fixed on bottom advection air flotation pool 1, forms water stream channel between the top of top and advection air flotation pool 1; Described second partition 102 is arranged between the first dividing plate 101 and the aerate head 31 of dissolving 3, and its top is fixed on advection air flotation pool 1 top, forms water stream channel between the bottom of bottom and advection air flotation pool 1; When waste water enters advection air flotation pool 1 from water-in 11, current are larger, therefore, current can be slowed down by the first dividing plate 101 and second partition 102 and the bending water stream channel formed between the two, ensure that bubble that the aerate head 31 of dissolving 3 is below emerged has the sufficient time and condenses the suspended substance in water; Produce tiny bubble from aeration head 105 out by dissolving 3, bubble can meet with the impurity that flocculates in water in uphill process, and the impurity in waste water is under the effect of bubble and flocking settling, and after certain impurity all deposits, scraper arm 2 scrapes decon; Microorganism pipe 4 is provided with in the middle part of described advection air flotation pool 1, the surface arrangement of microorganism pipe 4 has multiple hole, microorganism pipe 4 is arranged on the top of dissolving 3, the aperture in microorganism pipe 4 hole is less than the particle diameter of the microbe carrier laid in microorganism pipe 4, thus can while making that microorganism is stressed and obtaining effective dispersive propagation, effectively fixing of abundant guarantee microbe carrier, increased propagation of distributions area and the velocity of propagation of microorganism by dissolving 3, thus effectively improve the area of sewage disposal and treatment capacity and processing speed; Further, the aerate head 31 of described dissolving 3 is arranged on the position near second partition 102, to ensure that the bubble that the water flowed out below second partition 102 can be emerged with the aerate head 31 of dissolving 3 in time mixes, with the mixing time of both increases, suspended substance in water is fully condensed if having time, ensures the decontamination effect improving of waste water.
Above the better embodiment of this patent is explained in detail, but this patent is not limited to above-mentioned embodiment, in the ken that one skilled in the relevant art possesses, various change can also be made under the prerequisite not departing from this patent aim.
Claims (3)
1. a water cycle process reutilization system, comprise advection air flotation pool, scraper arm, dissolving and microorganism pipe, it is characterized in that, the front end of described advection air flotation pool is provided with water-in, be provided with water outlet bottom end, advection air flotation pool bottom welding is provided with bucket, and bucket is cone-shaped body, be provided with collection mud pit bottom bucket, collection is provided with shore pipe below mud pit; Described bucket inwall is provided with multiple scraper arm, scraper arm is obliquely installed, and the angle that scraper arm tilts is mated with the tapering of bucket and arranged, and scraper arm is spirally connected and is fixedly installed multiple cleaning shoe, cleaning shoe has been provided with rubber flap, and rubber flap contacts with bucket inner conical surface; The aerate head of described dissolving is arranged on the bottom of advection air flotation pool, from left to right the first dividing plate and second partition is provided with successively bottom described advection air flotation pool, first dividing plate is arranged between water-in and the aerate head of dissolving, first dividing plate bottom is fixed on bottom advection air flotation pool, forms water stream channel between the top of top and advection air flotation pool; Described second partition is arranged between the first dividing plate and the aerate head of dissolving, and its top is fixed on advection air flotation pool top, forms water stream channel between the bottom of bottom and advection air flotation pool; Be provided with microorganism pipe in the middle part of described advection air flotation pool, the surface arrangement of microorganism pipe has multiple hole, and microorganism pipe is arranged on the top of dissolving, and the aperture of microorganism pore is less than the particle diameter of the microbe carrier laid in microorganism pipe.
2. water cycle process reutilization system according to claim 1, is characterized in that, described first dividing plate and second partition are stainless material.
3. water cycle process reutilization system according to claim 1, is characterized in that, the aerate head of described dissolving is arranged on the position near second partition.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520839699.0U CN205099550U (en) | 2015-10-27 | 2015-10-27 | System of recycling is handled to hydrologic cycle |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201520839699.0U CN205099550U (en) | 2015-10-27 | 2015-10-27 | System of recycling is handled to hydrologic cycle |
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CN205099550U true CN205099550U (en) | 2016-03-23 |
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CN201520839699.0U Expired - Fee Related CN205099550U (en) | 2015-10-27 | 2015-10-27 | System of recycling is handled to hydrologic cycle |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106348521A (en) * | 2016-08-23 | 2017-01-25 | 浙江华昌纺织有限公司 | Method for producing ultraviolet-proof outdoor sports fabric |
CN106346916A (en) * | 2016-08-23 | 2017-01-25 | 浙江华昌纺织有限公司 | Preparation method of anti-flaming sportswear fabric |
CN114589178A (en) * | 2022-03-21 | 2022-06-07 | 景津装备股份有限公司 | Pneumatic vertical mud scraping and clearing bucket device and pneumatic mud scraping type mud guiding and loading bucket of filter press |
-
2015
- 2015-10-27 CN CN201520839699.0U patent/CN205099550U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106348521A (en) * | 2016-08-23 | 2017-01-25 | 浙江华昌纺织有限公司 | Method for producing ultraviolet-proof outdoor sports fabric |
CN106346916A (en) * | 2016-08-23 | 2017-01-25 | 浙江华昌纺织有限公司 | Preparation method of anti-flaming sportswear fabric |
CN106346916B (en) * | 2016-08-23 | 2018-04-06 | 浙江华昌纺织有限公司 | The preparation method of fire-retardant sportswear fabric |
CN106348521B (en) * | 2016-08-23 | 2019-02-22 | 浙江华昌纺织有限公司 | The production method of antiultraviolet outdoor sport fabric |
CN114589178A (en) * | 2022-03-21 | 2022-06-07 | 景津装备股份有限公司 | Pneumatic vertical mud scraping and clearing bucket device and pneumatic mud scraping type mud guiding and loading bucket of filter press |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20160323 Termination date: 20161027 |