CN105112653A - Reverse cone sieve disk ammonia leakage-free efficient chemical combination leaching device of copper ore - Google Patents

Reverse cone sieve disk ammonia leakage-free efficient chemical combination leaching device of copper ore Download PDF

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Publication number
CN105112653A
CN105112653A CN201510637666.2A CN201510637666A CN105112653A CN 105112653 A CN105112653 A CN 105112653A CN 201510637666 A CN201510637666 A CN 201510637666A CN 105112653 A CN105112653 A CN 105112653A
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China
Prior art keywords
chemical combination
combination leaching
barrel
exhaust purifier
ammonia
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CN201510637666.2A
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Chinese (zh)
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CN105112653B (en
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银永忠
刘志雄
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Jining High Tech Keda Technology Project Service Co ltd
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Jishou University
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P10/00Technologies related to metal processing
    • Y02P10/20Recycling

Abstract

The invention relates to a reverse cone sieve disk ammonia leakage-free efficient chemical combination leaching device of a copper ore. A chemical combination leaching barrel and a tail gas purifier are connected by a flange; a stirring motor is connected with a conical shield by a hollow shaft and then inserted into the chemical combination leaching barrel; blades and liquid inlets holes are formed in the cone shield; air inlet holes are peripherally uniformly distributed and formed in the upper part of the hollow shaft; liquid inlets are formed in the chemical combination leaching barrel, and a reflux pipe penetrating out of the barrel body on a bottom valve; the tail gas purifier is externally provided with a jacket and is internally provided with a middle pipe forming a jacket structure together with spiral fins; the outlet of the tail gas purifier is provided with a swirler. Air (oxygen) is automatically conveniently replenished in the chemical combination leaching barrel having a perfect and complete liquid flow mixing action, and chemical combination leaching efficiency is high; material deposition and blockage is prevented, and convenience and efficiency are realized; tail gas purifier is multi-level, capable of efficiently finishing heat and medium transfer, and very good in gas liquid separation effect, ammonia leakage is effectively avoided, environment friendliness, automation and efficiency of chemical combination leaching of the copper ore is realized and important application value is realized.

Description

The efficient chemical combination leaching device of inverted cone sieve dish ammonia No leakage formula copper mine
Technical field
The present invention relates to the efficient chemical combination leaching device of a kind of inverted cone sieve dish ammonia No leakage formula copper mine.
Background technology
The copper mine of occurring in nature has quite a few to be exist with the form of cupric sulfide, cupric sulfide is in the ammonia solution of applicable concentration, enough air are had to blast (mainly oxygen participates in reaction), can complex compound be formed and dissolve, complete chemical combination and after leaching and dissolving, then carry out solid-liquid separation and just can carry out next step operation.
Therefore, the chemical combination leaching device of copper mine is the requisite key equipment of process for copper processed, but existing copper mine chemical combination leaching device exists two large defects, thus constrains the development of copper technology processed.One to be that air blasts insufficient and inconvenient, and the chemical combination leaching velocity of cupric sulfide is slow, efficiency is low, needs to increase special air and blasts equipment, increase equipment investment, also cause unnecessary trouble; Two is that ammonia easily leaks, because ammonia has high pungency, volatile toxic and harmful, thus very large to environmental influence, also very large to the loss of ammonia, if but adopt Sealing Arrangement to react, then the easy security incident such as explosion caused.
Therefore, if the efficient chemical combination leaching device of copper mine that a kind of air automatically conveniently blasts, ammonia is not easy to leak, be not again pressurized vessel can be designed, then there is important actual application value.
Summary of the invention
The technical problem to be solved in the present invention overcomes the deficiencies in the prior art exactly, provides a kind of simple and practical, the efficient chemical combination leaching device of inverted cone sieve dish ammonia No leakage formula copper mine that air is automatically convenient to be blasted, ammonia is not easy to leak, be not again pressurized vessel.
For overcoming the deficiencies in the prior art, the present invention takes following technical scheme:
The efficient chemical combination leaching device of a kind of inverted cone sieve dish ammonia No leakage formula copper mine, comprise chemical combination leaching barrel and exhaust purifier, it is characterized in that: the intervalve of chemical combination leaching barrel and exhaust purifier is removably connected by flange, exhaust purifier is by upflow tube and return liquid inclined tube and to be linked back chemical combination leaching barrel; Chemical combination leaching barrel is provided with manhole, liquid feed valve and heating jacket, agitator motor inserts in chemical combination leaching barrel after connecting cone cover by tubular shaft, blade and inlet opening is provided with in cone cover, the inlet mouth that tubular shaft top has axle circumference uniform distribution to open, tubular shaft bottom has axle sleeve to play dynamic state limit and stable support function, is provided with fluid inlet and return tube passes on the external bottom valve of staving in chemical combination leaching barrel; Exhaust purifier outside is provided with chuck and leads to water coolant or refrigerated water, inside is provided with open intervalve and forms jacket structured with the helical fin cylinder closed, helical fin cylinder is that inwall welding helical fin forms, the gap of helical fin cylinder and exhaust purifier inwall is provided with inverted cone sieve dish, exhaust purifier outlet is provided with swirler, and swirler is that axis and urceolus are formed by connecting by spinning disk.
Described heating jacket is provided with heat medium enter hose and goes out pipe.
Described tail gas recycle device chuck is provided with refrigerant inlet pipe and goes out pipe.
The core of the design is exactly that chemical combination leaching barrel and exhaust purifier are removably connected by flange.
Chemical combination leaching barrel has heating jacket, operate certain liquid level, the solid-phase materials such as copper-sulphide ores are added by the removable cover opening manhole, the liquid phase materials such as ammonia control to add by liquid feed valve, agitator motor connects impeller cone cover by tubular shaft, the inlet mouth that tubular shaft top has axle circumference uniform distribution to open, bottom has axle sleeve to play dynamic state limit and stable support function, and bottom valve plays discharge control action kou.
Impeller cone cover connects tubular shaft by driven by motor high speed rotating, inlet opening feed liquor is accelerated centrifugal by blade, move along cone cover inner surface, thrown away by cone shroud rim, high velocity liquid stream can be produced in upper speed cone cover like this and then produce vacuum, such large quantity of air is drawn in mixed solution stream along tubular shaft by vacuum by inlet mouth, is thrown away by cone shroud rim, realizes gas liquid high-efficiency mixing and air (oxygen) supply.Liquid stream can be collected by fluid inlet simultaneously, is backflowed by return tube, forms bottom and shoves, and effectively prevents deposition and the blocking of boring substrate material.
Heating jacket leads to steam or hot water realizes heat temperature raising, also can lead to cold water and lower the temperature, overflow liquid level gas can carry water vapour simultaneously, ammonia becomes tail gas, gas mixture by exhaust purifier realize reclaim and tail gas clean-up, avoid the leakage of ammonia.
Exhaust purifier has chuck can lead to water coolant or refrigerated water, intervalve and helical fin cylinder form jacket structured, overflow gas and rise to top again by the downward water conservancy diversion of helical fin cylinder by intervalve, owing to having helical fin in helical fin cylinder, can realize guiding to gas in interlayer and rotate, produce downward helical air flow path, by sieving dish along overflowing and passing inverted cone under helical fin cylinder, overflow from liquid level after good diffusion and rise, air-flow forces cyclone by spinning disk effect in swirler, can the effective liquid phase that wherein may carry of centrifugation, Exhaust Gas is made to realize purification, liquid phase can reflux downwards by automatic dipping wall.
The decontamination effect improving of exhaust purifier depends on the heat and mass transport overcoming difficulties and carry out, the wherein controlled upflow tube position of liquid level, rear upflow tube meeting overflow that phlegma is many, returning liquid inclined tube can effectively prevent return slag from blocking, in chuck, in refrigerated water and exhaust purifier, liquid phase has very high overall heat transfer coefficient, in exhaust purifier, liquid can produce good automatic stirring convection circulation due to temperature and gas overflowing, helical fin cylinder has larger gas phase side heat interchanging area, simultaneously subsurface liquid phase can efficient heat transfer, cooling ammonia condensing is realized to gas phase in cylinder, ullage divides and is realized gas phase precooling in cylinder by the cryogenic gas overflowed, in helical fin cylinder, swirling eddy can promote heat and mass transfer by effective disturbance air film, carry out one-level cooling, condensation, gas-liquid separation, again through inverted cone sieve dish liquid phase layer good diffusion, realize the heat and mass transfer that secondary directly contacts, realize ammonia efficiently to catch, ascending vapor finally realizes cyclonic separation once again in swirler, makes emission reach purification requirement.
The design adopts basic closed interlayer pot chemical combination leaching system, more supporting tail gas recycle ammonia, when air capacity is larger, realizes condensation and the efficient recovery of ammonia, completes tail gas clean-up discharge simultaneously.When non-condensable gases exists in a large number and has a strong impact on condensing interface heat and mass transport state, the high-efficiency condensation achieving ammonia catches.
Compared with prior art, beneficial effect of the present invention is also:
In chemical combination leaching barrel, supplementary convenient, the liquid stream mixing effect automatically of air (oxygen) is improved fully, and chemical combination leaching efficiency is very high; By producing cone ground swell stream by return tube after collect liquid flowing, prevent material from depositing blocking convenient especially, reliable, efficient; Exhaust purifier is multistage, it is good especially efficiently to complete heat transfer, mass transfer, gas-liquid separation effect, effectively prevents the leakage of ammonia.
The present invention by above Integration ofTechnology, achieves environmental protection that copper mine chemical combination leaches and automatical and efficient, has important using value.
Accompanying drawing explanation
Fig. 1 is two dimensional structure schematic diagram of the present invention
Fig. 2 is the three-dimensional structure schematic diagram of impeller cone cover.
Fig. 3 is the three-dimensional structure schematic diagram of swirler.
Fig. 4 is helical fin bobbin mouth three-dimensional structure schematic diagram.
Fig. 5 is that three-dimensional structure schematic diagram analysed and observe by helical fin cylinder.
In figure, each label represents:
A, impeller cone cover; C, swirler; D, helical fin cylinder; 1, agitator motor; 2, inlet mouth; 3, manhole; 4, liquid feed valve; 5, chemical combination leaching barrel; 6, tubular shaft; 7, liquid level in chemical combination leaching barrel; 8, heat medium enter hose; 9, heating jacket; 10, tubular shaft axle sleeve; 11, heat medium produce hose; 12, fluid inlet; 13, return tube; 14, bottom valve; 15, liquid inclined tube is returned; 21, exhaust purifier; 22, refrigerant goes out pipe; 23, exhaust purifier liquid level; 24, upflow tube; 25, freezing chuck; 26, flow spiral path; 27, inverted cone sieve dish; 28, intervalve; 29, refrigerant inlet pipe; 31, cone cover; 32, inlet opening; 33, blade; 34, hollow axis hole; 35, surge dish; 36, surge dish vanelets; 37, spinning disk; 38, axis; 39, urceolus; 40, helical fin.
Embodiment
Now by reference to the accompanying drawings, the present invention is illustrated further.
As shown in Figure 1, Figure 2, the efficient chemical combination leaching device of the sieve dish ammonia No leakage formula copper mine of inverted cone shown in Fig. 3, Fig. 4 and Fig. 5, comprise chemical combination leaching barrel 5 and exhaust purifier 21, the intervalve 28 of chemical combination leaching barrel 5 and exhaust purifier 21 is removably connected by flange, and exhaust purifier 21 is by upflow tube 24 and return liquid inclined tube 15 and to be linked back chemical combination leaching barrel 5; Chemical combination leaching barrel 5 is provided with manhole 3, liquid feed valve 4 and heating jacket 9, agitator motor 1 inserts in chemical combination leaching barrel 5 after connecting cone cover 31 by tubular shaft 6, blade 33 and inlet opening 32 is provided with in cone cover 31, the inlet mouth 2 that tubular shaft 6 top has axle circumference uniform distribution to open, axle sleeve 10 dynamic state limits and stable support function are arranged at tubular shaft 6 bottom, be provided with fluid inlet 12 and return tube 13 and pass on the external bottom valve of staving 14 in chemical combination leaching barrel 5; Exhaust purifier 21 outside is provided with chuck 25 and leads to water coolant or refrigerated water, inside is provided with open intervalve 28 and forms jacket structured with the helical fin cylinder D closed, helical fin cylinder D is that inwall welding helical fin 40 forms, the gap of helical fin cylinder D and exhaust purifier 21 inwall is provided with inverted cone sieve dish 27, exhaust purifier 21 outlet is provided with swirler C, and swirler C is that axis 38 is formed by connecting by spinning disk 37 with urceolus.
Described heating jacket 9 is provided with heat medium enter hose 8 and goes out pipe 11.
Described tail gas recycle device chuck is provided with refrigerant inlet pipe 29 and goes out pipe 22.
The core of the design is exactly that chemical combination leaching barrel 5 is removably connected by flange with exhaust purifier 21.
Chemical combination leaching barrel 5 has heating jacket 9, liquid level is 7, the solid-phase materials such as copper-sulphide ores are added by the removable cover opening manhole 3, the liquid phase materials such as ammonia control to add by liquid feed valve 4, agitator motor 1 connects impeller cone cover A by tubular shaft 6, the inlet mouth 2 that tubular shaft 6 top has axle circumference uniform distribution to open, axle sleeve 10 dynamic state limits and stable support function are arranged at bottom, bottom valve 14 discharge control action kous.
Impeller cone cover A connects tubular shaft 6 and drives high speed rotating by motor 1, inlet opening 32 feed liquor is accelerated centrifugal by blade 33, along cone cover 31 inner surface movement, thrown away by cone cover 31 edge, high velocity liquid stream can be produced in upper speed cone cover 31 like this and then produce vacuum, such large quantity of air is drawn in mixed solution stream along tubular shaft 6 by vacuum by inlet mouth 2, is thrown away by cone cover 31 edge, realizes gas liquid high-efficiency mixing and air (oxygen) supply.Liquid stream can be collected by fluid inlet 12 simultaneously, is backflowed by return tube 13, forms bottom and shoves, and effectively prevents deposition and the blocking of boring substrate material.
Heating jacket 9 leads to steam or hot water realizes heat temperature raising, also can lead to cold water and lower the temperature, overflow liquid level gas can carry water vapour simultaneously, ammonia becomes tail gas, gas mixture by exhaust purifier 21 realize reclaim and tail gas clean-up, avoid the leakage of ammonia.
Exhaust purifier 21 has chuck 25 can lead to water coolant or refrigerated water, intervalve 28 and helical fin cylinder D form jacket structured, overflow gas and rise to top again by the downward water conservancy diversion of helical fin cylinder D by intervalve 28, owing to having helical fin 40 in helical fin cylinder D, can realize guiding to gas in interlayer and rotate, produce downward helical air flow path 26, by sieving dish 27 along overflowing and passing inverted cone under helical fin cylinder D, overflow from liquid level 23 after good diffusion and rise, air-flow acts on by spinning disk 37 and forces cyclone in swirler C, can the effective liquid phase that wherein may carry of centrifugation, Exhaust Gas is made to realize purification, liquid phase can reflux downwards by automatic dipping wall.
The decontamination effect improving of exhaust purifier 21 depends on the heat and mass transport overcoming difficulties and carry out, wherein liquid level 23 controlled upflow tube 24 position, rear upflow tube 24 meeting overflow that phlegma is many, returning liquid inclined tube 15 can effectively prevent return slag from blocking, in chuck 25, in refrigerated water and exhaust purifier, liquid phase has very high overall heat transfer coefficient, in exhaust purifier, liquid can produce good automatic stirring convection circulation due to temperature and gas overflowing, helical fin cylinder D has larger gas phase side heat interchanging area, liquid phase simultaneously under liquid level 23 can efficient heat transfer, cooling ammonia condensing is realized to gas phase in cylinder, liquid level 23 upper part is realized gas phase precooling in cylinder by the cryogenic gas overflowed, in helical fin cylinder D, swirling eddy can promote heat and mass transfer by effective disturbance air film, carry out one-level cooling, condensation, gas-liquid separation, again through inverted cone sieve dish 27 liquid phase layer good diffusion, realize the heat and mass transfer that secondary directly contacts, realize ammonia efficiently to catch, ascending vapor finally realizes cyclonic separation once again in swirler C, makes emission reach purification requirement.
Above-mentioned just preferred embodiment of the present invention, not does any pro forma restriction to the present invention.Any those of ordinary skill in the art, when not departing from technical solution of the present invention scope, can utilize the technology contents of above-mentioned announcement to make many possible variations and modification to technical solution of the present invention, or being revised as the Equivalent embodiments of equivalent variations.Therefore, every content not departing from technical solution of the present invention, according to the technology of the present invention essence to any simple modification made for any of the above embodiments, equivalent variations and modification, all should drop in the scope of technical solution of the present invention protection.

Claims (3)

1. the efficient chemical combination leaching device of inverted cone sieve dish ammonia No leakage formula copper mine, comprise chemical combination leaching barrel and exhaust purifier, it is characterized in that: the intervalve of chemical combination leaching barrel and exhaust purifier is removably connected by flange, exhaust purifier is by upflow tube and return liquid inclined tube and to be linked back chemical combination leaching barrel; Chemical combination leaching barrel is provided with manhole, liquid feed valve and heating jacket, agitator motor inserts in chemical combination leaching barrel after connecting cone cover by tubular shaft, blade and inlet opening is provided with in cone cover, the inlet mouth that tubular shaft top has axle circumference uniform distribution to open, tubular shaft bottom has axle sleeve to play dynamic state limit and stable support function, is provided with fluid inlet and return tube passes on the external bottom valve of staving in chemical combination leaching barrel; Exhaust purifier outside is provided with chuck and leads to water coolant or refrigerated water, inside is provided with open intervalve and forms jacket structured with the helical fin cylinder closed, helical fin cylinder is that urceolus welding helical fin forms, the gap of helical fin cylinder and exhaust purifier inwall is provided with inverted cone sieve dish, exhaust purifier outlet is provided with swirler, and swirler is that axis and urceolus are formed by connecting by spinning disk.
2. inverted cone sieves the efficient chemical combination leaching device of dish ammonia No leakage formula copper mine according to claim 1, it is characterized in that: described heating jacket is provided with heat medium enter hose and goes out pipe.
3. the efficient chemical combination leaching device of inverted cone sieve dish ammonia No leakage formula copper mine according to claim 1 or 2, is characterized in that: described tail gas recycle device chuck is provided with refrigerant inlet pipe and goes out pipe.
CN201510637666.2A 2015-10-07 2015-10-07 Inverted cone sieves the dish ammonia efficient chemical combination leaching device of No leakage formula copper mine Active CN105112653B (en)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103657471A (en) * 2013-11-27 2014-03-26 江苏浩特隆搅拌设备有限公司 Special stirring machine for garbage fermentation
CN104034103A (en) * 2014-07-01 2014-09-10 吉首大学 Novel ammonia refrigeration intercooler
CN104174506A (en) * 2014-09-05 2014-12-03 吉首大学 Rotor-wing floating brush mineral flotation machine
CN203990638U (en) * 2014-08-20 2014-12-10 潍坊科技学院 Cathode electrophoresis dope reaction unit

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103657471A (en) * 2013-11-27 2014-03-26 江苏浩特隆搅拌设备有限公司 Special stirring machine for garbage fermentation
CN104034103A (en) * 2014-07-01 2014-09-10 吉首大学 Novel ammonia refrigeration intercooler
CN203990638U (en) * 2014-08-20 2014-12-10 潍坊科技学院 Cathode electrophoresis dope reaction unit
CN104174506A (en) * 2014-09-05 2014-12-03 吉首大学 Rotor-wing floating brush mineral flotation machine

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Inventor after: Wang Siji

Inventor before: Yin Yongzhong

Inventor before: Liu Zhixiong

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Effective date of registration: 20170511

Address after: 362100, No. 8, Da Shan village, Da Pu town, Yongchun County, Quanzhou, Fujian

Applicant after: YONGCHUN BAIXIANG TEA INDUSTRY CO.,LTD.

Address before: 510000 unit 2414-2416, building, No. five, No. 371, Tianhe District, Guangdong, China

Applicant before: GUANGDONG GAOHANG INTELLECTUAL PROPERTY OPERATION Co.,Ltd.

Effective date of registration: 20170511

Address after: 510000 unit 2414-2416, building, No. five, No. 371, Tianhe District, Guangdong, China

Applicant after: GUANGDONG GAOHANG INTELLECTUAL PROPERTY OPERATION Co.,Ltd.

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Effective date of registration: 20190826

Address after: 244151 Tongling National Agricultural Science and Technology Park, Shun'an Town, Tongling City, Anhui Province

Patentee after: Tongling Yian District Productivity Promotion Center

Address before: 362100, No. 8, Da Shan village, Da Pu town, Yongchun County, Quanzhou, Fujian

Patentee before: YONGCHUN BAIXIANG TEA INDUSTRY CO.,LTD.

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Effective date of registration: 20211220

Address after: 272000 No. 5566 Chongwen Avenue, high tech Zone, Jining City, Shandong Province

Patentee after: Jining high tech Keda Technology Project Service Co.,Ltd.

Address before: 244151 Tongling national agricultural science and Technology Park, Shun'an Town, Tongling City, Anhui Province

Patentee before: Tongling Yian District Productivity Promotion Center