CN110523515A - A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique - Google Patents

A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique Download PDF

Info

Publication number
CN110523515A
CN110523515A CN201910903344.6A CN201910903344A CN110523515A CN 110523515 A CN110523515 A CN 110523515A CN 201910903344 A CN201910903344 A CN 201910903344A CN 110523515 A CN110523515 A CN 110523515A
Authority
CN
China
Prior art keywords
ore
powder
air
tcrude
precious metal
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201910903344.6A
Other languages
Chinese (zh)
Inventor
习巧翠
席利峰
杨骁楠
郭兆兴
王显彬
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
SHAANXI STAR INDUSTRIAL Co Ltd
Original Assignee
SHAANXI STAR INDUSTRIAL Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by SHAANXI STAR INDUSTRIAL Co Ltd filed Critical SHAANXI STAR INDUSTRIAL Co Ltd
Priority to CN201910903344.6A priority Critical patent/CN110523515A/en
Publication of CN110523515A publication Critical patent/CN110523515A/en
Priority to CN202010710309.5A priority patent/CN111617872A/en
Pending legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C21/00Disintegrating plant with or without drying of the material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/18Adding fluid, other than for crushing or disintegrating by fluid energy
    • B02C23/20Adding fluid, other than for crushing or disintegrating by fluid energy after crushing or disintegrating
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
    • B02C23/18Adding fluid, other than for crushing or disintegrating by fluid energy
    • B02C23/20Adding fluid, other than for crushing or disintegrating by fluid energy after crushing or disintegrating
    • B02C23/22Adding fluid, other than for crushing or disintegrating by fluid energy after crushing or disintegrating with recirculation of material to crushing or disintegrating zone
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B07SEPARATING SOLIDS FROM SOLIDS; SORTING
    • B07BSEPARATING SOLIDS FROM SOLIDS BY SIEVING, SCREENING, SIFTING OR BY USING GAS CURRENTS; SEPARATING BY OTHER DRY METHODS APPLICABLE TO BULK MATERIAL, e.g. LOOSE ARTICLES FIT TO BE HANDLED LIKE BULK MATERIAL
    • B07B7/00Selective separation of solid materials carried by, or dispersed in, gas currents
    • B07B7/01Selective separation of solid materials carried by, or dispersed in, gas currents using gravity

Landscapes

  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Manufacture And Refinement Of Metals (AREA)

Abstract

The invention discloses a kind of quartz vein precious metal ore large size dry method to be enriched with ore dressing energy conservation and environmental protection technique, it is characterized in that: tcrude ore passes through forklift feeding to hopper, it is crushed into jaw crusher and gyratory crusher, broken tcrude ore feeding vertical roll grinder carries out superfine grinding, and tcrude ore superfine powder is carried along into ore separators by air-flow and carries out dry mineral processing;Into after ore separators, tcrude ore superfine powder is refined separation under suspended state, and ultra-fine gangue powder, which is entrained by the flow of air and passes through, to be entered bulk machine by conveying skewed slot after ultra-fine gangue powder collector is collected and transport.Compared with existing quartz vein precious metal ore technique of preparing, present invention process process simplification invests small, target ore elimination factor height, no water consumption, and no reagent consumption is discharged in tailings and polluted without medicament, may be used as green building material or pit backfill, second ploughing are built up fields.

Description

A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique
Technical field
The present invention relates to a kind of quartz vein precious metal ore dry mineral processing technique and complexes.
Background technique
Centuries carrys out the medicament wet flotation technique that quartz vein precious metal ore Mineral Processing Industry adopts always gradual perfection, compares It is suitble to rich ore production scale and high added value income ore dressing.By exploiting for a long time, in addition gold is because of its excellent physical characteristic, work Industry demand greatly increases, and rich ore is fewer and fewer, and the exploitation of low poor position mine has been to adopt the main production object of Mineral Processing Industry. Selecting lean ore will result in old wet processing, reagent consumption is huge, and at high cost, income is low, at the same generate magnanimity carry it is toxic, The tailings of harmful floating agent can not digestibility and utilization, cause long-term environmental pollution problem.The above predicament causes a large amount of gold It mine Mineral Processing Enterprises or stops production because of environmental issue;It is lost because cost is excessively high.Therefore, conventional wet medicament floatation process Be can not adapt to modernization using lean ore as the mineral processing production of object.
In view of the above Mineral Processing Industry status, our company scientific research personnel, which pass through, to concentrate on studies, and it is extensive to use for reference other industries Grinding sorting technology experience is repeatedly improved, is finally developed a set of suitable by having the exploitation being directed to design and practical ore dressing to test Close the large-scale dry method ore grinding ore dressing environmental-protecting process production line of quartz vein precious metal ore ore dressing feature.
Summary of the invention
The object of the present invention is to provide a kind of quartz vein precious metal ore large size dry method to be enriched with ore dressing energy conservation and environmental protection technique, and existing There is technology to compare, present invention process process simplification invests small, target ore elimination factor height, no water consumption, no reagent consumption, row It puts in tailings and is polluted without medicament, may be used as green building material or pit backfills, second ploughing is built up fields.
The technical scheme is that a kind of quartz vein precious metal ore large size dry method is enriched with ore dressing energy conservation and environmental protection technique, Be characterized in: tcrude ore is by forklift feeding to hopper, and into jaw crusher and gyratory crusher, broken tcrude ore is logical It crosses after the metering of belt-type weigher and superfine grinding is carried out by inclined belt conveyer feeding vertical roll grinder, the tcrude ore after grinding Brought into the tailing separator on vertical roller grinder top by air-flow.Tcrude ore coarse powder falls into vertical roller grinder mill and continues grinding, tcrude ore Superfine powder is carried along into ore separators by wind and carries out dry mineral processing.
Air-flow carries tcrude ore superfine powder and enters ore floatation room participation ore dressing process, driving motor by entering the wind feed inlet Speed reducer and transmission main shaft rotation are driven, ultra-fine gangue separator is driven to carry out target mineral powder and gangue powder in ore floatation room Be precisely separated;Wherein gangue powder is taken out of by air-flow by the outlet of gangue powder;Target mineral powder after enrichment is under the effect of gravity It is discharged by enrichment target mineral powder cone bucket of gathering materials by motor-driven air lock discharger, is separated to reach target mineral powder with gangue powder Purpose.
After ore separators, tcrude ore superfine powder is refined separation under suspended state, and ultra-fine gangue powder is entrained by the flow of air And enter bulk machine by conveying skewed slot after being collected by gangue powder collector and transport, purified air routing system blower from Exhaust pipe discharge;Target mineral powder after enrichment passes through motor-driven air lock discharging from the target mineral powder of ore separators lower part cone bucket of gathering materials Device discharge, is put in storage through conveying hoisting and stores, to selected use in next step.
There are two production line air-flow sources, and one is that normal temperature air is provided by airspace, enters from cold wind station;It dries The thermal current of dry tcrude ore moisture content is provided by hot-blast stove, is entered from hot air disperser.By SRM-M vertical grinder air supplying ring after the two mixing Into in mill, temperature can be adjusted by cold and hot valve area size, 150~300 DEG C of the wind-warm syndrome into grinding.Wind speed 15 in grinding~ 20m/s;Mill wind-warm syndrome is down to 100 DEG C or so because evaporating tcrude ore moisture content out.
Effect of the invention:
1, tcrude ore is sufficiently released by superfine grinding, target mineral, is laid the foundation for accurate, efficient ore dressing.
2, the selection of Large Efficient SRM-M series vertical roller grinder, ore grinding yield greatly improve, daily yield from 500 tonnes, 1000 tonnes, 5000 tonnes to 10000 tonnes, ore powder granularity greatly improves, and 300 mesh, 400 mesh, 500 mesh can be selected arbitrarily.
3, grinding pow consumption substantially reduces, it is only necessary to which the 30%~50% of conventional wet grinding pow consumption saves ore grinding cost.
4, dry mineral processing is high-efficient, and target ore reduces by 70%~80% than conventional wet technique in gangue powder, cost pole It is low, no reagent consumption.
5, the gangue powder (mine tailings) after ore dressing is polluted without chemical reagent, may be used as construction material or pit second ploughing.
6, present invention enrichment ore dressing process first half does not need water participation, particularly suitable for water shortage using air as medium Few water area.
7, it volatilizees without harmful chemicals volatile contaminant, such as mercury to caused by operator during dry mineral processing of the present invention Employment injuries.
8, whole-course automation operation may be implemented in dry method grinding ore dressing process of the present invention, and workshop only stays patrol worker.
Detailed description of the invention
Fig. 1 is present invention process schematic diagram.
Fig. 2 is ore separators structural schematic diagram.
Drawing reference numeral explanation: forklift 1, hopper 2, jaw crusher 3, gyratory crusher 4, belt-type weigher 5, inclination Belt conveyor 6, vertical roll grinder 7, vertical roll grinder top tailing separator 8, ore separators 9, gangue powder collector 10, system Blower 11, exhaust pipe 12, conveying skewed slot 13, bulk machine 14, hot-blast stove 15, cold wind station 16, motor-driven air lock discharger 17, enter the wind into Material mouth 18, driving motor 19, speed reducer 20, transmission main shaft 21, ore floatation room 22, gangue powder outlet 23, the separation of ultra-fine gangue Device 24, shell 25, target mineral powder gather materials cone bucket 26, target mineral powder outlet 27.
Specific embodiment
A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique, as shown in Figure 1,100~500mm is big Blocky tcrude ore arrives hopper 2 by 1 feeding of forklift, feeds jaw crusher 3 and gyratory crusher 4 through hopper 2, from being crushed It is the broken tcrude ore of 5~30mm that granularity is fractured into when machine comes out, and water content is less than 3%, after the metering of belt-type weigher 5 SRM-M vertical roll grinder 7 is transported to by inclined belt conveyer 6 and carries out superfine grinding, the tcrude ore superfine powder after grinding is by gas The tailing separator 8 that stream is carried along into 7 top of SRM-M vertical roll grinder carries out the separation of thickness powder, and tcrude ore coarse powder falls into vertical Roller grinds mill and continues grinding, and the tcrude ore superfine powder after separation is carried along into Smax-R ore separators 9 by wind and carries out dry mineral processing.
Wherein detailed process is as follows for 7 superfine grinding of vertical roll grinder: in the middle part of feeding 7 mill of vertical roll grinder, rotation Mill and the grinding roller of rotation carry out movement extruding to broken tcrude ore, and broken tcrude ore is in the middle part of mill to mill edge centrifugal movement The bed of material, superfine grinding three phases are formed by degassing, compacting in the process, while being made in 11 draft of 7000Pa high-pressure system blower Under, the tcrude ore after superfine grinding is taken away by the high-speed flow entered from mill lower part air inlet, is mixed to form dust-contained airflow Apparatus for separating fine powder from coarst powder 8 into grinding machine top carries out the separation of thickness powder, is not blocked by levigate coarse granule by rotor of powder separator, Mill is fallen under coarse granule, is newly mixed into tcrude ore with other, new rolling pressure grinding process is participated in.This circulation grinding mistake Journey can carry out Cheng Baici per minute, and multiple efficient circulation, mill efficiency is very high, enable the quick grinding of tcrude ore and sorting, The ultra-fine gangue powder for reaching fineness requirement is selected in time to be taken away, and coarse powder returns mill recycling grinding.Tcrude ore partial size is unqualified, absolutely Vertical roll grinder 7 can not be gone out, ensure that the efficient of tcrude ore grinding and go out the equal homogeneous cause of mill tcrude ore powder fineness, partial size 5~ 30 μm of particles account for 90%, and 38 μm of maximum particle diameter.
There are two production line air-flow sources, and one is that normal temperature air is provided by airspace, enters from cold wind station;It dries The thermal current of dry tcrude ore moisture content is provided by hot-blast stove, is entered from hot air disperser.Entered after the two mixing by SRM-M vertical grinder 5 In mill, temperature can be adjusted by cold and hot valve area size, 150~300 DEG C of the wind-warm syndrome into grinding.15~20m/ of wind speed in grinding s;Mill wind-warm syndrome is down to 100 DEG C or so because evaporating tcrude ore moisture content out.
It is as shown in Figure 2: Smax-R series high-precision ore separators 9, including shell 25, driving motor 19 and speed reducer 20, In 25 top of shell is equipped with gangue powder outlet 23;It is equipped with ore floatation room 22 in the middle part of shell 25, is equipped in ore floatation room 22 super Thready pulse mountain flour separator 24;It is equipped with enrichment target mineral powder in 25 lower part of shell to gather materials cone bucket 26,26 bottom of cone bucket of gathering materials is equipped with It is enriched with target mineral powder outlet 27, motor-driven air lock discharger 17 is arranged below in mineral powder outlet 27;Driving motor 19 and speed reducer 20 connections drive ultra-fine gangue separator 24 to rotate by transmission main shaft 21.Forced feed lubrication is equipped in 21 supporting-point of transmission main shaft Filling-up area, and it is furnished with oil pump.In ore floatation room, 22 corresponding housing, 25 tangential direction is equipped with air inlet feed inlet 18.
Dry ore dressing machine working principle:
Air-flow carries tcrude ore superfine powder (referred to as granule fluid) and enters dry method high-precision ore separators, granule fluid together Under the collective effect of ore floatation room and ultra-fine gangue separator, make the target ore powder particles retention sedimentation row of big specific gravity Out, the gangue powder particles of small specific gravity enter ore dressing machine rotor with air-flow and move in dust-contained airflow, enter ultra-fine arteries and veins in next step Mountain flour separator 19.
Tcrude ore superfine powder enters ore floatation room 22 by air inlet feed inlet 18 and participates in ore dressing process, and driving motor 19 drives Dynamic speed reducer 20 and transmission main shaft 21 rotate, drive ultra-fine gangue separator 24 ore floatation room 22 carry out target mineral powder with Gangue powder is precisely separated;Wherein gangue powder is taken out of by air-flow by gangue powder outlet 23;Target mineral powder after enrichment is in weight Entered target mineral powder outlet 27 by mineral powder cone bucket 26 of gathering materials under power effect and be discharged by motor-driven air lock discharger 17, to reach The purpose separated to target mineral powder with gangue powder.
Mean flow rate 10~20m/s of the granule fluid in dry ore dressing machine, 100~120 DEG C of temperature, pressure drop 2500Pa; 80~90 DEG C of temperature in filter bag type gangue powder collector 19, pressure drop 1500Pa, filtration velocity 0.8m/min.
Mineral separation precision is adjusted by 19 rotational speed regulation of driving motor, ore dressing amount by air velocity.After ore separators 9, Tcrude ore superfine powder is refined separation under suspended state, and air-flow carries gangue powder and enters gangue collector 10, make gangue powder with Airflow filtering separation.Ultra-fine gangue powder is sorted medium air and takes away and pass through after ultra-fine gangue powder collector 10 is collected by defeated Skewed slot 13 is sent to transport into bulk machine 14, purified air routing system blower 11 is discharged from exhaust pipe 12.After being separated by filtration Efflux gas in dust content be less than 10mg/m3
Target mineral powder after enrichment passes through 17 row of motor-driven air lock discharger from 9 lower part of Smax-R series high-precision ore separators Out, it is put in storage and stores through conveying hoisting, to selected use in next step.
All fronts technical process uses negative-pressure operation, and air flow power is provided by the system air-introducing machine 11 for being located at production line end.
Particular embodiments described above, pair present invention solves the technical problem that, technical solution carried out further in detail Explanation.It should be understood that the above is only a specific embodiment of the present invention, be not intended to restrict the invention, it is all Within the spirit and principles in the present invention, any modification, equivalent substitution, improvement and etc. done should be included in protection of the invention Within the scope of.

Claims (4)

1. a kind of quartz vein precious metal ore large size dry method is enriched with ore dressing energy conservation and environmental protection technique, it is characterized in that: tcrude ore passes through forklift (1) feeding is crushed to hopper (2) into jaw crusher (3) and gyratory crusher (4), reaches 5~30mm after broken Broken tcrude ore by belt-type weigher (5) measure after by inclined belt conveyer (6) feeding vertical roll grinder (7) surpassed Fine powder is ground, and the tcrude ore superfine powder after grinding is carried out thick by the apparatus for separating fine powder from coarst powder (8) that air-flow is carried along into vertical roller grinder top Fine powder separation, tcrude ore coarse powder fall into vertical roller grinder mill and continue grinding, and the tcrude ore superfine powder after separation is entrained by air-flow Enter ore separators (9) and carries out dry mineral processing;After ore separators (9), tcrude ore superfine powder is refined separation under suspended state, surpasses Thready pulse mountain flour, which is entrained by the flow of air and passes through, enters bulk machine (14) by conveying skewed slot (13) after gangue powder collector (10) is collected It transports, purified air routing system blower (11) is discharged from exhaust pipe (12);Target mineral powder after enrichment is from ore separators (9) the target mineral powder of lower part gathers materials cone bucket (26) by motor-driven air lock discharger (17) discharge, is put in storage and stores through conveying hoisting, To selected use in next step.
2. a kind of quartz vein precious metal ore large size dry method as described in claim 1 is enriched with ore dressing energy conservation and environmental protection technique, feature It is: dry ore dressing machine (9) interior 10~20m/s of wind speed, 100~120 DEG C of temperature, pressure drop 2500Pa;Filter bag type gangue powder collector (10) 80~90 DEG C, pressure drop 1500Pa, filtration velocity 0.8m/min of interior temperature.
3. a kind of quartz vein precious metal ore large size dry method as described in claim 1 is enriched with ore dressing energy conservation and environmental protection technique, feature Be: the process that ore separators (9) carries out dry mineral processing is as follows: air-flow carries tcrude ore superfine powder by entering the wind feed inlet (18) first Ore dressing process is participated in into ore floatation room (22), driving motor (19) drives speed reducer (20) and transmission main shaft (21) rotation, Ultra-fine gangue separator (24) is driven to carry out being precisely separated for target mineral powder and gangue powder in ore floatation room (22);Its middle arteries Mountain flour is taken out of by air-flow by gangue powder outlet (23);Target mineral powder after enrichment is under the effect of gravity by enrichment target ore Powder gathers materials cone bucket (26) by motor-driven air lock discharger (17) discharge, to reach the mesh that target mineral powder is separated with gangue powder 's.
4. a kind of quartz vein precious metal ore large size dry method as described in claim 1 is enriched with ore dressing energy conservation and environmental protection technique, feature Be: there are two production line air-flow sources, and one is that normal temperature air is provided by airspace, enters from cold wind station (16);It dries The thermal current of dry tcrude ore moisture content is provided by hot-blast stove (15), is entered from hot air disperser;Entered after the two mixing by vertical grinder (7) In mill, temperature can be adjusted by cold and hot valve area size, and 150~300 DEG C of the wind-warm syndrome into grinding grinds 15~20m/ of interior wind speed s;Mill wind-warm syndrome is down to 100 DEG C or so because evaporating tcrude ore moisture content out.
CN201910903344.6A 2019-09-24 2019-09-24 A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique Pending CN110523515A (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201910903344.6A CN110523515A (en) 2019-09-24 2019-09-24 A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique
CN202010710309.5A CN111617872A (en) 2019-09-24 2020-07-22 Large-scale dry-method enrichment ore dressing energy-saving and environment-friendly process for quartz-vein noble metal ore

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201910903344.6A CN110523515A (en) 2019-09-24 2019-09-24 A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique

Publications (1)

Publication Number Publication Date
CN110523515A true CN110523515A (en) 2019-12-03

Family

ID=68669820

Family Applications (2)

Application Number Title Priority Date Filing Date
CN201910903344.6A Pending CN110523515A (en) 2019-09-24 2019-09-24 A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique
CN202010710309.5A Pending CN111617872A (en) 2019-09-24 2020-07-22 Large-scale dry-method enrichment ore dressing energy-saving and environment-friendly process for quartz-vein noble metal ore

Family Applications After (1)

Application Number Title Priority Date Filing Date
CN202010710309.5A Pending CN111617872A (en) 2019-09-24 2020-07-22 Large-scale dry-method enrichment ore dressing energy-saving and environment-friendly process for quartz-vein noble metal ore

Country Status (1)

Country Link
CN (2) CN110523515A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111940125A (en) * 2020-07-30 2020-11-17 潼关中陕核环保建材有限公司 Method and system for recovering precious metals in low-grade gold tailings

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101767092B (en) * 2009-12-30 2012-02-08 杭州锦江集团有限公司 Bauxite wind power beneficiation method
CN201632419U (en) * 2010-03-25 2010-11-17 天津水泥工业设计研究院有限公司 Upper and lower-feeding dual-grading-type high-efficiency powder concentrator
CN102513202A (en) * 2011-12-27 2012-06-27 陕西斯达实业有限公司 Novel process for producing superfine powder
CN102921547A (en) * 2012-11-20 2013-02-13 北方重工集团有限公司 Dry type ore dressing process for iron ore
CN203002448U (en) * 2012-12-25 2013-06-19 Lv技术工程(天津)有限公司 Cement open-circuit grinding system with powder pre-selecting function
CN107617508B (en) * 2017-09-19 2020-06-09 中国地质科学院郑州矿产综合利用研究所 Fine-grain tungsten-tin associated ore beneficiation process
CN207941711U (en) * 2017-11-17 2018-10-09 天津水泥工业设计研究院有限公司 A kind of centripetal high-efficient powder concentrator
CN208944347U (en) * 2018-09-20 2019-06-07 天津宏生建材科技有限公司 A kind of thickness raw material sorting unit

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111940125A (en) * 2020-07-30 2020-11-17 潼关中陕核环保建材有限公司 Method and system for recovering precious metals in low-grade gold tailings
CN111940125B (en) * 2020-07-30 2022-04-12 中陕核工业集团综合分析测试有限公司 Method and system for recovering precious metals in low-grade gold tailings

Also Published As

Publication number Publication date
CN111617872A (en) 2020-09-04

Similar Documents

Publication Publication Date Title
CN103045777B (en) Dry processing technique for iron-containing steel slag
CN102744213A (en) Mineral powder particle jet-flow separation device
CN203002448U (en) Cement open-circuit grinding system with powder pre-selecting function
CN105080698B (en) Use the grinding process of vertical roller grinder system
CN203291915U (en) Ultrafine powder differential swing arm roller grinding machine
CN104043592B (en) Novel pair of transmission environment protection energy-saving efficient separator
CN106669888A (en) Efficient roller pressing grinding station and technique thereof
WO2020197009A1 (en) Tungsten concentrate extraction system using continuous process method
CN110237919A (en) A kind of high quality Machine-made Sand production technology
CN204953078U (en) Quartzy materials processing professional equipment
CN111822129A (en) Iron ore dry grinding and dressing device and process
CN106694517A (en) Production process for preparing steel slag micropowder through steel slag magnetic separation powder purification synergistically
CN203917150U (en) Novel pair of transmission environment protection energy-saving efficient separator
CN110523515A (en) A kind of quartz vein precious metal ore large size dry method enrichment ore dressing energy conservation and environmental protection technique
CN212820408U (en) Vertical mill grinding system for grinding weak-magnetic refractory iron ore
CN218250708U (en) Grinding system
CN107617501B (en) Multistage grinding superfine powder production process and system thereof
CN2887435Y (en) Wet type middle speed grinding mill
CN213557749U (en) Fine powder concentrator for producing sand with multiple sets of extension machines
CN208928578U (en) A kind of multistage is broken up in electrostatic and powder selection device
CN212370350U (en) Preparation system of waste concrete reclaimed sand powder
CN103252272A (en) Raymond mill capable of cleaning impurities and dehumidifying
CN1114504C (en) Dry milling and blow separating process for gold cores and mill therefor
CN209866321U (en) Safe energy-saving tailing recovery plant
CN207770004U (en) Multistage removal of impurities Capsicum crushing machine

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WD01 Invention patent application deemed withdrawn after publication
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20191203