Nothing Special   »   [go: up one dir, main page]

CN108118156B - A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead - Google Patents

A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead Download PDF

Info

Publication number
CN108118156B
CN108118156B CN201810023327.9A CN201810023327A CN108118156B CN 108118156 B CN108118156 B CN 108118156B CN 201810023327 A CN201810023327 A CN 201810023327A CN 108118156 B CN108118156 B CN 108118156B
Authority
CN
China
Prior art keywords
electrolytic manganese
leachate
added
manganese
mud
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.)
Active
Application number
CN201810023327.9A
Other languages
Chinese (zh)
Other versions
CN108118156A (en
Inventor
邓永光
黄冠汉
陈南雄
明宪权
吴晓丹
陈发明
杨勇
韦婷婷
覃燕玲
黄海岛
李庆梅
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.)
Nanfang Manganese Industry Group Co.,Ltd.
Original Assignee
ZHONGXIN DAMENG MINING INDUSTRY 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 ZHONGXIN DAMENG MINING INDUSTRY Co Ltd filed Critical ZHONGXIN DAMENG MINING INDUSTRY Co Ltd
Priority to CN201810023327.9A priority Critical patent/CN108118156B/en
Publication of CN108118156A publication Critical patent/CN108118156A/en
Application granted granted Critical
Publication of CN108118156B publication Critical patent/CN108118156B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22BPRODUCTION AND REFINING OF METALS; PRETREATMENT OF RAW MATERIALS
    • C22B7/00Working up raw materials other than ores, e.g. scrap, to produce non-ferrous metals and compounds thereof; Methods of a general interest or applied to the winning of more than two metals
    • C22B7/006Wet processes
    • C22B7/007Wet processes by acid leaching
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22BPRODUCTION AND REFINING OF METALS; PRETREATMENT OF RAW MATERIALS
    • C22B47/00Obtaining manganese
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25CPROCESSES FOR THE ELECTROLYTIC PRODUCTION, RECOVERY OR REFINING OF METALS; APPARATUS THEREFOR
    • C25C1/00Electrolytic production, recovery or refining of metals by electrolysis of solutions
    • C25C1/06Electrolytic production, recovery or refining of metals by electrolysis of solutions or iron group metals, refractory metals or manganese
    • C25C1/10Electrolytic production, recovery or refining of metals by electrolysis of solutions or iron group metals, refractory metals or manganese of chromium or manganese
    • 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

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Metallurgy (AREA)
  • Materials Engineering (AREA)
  • Organic Chemistry (AREA)
  • Manufacturing & Machinery (AREA)
  • Mechanical Engineering (AREA)
  • Geology (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Environmental & Geological Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Manufacture And Refinement Of Metals (AREA)
  • Electrolytic Production Of Metals (AREA)

Abstract

A kind of method for separating production electrolytic manganese metal the invention discloses electrolytic manganese anode mud and recycling lead, the following steps are included: S1. electrolytic manganese anode mud and sulfuric acid solution, blackstrap aqueous solution are mixed, then iron powder is added, separates leachate and leached mud after the reaction was completed;S2. H is added in leachate2O2, the leachate of COD must be removed;S3. ammonium sulfide or Sodium Dimethyldithiocarbamate is added in the leachate for removing COD, and ammonium hydroxide is added, obtain purification of manganese sulfate liquid, the electrolysis of purification of manganese sulfate liquid obtains metal manganese product.The present invention can also recycle the lead concentrate of 50% or more lead tolerance while producing Electrolytic Manganese Product, to realize that the clean and effective of electrolytic manganese anode mud utilizes.

Description

A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead
Technical field
The present invention relates to electrolytic manganese anode mud processing technology field more particularly to a kind of electrolytic manganese anode mud separation production electricity Solution manganese metal and the method for recycling lead.
Background technique
Manganese has highly important strategic position as a kind of important metallurgy, chemical raw material in national economy.I State's iron and steel output accounts for about 3/4ths of Gross World Product, " no manganese not Cheng Gang ", in smelting iron and steel, manganese and oxygen, sulphur it is affine Power is all bigger, is the desulfurizing agent and deoxidier of molten steel.Electrolytic manganese metal is production stainless steel, height since purity is high, impurity are few The important alloying element and welding rod of strength low alloy steel, alumal, cupromanganese etc., ferrite, permanent-magnet alloy member Element and many medication chemistries with manganese salt produce in indispensable raw material.With the rise of technological progress and new industry, electrolysis Manganese metal is increasingly extensive in the application of metallurgy, electronics, functional material and fine manganese salt arts.
Electrolytic manganese anode mud refers to use manganese sulfate solution in a cell electrolysis production manganese metal during, in anode Room is inevitably formed with manganese dioxide (MnO2) or the hydrous oxide precipitating of manganese based on substance, black easily agglomerates, Wherein manganese content is up to 40% ~ 50%, contains sardinianite, cesarolite (PbMn simultaneously3O7·nH2O), the multiple elements such as tin, selenium and Compound, structure is complicated.
1 t electrolytic manganese metal of every production just generates 50 ~ 100 kg electrolytic manganese anode muds, by China's electrolytic manganese metal Yield is converted into the quantum of output of electrolytic manganese anode mud up to 100,000 tons/year or more.Mineral composition and knot due to electrolytic manganese anode mud Structure is complicated, and the hydrous oxide symbiosis of lead and manganese therein is very close, most of manganese oxide jelly with gluey annulus Construction, therefore manganese and recycling lead cannot be purified using simple mechanical sorting method.It is used on a small quantity currently, electrolytic manganese anode mud removes Than iron, the overwhelming majority is as industrial solid wastes by stockpiling disposition or cheap selling to smelting for the leaching manganese ore liquid of electrolytic manganese factory Ingredient of the refinery as refining manganeisen raw material, however the substances such as lead, selenium in Manganese anode slime are volatile at high temperature, it is per ton Manganese anode slime will volatilize nearly 50 kg of lead metal, not only waste lead resource, it is often more important that causes serious environmental pollution, damages The life and health of the victimization people.
In recent years, researcher finds different processing methods for the characteristic of electrolytic manganese anode mud, mainly studies Using Manganese anode slime as production manganese sulfate, manganese carbonate, the pure manganese dioxide of chemistry or battery, oxidation manganese systems product and LiMn2O4 etc. The raw material of new material, but that there are still production costs is higher, the valuable element rate of recovery is low, or energy consumption is high, process route is long, very To will form secondary pollution problems.Under the premise of national environmental protection energy saving policy is increasingly stringent, it can not generally be adopted by factory. Therefore, status is utilized in the critical role in China and the processing of electrolytic manganese anode mud in view of current manganese, finds a kind of economic, environmental protection Mode handle and had important practical significance using electrolytic manganese anode mud and urgent.
Summary of the invention
A kind of method for separating production electrolytic manganese metal the invention discloses electrolytic manganese anode mud and recycling lead, in production electricity The lead concentrate of 50% or more lead tolerance can also be recycled while solving metal manganese product, to realize that the cleaning of electrolytic manganese anode mud is high Effect utilizes.
To achieve the above object, the technical solution of the present invention is as follows:
A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead, comprising the following steps:
S1. electrolytic manganese anode mud and 2.5 ~ 3.5molL-1Sulfuric acid solution mixing, and 65 ~ 70 gL are added-1Blackstrap Aqueous solution stirring, the dosage of blackstrap are the 85 ~ 90% of reducing agent theoretical amount, 150 ~ 250 rmin of stirring rate-1, above-mentioned In the mixture of electrolytic manganese anode mud, sulfuric acid solution and blackstrap aqueous solution, liquid-solid ratio is 3.8 ~ 4.2: 1, keeps mixture Temperature is 70 ~ 80 DEG C, reacts 30 ~ 50min, and iron powder is then added, and the dosage of iron powder is greater than the theoretical amount of remaining reducing agent, instead 10 ~ 20min is answered, separates leachate and leached mud with filter press after the reaction was completed;
S2. H is added in leachate2O2, oxidizing condition are as follows: ρ (H2O2)/ρ (COD)=2.0 ~ 2.5, control reaction temperature be 48 ~ 52 DEG C, the leachate of COD must be removed;
S3. ammonium sulfide or Sodium Dimethyldithiocarbamate is added in the leachate for removing COD, and the pH that ammonium hydroxide adjusting leachate is added is 5.5 ~ 6.0, removing heavy metals are removed, purification of manganese sulfate liquid is obtained, the electrolysis of purification of manganese sulfate liquid obtains metal manganese product.
Preferably, in the step S1, the concentration of sulfuric acid solution is 3.5molL-1, blackstrap concentration of aqueous solution is 70 g·L-1, liquid-solid ratio 4:1.
Preferably, 190 ~ 210 rmin of stirring rate-1
Preferably, in the step S1, the temperature of mixture is 70 DEG C.
Preferably, in the step S2, ρ (H2O2)/ρ(COD)=2.5。
Preferably, in the step S2, reaction temperature is 50 DEG C, and the reaction time is 2 ~ 2.5h.
Preferably, in the step S3, the temperature that ammonium hydroxide reaction is added is 45 ~ 55 DEG C.
Preferably, in the step S1, leached mud takes out after cleaning in filter press to be dried, and obtains lead concentrate product.
The invention has the following advantages that
(1) electrolytic manganese anode mud is carried out manganese metal recycling directly as reactant by the present invention, and sulfuric acid is added, first with useless sugar Honey is reducing agent, then using iron powder as reducing agent, the manganese leaching rate in the earth of positive pole can be made to reach 99% or more, and blackstrap is production Waste can substantially reduce production cost, realize refuse reclamation, energy-saving ring by carrying out recycling and reusing to blackstrap It protects.
(2) lead in the earth of positive pole is all stayed in filter residue and is separated and recovered through separation, and the present invention is directly to being deposited in pressure Filter residue in filter aluminium sheet is cleaned, and treatment process is quick, and cleaning is completed to dry.
(3) present invention is handled leachate by hydrogen peroxide, organic matter therein is aoxidized, so that electrolytic manganese anode mud Electrolyte COD concentration generated is leached between 60-160mg/L, manganese electrolytic process is caused to reduce organic substance residues It influences, improves the efficiency and quality of electrolytic manganese metal.
(4) manganese electrolyte production electrolysis manganese product generated is leached with electrolytic manganese anode mud, ton product power consumption is about 6200kwh/t, energy consumption are greatly reduced, remarkable in economical benefits.
Specific embodiment
Below in conjunction with specific embodiment, the invention will be further described, but protection scope of the present invention is not limited to following reality Apply example.
Embodiment 1
A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead, comprising the following steps:
S1. electrolytic manganese anode mud and 3.5molL-1Sulfuric acid solution mixing, and 70 gL are added-1Blackstrap aqueous solution Stirring, the dosage of blackstrap are the 90% of reducing agent theoretical amount, 200 rmin of stirring rate-1, above-mentioned electrolytic manganese anode mud, In the mixture of sulfuric acid solution and blackstrap aqueous solution, liquid-solid ratio 4: 1, keeping the temperature of mixture is 70 DEG C, reaction 40min, is then added iron powder, and the dosage of iron powder is greater than the theoretical amount of remaining reducing agent, reacts 15min, use after the reaction was completed Filter press separates leachate and leached mud;
S2. H is added in leachate2O2, oxidizing condition are as follows: ρ (H2O2)/ρ (COD)=2.5, control reaction temperature are 50 DEG C, instead It is 2h between seasonable, the leachate of COD must be removed;
S3. Sodium Dimethyldithiocarbamate is added in the leachate for removing COD, and it is 5.5 ~ 6.0 that ammonium hydroxide, which is added, to adjust the pH of leachate, reaction Temperature is 50 DEG C, removes removing heavy metals, obtains purification of manganese sulfate liquid, and the electrolysis of purification of manganese sulfate liquid obtains metal manganese product.
To recycle to lead, leached mud takes out after cleaning in filter press to be dried, and obtains lead concentrate product.
Embodiment 2
A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead, comprising the following steps:
S1. electrolytic manganese anode mud and 3.5molL-1Sulfuric acid solution mixing, and 65 gL are added-1Blackstrap aqueous solution Stirring, the dosage of blackstrap are the 90% of reducing agent theoretical amount, 150 rmin of stirring rate-1, above-mentioned electrolytic manganese anode mud, In the mixture of sulfuric acid solution and blackstrap aqueous solution, liquid-solid ratio 4.2: 1, keeping the temperature of mixture is 75 DEG C, reaction 50min, is then added iron powder, and the dosage of iron powder is greater than the theoretical amount of remaining reducing agent, reacts 10min, use after the reaction was completed Filter press separates leachate and leached mud;
S2. H is added in leachate2O2, oxidizing condition are as follows: ρ (H2O2)/ρ (COD)=2, control reaction temperature are 48 DEG C, reaction Time is 2h, must remove the leachate of COD;
S3. ammonium sulfide is added in the leachate for removing COD, and it is 5.5 ~ 6.0 that ammonium hydroxide, which is added, to adjust the pH of leachate, reaction Temperature is 45 DEG C, removes removing heavy metals, obtains purification of manganese sulfate liquid, and the electrolysis of purification of manganese sulfate liquid obtains metal manganese product.
To recycle to lead, leached mud takes out after cleaning in filter press to be dried, and obtains lead concentrate product.
Embodiment 3
A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead, comprising the following steps:
S1. electrolytic manganese anode mud and 3.5molL-1Sulfuric acid solution mixing, and 70 gL are added-1Blackstrap aqueous solution Stirring, the dosage of blackstrap are the 85% of reducing agent theoretical amount, 250 rmin of stirring rate-1, above-mentioned electrolytic manganese anode mud, In the mixture of sulfuric acid solution and blackstrap aqueous solution, liquid-solid ratio 3.8: 1, keeping the temperature of mixture is 80 DEG C, reaction 30min, is then added iron powder, and the dosage of iron powder is greater than the theoretical amount of remaining reducing agent, reacts 20min, use after the reaction was completed Filter press separates leachate and leached mud, and leached mud takes out after cleaning in filter press to be dried, and lead concentrate product is obtained;
S2. H is added in leachate2O2, oxidizing condition are as follows: ρ (H2O2)/ρ (COD)=2.5, control reaction temperature are 52 DEG C, instead It is 2h between seasonable, the leachate of COD must be removed;
S3. ammonium sulfide or Sodium Dimethyldithiocarbamate is added in the leachate for removing COD, and the pH that ammonium hydroxide adjusting leachate is added is 5.5 ~ 6.0, reaction temperature is 55 DEG C, removes removing heavy metals, obtains purification of manganese sulfate liquid, and the electrolysis of purification of manganese sulfate liquid obtains manganese metal production Product.
To recycle to lead, leached mud takes out after cleaning in filter press to be dried, and obtains lead concentrate product.
Table 1

Claims (1)

1. a kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead, it is characterised in that including following step It is rapid:
S1. electrolytic manganese anode mud and 3.5molL-1Sulfuric acid solution mixing, and 70 gL are added-1The stirring of blackstrap aqueous solution, The dosage of blackstrap is the 85 ~ 90% of reducing agent theoretical amount, 190 ~ 210 rmin of stirring rate-1, above-mentioned electrolytic manganese anode In the mixture of mud, sulfuric acid solution and blackstrap aqueous solution, liquid-solid ratio 4: 1, keeping the temperature of mixture is 70 DEG C, reaction 30 Then iron powder is added in ~ 50min, the dosage of iron powder is greater than the theoretical amount of remaining reducing agent, reacts 10 ~ 20min, and reaction is completed Leachate and leached mud are separated with filter press afterwards;Leached mud takes out after cleaning in filter press to be dried, and lead concentrate product is obtained;
S2. H is added in leachate2O2, oxidizing condition are as follows: ρ (H2O2)/ρ (COD)=2.5, control reaction temperature are 50 DEG C, the reaction time For 2 ~ 2.5h, the leachate of COD must be removed;
S3. ammonium sulfide or Sodium Dimethyldithiocarbamate is added in the leachate that COD will be removed, and be added ammonium hydroxide adjust the pH of leachate be 5.5 ~ 6.0, the temperature of reaction is 45 ~ 55 DEG C, removes removing heavy metals, obtains purification of manganese sulfate liquid, and the electrolysis of purification of manganese sulfate liquid obtains manganese metal production Product.
CN201810023327.9A 2018-01-10 2018-01-10 A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead Active CN108118156B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810023327.9A CN108118156B (en) 2018-01-10 2018-01-10 A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810023327.9A CN108118156B (en) 2018-01-10 2018-01-10 A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead

Publications (2)

Publication Number Publication Date
CN108118156A CN108118156A (en) 2018-06-05
CN108118156B true CN108118156B (en) 2019-11-26

Family

ID=62233886

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810023327.9A Active CN108118156B (en) 2018-01-10 2018-01-10 A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead

Country Status (1)

Country Link
CN (1) CN108118156B (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023046725A1 (en) * 2021-09-22 2023-03-30 Eramet Metallic manganese production from ore without co2 emission

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109455677A (en) * 2018-11-27 2019-03-12 中信大锰矿业有限责任公司 The method of selenium is recycled in a kind of electrolytic manganese anolyte
CN110408786A (en) * 2019-08-29 2019-11-05 贵州大学 A kind of method that the catalysis of electrolytic manganese anode slag prepares manganese sulfate solution and recycles lead
CN112553468B (en) * 2020-12-18 2022-08-23 南方锰业集团有限责任公司 Method for producing high-purity manganese sulfate by adopting metal manganese anode mud
CN112607782B (en) * 2020-12-18 2022-10-14 南方锰业集团有限责任公司 Method for preparing battery-grade high-purity manganese sulfate by using metal manganese anode slime
CN112551591B (en) * 2020-12-18 2022-12-06 南方锰业集团有限责任公司大新锰矿分公司 Method for preparing high-purity manganese sulfate qualified liquid by electrolyzing metal manganese anode slime
CN112795773B (en) * 2020-12-18 2022-10-14 南方锰业集团有限责任公司大新锰矿分公司 Method for removing Ca and Mg in electrolytic manganese metal anode mud
CN115724470B (en) * 2022-09-26 2024-05-07 广西科技师范学院 Purification method of manganese sulfate solution

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101255497A (en) * 2008-03-31 2008-09-03 刘理方 Method for removing iron and heavy metals during process of manganese sulfate solution preparation
CN104018184A (en) * 2014-06-25 2014-09-03 张安良 Brand new method of producing electrolytic manganese metal
CN104962745A (en) * 2015-07-14 2015-10-07 广西大学 Method for resource utilization of banana stem and leaf and electrolytic manganese anode slime
CN105039703A (en) * 2015-07-08 2015-11-11 中信大锰矿业有限责任公司大新锰矿分公司 Method for recycling manganese and lead in electrolytic manganese anode mud
CN106544511A (en) * 2016-12-12 2017-03-29 株洲冶炼集团股份有限公司 A kind of method of synthetical recovery manganese, lead, silver and selenium from Manganese anode slime

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS61143527A (en) * 1984-12-14 1986-07-01 Kurita Water Ind Ltd Treatment of metal-containing water

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101255497A (en) * 2008-03-31 2008-09-03 刘理方 Method for removing iron and heavy metals during process of manganese sulfate solution preparation
CN104018184A (en) * 2014-06-25 2014-09-03 张安良 Brand new method of producing electrolytic manganese metal
CN105039703A (en) * 2015-07-08 2015-11-11 中信大锰矿业有限责任公司大新锰矿分公司 Method for recycling manganese and lead in electrolytic manganese anode mud
CN104962745A (en) * 2015-07-14 2015-10-07 广西大学 Method for resource utilization of banana stem and leaf and electrolytic manganese anode slime
CN106544511A (en) * 2016-12-12 2017-03-29 株洲冶炼集团股份有限公司 A kind of method of synthetical recovery manganese, lead, silver and selenium from Manganese anode slime

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2023046725A1 (en) * 2021-09-22 2023-03-30 Eramet Metallic manganese production from ore without co2 emission

Also Published As

Publication number Publication date
CN108118156A (en) 2018-06-05

Similar Documents

Publication Publication Date Title
CN108118156B (en) A kind of method that electrolytic manganese anode mud separation produces electrolytic manganese metal and recycles lead
CN101838736B (en) Wet separation method for valuable metals in purified liquid cobalt slags of wet zinc smelting system
CN102491287B (en) Process for separating and recovering selenium from selenium-containing material
CN106868307B (en) A kind of comprehensive utilization process of pyrite cinder arsenic removal enrichment gold and silver
JP6125458B2 (en) Resource recovery method and separation / recovery equipment from waste dry batteries
JP6070898B2 (en) Method and facility for recovering valuable components from waste dry batteries
CN101775619B (en) Clean metallurgical method for bismuth or antimony by wet process
CN105349791B (en) A kind of method of selective extraction copper in copper matte regulus material from iron
CN104120269A (en) Method for comprehensively utilizing vanadium slag
CN107557589A (en) A kind of method that valuable metal is reclaimed in the copper-cadmium slag from zinc hydrometallurgy
CN102205279B (en) Collective floatation method for recycling silvers from high leaching residues
CN103981369B (en) Comprehensive recovery process for multiple metals in arsenic-containing soot
CN107299228A (en) A kind of method that zinc hydrometallurgy purification copper ashes extracts metallic copper
CN103266226B (en) Method for extracting silver from silver-containing zinc concentrate and improving quality of zinc concentrate
CN109055764A (en) A kind of comprehensive recovering process of the low zinc material of high chlorine
CN105018726B (en) A kind of lead zinc mineral intergrowth processing method
CN108441637B (en) The method of valuable metal is recycled from the useless chip of copper indium gallium selenium solar hull cell
CN108425017B (en) The method of valuable metal is recycled from copper indium gallium selenide refuse battery chip
CN110055425A (en) A kind of electroplating sludge heavy metal resources method
CN105648225B (en) Method for separating amphoteric metal in waste circuit boards
CN108754171A (en) The method of clean and effective recycling arsenic, copper, lead, antimony, silver in cupric smelting slag
CN107416890A (en) A kind of method of refining of the tutty reclaimed from trade waste
CN107287417B (en) The comprehensive recovering process of copper, gold, silver in a kind of copper-sulphide ores
KR102678814B1 (en) Valuable metal recovery method using solvent extraction from zinc and copper waste
CN108977656A (en) A kind of lixiviation process preparation process of Zinc in Zinc Concentrates and sulphur

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
GR01 Patent grant
GR01 Patent grant
CP01 Change in the name or title of a patent holder

Address after: 532200 Shilin Road, Chongzuo City, Guangxi Zhuang Autonomous Region

Patentee after: Nanfang Manganese Industry Group Co.,Ltd.

Address before: 532200 Shilin Road, Chongzuo City, Guangxi Zhuang Autonomous Region

Patentee before: CITIC DAMENG MINING INDUSTRIES Ltd.

CP01 Change in the name or title of a patent holder