CN1126246A - Arylamine reduction leaching method for marine manganese nodule - Google Patents

Arylamine reduction leaching method for marine manganese nodule Download PDF

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CN1126246A
CN1126246A CN 94117547 CN94117547A CN1126246A CN 1126246 A CN1126246 A CN 1126246A CN 94117547 CN94117547 CN 94117547 CN 94117547 A CN94117547 A CN 94117547A CN 1126246 A CN1126246 A CN 1126246A
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leaching
manganese
manganese nodule
arylamine
aromatic amine
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CN1037785C (en
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孙传尧
张亚辉
王淀佐
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Beijing General Research Institute of Mining and Metallurgy
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Beijing General Research Institute of Mining and Metallurgy
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Abstract

An arylamine reduction leaching method for ocean manganese nodules relates to a method for extracting valuable metals from manganese oxide ores, in particular to ocean manganese nodules by reduction leaching. It is characterized by that it adopts arylamine compound as leaching agent. At normal temperature and pressure, the marine manganese nodule is crushed into pulp, acid and arylamine compound are added, the pulp is leached directly in a conventional leaching tank, the solid and the liquid are separated, the leaching residue is discarded, and the leaching liquid is sent to metal recovery. The reaction of reducing and acid leaching manganese oxide ore by arylamine compounds has good dynamic characteristics, high reaction speed, high leaching rate and simple equipment, so the method has practical application prospect.

Description

A kind of arylamine reduction leaching method of marine manganese nodule
The present invention relates to a kind ofly make reductive agent with aromatic amine compounds and in acidic medium, leach the particularly method of valuable metal in the marine manganese nodule of manganese oxide ore.
Marine manganese nodule is a kind of very huge prospect resource, and each ocean manganese nodule resource reserve of the world is 5,000 hundred million tons according to estimates.The treatment process of marine manganese nodule roughly can be pyrometallurgical smelting and wet method leaches two big classes.Wherein wet method leaches and to mainly contain acidleach and ammonia soaks two class methods.Manganese in the manganese nodule mainly exists with the high oxidation state of+4 valencys, and metals such as nickel, copper, cobalt exist in the oxide mineral of manganese, iron with the tax of isomorph form, therefore, reclaim valuable metals such as nickel, copper, cobalt, manganese effectively, at first must realize the decomposition of high oxidation state manganese phase.Because manganese+4 valency oxide compounds (being mainly MnO2) and dilute acid soln be difficult to reaction, needs usually to add reductive agent, make+4 valency Mn are converted into+divalent Mn just is easy to dissolve in acid medium.As United States Patent (USP) [4872909,1989] announced the manganese oxide ore acidleach method of manganese nodule especially of making reductive agent with hydrogen peroxide, slurry temperature preferably maintained normal temperature (about 25 ℃) when this method required to leach, temperature raises, metal leaching rate reduces, the hydrogen peroxide consumption increases (poor heat stability that contains hydrogen peroxide in the assorted dilute solution), and this leaching reaction is a reaction of emitting a large amount of heats, be enough to slurry temperature is raised to 45 ℃, so need to cool off ore pulp in the leaching process.And for example day disclosure special permission communique [clear 56-119743] discloses a kind of method that leaches marine manganese nodule with the sulfur dioxide gas reduction, this method is owing to will constantly feed sulfur dioxide gas when leaching in ore pulp, thereby reaction can only be carried out in encloses container, also to make slurry temperature remain on 50-100 ℃ simultaneously, so this method is not ideal enough.The intermediates that russian patent (SU1715873,1993) discloses the natural sulfide enrichment of a kind of usefulness are made the manganese nodule acidleach method of reductive agent, and this method needs ore pulp heating (90-100 ℃), and extraction time is grown (2 hours).
In order to overcome the deficiencies in the prior art, be implemented under the normal temperature and pressure conditions, in the leaching vat of routine, leach, do not need ore pulp is heated or cooling and the fast purpose of leaching velocity, provide a kind of aromatic amine compounds that adopts to make reductive agent directly leaches manganese oxide ore in acidic medium method.
Aromatic amine compounds, as aniline, Ursol D, adjacent benzene triamine, mphenylenediamine, O-Phenylene Diamine, Tolylamine and naphthylene diamine etc., all be stronger organic reducing agent, can be in acid solution (can be the acid solution of sulfuric acid, hydrochloric acid, nitric acid etc.) with the MnO2 reduction of dissolved.With aniline is example, uses H 2SO 4Make leaching agent, leach reaction:
Ni in obvious manganese, the iron oxide lattice, Cu, the high oxide of Co etc. also will be reduced dissolving.
The objective of the invention is to realize by the following technical solutions.
A kind of arylamine reduction leaching method of marine manganese nodule, comprise that ore is pulverized, slurrying, it is characterized in that: adopt aromatic amine compounds to make the reduction leaching agent, leach in acidic medium, processing condition are: the manganese nodule granularity is<0.5mm that the ore pulp liquid-solid ratio is 3: 1~10: 1, the acid consumption is 0.5~1.5g/g manganese nodule, the aromatic amine compounds consumption is 0.1~0.5g/g manganese nodule, and extraction time is 10~30 minutes, and stirring velocity is 600~1500 rev/mins.
Adopt aromatic amine compounds to make reductive agent and in acidic medium, leach marine manganese nodule, manganese wherein and the copper in the marine manganese nodule, nickel, valuable metals such as cobalt all obtain the ideal leaching yield, leaching yield reaches as high as more than 90%, the dynamics that leaches reaction is good, leaching velocity is fast, can finish leaching process at 10~30 minutes, the medicine consumption rationally, do not need the ore pulp heating is leached exothermic heat of reaction and made the slurry temperature rising can activate leaching process, need not cool off, reacting no obnoxious flavour emits, can realize leaching process under the normal temperature and pressure in conventional leaching vat, equipment is simple, therefore has prospects for commercial application.
The present invention is further illustrated below in conjunction with embodiment.
Implementation method of the present invention is that the maximum particle size after pulverizing is no more than 0.5mm, preferably-marine manganese nodule material that 0.074mm accounts for 40-90% sizes mixing, the liquid-solid ratio that makes slip is 3: 1-10: 1, under normal temperature (room temperature) normal pressure (room atmosphere pressure) condition, add acid and aromatic amine compounds simultaneously, the acid consumption is 0.5-1.5g/g manganese nodule (consumption of acid depends on the grade of valuable metal in sour kind and the manganese nodule), the aromatic amine compounds consumption is the 0.1-0.5g/g manganese nodule, stirring velocity is 600-1500 rev/min, after in conventional (uncovered) leaching vat, directly leaching 10-30 minute, carry out liquid-solid separation, abandon and soak slag, leach liquor gives next step metal recovery.
Embodiment 1
The marine manganese nodule material grain that crushes accounts for 65%, contains M10.35%, Cu0.40%, Ni0.66%, Co0.32% for-0.074mm.Extraction temperature is 19 ℃, and pressure is normal atmosphere.Experimental result sees Table 1.
Embodiment 2
The marine manganese nodule material grain that crushes accounts for 72%, contains Mn14.21%, Cu0.34%, Ni0.58%, Co0.27% for-0.074mm.Extraction temperature is 24 ℃, and pressure is normal atmosphere.Experimental result sees Table 2.
Embodiment 3
The marine manganese nodule material grain that crushes accounts for 65%, contains Mn10.35%, Cu0.40%, Ni0.66%, Co0.32% for-0.074mm.21 ℃ of extraction temperatures, pressure are normal atmosphere.Experimental result sees Table 3.
Table 1
Figure A9411754700051
Annotate: reductive agent is an aniline in the table, consumption unit: the g/g manganese nodule,
Acid is sulfuric acid, consumption unit: the g/g manganese nodule,
Stirring velocity unit: rev/min,
Extraction time unit: minute.
Table 2
Annotate: reductive agent is an O-Phenylene Diamine in the table, consumption unit: the g/g manganese nodule
Acid is sulfuric acid, consumption unit: the g/g manganese nodule,
Stirring velocity unit: rev/min,
Extraction time unit: minute.
Table 3
Annotate: reductive agent is a mphenylenediamine in the table, consumption unit: the g/g manganese nodule,
Acid is sulfuric acid, consumption unit: the g/g manganese nodule,
Stirring velocity unit: rev/min,
Extraction time unit: minute.

Claims (5)

1. the arylamine reduction leaching method of a marine manganese nodule comprises that ore is pulverized, slurrying, it is characterized in that: adopt aromatic amine compounds to make the reduction leaching agent, in acidic medium, leach,
Processing condition are: the granularity of marine manganese nodule is<0.5mm,
The ore pulp liquid-solid ratio is 3: 1~10: 1,
The acid consumption is 0.5~1.5g/g manganese nodule,
The aromatic amine compounds consumption is 0.1~0.5g/g manganese nodule,
Extraction time is 10~30 minutes,
Stirring velocity is 600~1500 rev/mins.
2. method according to claim 1 is characterized in that described aromatic amine compounds is an aniline.
3. method according to claim 1 is characterized in that described aromatic amine compounds is a mphenylenediamine.
4. method according to claim 1 is characterized in that described aromatic amine compounds is an O-Phenylene Diamine.
5. method according to claim 1 is characterized in that preferably sulfuric acid of described acidic medium.
CN94117547A 1994-10-28 1994-10-28 Arylamine reduction leaching method for marine manganese nodule Expired - Fee Related CN1037785C (en)

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CN94117547A CN1037785C (en) 1994-10-28 1994-10-28 Arylamine reduction leaching method for marine manganese nodule

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CN1037785C CN1037785C (en) 1998-03-18

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1046965C (en) * 1994-10-28 1999-12-01 北京矿冶研究总院 Phenol reduction leaching method of manganese oxide ore
CN108910958A (en) * 2018-07-17 2018-11-30 重庆上甲电子股份有限公司 A method of manganese sulfate is produced using aniline reduction electrolytic manganese anode mud
CN108910956A (en) * 2018-07-17 2018-11-30 重庆上甲电子股份有限公司 A method of soft magnetism mangano-manganic oxide is produced using aniline reduction electrolytic manganese anode mud
CN109097578A (en) * 2018-07-17 2018-12-28 重庆上甲电子股份有限公司 A method of manganese carbonate is produced using aniline reduction electrolytic manganese anode mud
CN115140777A (en) * 2022-07-13 2022-10-04 重庆上甲电子股份有限公司 Method for producing ferromanganese composite material for soft magnetism by using ocean manganese nodules

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2025165C (en) * 1990-09-13 1997-11-25 Edmond K. Lam Removal of molybdenum from uranium-bearing solutions

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1046965C (en) * 1994-10-28 1999-12-01 北京矿冶研究总院 Phenol reduction leaching method of manganese oxide ore
CN108910958A (en) * 2018-07-17 2018-11-30 重庆上甲电子股份有限公司 A method of manganese sulfate is produced using aniline reduction electrolytic manganese anode mud
CN108910956A (en) * 2018-07-17 2018-11-30 重庆上甲电子股份有限公司 A method of soft magnetism mangano-manganic oxide is produced using aniline reduction electrolytic manganese anode mud
CN109097578A (en) * 2018-07-17 2018-12-28 重庆上甲电子股份有限公司 A method of manganese carbonate is produced using aniline reduction electrolytic manganese anode mud
CN115140777A (en) * 2022-07-13 2022-10-04 重庆上甲电子股份有限公司 Method for producing ferromanganese composite material for soft magnetism by using ocean manganese nodules
CN115140777B (en) * 2022-07-13 2023-04-25 重庆上甲电子股份有限公司 Method for producing ferromanganese composite material for soft magnetic by utilizing ocean manganese nodule

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