Method for efficiently recycling vanadium in vanadium-containing underflow slag
The invention relates to a recycling method of vanadium, in particular to a method for efficiently recycling vanadium in vanadium-containing underflow slag. The method includes the steps of a, adding vanadium liquid with the vanadium concentration being 10-30 g.L into vanadium-containing clinkers, m...
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creator | WANG YING WAN LONGFEI DENG XIAOBO LI QIANWEN MU XIAOLING PENG YICUN HUANG JINNING |
description | The invention relates to a recycling method of vanadium, in particular to a method for efficiently recycling vanadium in vanadium-containing underflow slag. The method includes the steps of a, adding vanadium liquid with the vanadium concentration being 10-30 g.L into vanadium-containing clinkers, mixing the vanadium liquid with the vanadium-containing clinkers, carrying out leaching for the first time and obtaining vanadium-containing clinker alkaline-leaching slurry; b, mixing vanadium-containing underflow slag slurry with the vanadium-containing clinker alkaline-leaching slurry according to the mass ratio of 1 to 1-3, carrying out grinding and soaking and obtaining mixed slurry; c, carrying out suction filtration on the mixed slurry and obtaining vanadium liquid and filtration residues, wherein the vanadium liquid is used for preparing ammonium polyvanadate; and d, mixing the filtration residues with water and carrying out leaching for the second time. The method has the advantages that the reactivity |
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The method includes the steps of a, adding vanadium liquid with the vanadium concentration being 10-30 g.L<-1> into vanadium-containing clinkers, mixing the vanadium liquid with the vanadium-containing clinkers, carrying out leaching for the first time and obtaining vanadium-containing clinker alkaline-leaching slurry; b, mixing vanadium-containing underflow slag slurry with the vanadium-containing clinker alkaline-leaching slurry according to the mass ratio of 1 to 1-3, carrying out grinding and soaking and obtaining mixed slurry; c, carrying out suction filtration on the mixed slurry and obtaining vanadium liquid and filtration residues, wherein the vanadium liquid is used for preparing ammonium polyvanadate; and d, mixing the filtration residues with water and carrying out leaching for the second time. 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The method includes the steps of a, adding vanadium liquid with the vanadium concentration being 10-30 g.L<-1> into vanadium-containing clinkers, mixing the vanadium liquid with the vanadium-containing clinkers, carrying out leaching for the first time and obtaining vanadium-containing clinker alkaline-leaching slurry; b, mixing vanadium-containing underflow slag slurry with the vanadium-containing clinker alkaline-leaching slurry according to the mass ratio of 1 to 1-3, carrying out grinding and soaking and obtaining mixed slurry; c, carrying out suction filtration on the mixed slurry and obtaining vanadium liquid and filtration residues, wherein the vanadium liquid is used for preparing ammonium polyvanadate; and d, mixing the filtration residues with water and carrying out leaching for the second time. 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The method includes the steps of a, adding vanadium liquid with the vanadium concentration being 10-30 g.L<-1> into vanadium-containing clinkers, mixing the vanadium liquid with the vanadium-containing clinkers, carrying out leaching for the first time and obtaining vanadium-containing clinker alkaline-leaching slurry; b, mixing vanadium-containing underflow slag slurry with the vanadium-containing clinker alkaline-leaching slurry according to the mass ratio of 1 to 1-3, carrying out grinding and soaking and obtaining mixed slurry; c, carrying out suction filtration on the mixed slurry and obtaining vanadium liquid and filtration residues, wherein the vanadium liquid is used for preparing ammonium polyvanadate; and d, mixing the filtration residues with water and carrying out leaching for the second time. The method has the advantages that the reactivity</abstract><oa>free_for_read</oa></addata></record> |
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subjects | CHEMISTRY CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION ORPROCESSING OF GOODS FERROUS OR NON-FERROUS ALLOYS GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS METALLURGY PRETREATMENT OF RAW MATERIALS PRODUCTION AND REFINING OF METALS TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE TREATMENT OF ALLOYS OR NON-FERROUS METALS |
title | Method for efficiently recycling vanadium in vanadium-containing underflow slag |
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