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阶段中和沉淀——浮选法处理铜矿酸性矿坑废水的研究
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作者 周志良 《环境工程》 CAS CSCD 北大核心 1991年第4期1-2,共2页
本文对某铜矿含铜、铁和硫酸根离子酸性矿坑废水的处理进行了系统的试验研究。提出了阶段中和沉淀—浮选法处理上述废水的新方法,该法不仅能有效地处理废水,而且还综合回收了氢氧化铜、氢氢化铁和化学石膏等3种副产品。
关键词 矿坑废水 铜矿酸性废水 浮选法
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铜矿山酸性废水中和渣物性分析及浸出特性研究 被引量:4
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作者 胡深 张勤 +2 位作者 刘子龙 杨洪英 佟琳琳 《有色金属(冶炼部分)》 CAS 北大核心 2021年第7期110-115,共6页
针对处理某矿山酸性废水后得到的有价元素种类多、含量低的难处理中和渣进行XRF、XRD、激光粒度检测、SEM-EDS等技术分析,并对中和渣进行了硫酸浸出性研究,对浸出渣进行了浸出毒性探究。分析结果表明,中和渣所含主要元素为Ca(40.67%)、F... 针对处理某矿山酸性废水后得到的有价元素种类多、含量低的难处理中和渣进行XRF、XRD、激光粒度检测、SEM-EDS等技术分析,并对中和渣进行了硫酸浸出性研究,对浸出渣进行了浸出毒性探究。分析结果表明,中和渣所含主要元素为Ca(40.67%)、Fe(5.79%)、Cu(2.43%)、Zn(0.13%)、Ni(0.056%)、As(0.009%);渣中主要为金属氧化物、氢氧化物、硫酸盐、硅酸盐和砷酸盐等物质混合物,主要物相为CaSO_(4)、Ca_(6)Fe_(2)(SO_(4))_(2)、CaO、CuAlO_(2)、Fe_(2)O_(3)、Fe(OH)_(3)、FeAsO_(4)、CuO、Cu(OH)_(2)、ZnO;中和渣粒径5.00~75.00μm。浸出试验表明,在硫酸体积浓度10%、液固比6∶1、浸出温度25℃、浸出时间180min的条件下,Cu、Fe、As、Zn、Ni浸出率分别达到99.42%、96.71%、88.89%、99.23%、98.21%。浸出毒性试验结果表明,浸出渣Ni、Cu、As含量达标,可无毒排放。 展开更多
关键词 铜矿酸性废水 中和渣 物性 浸出特性 无毒排放
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含铜酸性废水硫化沉淀高浓度调浆的试验研究 被引量:11
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作者 陈明 黄万抚 倪文 《金属矿山》 CAS 北大核心 2006年第9期81-83,共3页
针对含铜矿山酸性废水酸性强和铜、铁含量高的特点,采用硫化沉淀结合高浓度调浆技术进行处理,不仅使处理后的水可以达标排放或回用,还可有效回收废水中的铜,降低处理成本。
关键词 铜矿酸性废水 硫化沉淀 高浓度调浆
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硫酸盐还原菌(SRB)处理废水的研究进展与现状 被引量:12
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作者 朱振兴 吴少林 张婷 《江西化工》 2008年第1期18-21,共4页
硫酸盐还原菌(SRB)是一类利用硫酸盐或者其他氧化态硫化物作为电子受体来异化有机物质的严格厌氧菌。介绍了SRB的生理特性,在阐明SRB降解水中污染物原理的基础上,充分探讨了SRB在处理重金属废水、矿山酸性废水、无机和有机废水中的应用... 硫酸盐还原菌(SRB)是一类利用硫酸盐或者其他氧化态硫化物作为电子受体来异化有机物质的严格厌氧菌。介绍了SRB的生理特性,在阐明SRB降解水中污染物原理的基础上,充分探讨了SRB在处理重金属废水、矿山酸性废水、无机和有机废水中的应用现状及研究进展。 展开更多
关键词 硫酸盐还原菌 铜矿酸性废水 废水处理
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Acid mine drainage activation mechanism on lime-depressed pyrite flotation from copper sulfide ore
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作者 Jia-qiao YUAN Zhan DING +3 位作者 Yun-xiao BI Jie LI Shu-ming WEN Shao-jun BAI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第9期2987-3001,共15页
The lime-depressed pyrite from Cu differential flotation tailings with acid mine drainage(AMD)as a natural activator was recovered.The effect of AMD on lime-depressed pyrite flotation was investigated by a series of l... The lime-depressed pyrite from Cu differential flotation tailings with acid mine drainage(AMD)as a natural activator was recovered.The effect of AMD on lime-depressed pyrite flotation was investigated by a series of laboratory flotation tests and surface analytical techniques.Flotation test results indicated that AMD could effectively activate the pyrite flotation with a sodium butyl xanthate(SBX)collector,and a high-quality sulfur concentrate was obtained.Pulp ion concentration analysis results indicated that AMD facilitated desorption of Ca^(2+)and adsorption of Cu^(2+)on the depressed-pyrite surface.Adsorption measurements and contact angle analysis results confirmed that adding AMD improved the adsorption amount of SBX collector on the pyrite surface and increased the contact angle by 31°.Results of Raman spectroscopy and X-ray photoelectron spectroscopy analysis indicated that AMD treatment promoted the formation of hydrophobic species(S^(0) hydrophobic entity and copper sulfides)and the removal of hydrophilic calcium and iron species on the pyrite surface,which reinforced the adsorption of collector.The findings of the present research provide important theoretical basis and technical support for a cleaner production of copper sulfide ores. 展开更多
关键词 copper sulfur ore acid mine drainage lime-depressed pyrite FLOTATION natural activator activation mechanism
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Bioleaching of chalcocite by mixed microorganisms subjected to mutation 被引量:2
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作者 康健 邱冠周 +3 位作者 高健 王海华 吴学玲 丁建南 《Journal of Central South University》 SCIE EI CAS 2009年第2期218-222,共5页
Mixed microorganisms with elevated activity of chalcocite-leaching were screened by mutation methods. The original microorganisms collected from acid mine drainage of different sites were mixed and then treated with m... Mixed microorganisms with elevated activity of chalcocite-leaching were screened by mutation methods. The original microorganisms collected from acid mine drainage of different sites were mixed and then treated with mutagens NO2^- , diethyl sulfate (DES), UV and their combinations, respectively. Five groups of mixed microorganisms with much stronger ore-leaching ability were obtained by screening on the leaching media. Among them, group E of mixed microorganisms (treated with 1% DES for 60 min) with the best perfonnance on chalcocite-leaching, increases the content of Cu^2+ by 101.4% in 20 d of leaching compared with the control culture. In addition, group E is more tolerant to Cu^2+ in media than the control without mutation treatment. Analysis for the diversity of microbial clones indicates that half of operational taxonomic units (OTUs) in group E are Acidithiobacillus ferrooxidans. These observations suggest that group E might have potentials for industrial application. 展开更多
关键词 CHALCOCITE mixed microorganisms BIOLEACHING MUTATION
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