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通过引入不同的功能性氧化剂对浸出体系进行黄铜矿生物浸出。

Chalcopyrite bioleaching of an leaching system by introducing different functional oxidizers.

作者信息

Huang Caoming, Qin Chong, Feng Xue, Liu Xueduan, Yin Huaqun, Jiang Luhua, Liang Yili, Liu Hongwei, Tao Jiemeng

机构信息

School of Minerals Processing and Bioengineering, Central South University Changsha 410083 China

China Nonferrous Metal Mining (Group) Co., Ltd. Beijing China.

出版信息

RSC Adv. 2018 Nov 2;8(65):37040-37049. doi: 10.1039/c8ra07085g. eCollection 2018 Nov 1.

Abstract

Introducing exogenous species to an indigenous microbial community is an effective way to reveal the connections between metabolic processes, ecological function and microbial community structure. Herein, three different functional consortia (ferrous oxidizers, sulfur oxidizers and ferrous/sulfur oxidizers) were added to a natural leaching solution system derived from Zijin copper mine, China. The leaching experiment showed that the copper extraction rate of the community invaded by a sulfur-oxidizing consortium was 50.40% higher than that of the indigenous leachate at the endpoint of bioleaching. The variations of ferrous content, total iron, pH and redox potential in leachates also provided evidence that the community with exogenous sulfur oxidizers was more efficient. XRD analysis demonstrated that a proper addition of the sulfur-oxidizing consortium could eliminate sulfur passivation, promote production of chalcocite and enhance leaching. Furthermore, an exogenous ferrous-oxidizing consortium and a sulfur-oxidizing consortium greatly changed the community structure and microbial succession and promoted the cell growth rate during the bioleaching process, while ferrous/sulfur oxidizers showed no obvious effects on the indigenous community. Exogenous ferrous oxidizers, mainly , and sulfur oxidizers, mainly , successfully established and colonized in the indigenous community. However, only colonized , rather than , showed advantageous enhancement in the dissolution of chalcopyrite. Results indicated that exogenous sulfur oxidizer , which was scarce in the indigenous community, could easily colonize in the indigenous community, significantly change the community structure, sufficiently execute its function, and greatly enhance copper dissolution.

摘要

将外来物种引入本地微生物群落是揭示代谢过程、生态功能和微生物群落结构之间联系的有效方法。在此,将三种不同的功能菌群(亚铁氧化菌、硫氧化菌和亚铁/硫氧化菌)添加到源自中国紫金铜矿的天然浸出液系统中。浸出实验表明,在生物浸出终点时,被硫氧化菌群入侵的群落的铜提取率比原生浸出液高50.40%。浸出液中亚铁含量、总铁、pH值和氧化还原电位的变化也证明了含有外源硫氧化菌的群落效率更高。X射线衍射分析表明,适当添加硫氧化菌群可以消除硫钝化,促进辉铜矿的生成并增强浸出效果。此外,外源亚铁氧化菌群和硫氧化菌群在生物浸出过程中极大地改变了群落结构和微生物演替,并提高了细胞生长速率,而亚铁/硫氧化菌对原生群落没有明显影响。外源亚铁氧化菌主要是 ,硫氧化菌主要是 ,成功在原生群落中建立并定殖。然而,只有 定殖,而不是 ,在黄铜矿溶解方面表现出有利的增强。结果表明,在原生群落中稀缺的外源硫氧化菌 ,能够轻易地在原生群落中定殖,显著改变群落结构,充分发挥其功能,并极大地增强铜的溶解。

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