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Responses of zinc recovery to temperature and mineral composition during sphalerite bioleaching process

机译:闪锌矿生物浸出过程中锌的回收率对温度和矿物质组成的响应

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摘要

Temperature and energy resources (e.g., iron, sulfur and organic matter) usually undergo dynamic changes, and play important roles during industrial bioleaching process. Thus, it is essential to investigate their synergistic effects and the changes of their independent effects with simultaneous actions of multi-factors. In this study, we explored the synergistic effects of temperature and original mineral compositions (OMCs, energy resources) on the sphalerite bioleaching process. The microbial community structure was monitored by 16S rRNA gene sequencing technology and showed clear segregation along temperature gradients and Shannon diversity decreased at high temperature. On the contrary, the physicochemical parameters (pH and [Fe3+]) in the leachate were significantly affected by the OMCs. Interestingly, the influence of temperature on zinc recovery was greater at relatively simpler OMCs level, whereas the influence of OMCs was stronger at lower temperature. In addition, using [Fe3+], pH, relative abundances of dominant OTUs of microbial community and temperature as variable parameters, several models were constructed to predict zinc leaching efficiency, providing a possibility to predict the metal recovery efficiency under temperature change and variable energy resources.Electronic supplementary materialThe online version of this article (doi:10.1186/s13568-017-0491-1) contains supplementary material, which is available to authorized users.
机译:温度和能量资源(例如铁,硫和有机物)通常会发生动态变化,并在工业生物浸出过程中发挥重要作用。因此,有必要研究它们的协同作用和独立作用在多因素同时作用下的变化。在这项研究中,我们探索了温度和原始矿物成分(OMC,能源)对闪锌矿生物浸出过程的协同作用。微生物群落结构通过16S rRNA基因测序技术进行监测,并显示沿温度梯度的清晰分离,高温下香农多样性下降。相反,渗滤液中的理化参数(pH和[Fe 3 + ])受到OMC的显着影响。有趣的是,温度对锌回收的影响在相对简单的OMCs水平下更大,而在较低温度下OMCs的影响更大。此外,使用[Fe 3 + ],pH,微生物群落主要OTU的相对丰度和温度作为变量参数,构建了几个模型来预测锌的浸出效率,从而提供了预测金属的可能性电子补充材料本文的在线版本(doi:10.1186 / s13568-017-0491-1)包含补充材料,授权用户可以使用。

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