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Optimization of Fe2+/solids content ratio for a novel sludge heavy metal bioleaching process

机译:新型污泥重金属生物浸出工艺中Fe2 + /固含量比的优化

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A novel bioleaching process, preincubation bioleaching ( PB) has been recently developed in our laboratory for decontamination of heavy- metal- laden sewage sludge by removing the toxic low molecular weight organic acids using an isolated degradative yeast species. The objective of the present study was to optimize Fe2+/solids content ratio required for removing heavy metals from sewage sludge by using this novel process at high solids content. Results from the present study showed that regardless of the Fe2+/solids content ratio iron oxidation and sludge acidification could be achieved within 2 days confirming the effectiveness of PB in reducing the inhibitory organic acids. When PB was conducted at an elevated solids content of 3%, Fe2+/solids content ratio could be reduced to 0.75:1, 1:1 and 1.25:1 for solubilization of Zn, Cu and Cr respectively. Under this optimized bioleaching conditions, the following solubilization efficiencies were obtained after 8 days of bioleaching: 100% Zn, 96% Cu, 60% Cr with no reduction in nutrient contents. Hence, bioleaching at elevated solids contents represents a more economical way for decontamination of heavy- metal- laden sewage sludge while preserving its fertility values.
机译:最近在我们的实验室中开发了一种新型的生物浸出工艺,即预培养生物浸出(PB),可通过使用分离的降解酵母菌种去除有毒的低分子量有机酸来净化重金属负载的污泥。本研究的目的是通过使用高固含量的新工艺来优化从污水污泥中去除重金属所需的Fe2 + /固含量比。本研究的结果表明,无论铁/固含量比如何,铁氧化和污泥酸化均可在2天之内完成,这证实了PB在减少抑制性有机酸方面的有效性。当PB的固含量提高3%时,Fe2 + /固含量比可分别降低至0.75:1、1:1和1.25:1,以增溶Zn,Cu和Cr。在这种优化的生物浸出条件下,经过8天的生物浸出后,可获得以下增溶效率:100%Zn,96%Cu,60%Cr,且养分含量未降低。因此,在固含量提高的情况下进行生物浸出是一种净化重金属污水污泥的更经济方法,同时又保持了其肥力。

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