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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >UASB performance and electron competition between methane-producing archaea and sulfate-reducing bacteria in treating sulfate-rich wastewater containing ethanol and acetate
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UASB performance and electron competition between methane-producing archaea and sulfate-reducing bacteria in treating sulfate-rich wastewater containing ethanol and acetate

机译:UASB性能和产甲烷古菌与硫酸盐还原菌之间的电子竞争对含乙醇和醋酸盐的富硫酸盐废水的处理

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摘要

To find an appropriate method for sulfate-rich wastewater containing ethanol and acetate with COD/sulfate ratio of 1, a UASB reactor was operated for more than 180days. The influences of HRT (hydraulic retention time) and OLR (organic loading rate) on organics and sulfate removal, gas production, and electrons utilization were investigated. The sludge activity and microorganism composition were also determined. The results indicated that this system removed more than 80% of COD and 30% of sulfate with HRT above 6h and OLR below 12.3gCOD/Ld. Further HRT decrease caused volatile fatty acids accumulation and performance deterioration. Except at HRT of 2h, COD and electron flow were mostly utilized by methane-producing archaea (MPA), and methane yield remained in the range of 0.18-0.24LCH4/gCOD. Methane was mainly generated by Methanosaeta concilii GP6 with acetate as substrate, whereas sulfate was mainly reduced by incomplete-oxidizing Desulfovibrio species with ethanol as substrate.
机译:为了找到合适的方法处理COD /硫酸盐比为1的含有乙醇和乙酸盐的富含硫酸盐的废水,UASB反应器运行了180天以上。研究了HRT(水力停留时间)和OLR(有机负载率)对有机物和硫酸盐去除,产气和电子利用的影响。还确定了污泥活性和微生物组成。结果表明,该系统在HRT高于6h且OLR低于12.3gCOD / Ld时,去除了80%以上的COD和30%的硫酸盐。 HRT的进一步降低导致挥发性脂肪酸积累和性能下降。除了在2h的HRT以外,产甲烷的古细菌(MPA)大部分利用了COD和电子流,甲烷产率保持在0.18-0.24LCH4 / gCOD的范围内。甲烷主要由圆锥菌Methanosaeta GP6生成,以乙酸盐为底物,而硫酸盐主要通过以乙醇为底物不完全氧化脱硫弧菌而还原。

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