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首页> 外文期刊>Applied Microbiology and Biotechnology >Reduction of produced elementary sulfur in denitrifying sulfide removal process
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Reduction of produced elementary sulfur in denitrifying sulfide removal process

机译:在脱氮脱硫过程中减少产生的元素硫

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Denitrifying sulfide removal (DSR) processes simultaneously convert sulfide, nitrate, and chemical oxygen demand from industrial wastewater into elemental sulfur, dinitrogen gas, and carbon dioxide, respectively. The failure of a DSR process is signaled by high concentrations of sulfide in reactor effluent. Conventionally, DSR reactor failure is blamed for overcompetition for heterotroph to autotroph communities. This study indicates that the elementary sulfur produced by oxidizing sulfide that is a recoverable resource from sulfide-laden wastewaters can be reduced back to sulfide by sulfur-reducing Methanobacterium sp. The Methanobacterium sp. was stimulated with excess organic carbon (acetate) when nitrite was completely consumed by heterotrophic denitrifiers. Adjusting hydraulic retention time of a DSR reactor when nitrite is completely consumed provides an additional control variable for maximizing DSR performance.
机译:反硝化脱硫(DSR)工艺同时将工业废水中的硫化物,硝酸盐和化学需氧量分别转化为元素硫,二氮气和二氧化碳。 DSR工艺失败的原因是反应器流出物中的硫化物浓度高。通常,将DSR反应堆故障归咎于异养生物与自养生物的过度竞争。这项研究表明,氧化硫产生的元素硫可以通过还原硫的甲烷杆菌种还原为硫化物,而硫化硫是含硫化物废水的可回收资源。甲烷杆菌属。当亚硝酸盐被异养反硝化器完全消耗时,用过量的有机碳(乙酸盐)刺激碳。完全消耗亚硝酸盐时,调整DSR反应器的水力停留时间可提供一个附加的控制变量,以最大化DSR性能。

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