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Degradation of detergent (linear alkylbenzene sulfonate) in an anaerobic stirred sequencing-batch reactor containing granular biomass

机译:含颗粒生物质的厌氧搅拌定序分批反应器中洗涤剂(线性烷基苯磺酸盐)的降解

摘要

This study aimed to determine the efficiency of an anaerobic stirred sequencing-batch reactor containing granular biomass for the degradation of linear alkylbenzene sulfonate (LAS), a surfactant present in household detergent. The bioreactor was monitored for LAS concentrations in the influent, effluent and sludge, pH, chemical oxygen demand, bicarbonate alkalinity, total solids, and volatile solids. The degradation of LAS was found to be higher in the absence of co-substrates (53%) than in their presence (24-37%). Using the polymerase chain reaction and denaturing gradient gel electrophoresis (PCR/DGGE), we identified populations of microorganisms from the Bacteria and Archaea domains. Among the bacteria, we identified uncultivated populations of Arcanobacterium spp. (94%) and Opitutus spp. (96%). Among the Archaea, we identified Methanospirillum spp. (90%), Methanosaeta spp. (98%), and Methanobacterium spp. (96%). The presence of methanogenic microorganisms shows that LAS did not inhibit anaerobic digestion. Sampling at the last stage of reactor operation recovered 61 clones belonging to the domain bacteria. These represented a variety of phyla: 34% shared significant homology with Bacteroidetes, 18% with Proteobacteria, 11% with Verrucomicrobia, 8% with Fibrobacteres, 2% with Acidobacteria, 3% with Chlorobi and Firmicutes, and 1% with Acidobacteres and Chloroflexi. A small fraction of the clones (13%) were not related to any phylum. Published by Elsevier Ltd.
机译:这项研究旨在确定包含颗粒状生物质的厌氧搅拌顺序分批反应器对线性烷基苯磺酸盐(LAS)(家用洗涤剂中存在的表面活性剂)的降解效率。监测生物反应器中进水,出水和污泥中的LAS浓度,pH,化学需氧量,碳酸氢盐碱度,总固体和挥发性固体。发现在不存在共底物的情况下,LAS的降解程度较高(53%),而在存在共基质的情况下(24-37%)则更高。使用聚合酶链反应和变性梯度凝胶电泳(PCR / DGGE),我们从细菌和古细菌域中鉴定出微生物种群。在细菌中,我们确定了未培养的Arcanobacterium spp种群。 (94%)和Opitutus spp。 (96%)。在古细菌中,我们鉴定了Methanospirillum spp。 (90%),甲烷菌属。 (98%)和甲烷杆菌属。 (96%)。产甲烷微生物的存在表明,LAS不抑制厌氧消化。在反应堆操作的最后阶段进行采样,回收了61个属于该领域细菌的克隆。这些代表了各种各样的门:34%与拟杆菌属具有显着同源性,18%与变形杆菌,11%与疣状微生物,8%与纤维杆菌,2%与嗜酸菌,3%与梭菌和Firmicutes以及1%与嗜酸杆菌和绿藻。一小部分克隆(13%)与任何门都不相关。由Elsevier Ltd.发布

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