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Potentialities of coupling biological processes (biotrickler/biofilter) for the degradation of a mixture of sulphur compounds

机译:耦合生物过程(生物滴流器/生物滤池)降解含硫化合物混合物的潜力

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摘要

This study deals with the potential of biological processes combining a biotrickler and a biofilter to treat a mixture of sulphur-reduced compounds including dimethyl sulphide (DMS), dimethyl disulphide (DMDS) and hydrogen sulphide (H2S). As a reference, duplicated biofilters were implemented, and operating conditions were similar for all bioprocesses. The first step of this work was to determine the efficiency removal level achieved for each compound of the mixture and in a second step, to assess the longitudinal distribution of biodegradation activities and evaluate the total bacteria, Hyphomicrobium sp. and Thiobacillus thioparus densities along the bed height. A complete removal of hydrogen sulphide is reached at the start of the experiment within the first stage (biotrickler) of the coupling. This study highlighted that the coupling of a biotrickling filter and a biofilter is an interesting way to improve both removal efficiency levels (15-20 % more) and kinetics of recalcitrant sulphur compounds such as DMS and DMDS. The total cell densities remained similar (around 1 x 10(10) 16S recombinant DNA (rDNA) copies g dry packing material) for duplicated biofilters and the biofilter below the biotrickling filter. The relative abundances of Hyphomicrobium sp. and T. thioparus have been estimated to an average of 10 +/- 7.0 and 0.23 +/- 0.07 %, respectively, for all biofilters. Further investigation should allow achieving complete removal of DMS by starting the organic sulphur compound degradation within the first stage and surveying microbial community structure colonizing this complex system.
机译:这项研究探讨了结合生物滴流器和生物滤池处理包括二甲基硫(DMS),二甲基二硫化物(DMDS)和硫化氢(H2S)在内的硫还原化合物混合物的生物工艺的潜力。作为参考,实施了重复的生物过滤器,并且所有生物过程的操作条件均相似。这项工作的第一步是确定混合物中每种化合物的去除效率,第二步是评估生物降解活性的纵向分布并评估细菌总数Hyphomicrobium sp。和沿床高的硫杆菌硫杆菌的密度。在实验开始时,在偶联的第一阶段(生物滴流仪)中完全去除了硫化氢。这项研究强调,生物滴滤池和生物滤池的耦合是提高去除效率(提高15-20%)和顽固硫化合物(如DMS和DMDS)动力学的有趣方法。对于重复的生物滤池和生物滴滤池下方的生物滤池,总细胞密度保持相似(大约1 x 10(10)16S重组DNA(rDNA)拷贝g干包装材料)。 Hyphomicrobium sp。的相对丰度。对于所有生物滤池,T。thioparus和T. thioparus的平均估计分别为10 +/- 7.0和0.23 +/- 0.07%。进一步的研究应通过在第一阶段开始降解有机硫化合物并调查定居在此复杂系统中的微生物群落结构,来实现DMS的完全去除。

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