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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Reduction of the hydraulic retention time at constant high organic loading rate to reach the microbial limits of anaerobic digestion in various reactor systems
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Reduction of the hydraulic retention time at constant high organic loading rate to reach the microbial limits of anaerobic digestion in various reactor systems

机译:在恒定高有机加载速率下降低液压保留时间,以达到各种反应器系统中的厌氧消化的微生物限制

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摘要

The effects of hydraulic retention time (HRT) reduction at constant high organic loading rate on the activity of hydrogen-producing bacteria and methanogens were investigated in reactors digesting thin stillage. Stable isotope fingerprinting was additionally applied to assess methanogenic pathways. Based on hydA gene transcripts, Clostridiales was the most active hydrogen-producing order in continuous stirred tank reactor (CSTR), fixed-bed reactor (FBR) and anaerobic sequencing batch reactor (ASBR), but shorter HRT stimulated the activity of Spirochaetales. Further decreasing HRT diminished Spirochaetales activity in systems with biomass retention. Based on mcrA gene transcripts, Methanoculleus and Methanosarcina were the predominantly active in CSTR and ASBR, whereas Methanosaeta and Methanospirillum activity was more significant in stably performing FBR. Isotope values indicated the predominance of aceticlastic pathway in FBR. Interestingly, an increased activity of Methanosaeta was observed during shortening HRT in CSTR and ASBR despite high organic acids concentrations, what was supported by stable isotope data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在消化薄釜中的反应器中研究了液压保留时间(HRT)降低对恒高有机加载率对氢气产生细菌和甲烷的活性的影响。另外施用稳定的同位素指纹识别以评估甲烷途径。基于HydA基因转录物,梭菌是连续搅拌釜反应器(CSTR),固定床反应器(FBR)和厌氧测序批量反应器(ASBR)中最活跃的氢生产顺序,但较短的HRT刺激了螺旋血管活性。进一步降低HRT在具有生物质保留的系统中减少了螺旋体活性。基于MCRA基因转录物,Methanculleus和Methanosarcina是CSTR和ASBR中主要活性的,而甲蛋白酶和甲烷台值活性在稳定的性能下更显着。同位素值表明FBR中醋塑途径的优势。有趣的是,在CSTR和ASBR缩短HRT期间,尽管有高有机酸浓度,所以通过稳定的同位素数据支持的内容,因此观察到甲蛋白酶的活性增加。 (c)2016 Elsevier Ltd.保留所有权利。

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