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Wood ash amendment to biogas reactors as an alternative to landfilling? A preliminary study on changes in process chemistry and biology

机译:沼气反应堆的木灰替代品可以代替垃圾填埋场?过程化学和生物学变化的初步研究

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摘要

Wood ash addition to biogas plants represents an alternative to commonly used landfilling by improving the reactor performance, raising the pH and alleviating potential limits of trace elements. This study is the first on the effects of wood ash on reactor conditions and microbial communities in cattle slurry-based biogas reactors. General process parameters [temperature, pH, electrical conductivity, ammonia, volatile fatty acids, carbonitrogen (C/N), total solids (TS), volatile solids, and gas quantity and quality] were monitored along with molecular analyses of methanogens by polymerase chain reaction- denaturing gradient gel electrophoresis and modern microarrays (archaea and bacteria). A prompt pH rise was observed, as was an increase in C/N ratio and volatile fatty acids. Biogas production was inhibited, but recovered to even higher production rates and methane concentration after single amendment. High sulphur levels in the wood ash generated hydrogen sulphide and potentially hampered methanogenesis. Methanosarcina was the most dominant methanogen in all reactors; however, diversity was higher in ash-amended reactors. Bacterial groups like Firmicutes, Proteobacteria and Acidobacteria were favoured, which could improve the hydrolytic efficiency of the reactors. We recommend constant monitoring of the chemical composition of the used wood ash and suggest that ash amendment is adequate if added to the substrate at a rate low enough to allow adaptation of the microbiota (e.g. 0.25 g g~(-1) TS). It could further help to enrich digestate with important nutrients, for example phosphorus, calcium and magnesium, but further experiments are required for the evaluation of wood ash concentrations that are tolerable for anaerobic digestion.
机译:通过向沼气厂添加木灰,可以提高反应器性能,提高pH值并减轻痕量元素的潜在限量,从而替代了常用的垃圾填埋场。这项研究是首次关于木灰对基于牛粪便的沼气反应器中反应器条件和微生物群落的影响。监测一般工艺参数[温度,pH,电导率,氨,挥发性脂肪酸,碳/氮(C / N),总固体(TS),挥发性固体以及气体的数量和质量],并通过以下方法对产甲烷菌进行分子分析:聚合酶链反应变性梯度凝胶电泳和现代微阵列(古细菌和细菌)。观察到pH迅速升高,C / N比和挥发性脂肪酸升高。沼气生产受到抑制,但在单次修改后恢复到更高的生产率和甲烷浓度。木灰中的高硫含量会产生硫化氢,并有可能阻碍甲烷生成。甲烷八叠球菌是所有反应堆中最主要的产甲烷菌。但是,经过灰分修正的反应堆的多样性更高。细菌类如Firmicutes,Proteobacteria和Acidobacteria受到青睐,这可以提高反应器的水解效率。我们建议持续监控用过的木灰的化学成分,并建议如果以足够低的速率(例如0.25 g g〜(-1)TS)适应微生物,将灰分改良剂添加到基质中就足够了。它可以进一步帮助丰富消化液中的重要营养素,例如磷,钙和镁,但是需要进一步的实验来评估可耐受厌氧消化的木灰浓度。

著录项

  • 来源
    《Waste management & research》 |2013年第8期|829-842|共14页
  • 作者单位

    University of Innsbruck, Institute of Microbiology, Technikerstrasse 25d, 6020 Innsbruck, Austria;

    University of Innsbruck, Institute of Microbiology, Innsbruck, Austria;

    University of Innsbruck, Institute of Microbiology, Innsbruck, Austria;

    UMR CNRS 6023, Universite Blaise Pascal, Clermont-Ferrand,France,Clermont Universite, Universite d'Auvergne, Laboratoire Microorganismes: Genome et Environnement, Clermont-Ferrand,France;

    UMR CNRS 6023, Universite Blaise Pascal, Clermont-Ferrand,France,Clermont Universite, Universite d'Auvergne, Laboratoire Microorganismes: Genome et Environnement, Clermont-Ferrand,France;

    UMR CNRS 6023, Universite Blaise Pascal, Clermont-Ferrand,France,Clermont Universite, Universite d'Auvergne, Laboratoire Microorganismes: Genome et Environnement, Clermont-Ferrand,France;

    University of Innsbruck, Institute of Microbiology, Innsbruck, Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biogas reactor performance; substrate additive; wood-ash amendment; microbial communities; denaturing gradient gel electrophoresis; DNA microarrays;

    机译:沼气反应器性能;底材添加剂;木灰修正案;微生物群落;变性梯度凝胶电泳;DNA微阵列;
  • 入库时间 2022-08-17 13:41:18

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