首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Improved methanization and microbial diversity during batch mode cultivation with repetition of substrate addition using defined organic matter and marine sediment inoculum at seawater salinity
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Improved methanization and microbial diversity during batch mode cultivation with repetition of substrate addition using defined organic matter and marine sediment inoculum at seawater salinity

机译:在批量模式培养期间改善甲烷化和微生物多样性,并在海水盐度使用定义的有机物质和海洋沉积物的重复进行底物添加

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摘要

The activation of microbes, which are needed to initiate continuous methane production, can be accomplished by fed-batch methanization. In the present study, marine sediment inoculum was activated by batch mode methanization with repetition of substrate addition using defined organic matter from sugar, protein, or fat at seawater salinity to investigate the potential for application of the activation method to various types of saline waste and microbial community compositions. All substrates had methane potentials close to the theoretical value except for bovine serum albumin (BSA) whose methane potential was lower, but the maximum methane potential reached the value during repeated methanization. Beta diversity analysis revealed that substrate (especially BSA)-fed and non-fed cultures had distinct microbial community compositions. Bacterial members depended on substrate. Thus, marine sediment inocula activated via the methanization method can be used to effectively treat various types of saline waste.
机译:可以通过FED-批烷化来实现所需的微生物的激活,所述微生物需要连续甲烷生产。在本研究中,通过在海水盐度下使用来自糖,蛋白质或脂肪的含有定义的有机物质的批次模式甲烷化的海洋沉积物接种物在海水盐度下的脂肪,以研究激活方法在各种类型的盐水废物中施加潜力微生物群落组合物。除了甲烷电位较低的牛血清白蛋白(BSA)之外,所有基材都具有接近理论值的甲烷电位,但最大甲烷电位在重复甲烷化期间达到了该值。 β多样性分析表明,底物(特别是BSA)和非喂养培养物具有不同的微生物群落组合物。细菌构件依赖于基材。因此,通过甲烷化方法激活的海洋沉积物接种物可用于有效处理各种类型的盐水废物。

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