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The Influence of Trace Elements on Anaerobic Digestion Process

机译:微量元素对厌氧消化过程的影响

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The article is the literature review on the importance of trace elements supplementation in the methane fermentation process. The production of biogas, including methane, as well as the efficiency of the process depend on the substrates to be fermented. Substances supplied with the substrate as well as products generated in the decomposition phases can inhibit the process. The factor limiting fermentation is the rate of enzymatic hydrolysis of substrates. Certain compounds, such as alkanes, alkenes, biphenol, aromatic hydrocarbons, alcohols and ketones, are not directly susceptible to hydrolysis. They undergo this process in the presence of extracellular enzymes.The instability of the methane fermentation process described in the literature may be related to the lack of trace elements or micronutrients. Trace elements (Co, Ni, Cu, Mn, Fe, Zn, Se and Mo) are components of enzymes, some bacterial nucleic acids and essential for the synthesis of vitamins. The role of some trace elements, eg. Fe or Mo, has been well understood, while the importance of others still needs to be clarified. Literature data indicate that supplementing trace elements not only prevents process inhibition, but can also improve its performance by providing higher methane production.
机译:本文是有关甲烷发酵过程中微量元素补充的重要性的文献综述。沼气(包括甲烷)的产生以及过程的效率取决于要发酵的底物。随基材一起提供的物质以及在分解阶段产生的产物会抑制该过程。限制发酵的因素是底物的酶促水解速率。某些化合物,例如烷烃,烯烃,双酚,芳烃,醇和酮,不直接易水解。它们在细胞外酶的存在下经历该过程。文献中描述的甲烷发酵过程的不稳定性可能与微量元素或微量营养素的缺乏有关。微量元素(Co,Ni,Cu,Mn,Fe,Zn,Se和Mo)是酶,某些细菌核酸的成分,是维生素合成所必需的。一些微量元素的作用,例如。铁或钼已被很好地理解,而其他元素的重要性仍需澄清。文献数据表明,补充微量元素不仅可以防止过程受阻,而且还可以通过提供更高的甲烷产量来提高其性能。

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