合理添加不合格面粉作为共底物提高牛粪发酵过程沼气释放量

V. Polishсhuk, S. Shvorov, S. Tarasenko, I. Antypov
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引用次数: 2

摘要

在牛粪发酵过程中,通过合理添加不合格面粉作为底物,增加沼气的释放。Nauka innov。2020.V.16,第4号。р。25-35。https://doi.org/10.15407/scin16.04.025介绍畜牧废弃物的处理和农业生产不仅能够提高环境安全,而且能够获得能源。问题陈述。牛粪被用来生产沼气,但产量相对较低。提高沼气产量的一种方法是用不合格的面粉联合发酵牛粪,这些面粉不能用作人类食物和农场动物的饲料。然而,基质中的面粉含量并不是一个解决的问题,在该含量下沼气产量最大,并且甲烷发酵过程没有受到抑制。意图通过在牛粪基质中添加不合格的面粉来提高沼气产量。材料和方法。在由工作容积为30升的甲烷罐和湿式储气罐组成的沼气厂上,在周期性基质加载和发酵温度为35°C的条件下,对添加不合格面粉的牛粪基质甲烷发酵过程中的沼气产量进行了研究。基质的部分包括1.7公斤粪肥、2.5公斤水和50、100、250或500克面粉。基质中面粉的组成分别为1.2%、2.3%、5.6%和10.6%。采用二分法确定基质中的最佳面粉含量,以获得最大的沼气产量。后果当基质中面粉含量为1.2%时,生物甲烷的最大释放量为14.3 l/kg干有机物(DOM);20.9 l/kg DOM,含量为2.3%;当基质中面粉含量为10.6%时,沼气不会燃烧,发酵很快停止。以牛粪为基质,沼气产量提高1.5倍,最佳面粉含量为3.7%。在所进行的实验研究的基础上,建立了基质逐渐加载的沼气产量模型,并确定了基质中的最佳面粉含量,从而提供了最大沼气产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Increasing the Bio Gas Release During the Cattle Manure Fermentation by Means the Rational Addition of Substandard Flour as a Cosubstrate
цитування: Polishсhuk V.M., shvorov s.A., Tarasenko s.Ye., and Antypov i.o. increasing the Biogas release During the Cattle Manure Fermentation by Means of rational Addition of substandard Flour as a Cosubstrate. Nauka innov. 2020. V. 16, no. 4. р. 25—35. https://doi.org/10.15407/scin16.04.025 Introduction. The processing of livestock waste and agricultural production enables not only improving environmental safety, but also obtaining energy resources. Problem Statement. Cow manure is used to produce biogas, but its yield is relatively low. One way to increase biogas yield is the joint fermentation of cow manure with substandard flour, which cannot be used as human food and as feed for farm animals. However, the flour content in the substrate, at which the biogas yield is maximum and there is no inhibition of the methane fermentation process, is not a solved issue. Purpose. Increase biogas yield by adding substandard flour to a cow manure-based substrate. Materials and Methods. Research of biogas yield during methane fermentation of substrate based on cow manure with the addition of substandard flour was carried out on a biogas plant consisting of a methane tank with a working volume of 30 l and wet gasholder at periodic substrate loading and fermentation temperature 35 °C. The portion of the substrate included 1.7 kg of manure, 2.5 kg of water and 50, 100, 250 or 500 g of flour. The composition of flour in the substrate was 1.2%, 2.3%, 5.6% and 10.6%. The dichotomy method was used to determine the optimal flour content in the substrate, provided the maximum biogas yield. Results. The maximum biomethane release is 14.3 l/kg dry organic matter (DOM), at 1.2% of the flour content in the substrate; 20.9 l/kg DOM, at 2.3%; 19.2 l/kg DOM, at 5.6%. At a content of 10.6% flour in the substrate, the biogas did not burn, fermentation quickly stopped. The optimum flour content in the substrate based on cow manure, in which the biogas yield increases 1.5 times, is 3.7%. Conclusions. Based on the conducted experimental studies, a model of biogas yield with gradual loading of the substrate was built and the optimal flour content in the substrate was determined, at which the maximum biogas yield is provided.
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