固体有机废物和液体滤液的两阶段降解

V. Hovorukha
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引用次数: 1

摘要

固体和液体有机废物的积累需要对其进行处理,以发展能源生物技术,防止环境污染。的目标。本工作的目的是研究好氧氧化和甲烷发酵对溶解有机化合物滤液的净化效率。方法。采用标准方法测定了рН和氧化还原电位(Eh)、气体组成、短链脂肪酸含量、溶出有机物占总碳数的浓度。比较了两种微生物对滤液中可溶性有机物的降解效率。结果。与厌氧甲烷发酵相比,好氧氧化法对溶解有机物的去除效率提高了1.9倍。滤液的CH4产率为1 L/dm3(碳浓度- 1071 mg/L)。确定了优化滤液净化方法以提高工艺效率的必要性。结论。所获得的结果将为开发复杂的生物技术奠定基础,不仅可以通过固体食物垃圾发酵生产环境友好型能源H2,还可以通过滤液净化来解决社会的生态和能源(CH4生产)问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TWO-STAGE DEGRADATION OF SOLID ORGANIC WASTE AND LIQUID FILTRATE
The accumulation of solid and liquid organic waste requires their treatment to develop energy biotechnologies and prevent environment pollution. Aim. The goal of the work was to study the efficiency of the purification of the filtrate from dissolved organic compounds by aerobic oxidation and methane fermentation. Methods. The standard methods were used to determine рН and redox potential (Eh), the gas composition, the content of short-chain fatty acids, the concentration of dissolved organic compounds counting to the total сarbon. The efficiency of two types of microbial metabolism for the degradation of soluble organic compounds of filtrate was compared. Results. The aerobic oxidation was established to provide 1.9 times more efficient removal of dissolved organic compounds, compared with the anaerobic methane fermentation. However, it provided CH4 yield 1 L/dm3 of filtrate (сarbon concentration — 1071 mg/L). The necessity to optimize the methods for purifying filtrate to increase the efficiency of the process was determined. Conclusions. The obtained results will be the basis to develop complex biotechnology providing not only the production of environmentally friendly energy H2 via the fermentation of solid food waste, but also the purification of filtrate to solve the ecological and energy (CH4 production) problem of society.
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