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Impact of Fe and Ni Addition on the VFAs’ Generation and Process Stability of Anaerobic Fermentation Containing Cd

机译:铁和镍的添加对含镉厌氧发酵物中挥发性脂肪酸的产生和工艺稳定性的影响

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摘要

The effects of Cd, Cd + Fe, and Cd + Ni on the thermophilic anaerobic fermentation of corn stover and cow manure were studied in pilot experiments by investigating the biogas properties, process stability, substrate biodegradation, and microbial properties. The results showed that the addition of Fe and Ni into the Cd-containing fermentation system induced higher cumulative biogas yields and NH –N concentrations compared with the only Cd-added group. Ni together with Cd improved and brought forward the peak daily biogas yields, and increased the CH contents to 80.76%. Taking the whole fermentation process into consideration, the promoting impact of the Cd + Ni group was mainly attributed to better process stability, a higher average NH –N concentration, and increased utilization of acetate. Adding Fe into the Cd-containing fermentation system increased the absolute abundance of on the 13th day, and and were found to be positively correlated with the daily biogas yield. This research was expected to provide a basis for the reuse of biological wastes contaminated by heavy metals and a reference for further studies on the influence of compound heavy metals on anaerobic fermentation.
机译:通过研究沼气特性,工艺稳定性,底物生物降解性和微生物特性,在中试实验中研究了Cd,Cd + Fe和Cd + Ni对玉米秸秆和牛粪的高温厌氧发酵的影响。结果表明,与仅添加Cd的组相比,将Fe和Ni添加到含Cd的发酵系统中会引起更高的累积沼气产量和NH-N浓度。 Ni与Cd一起改善并提高了每日最高沼气产量,并将CH含量提高到80.76%。考虑到整个发酵过程,Cd + Ni组的促进作用主要归因于更好的过程稳定性,更高的平均NH -N浓度和增加的乙酸盐利用率。在含镉的发酵系统中添加铁会增加第13天的绝对丰度,并且发现其与每日沼气产量呈正相关。该研究有望为重金属污染的生物废物的再利用提供基础,并为进一步研究复合重金属对厌氧发酵的影响提供参考。

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