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

Bibliographic Data

ID15499351
AuthorsHuayong Zhang (0000-0001-8898-8567, North China Electric Power University, corresponding author), Yanli Xu (0000-0001-8218-7195, North China Electric Power University), XU Yan-li (0000-0003-1596-0920, North China Electric Power University), Yonglan Tian (0000-0001-7117-2932, North China Electric Power University), Lei Zheng (0000-0003-4015-0110, North China Electric Power University), He Hao (0009-0002-5548-3508, North China Electric Power University), Hai Huang (0000-0001-8544-8792, North China Electric Power University)
Year2019
Volume16
Issue21
Pages4066-4066
Publication date2019-10-23
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph16214066
PMID31652708
OpenAlexW2981916197
LanguageEN
References cited46

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 4 + -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 4 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 4 + -N concentration, and increased utilization of acetate. Adding Fe into the Cd-containing fermentation system increased the absolute abundance of Methanobrevibacter on the 13th day, and Methanobrevibacter and Methanobacterium 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

Agronomy · Anaerobic exercise · Biogas · Biology · Corn stover · Fermentation · Manure · Stover · Straw · Waste management · Anaerobic Digestion and Biogas Production · Carbon Dioxide Capture Technologies · Chemistry · Membrane Separation Technologies · Food Science · Inorganic Chemistry

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Citation velocityhistorical
Highly citedNo

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