4.7 Article

Inhibitory effect of oil and fat on denitrification using food waste fermentation liquid as carbon source

期刊

SCIENCE OF THE TOTAL ENVIRONMENT
卷 797, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.scitotenv.2021.149111

关键词

Food waste fermentation liquid; Denitrification; Oil; Fat; Inhibition

资金

  1. National Key Research and Develop-ment Program of China [2019YFC0408502]
  2. Key Project of Science and Technology in Anhui Province [1801041130]
  3. Research Fund Program of Guangdong Provincial Key Laboratory of Environmental Pollution Control and Remediation Technology [2020B1212060022]

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This study indicates that the presence of lipids in FWFL used as a carbon source for denitrification can inhibit the denitrification process, mainly due to sludge floatation and limited gas release caused by lipids. Therefore, it is necessary to remove fats when using FWFL as a carbon source.
Food waste fermentation liquid (FWFL) can be used as carbon source to enhance nitrogen removal in wastewater treatment. However, the influence of lipid, a common component of food waste, on denitrification remains un-clear. In this study, the effect of oil and fat on denitrification process and the underlying mechanisms were inves-tigated using synthetic oil-and fat-bearing carbon source and verified with real FWFL. In the batch experiment, oil and fat had no obvious influence on denitrification, but in the semi-continuous experiment, the denitrification rate in the oil-and fat-added assays decreased to 44% and 38% of that in the control, respectively, after 45 batches. Oil and fat caused sludge floatation, and the floating sludge thickness increased with the continuous operation. Oil/fat-sludge aggregates were observed in the floating sludge and limited gas release. Microbial community analysis indicated that oil and fat did not affect denitrifying bacteria abundance. Limitation of mass transfer might be the main reason for the inhibition of oil and fat on denitrification. In the real FWFL experiment, the de-nitrification rate in the original and emulsified oil-bearing FWFL decreased to 24% and 56% of that in the demulsifying FWFL, respectively, after 45 batches. These findings indicate the necessity of removing lipids when FWFL is used as denitrification carbon source. (c) 2021 Elsevier B.V. All rights reserved.

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