4.2 Article

A new process to improve short-chain fatty acids and bio-methane generation from waste activated sludge

期刊

JOURNAL OF ENVIRONMENTAL SCIENCES
卷 43, 期 -, 页码 159-168

出版社

SCIENCE PRESS
DOI: 10.1016/j.jes.2015.10.004

关键词

Low energy consumption process; Short-chain fatty acids; Waste activated sludge; Methane generation

资金

  1. National Science Foundation of China [51408419]
  2. National Key Technology Research and Development Program of China [2014BAL02B02-03, 2014BAC29B01]
  3. Key Program for International S&T Cooperation Projects of China [2012DFG91380]

向作者/读者索取更多资源

As an important intermediate product, short-chain fatty acids (SCFAs) can be generated after hydrolysis and acidification from waste activated sludge, and then can be transformed to methane during anaerobic digestion process. In order to obtain more SCFA and methane, most studies in literatures were centered on enhancing the hydrolysis of sludge anaerobic digestion which was proved as un-efficient. Though the alkaline pretreatment in our previous study increased both the hydrolysis and acidification processes, it had a vast chemical cost which was considered uneconomical. In this paper, a low energy consumption pretreatment method, i.e. enhanced the whole three stages of the anaerobic fermentation processes at the same time, was reported, by which hydrolysis and acidification were both enhanced, and the SCFA and methane generation can be significantly improved with a small quantity of chemical input. Firstly, the effect of different pretreated temperatures and pretreatment time on sludge hydrolyzation was compared. It was found that sludge pretreated at 100 C for 60 min can achieve the maximal hydrolyzation. Further, effects of different initial pHs on acidification of the thermal pretreated sludge were investigated and the highest SCFA was observed at initial pH 9.0 with fermentation time of 6 d, the production of which was 348.63 mg COD/gVSS (6.8 times higher than the blank test) and the acetic acid was dominant acid. Then, the mechanisms for this new pretreatment significantly improving SCFA production were discussed. Finally, the effect of this low energy consumption pretreatment on methane generation was investigated. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.

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