D
Dongsheng Shen
Researcher at Zhejiang Gongshang University
Publications - 200
Citations - 4451
Dongsheng Shen is an academic researcher from Zhejiang Gongshang University. The author has contributed to research in topics: Chemistry & Leachate. The author has an hindex of 28, co-authored 175 publications receiving 3008 citations.
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Journal ArticleDOI
Anaerobic digestion of food waste for volatile fatty acids (VFAs) production with different types of inoculum: Effect of pH
TL;DR: The results showed that food waste hydrolysis increased obviously when Inoculum AN was used relative to Inocula AE at any pH investigated, and uncontrolled pH was higher than that at other pHs when either inoculum was used.
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Improving production of volatile fatty acids from food waste fermentation by hydrothermal pretreatment
TL;DR: Food waste was pretreated by a hydrothermal method and then fermented for volatile fatty acid (VFAs) production and VFA production from pretreated FW fermentation was significantly enhanced compared with the control.
Journal ArticleDOI
Enhancement of acidogenic fermentation for volatile fatty acid production from food waste: Effect of redox potential and inoculum.
TL;DR: It is concluded that appropriate ORP level (from -100 to -200mV) and inoculum play essential roles in VFA production.
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Acidogenic fermentation characteristics of different types of protein-rich substrates in food waste to produce volatile fatty acids.
TL;DR: The results showed HT pretreatment could improve the VFA production of tofu but not for egg white, and the optimum VFA yields were 0.46g/gVS (tofu with HT) and 0.26g/ gVS (egg white without HT), respectively.
Journal ArticleDOI
Where are signal molecules likely to be located in anaerobic granular sludge
Huajun Feng,Yangcheng Ding,Meizhen Wang,Guanglan Zhou,Xin Zheng,Hong-zhen He,Xueqin Zhang,Dongsheng Shen,Shentu Jiali +8 more
TL;DR: The results showed that 70-90% of DSF was distributed in sludge, while AI-2 in the Water phase accounted for over 80% of the total content, and there was a positive correlation between DSF andAI-2, which played opposite roles in granulation.