In this study, the sludge of three municipal sewage treatment plants in Foshan City, Guangdong Province, China, was dewatered and recycled. The experimental results shown that after deep dewatering with different chemical conditioning reagents, the moisture content of municipal sewage sludge was decreased greatly, from about 97% to about 55%. After dewatering, the organic matter content of sludge was maintained at a high level which is beneficial to the composting treatment of the sludge. The organic matter content of sludge in Foshan No. 1 Sewage Treatment Plant and No. 2 Sewage Treatment Plant was more than 30%, while it was between 15% and 20% in Foshan No. 3 Sewage Treatment Plant. Sludge from all three sewage treatment plants neeed to add a small amount of nutrients to compost. After 14 days of the aerobic composting, the moisture content of the sewage sludge could be reduced to less than 50%, and all the index met the requirements of the agricultural standard.
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16 May 2019
ADVANCES IN ENERGY SCIENCE AND ENVIRONMENT ENGINEERING III: Proceedings of the 3rd International Workshop on Advances in Energy Science and Environment Engineering
29–31 March 2019
Suzhou, China
Research Article|
May 16 2019
Study on deep dewatering and resource utilization of sludge in municipal sewage treatment plant
Fei Zhang;
Fei Zhang
a)
1
Guangzhou Newearth Environmental Protection Industry Co., Ltd
, 510380, Guangzhou, China
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Xinying Huang;
Xinying Huang
b)
1
Guangzhou Newearth Environmental Protection Industry Co., Ltd
, 510380, Guangzhou, China
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Yan Shi;
Yan Shi
c)
1
Guangzhou Newearth Environmental Protection Industry Co., Ltd
, 510380, Guangzhou, China
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Jiamei Zhong;
Jiamei Zhong
d)
1
Guangzhou Newearth Environmental Protection Industry Co., Ltd
, 510380, Guangzhou, China
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Zhihai Ding
Zhihai Ding
e)
1
Guangzhou Newearth Environmental Protection Industry Co., Ltd
, 510380, Guangzhou, China
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AIP Conf. Proc. 2106, 020024 (2019)
Citation
Fei Zhang, Xinying Huang, Yan Shi, Jiamei Zhong, Zhihai Ding; Study on deep dewatering and resource utilization of sludge in municipal sewage treatment plant. AIP Conf. Proc. 16 May 2019; 2106 (1): 020024. https://doi.org/10.1063/1.5109347
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