Life-cycle assessment of two sewage sludge-to-energy systems based on different sewage sludge characteristics: Energy balance and greenhouse gas-emission footprint analysis

Author:

Chen Renjie,Yuan Shijie,Chen Sisi,Ci Hanlin,Dai Xiaohu,Wang Xiankai,Li Chong,Wang Dianchang,Dong Bin

Publisher

Elsevier BV

Subject

General Environmental Science,General Medicine,Environmental Chemistry,Environmental Engineering

Reference33 articles.

1. Chemical and sewage sludge co-incineration in a full-scale MSW incinerator: toxic trace element mass balance;Biganzoli;Waste Manag. Res.,2012

2. Investigation of calorific value of sewage in large and middle cities of China;Cai;China Water Wastewater,2010

3. Sewage sludge-to-energy approaches based on anaerobic digestion and pyrolysis: brief overview and energy efficiency assessment;Cao;Renew. Sustain. Energy Rev,2012

4. Sludge-to-energy approaches based on pathways that couple pyrolysis with anaerobic digestion (thermal hydrolysis pre/post-treatment): energy efficiency assessment and pyrolysis kinetics analysis;Chen;Energy,2020

5. Micron-sized silica particles in wastewater influenced the distribution of organic matters in sludge and their anaerobic degradation;Chen;J. Hazard. Mater.,2020

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