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PMID: 30929171 Published · ppublish English Journal Article

Numerical model of aerobic bioreactor landfill considering aerobic-anaerobic condition and bio-stable zone development.

Environmental science and pollution research international ·Vol. 26 ·No. 15 ·2019-05-00 ·页码 15229-15247

Feng SJ, Li AZ, Zheng QT, Cao BY, Chen HX

Abstract

Aeration by airflow technology is a reliable method to accelerate waste biodegradation and stabilization and hence shorten the aftercare period of a landfill. To simulate hydro-biochemical behaviors in this type of landfills, this study develops a model coupling multi-phase flow, multi-component transport and aerobic-anaerobic biodegradation using a computational fluid dynamics (CFD) method. The uniqueness of the model is that it can well describe the evolution of aerobic zone, anaerobic zone, and temperature during aeration and evaluate aeration efficiency considering aerobic and anaerobic biodegradation processes. After being verified using existing in situ and laboratory test results, the model is then employed to reveal the bio-stable zone development, aerobic biochemical reactions around vertical well (VW), and anaerobic reactions away from VW. With an increase in the initial organic matter content (0.1 to 0.4), the bio-stable zone expands at a decreasing speed but with all the horizontal ranges larger than 17 m after an intermittent aeration for 1000 days. When waste intrinsic permeability is equal or greater than 10-11 m2, aeration using a low pressure between 4 and 8 kPa is appropriate. The aeration efficiency would be underestimated if anaerobic biodegradation is neglected because products of anaerobic biodegradation would be oxidized more easily. A horizontal spacing of 17 m is suggested for aeration VWs with a vertical spacing of 10 m for screens. Since a lower aeration frequency can give greater aeration efficiency, a 20-day aeration/20-day leachate recirculation scenario is recommended considering the maximum temperature over a reasonable range. For wet landfills with low temperature, the proportion of aeration can be increased to 0.67 (20-day aeration/10-day leachate recirculation) or an even higher value.

Keywords
Aeration Bioreactor landfill CFD Leachate recirculation Stabilization
MeSH 主题词
Aerobiosis Biodegradation, Environmental Bioreactors Refuse Disposal/methods Waste Disposal Facilities/instrumentation
作者与单位
共 5 位作者,点击展开单位 / ORCID
Feng Shi-Jin
Key Laboratory of Geotechnical and Underground Engineering of the Ministry of Education, Department of Geotechnical Engineering, Tongji University, Shanghai, 200092, China.
Li An-Zheng
Key Laboratory of Geotechnical and Underground Engineering of the Ministry of Education, Department of Geotechnical Engineering, Tongji University, Shanghai, 200092, China.
Zheng Qi-Teng
Key Laboratory of Geotechnical and Underground Engineering of the Ministry of Education, Department of Geotechnical Engineering, Tongji University, Shanghai, 200092, China.
Cao Ben-Yi
Department of Engineering, University of Cambridge, Trumpington Street, Cambridge, CB2 1PZ, UK.
Chen Hong-Xin
Key Laboratory of Geotechnical and Underground Engineering of the Ministry of Education, Department of Geotechnical Engineering, Tongji University, Shanghai, 200092, China. [email protected].
Article Info
Journal
Environmental science and pollution research international
Abbr.
Environ Sci Pollut Res Int
ISSN
1614-7499
Corresponding email
Published
2019-05-00
电子出版
2019-00-30
页码
15229-15247
Language
English
Country/Region
Germany
NLM ID
9441769
基金资助
China National Funds for Distinguished Young Scientists · 41725012
National Natural Science Foundation of China · 41572265
International Cooperation and Exchange Programme · 41661130153
Shuguang Scheme · 16SG19
Newton Advanced Fellowship of the Royal Society · NA150466
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