Numerical Model of Leachate Recirculation in Bioreactor Landfills with High Kitchen Waste Content
Peng Zhang, Hailong Liu, Xingyao Jiang, Hao Lv, Chunyi Cui, Zhen Huyan
Abstract
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Peng Zhang, Hailong Liu, Xingyao Jiang, Hao Lv, Chunyi Cui, Zhen Huyan
Abstract
Open-access reader
Surface spraying, horizontal trenches, and vertical wells are the most common leachate recirculation system used at landfills in engineering practice. In order to quantify the efficiency of the three aforementioned recirculation systems, a hydro–biochem–mechanical-coupled model was developed in the present work, which can describe hydrodynamic and biochemical behaviors in food-waste-rich landfills. A typical landfill cell was modeled in COMSOL. The results indicate that leachate recirculation can accelerate the decomposition of municipal solid waste (MSW) with food-rich waste content, relieving acidification, improving gas generation efficiency, and consequently, increasing the early settlement in landfills.
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Surface spraying, horizontal trenches, and vertical wells are the most common leachate recirculation system used at landfills in engineering practice. In order to quantify the efficiency of the three aforementioned recirculation systems, a hydro–biochem–mechanical-coupled model was developed in the present work, which can describe hydrodynamic and biochemical behaviors in food-waste-rich landfills. A typical landfill cell was modeled in COMSOL. The results indicate that leachate recirculation can accelerate the decomposition of municipal solid waste (MSW) with food-rich waste content, relieving acidification, improving gas generation efficiency, and consequently, increasing the early settlement in landfills.
Key concepts: Leachate, Bioreactor landfill, Municipal solid waste, Waste management, Environmental science, Settlement (finance), Food waste, Environmental engineering