Two stages kinetics of municipal sol

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Two stages kinetics of municipal solid waste inoculation composting processes

Abstract: In order to understand the key mechanisms of the composting processes, the municipal solid waste(MSW) composting processes were divided into two stages, and the characteristics of typical experimental scenarios from the viewpoint of microbial kinetics was analyzed. Through experimentation with advanced composting reactor under controlled composting conditions, several equations were worked out to simulate the degradation rate of the substrate. The equations showed that the degradation rate was controlled by concentration of microbes in the first stage. The degradation rates of substrates of inoculation Run A, B, C and Control composting systems were 13.61 g/(kg·h), 13.08 g/(kg·h), 15.671 g/(kg·h), and 10.5 g/(kg·h), respectively. The value of Run C is around 1.5 times higher than that of Control system. The decomposition rate of the second stage is controlled by concentration of substrate. Although the organic matter decomposition rates were similar to all Runs, inoculation could reduce the values of the half velocity coefficient and could be more efficient to make the composting stable. Particularly. For Run C, the decomposition rate is high in the first stage, and is low in the second stage. The results indicated that the inoculation was efficient for the composting processes. 作 者: XI Bei-dou    HUANG Guo-he    QIN Xiao-sheng    LIU Hong-liang   作者单位: XI Bei-dou(Chinese Research Academy of Environmental Science, Beijing 100012, China.;EVSE, Faculty of Engineering, University of Regina, Regina, SK, Canada, S4S0A2)

HUANG Guo-he,QIN Xiao-sheng(EVSE, Faculty of Engineering, University of Regina, Regina, SK, Canada, S4S0A2)

LIU Hong-liang(Chinese Research Academy of Environmental Science, Beijing 100012, China.) 

期 刊: 环境科学学报(英文版)  ISTICSCI   Journal: JOURNAL OF ENVIRONMENTAL SCIENCES  年,卷(期): 2004, 16(3)  分类号: X705  Keywords: municipal solid waste    inoculation complex microbial community    oxygen consumption    two stages kinetics equations   

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