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Variation of Coenzyme F420 Activity and Methane Yield in Landfill Simulation of Organic Waste
引用本文:CHENG Yun-huan SANG Shu-xun HUANG Hua-zhou LIU Xiao-juan OUYANG Jin-bao. Variation of Coenzyme F420 Activity and Methane Yield in Landfill Simulation of Organic Waste[J]. 中国矿业大学学报(英文版), 2007, 17(3): 403-408. DOI: 10.1016/S1006-1266(07)60114-X
作者姓名:CHENG Yun-huan SANG Shu-xun HUANG Hua-zhou LIU Xiao-juan OUYANG Jin-bao
作者单位:[1]School of Resource and Geoscience China University of Mining & Technology Xuzhou Jiangsu 221008, China [2]School of Chemical Engineering and Technology China University of Mining & Technology Xuzhou Jiangsu 221008, China [3]Zhejiang Bureau of Geological Survey of Nonferrous Metal Shaoxing Zhejiang 312000, China
基金项目:国家自然科学基金;教育部新世纪优秀人才支持计划
摘    要:A simulated landfill anaerobic bioreactor was used to characterize the anaerobic biodegradation and biogas generation of organic waste which was mainly composed of residuals of vegetables and foods. We investigated the dynamics of the coenzyme F420 activity and determined correlations between biogas yields, methane yields, methane concentration and coenzyme F420 activity. The experiment was carded out under different conditions from control without any treatment, addition of Fe^3+, microorganism inoculation to a combination of Fe3+ addition and inoculation at a temperature of 36±2℃. The experiment was lasted 120 d and coenzyme F420 activity was analyzed using ultraviolet spectrophotornetry. Experimental results indicated that activity of the coenzyme F420 treated by Fe and microorganism inoculation increased substantially. The waste treated by inoculation had the greatest increase. When the waste was treated by Fe^3+, inoculation and the combination of Fe^3+ and inoculation, biogas yields increased by 46.9%, 132.6% and 153.1%, respectively; while the methane yields increased 4, 97 and 98 times. Methane concentration varied between 0 and 6% in the control reactor, from 0 to 14% for waste treated by the addition of Fe^3+, from 0 to 59% for waste treated by inoculation and from 0 to 63% for waste treated by Fe^3+ addition and inoculation. Correlations between coenzyme F420 activity and biogas production, methane production and methane concentration proved to be positively significant (p〈0.05), except for the control. Consequently, coenzyme F420 activity could be used as an index for monitoring the activity of methanogens during anaerobic biodegradation of the organic fraction of municipal solid waste.

关 键 词:城市固体废弃物 垃圾掩埋 辅酶活性 甲烷
收稿时间:2006-10-10
修稿时间:2006-10-10

Variation of Coenzyme F420 Activity and Methane Yield in Landfill Simulation of Organic Waste
CHENG Yun-huan,SANG Shu-xun,HUANG Hua-zhou,LIU Xiao-juan,OUYANG Jin-bao. Variation of Coenzyme F420 Activity and Methane Yield in Landfill Simulation of Organic Waste[J]. Journal of China University of Mining and Technology, 2007, 17(3): 403-408. DOI: 10.1016/S1006-1266(07)60114-X
Authors:CHENG Yun-huan  SANG Shu-xun  HUANG Hua-zhou  LIU Xiao-juan  OUYANG Jin-bao
Affiliation:1. School of Resource and Geoscience, China University of Mining & Technology, Xuzhou, Jiangsu 221008, China;2. School of Chemical Engineering and Technology, China University of Mining & Technology, Xuzhou, Jiangsu 221008, China;3. Zhejiang Bureau of Geological Survey of Nonferrous Metal, Shaoxing, Zhejiang 312000, China
Abstract:A simulated landfill anaerobic bioreactor was used to characterize the anaerobic biodegradation and biogas generation of organic waste which was mainly composed of residuals of vegetables and foods. We investigated the dynamics of the coenzyme F420 activity and determined correlations between biogas yields, methane yields, methane concentration and coenzyme F420 activity. The experiment was carried out under different conditions from control without any treatment, addition of Fe3+, microorganism inoculation to a combination of Fe3+ addition and inoculation at a temperature of 36±2 ℃. The experiment was lasted 120 d and coenzyme F420 activity was analyzed using ultraviolet spectrophotometry. Experimental results indicated that activity of the coenzyme F420 treated by Fe3+ and microorganism inoculation increased substantially. The waste treated by inoculation had the greatest increase. When the waste was treated by Fe3+, inoculation and the combination of Fe3+ and inoculation, biogas yields increased by 46.9%, 132.6% and 153.1%, respectively; while the methane yields increased 4, 97 and 98 times. Methane concentration varied between 0 and 6% in the control reactor, from 0 to 14% for waste treated by the addition of Fe3+, from 0 to 59% for waste treated by inoculation and from 0 to 63% for waste treated by Fe3+ addition and inoculation. Correlations between coenzyme F420 activity and biogas production, methane production and methane concentration proved to be positively significant (p<0.05), except for the control. Consequently, coenzyme F420 activity could be used as an index for monitoring the ac-tivity of methanogens during anaerobic biodegradation of the organic fraction of municipal solid waste.
Keywords:municipal solid waste (MSW)  simulating landfill  coenzyme F420 activity  characteristic of methane generation
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