季节性城市生活垃圾成分分析及厌氧消化特性研究
摘要:城市生活垃圾的成分及特性随着季节和人类在不同季节的生活习惯而变化,针对我国北方城市研究了一年中不同季节的城市生活垃圾成分特点,对影响厌氧发酵过程的相关成分如总有机碳(TOC)、总氮(TN)、蛋白质、脂肪和还原糖等进行了测定分析。通过厌氧消化实验,测得不同季节城市生活垃圾pH值、日产气量、沼气甲烷含量、甲烷累积量、挥发性脂肪酸(VFAs)和氧化还原电位(ORP)等参数的变化规律,分析相应变化的影响因素。结果表明,二、三季度的含水率分别为64.81%和67.50%,高于一、四季度,一季度发酵原料中蛋白质和脂肪含量分别为12.56%和8.86%,明显高于其他3个季度。一季度甲烷累积量最高,达到17 616 mL,单位发酵原料的产气量为204.8 mL/g,也是4个季度中最高的,说明蛋白质、脂肪等有机成分含量对厌氧发酵过程及结果影响比较明显。为进一步的城市生活垃圾厌氧消化制取生物燃气的工艺条件提供依据。
Abstract:The compositions and properties of municipal solid waste(MSW) vary with the seasons and human hobbies. The composition characteristics of municipal solid waste in different seasons of northern cities were studied, the corresponding components of TOC, TN, protein, fat, reducing sugar,etc. were analyzed. Through the anaerobic digestion experiment,the varying pattern of pH, daily gas production, methane content, methane cumulant, VFAs, ORP of MSW, were tested,in which the influencing factors of the corresponding change were analyzed.The results show that the water contents of the second and third quarter are 64.81% and 67.50%,respectively, higher than that of the first and fourth quarter. The protein and fat contents in fermenting materials of first quarter are 12.56% and 8.86%, respectively, obviously higher than that of the other quarters. The methane cumulant and gas production by unit fermentation raw materials of first quarter are 17 616 mL and 204.8 mL/g, respectively, which is also the highest in four quarters. It indicated that the protein and fat have an important impact on process and results of anaerobic fermentation. The research could provide some reference and demonstration for anaerobic digestion projects of MSW.
[1]国家统计局. 2010年中国统计年鉴. 北京:中国统计出版社,2010 [2]住房城乡建设部,环境保护部,发展改革委,等. 国务院批转住房城乡建设部等部门关于进一步加强城市生活垃圾处理工作意见的通知.. http:/www.gov.cn/zwgk/2011-04/25/content_1851821.htm [3]北京市环境卫生科学研究所等. CJ/T3039-1995,城市生活垃圾采样和物理分析方法. 北京:建设部标准定额研究所,1995.1-6 Beijing Institute of Environmental Health Sciences, et al. CJ/T3039-1995, Sampling and Physical Analysis Menthods for Municipal Domestic Refuse. Beijing: Ministry of Construction Standard Quota Research Institute,1995.1-6 (in Chinese) [4]卫生部食品卫生监督检验所等. GB/T5009.5-2003,食品中蛋白质的测定. 北京:中国国家标准化管理委员会,2003.37-41 Ministry of Health Food Hygiene Supervision and Inspection Office et al. GB/T5009.5-2003, Determination of Protein in Foods. Beijing: Standardization Administration of People's Republic of China, 2003.37-41(in Chinese) [5]卫生部食品卫生监督检验所,等. GB/T5009.6-2003,食品中脂肪的测定. 北京:中国国家标准化管理委员会,2003.45-46 Ministry of Health Food Hygiene Supervision and Inspection Office et al. GB/T5009.6-2003, Determination of Fat in Foods. Beijing: Standardization Administration of People's Republic of China, 2003.45-46 (in Chinese) [6]卫生部食品卫生监督检验所等. GB/T5009.7-2008,食品中还原糖的测定. 北京:中国国家标准化管理委员会,2008.1-9 Ministry of Health Food Hygiene Supervision and Inspection office et al. GB/T5009.7-2008, Determination of Reducing Sugar in Foods. Beijing: Standardization Administration of People's Republic of China, 2008.1-9 (in Chinese) [7]任南琪,王爱杰. 厌氧生物技术原理与应用. 北京:化学工业出版社,2004.28-31 [8]R.E.斯皮思. 工业废水的厌氧生物技术. 北京:中国建筑工业出版社,2001.45-49 [9]Alex L.,Lisa T., et al. Opportunities for energy efficiency and open automated demand response in wastewater treatment facilities in california—Phase I Report. Lawrence Berkeley National Laboratory, 2010.41-42 [10]Benson C. H., Barlaz M. A., Lane D. T., et al. Practice review of five bioreactor/recirculation landfills. Waste Management, 2007, 27(1): 13-29 [11]Vavilin V. A., Fernandez B., Palatsi J., et al. Hydrolysis kinetics in anaerobic degradation of particulate organic material: An overview. Waste Management, 2008, 28(6): 939-951 [12]Hartmann H. B. K. Strategies for the anaerobic digestion of the organic fraction of municipal solid waste: An overview. Water Science and Technology, 2006, 53(8): 7-22 [13]Hansen T. L.,Schmidt J. E.,Angelidaki I.,et al. Method for determination of methane potential of solid organic waste. Waste Management, 2004, 24(4):393-400 [14]李东,孙永明,张宇,等. 第二届全国研究生生物质能研讨会论文集. 广州:中国可再生能源学会生物质能专委会,2007.360-366 Li D., Sun Y. M, Zhang Y., et al.The Second Graduate Bioenegy Seminar Papers of China. Guang Zhou: Speciality Committee of Chinese Renewable Energy Society, 2007. 360-366 (in Chinese) [15]何品晶,潘修江,吕凡,等. pH值对有机垃圾厌氧水解和酸化速率的影响. 中国环境科学,2006,26(1):57-61 He P. J., Pan X. J., Lü F., et al. The influence of pH value on anaerobic hydrolysis and acidogenesis rates of biodegradable organic waste. China Environmental Science,2006,26(1):57-61(in Chinese) [16]Hansen T. L., Schmidt J. E., Angelidaki I., et al. Methid for determination of methane potentials of solid organic waste. Waste Management, 2004,24(4):393-400Created with Highcharts 5.0.7
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