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卧式发酵滚筒的设计与研究 被引量:3

Design and Study of Horizontal Composting Cylinder.
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摘要 目的 :研究开发卧式发酵滚筒 ,为设备设计及制造提供参考。方法 :定量地研究卧式发酵滚筒的结构及性能。结论 :确定了生产性卧式发酵滚筒的主要技术参数为 :发酵时间 2d ,物料填充率 70 %~ 80 % ,物料粒径≤ 5 0mm ,发酵温度≤ 80℃ (最佳为 5 5℃~ 6 5℃ ) ,含水率≤5 0 % ,平均容重 0 .5~ 0 .7t/m3。开发了处理量为 70~ 80t/d的卧式发酵滚筒。 Objective: Studied horizontal composting cylinder, to offer reference for design and manufacture reference. Method: Studied quantitatively the structures and properties of horizontal composting cylinder. Result:Principal technical parameters of productive horizontal composting cylinder are determined: fermentation time 2 d; fill rate 70%~80%; M.S.W particle size≤50 mm; fermentation temperature≤80 ℃(optimum 55 ℃~65 ℃); water content≤50%, average specific density: 0.5~0.7 t/m 3. Horizontal composting cylinder of treatment capacity 70~80 t/d is developed.
出处 《环境卫生工程》 2000年第3期97-100,共4页 Environmental Sanitation Engineering
基金 国家"八五"科技攻关课题!:85 - 90 9- 0 7- 0 1
关键词 城市生活垃圾 高温好氧堆肥 卧式发酵滚筒 设计 Municipal solid waste (M.S.W) High-temperature aerobic composting Horizontal composting cylinder Technical parameters
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  • 1陈同斌,郑玉琪,高定,孔建松,罗维.猪粪好氧堆制不同阶段氧气含量变化特征[J].应用生态学报,2004,15(11):2179-2183. 被引量:23
  • 2郑玉琪,陈同斌,孔建松,高定,黄启飞,罗维.利用耗氧速率判断好氧堆肥腐熟度的探讨[J].环境科学学报,2004,24(5):930-935. 被引量:30
  • 3中华人民共和国农业部.中华人民共和国农业行业标准(NY525-2002)有机肥料[s].北京:中国标准出版社,2002. 被引量:7
  • 4Bari Q H, Koenig A, Guihe T. Kinetic analysis of forced aeration composting Ⅰ:reaction rates and temperature[J]. Waste Manage Res, 2000, 18(4) : 303,312. 被引量:1
  • 5Korner I, Braukmeier J, Herrenklage J, et al. Investigation and optimization of composting processes test systems and practical examples [J]. Waste Manage, 2003, 23( 1 ) : 17-26. 被引量:1
  • 6Michel Jr, Frederick C, Reddy C A. Effect of oxygenation level on yard trimmings composing rate, odor production, and compost quality in bench-scale reactors[J]. Compost Science & Utilization, 1998, 6(4) : 6-14. 被引量:1
  • 7A de Guardia, Petiot C, Rogean D. Influence of aeration rate and biodegradability fractionation on composting kinetics[J]. Waste Management, 2008, 28( 1 ) :73-84. 被引量:1
  • 8Petiot C, A de Guardia. Composting in a laboratory reactor:a review[J]. Compost Science & Utilization, 2004, 12( 1 ) : 69-79. 被引量:1
  • 9Mason I G, Milke M W. Physical modeling of the eomposting environment: a review. Part 1 : Reactor systems[J]. Waste Management, 2005, 25 (5):481-500. 被引量:1
  • 10Ekinci K, Keener H M, Akbolat D. Effects of feedstock, airflow rate, and recirculation ratio on performance of composting systems with air recireulation[J]. Bioresource Technology, 2006, 97(7 ) :922-932. 被引量:1

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