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粪便、餐厨及芦苇混合厌氧消化过程中餐厨含量的影响研究
引用本文:张众磊,胡翔,张列宇,席北斗,李晓光,夏训峰,曾凤.粪便、餐厨及芦苇混合厌氧消化过程中餐厨含量的影响研究[J].农业环境保护,2011(6):1221-1228.
作者姓名:张众磊  胡翔  张列宇  席北斗  李晓光  夏训峰  曾凤
作者单位:[1]北京化工大学环境科学与工程系,北京100029 [2]中国环境科学研究院,北京100012
基金项目:国家科技支撑计划项目(2008BADC4B00 2009BADC2B04); 国家水体重大专项(2008ZX07209-007-004)
摘    要:采用完全混合湿式厌氧发酵方法,对餐厨、粪便及芦苇3种物料混合厌氧消化过程中餐厨含量的影响进行了研究。结果表明,餐厨加入量对这3种物料混合厌氧发酵影响显著。适当增加餐厨比例,有利于产气率的提高,但随着餐厨比例的增加,混合厌氧消化过程中乙酸、丙酸和丁酸含量增加明显,较容易出现"酸化"现象而影响产气效果。粪便、芦苇与餐厨湿重比为7∶2.5∶3时,产气效果最佳,最高容积产气率为1118mL·L^-1·d^-1,平均甲烷含量为64.6%,COD去除率达到68.56%。随着餐厨比例的增加,NH3-N含量逐渐增加,但未对厌氧消化产生抑制作用。

关 键 词:餐厨  猪粪  芦苇  混合厌氧消化  沼气

Influence of Kitchen Residue on Anaerobic Co-digestion of Feces, Kitchen Residue and Reed
ZHANG Zhong-lei,HU Xiang,ZHANG Lie-yu,XI Bei-dou,LI Xiao-guang,XIA Xun-feng,ZENG Feng.Influence of Kitchen Residue on Anaerobic Co-digestion of Feces, Kitchen Residue and Reed[J].Agro-Environmental Protection,2011(6):1221-1228.
Authors:ZHANG Zhong-lei  HU Xiang  ZHANG Lie-yu  XI Bei-dou  LI Xiao-guang  XIA Xun-feng  ZENG Feng
Institution:1.Department of Environmental Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China; 2.Chinese Research Academy of Environmental Sciences, Beijing 100012, China)
Abstract:Influence of kitchen residue on anaerobic co-digestion of feces, kitchen residue and reed, which are the main organic waste, was investigated. The results showed that kept at mesophilic temperature(36±1)℃ and 6%~7% total solid content, the quantity of kitchen residue had significant effects on anaerobic co-digestion of the three kinds of materials. Appropriately increasing the proportion of kitchen residue was helpful to raise gas yield. However, higher kitchen residue could lead to acidification and less gas yield, which resulted from the concentrations of acetic acid, propionic acid and butyric acid during the process of anaerobic co-digestion obviously increasing. The highest biogas yield was 1 118 mL·L^-1·d^-1 and the average methane content was 64.6%, with COD removal efficiency being up to 68.56% when the ratio of feces, reed and kitchen residue was 7∶2.5∶3. As the proportion of kitchen residue increased, increase trend of NH3-N concentration was found. However, anaerobic co-digestion inhibition was not observed.
Keywords:kitchen residue  feces  reed  anaerobic co-digestion  biogas
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