首页> 外文会议>Energy and Environment Technology, 2009. ICEET '09 >Study on the Methane Production Capacity and Energy Output of Different Temperatures during Anaerobic Digestion of Swine Manure
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Study on the Methane Production Capacity and Energy Output of Different Temperatures during Anaerobic Digestion of Swine Manure

机译:猪粪厌氧消化过程中不同温度下甲烷的生产能力和能量输出的研究

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This study was carried out by experimenting with the self-manufactured digestion devices which were fed with swine manure as material with a domesticated inoculums added as yeast. The experiment was on the condition of 6.6% mass fraction of total solid, the digestion temperatures were set at room temperature, 20¿, 35¿, and 55¿, and the biogas yield of the four temperatures were recorded in 41 days. Through the testing of methane content, the cumulative methane yield and net energy output computation, this paper researched into the optimum temperature during anaerobic digestion of swine manure. The results indicated that the low temperature went against the methane production which increased along with the increasing temperatures. Giving consideration to both digestion time and energy produce, that was more suitable treating the animal excrement of large scale livestock and poultry breeding farm on condition of mesophilic fermentation (35¿) with 31 days as the fermentation period. The normal temperature fermentation (20¿) was also achieved energy benefit better, but with longer fermentation time, it was appropriate for the smaller scale breeding farm which produced less animal manure, and it was also suitable for the household using in most area of south China where annual average temperature was about 20¿. In order to increase the energy output during anaerobic digestion, the digestion device must be improved, and the heat insulation measures have to be strengthen to make sure the use efficiency of the imported energy and to reduce the radiation loss.
机译:这项研究是通过实验自制的消化装置进行的,这些消化装置以猪粪为原料,并添加了作为酵母的驯化接种物。实验是在总固体质量分数为6.6%的条件下,将消解温度设置为室温,20°,35°和55°,并且在41天内记录了四个温度下的沼气产量。通过对甲烷含量的测试,累积甲烷产量和净能量输出计算,研究了猪粪厌氧消化过程中的最佳温度。结果表明,低温与甲烷产量背道而驰,甲烷产量随着温度的升高而增加。考虑到消化时间和能量产生,这更适合在中温发酵(35°)条件下以发酵期31天来处理大型畜禽养殖场的动物排泄物。常温发酵(20°)也能更好地实现能源效益,但是发酵时间更长,适用于生产较少动物粪便的规模较小的养殖场,也适合南部大部分地区的家庭使用中国的年平均气温约为20度。为了增加厌氧消化过程中的能量输出,必须改进消化装置,并必须加强隔热措施,以确保输入能量的利用效率并减少辐射损失。

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