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外加碳源对厨余垃圾生物干化效果的影响 被引量:25
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作者 袁京 张地方 +3 位作者 李赟 李国学 李煜 王国英 《中国环境科学》 EI CAS CSSCI CSCD 北大核心 2017年第2期628-635,共8页
为降低厨余垃圾含水率,选择木本泥炭和玉米秸秆作为辅料,研究其作为外加碳源对厨余垃圾生物干化效果的影响.结果表明,各处理生物干化过程中最高温度可达70℃以上,添加秸秆和木本泥炭处理可不同程度地缩短进入高温期的时间.经21d生物干化... 为降低厨余垃圾含水率,选择木本泥炭和玉米秸秆作为辅料,研究其作为外加碳源对厨余垃圾生物干化效果的影响.结果表明,各处理生物干化过程中最高温度可达70℃以上,添加秸秆和木本泥炭处理可不同程度地缩短进入高温期的时间.经21d生物干化后,纯厨余处理和分别添加木本泥炭与秸秆的处理含水率分别降低了15.25%,20.3%和28.0%,有机质分别降解了26.8%,15.1%和19.3%,有机质和含水率之间存在显著的正相关关系,尤其添加秸秆处理利用较少的有机质降解实现了最大水分去除.纯厨余生物干化渗滤液产生率分别为0.16kg/kg,添加木本泥炭处理仅为0.04kg/kg,添加秸秆处理未产生渗滤液.纯厨余处理、添加秸秆和木本泥炭处理生物干化过程累积水分去除率分别为0.40,0.54和0.42kg/kg,水分去除率和温度存在显著正相关关系.作为主原料的厨余垃圾初始低位热值为266kJ/kg,经生物干化后含水率有所降低,低位热值仅提高到1331kJ/kg.添加木本泥炭处理干化产品热值可达6331kJ/kg,添加秸秆处理热值可增加至8400kJ/kg. 展开更多
关键词 厨余垃圾 生物干化 玉米秸秆 木本泥炭 水分去除率 热值
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Operation Effect of Water Control System for Beddings of Pig-raising Deep-litter Systems 被引量:6
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作者 林家彬 李辉 +4 位作者 汤赤 秦竹 周忠凯 刘建龙 余刚 《Agricultural Science & Technology》 CAS 2016年第4期923-926,946,共5页
[Objective] The study was conducted to optimize the operation parameters of water control equipment for deep-litter beddings. [Method] A four-factor three-level orthogonal design was adopted to optimize experimental t... [Objective] The study was conducted to optimize the operation parameters of water control equipment for deep-litter beddings. [Method] A four-factor three-level orthogonal design was adopted to optimize experimental temperature, stopping time of aeration, aeration time and aeration rate by 9 groups of experiments, so as to improve the water removal efficiency of adopted mixed and reduce operation energy consumption. [Result] The average water contents in the mixed bedding under 3 temperatures decreased by 4.58% ±2.91%, 13.17% ±3.77% and 10.8% ±7.72%, respectively; the highest water removal efficiency could be achieved under an experimental temperature at 45 ℃, stopping time of aeration of 15 min, aeration time of 7 min, and an aeration rate at 4 m^3/min, which formed the optimal factor combination mode of the operation parameter of the water control equipment; the effects of various experimental factors on water content in the bedding were in order of aeration ratetemperatureaeration timestopping time of aeration; and the effects of various experimental factors on water removal efficiency in the bedding were in order of temperatureaeration rateaeration timestopping time of aeration. [Conclusion] After the optimization of operation parameters of the water control equipment for the deep-litter bedding, water removal efficiency of the mixed bedding could be improved, and the operation energy consumption of the equipment could be reduced. 展开更多
关键词 Deep-litter bedding Pig raising Water management Water content Water removal efficiency
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