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机构地区:[1]北京市环境卫生设计科学研究所,北京100028 [2]生活垃圾检测分析与评价北京市重点实验室,北京100028
出 处:《环境卫生工程》2018年第1期9-12,共4页Environmental Sanitation Engineering
基 金:北京市环卫系统大数据平台构建研究(SC1710A);北京市生活垃圾产生量现状调查与预测分析研究(SC1605)
摘 要:为了探索果蔬垃圾的就地处理模式,研发加工了1套处理能力为2 t/d的果蔬垃圾好氧堆肥处理设备,并进行了小试工艺研究。实验表明,经过破碎和压榨组合脱水预处理后,果蔬垃圾的含水率由90%以上降低到60%左右。含水率的降低不仅减少了后续的好氧堆肥的负荷,还使好氧堆肥主发酵阶段的周期从1个月缩短为7 d左右。主发酵产物再经过21 d左右的二次发酵,能够得到完全腐熟的肥料。破碎压榨组合脱水预处理结合好氧堆肥处理工艺能够在源头实现果蔬垃圾的无害化、减量化和资源化,具有良好的环境效益和经济效益。In order to investigate the in situ treatment mode of fruit and vegetable waste, an aerobic composting labora- tory device of 2 t/d was produced and several laboratory tests were carried out for process research. The results illustrated that moisture content of fruit and vegetable waste decreased from more than 90% to about 60%, after crushing and squeezing. The drop of moisture content not only led to reduction in aerobic composting load, but also decreased main fermentation from 1 month to nearly 7 days. After 21 days, the products of main fermentation changed into thoroughly decomposed fertilizer. The study demonstrated that it is an effective in situ process to aerobic compost fruit and vegetable waste after crushing and squeezing, which could also realize the harmlessness, reduction and resource utilization of fruit and vegetable waste from the beginning. The process has both economic and environmental benefits.
分 类 号:X799.3[环境科学与工程—环境工程]
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