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Mass and Energy Balances of Dry Thermophilic Anaerobic Digestion Treating Swine Manure Mixed with Rice Straw

机译:干热厌氧消化处理稻草混合猪粪的质量和能量平衡

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摘要

To evaluate the feasibility of swine manure treatment by a proposed Dry Thermophilic Anaerobic Digestion (DT-AD) system, we evaluated the methane yield of swine manure treated using a DT-AD method with rice straw under different C/N ratios and solid retention time (SRT) and calculated the mass and energy balances when the DT-AD system is used for swine manure treatment from a model farm with 1000 pigs and the digested residue is used for forage rice production. A traditional swine manure treatment Oxidation Ditch system was used as the study control. The results suggest that methane yield using the proposed DT-AD system increased with a higher C/N ratio and shorter SRT. Correspondently, for the DT-AD system running with SRT of 80 days, the net energy yields for all treatments were negative, due to low biogas production and high heat loss of digestion tank. However, the biogas yield increased when the SRT was shortened to 40 days, and the generated energy was greater than consumed energy when C/N ratio was 20 : 1 and 30 : 1. The results suggest that with the correct optimization of C/N ratio and SRT, the proposed DT-AD system, followed by using digestate for forage rice production, can attain energy self-sufficiency.
机译:为了评估拟议的干热厌氧消化(DT-AD)系统处理猪粪的可行性,我们评估了在不同C / N比和固相保留时间下用DT-AD方法处理稻草的猪粪甲烷产量(SRT),并计算了将DT-AD系统用于具有1000头猪的模型农场中的猪粪处理,并将消化后的残留物用于饲料大米生产时的质量和能量平衡。传统的猪粪处理氧化沟系统用作研究对照。结果表明,使用建议的DT-AD系统,甲烷产率随着C / N比和SRT的缩短而增加。相应地,对于运行SRT为80天的DT-AD系统,由于沼气产量低和消化池热损失高,所有处理的净能量产量均为负值。然而,当SRT缩短至40天时,沼气产量增加,并且当C / N比为20:1和30:1时,产生的能量大于消耗的能量。结果表明,正确地优化了C / N比率和SRT,建议的DT-AD系统,然后将消化液用于饲料大米的生产,可以实现能量自给。

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