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Effects of Temperature and Carbon-Nitrogen (C/N) Ratio on the Performance of Anaerobic Co-Digestion of Dairy Manure Chicken Manure and Rice Straw: Focusing on Ammonia Inhibition

机译:温度和碳氮(C / N)比对奶牛粪鸡粪和稻草厌氧共消化性能的影响:着眼于氨的抑制

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摘要

Anaerobic digestion is a promising alternative to disposal organic waste and co-digestion of mixed organic wastes has recently attracted more interest. This study investigated the effects of temperature and carbon-nitrogen (C/N) ratio on the performance of anaerobic co-digestion of dairy manure (DM), chicken manure (CM) and rice straw (RS). We found that increased temperature improved the methane potential, but the rate was reduced from mesophilic (30∼40°C) to thermophilic conditions (50∼60°C), due to the accumulation of ammonium nitrogen and free ammonia and the occurrence of ammonia inhibition. Significant ammonia inhibition was observed with a C/N ratio of 15 at 35°C and at a C/N ratio of 20 at 55°C. The increase of C/N ratios reduced the negative effects of ammonia and maximum methane potentials were achieved with C/N ratios of 25 and 30 at 35°C and 55°C, respectively. When temperature increased, an increase was required in the feed C/N ratio, in order to reduce the risk of ammonia inhibition. Our results revealed an interactive effect between temperature and C/N on digestion performance.
机译:厌氧消化法是处理有机废物的有前途的替代方法,混合消化有机废物的共消化最近引起了更多的兴趣。这项研究调查了温度和碳氮(C / N)比对奶牛粪(DM),鸡粪(CM)和稻草(RS)厌氧消化的性能的影响。我们发现,升高温度可提高甲烷电势,但由于氨氮和游离氨的积累以及氨的出现,速率从中温(30〜40°C)降低至嗜热条件(50〜60°C)。抑制。在35℃下以15的C / N比和在55℃下以20的C / N比观察到明显的氨抑制。 C / N比的增加减少了氨的负面影响,在35°C和55°C下,C / N比分别为25和30时,实现了最大的甲烷潜力。当温度升高时,需要增加进料的C / N比,以降低氨气抑制的风险。我们的结果揭示了温度和C / N对消化性能的相互作用。

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