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Dry Co-Digestion of Poultry Manure with Agriculture Wastes

机译:家禽粪便与农业废弃物的干式共消化

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摘要

This study tested the effect on thermophilic and mesophilic digestion of poultry manure (PM) or treated poultry manure (TPM) by the addition of agriculture wastes (AWS) as a co-substrate under dry conditions. PM was co-digested with a mixture of AWS consisting of coconut waste, cassava waste, and coffee grounds. Results were increased methane content in biogas, with decreased ammonia accumulation and volatile acids. The highest performance occurred under mesophilic conditions, with a 63 and 41.3 % increase in methane production from addition of AWS to TPM (562 vs. 344 mL g VS-1 from control) and PM (406 vs. 287 mL g VS-1 from control), respectively. Thermophilic conditions showed lower performance than mesophilic conditions. Addition of AWS increased methane production by 150 and 69.6 % from PM (323.4 vs. 129 mL g VS-1 from control) and TPM (297.6 vs. 175.5 mL g VS-1 from control), respectively. In all experiments, 100 % acetate produced was degraded to methane. Maximum ammonia accumulation was lowered to 43.7 % by mixing of AWS (range 5.35-8.55 vs. 7.81-12.28 g N kg(-1) bed). The pH was held at 7.3-8.8, a range suitable for methanogenesis.
机译:这项研究通过在干燥条件下添加农业废弃物(AWS)作为共同底物,测试了对家禽粪便(PM)或经过处理的家禽粪便(TPM)的高温消化和中温消化的影响。 PM与AWS混合物共同消化,其中包括椰子渣,木薯渣和咖啡渣。结果是沼气中甲烷含量增加,氨气积累和挥发性酸减少。最高性能发生在中温条件下,通过将AWS添加到TPM中(甲烷分别来自对照的562 vs. 344 mL g VS-1)和PM(来自附件中的406 vs. 287 mL g VS-1),甲烷生成分别增加了63%和41.3%。控制)。嗜热条件显示的性能低于嗜温条件。加入AWS分别使PM(323.4 vs. 129 mL g VS-1来自对照)和TPM(297.6 vs. 175.5 mL g VS-1来自对照)的甲烷产量分别增加150和69.6%。在所有实验中,产生的100%乙酸盐都被降解为甲烷。通过混合AWS将最大氨气积累量降低至43.7%(范围为5.35-8.55对7.81-12.28 g N kg(-1)床)。 pH保持在7.3-8.8,该范围适合甲烷生成。

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