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Continuous anaerobic digestion of swine manure: ADM1-based modelling and effect of addition of swine manure fibers pretreated with aqueous ammonia soaking

机译:猪粪连续厌氧消化:基于aDm1的模拟和添加用氨水浸泡预处理的猪粪纤维的效果

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摘要

Anaerobic digestion of manure fibers presents challenges due to their low biodegradability. Aqueous ammonia soaking (AAS) has been tested as a simple method to disrupt the lignocellulose and increase the methane yield of manure fibers. In the present study, mesophilic anaerobic digestion of AAS pretreated manure fibers was performed in CSTR-type digesters, fed with swine manure and/or a mixtureof swine manure and AAS pretreated manure fibers (at a total solids based ratio of 0.52 manure per0.48 fibers). Two different simulations were performed. In the first place, the Anaerobic Digestion Model 1 (ADM1) was fitted to a manure-fed, CSTR-type digester and validated by simulating the performance of a second reactor digesting manure. It was shown that disintegration and hydrolysis of the solid matter of manure was such a slow process that the organic particulate matter did not significantly contribute to the methane production. In the second place, ADM1 was used to describe biogas production from the codigestion of manure and AAS pretreated manure fibers. The model predictions regarding biogas production and methane content were in good agreement with the experimental data. It was shown that, AAS treatment significantly increased the disintegration and hydrolysis rate of the carbohydrate compounds of the fibers. The effect of the addition of AAS treated fibers on the kinetics of the conversion of other key compounds such as volatile fatty acids was negligible.
机译:粪肥纤维的厌氧消化由于其生物降解性低而面临挑战。已经测试了氨水浸泡(AAS)作为破坏木质纤维素并增加粪肥纤维甲烷产量的简单方法。在本研究中,在CSTR型消化池中对AAS预处理的粪肥纤维进行了中温厌氧消化,饲喂猪粪和/或猪粪和AAS预处理的粪肥纤维的混合物(基于固体的总比率为0.52粪便/0.48纤维)。进行了两种不同的模拟。首先,将厌氧消化模型1(ADM1)安装到粪便喂养的CSTR型消化池中,并通过模拟第二个反应器消化粪肥的性能进行验证。结果表明,粪便固体物质的分解和水解过程如此缓慢,以至于有机颗粒物质不会显着促进甲烷的产生。其次,ADM1用于描述粪便和AAS预处理粪便纤维共同消化产生的沼气。关于沼气产量和甲烷含量的模型预测与实验数据非常吻合。结果表明,AAS处理显着提高了纤维中碳水化合物化合物的分解和水解速率。添加AAS处理过的纤维对其他关键化合物(如挥发性脂肪酸)转化动力学的影响可以忽略不计。

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