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Anaerobic co-digestion of rabbit manure and sorghum crops in a bench-scale biodigester

机译:兔粪肥和高粱作物的厌氧共同消化在长凳级生物铸铁中

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Any type of biomass can be used as substrate for biogas production, but the performance of the biodigestion depends on the composition of the feed, and no direct extrapolation of the yield of the process from one substrate to another can be made. In this work, the performance of a bench-scale anaerobic biodigester of 93 L installed at ambient conditions is studied. The biodigester was set up in a region where temperature varies significantly during the year, and was operated under semi-batch conditions with non-thermal control for 16 months with a feed of rabbit manure and ground sorghum grains. To our knowledge, this is the first time the co-digestion of rabbit manure with sorghum grains is considered. To evaluate the biodigestion performance, critical operational variables (pH, temperature, biogas flowrate) were monitored, and composition of substrate, digestate and produced biogas was determined. Moreover, the following variables were quantified: (a) the theoretical methane potential, (b) the specific methane yield and (c) the degree of degradation of the substrate. A 1-D non-stationary model was formulated and validated with experimental data in order to analyze, in a theoretical form, the impact of incorporating thermal insulation to the unit. The results show that is it possible to produce biogas in a bench-scale biodigester, with a novel feed of rabbit manure and ground sorghum grains, in a region with significant temperature changes along the year. Moreover, it is shown that the 1-D model constitutes a useful tool for the design or improvement of biodigesters regarding the insulation system and the warming policies.
机译:任何类型的生物质都可以用作沼气的底物,但生物消化期的性能取决于进料的组成,并且可以制备从一个基板到另一个基底的过程的直接外推。在这项工作中,研究了在环境条件下安装的93L的台阶厌氧生物肽的性能。 Biodigester在该年内温度显着变化的区域中建立,并且在半批量条件下运行,其中不热控制16个月,其中兔粪和地面高粱谷物的饲料。据我们所知,这是考虑与高粱谷物共同消化兔粪肥的第一次。为了评估生物抗原性能,监测临界操作变量(pH,温度,沼气流量),并测定底物的组成,底物,消化和产生的沼气。此外,量化了以下变量:(a)理论甲烷电位,(b)特定的甲烷产率和(c)基材的降解程度。用实验数据配制并验证了1-D非静止模型,以便以理论形式分析将热绝缘掺入该单元的影响。结果表明,在长期温度变化的区域中,可以在长凳级生物硫代酯中产生沼气和地高粱谷物的新型饲料。此外,示出了1-D模型构成有关绝缘系统和变暖策略的生物消泡剂的设计或改进的有用工具。

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