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Development of simplified anaerobic digestion models (SADM's) for studying anaerobic biodegradability and kinetics of complex biomass

机译:简化厌氧消化模型(SADM)的开发,用于研究复杂生物质的厌氧生物降解性和动力学

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摘要

The anaerobic co-digestion of cow manure and waste paper at ambient temperature condition was observed to be optimized at a mix proportion of 75:25 respectively. The development and testing of a set of simplified anaerobic digestion models (SADM's) for this mixture revealed that the Hill's based biogas yield rate model was most appropriate in describing the kinetics of biogas production. Parameter estimation using non-linear regression revealed that the half saturation constants expressed as acidified substrate and volatile solids equivalents were 0.228. g/L and 5.340. g. VS/L respectively, and the maximum specific biogas yield rate and biodegradability were 2.2. mL/g. VS/day and 0.313 respectively. The coefficients ". n" and ". m" indicative of acidogenic bacterial adaptation for degradation and acetogenic/methanogenic bacterial cooperativity were estimated to be 1.360 and 2.738 respectively, while hydrolysis/acidogenesis was considered the rate limiting step. The need of bacterial adaptation may be an important factor to consider during anaerobic modelling of complex biomass. © 2013 Elsevier B.V.
机译:观察到在环境温度条件下,牛粪和废纸的厌氧消化率分别达到75:25的最佳比例。针对该混合物的一套简化的厌氧消化模型(SADM)的开发和测试表明,基于Hill的沼气产率模型最适合描述沼气生产的动力学。使用非线性回归的参数估计显示,表示为酸化底物和挥发性固体当量的半饱和常数为0.228。 g / L和5.340。 G。 VS / L,最大比沼气产率和生物降解性分别为2.2。毫升/克VS /天和0.313。指示用于降解的产酸细菌适应性和产乙酸/产甲烷细菌协同作用的系数“ .n”和“ .m”分别估计为1.360和2.738,而水解/产酸被认为是限速步骤。在复杂生物质的厌氧建模期间,细菌适应性的需求可能是要考虑的重要因素。 ©2013 Elsevier B.V.

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