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Biogas production from Pongamia biomass wastes and a model to estimate biodegradability from their composition

机译:庞加米亚生物质废物产生的沼气和根据其组成估算生物降解能力的模型

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In this study, I investigated the chemical characteristics, biochemical methane potential, conversion kinetics and biodegradability of untreated and NaOH-treated Pongamia plant parts, and pod husk and press cake from the biodiesel industry to evaluate their suitability as an alternative feedstock for biogas production. The untreated Pongamia seeds exhibited the maximum CH_4 yield of 473 ml g~(-1) volatile solid (VS) added. Yellow, withered leaves gave a yield as low as 122 ml CH_4 g~(-1) VS added. There were significant variations in the CH_4 production rate constants, which ranged from 0.02 to 0.15 d~(-1), and biodegradability, which ranged from 0.25 to 0.98. NaOH treatment of leaf and pod husk, which were highly rich in fibers, increased the yields by 15-22% and CH_4 production rate constants by 20-75%. Utilization of Pongamia wastes in biogas digesters not only influences the economics of biodiesel production but also yields CH_4 fuel and protects the environment. The experimental data from this study were used to develop a multiple regression model, which could estimate biodegradability based on biochemical characteristics. The model predicted the biodegradability of previously published biomass wastes (r2 = 0.88) from their biochemical composition. The theoretical CH_4 yields estimated as 350 ml g~(-1) chemical oxygen demand destroyed are much higher than the experimental yields as 100% biodegradability is assumed for each substrate. Upon correcting the theoretical CH_4 yields with biodegradability data obtained from chemical analyses of substrates, their ultimate CH_4 yields could be predicted rapidly.
机译:在这项研究中,我调查了未经处理和经NaOH处理的Pongamia植物部件以及生物柴油行业的豆荚和压滤饼的化学特性,生化甲烷潜力,转化动力学和生物降解性,以评估其作为沼气生产替代原料的适用性。未经处理的石榴皮种子最大CH_4产量为473 ml g〜(-1)挥发性固体(VS)。枯萎的黄色叶片收率低至122 ml CH_4 g〜(-1)VS。 CH_4的生产速率常数在0.02到0.15 d〜(-1)范围内,生物降解性在0.25到0.98的范围内有显着变化。 NaOH处理的叶片和豆荚富含纤维,可将产量提高15-22%,将CH_4的生产率常数提高20-75%。在沼气池中利用Pongamia废物不仅影响生物柴油生产的经济性,而且还产生CH_4燃料并保护环境。这项研究的实验数据用于建立多元回归模型,该模型可以根据生化特征估算生物降解性。该模型从其生物化学组成预测了先前公布的生物质废物的生物降解性(r2 = 0.88)。由于假设每种底物具有100%的生物可降解性,估计的理论CH_4产量估计为350 ml g〜(-1)破坏的化学需氧量远高于实验产量。通过使用从底物化学分析获得的生物降解性数据校正理论CH_4产量后,可以快速预测其最终CH_4产量。

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