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Comparison on batch anaerobic digestion of five different livestock manures and prediction of biochemical methane potential (BMP) using different statistical models

机译:五种不同牲畜粪便分批厌氧消化的比较和不同统计模型对生化甲烷潜力(BMP)的预测

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摘要

There is a lack of literature reporting the methane potential of several livestock manures under the same anaerobic digestion conditions (same inoculum, temperature, time, and size of the digester). To the best of our knowledge, no previous study has reported biochemical methane potential (BMP) predicting models developed and evaluated by solely using at least five different livestock manure tests results. The goal of this study was to evaluate the BMP of five different livestock manures (dairy manure (DM), horse manure (HM), goat manure (GM), chicken manure (CM) and swine manure (SM)) and to predict the BMP using different statistical models. Nutrients of the digested different manures were also monitored. The BMP tests were conducted under mesophilic temperatures with a manure loading factor of 3.5 g volatile solids (VS)/L and a feed to inoculum ratio (F/I) of 0.5. Single variable and multiple variable regression models were developed using manure total carbohydrate (TC), crude protein (CP), total fat (TF), lignin (LIG) and acid detergent fiber (ADF), and measured BMP data. Three different kinetic models (first order kinetic model, modified Gompertz model and Chen and Hashimoto model) were evaluated for BMP predictions. The BMPs of DM, HM, GM, CM and SM were measured to be 204, 155, 159, 259, and 323 mL/g VS, respectively and the VS removals were calculated to be 58.6%, 52.9%, 46.4%, 81.4%, 81.4%, respectively. The technical digestion time (T_(80-90), time required to produce 80-90% of total biogas production) for DM, HM, GM, CM and SM was calculated to be in the ranges of 19-28, 27-37, 31-44, 13-18, 12-17 days, respectively. The effluents from the HM showed the lowest nitrogen, phosphorus and potassium concentrations. The effluents from the CM digesters showed highest nitrogen and phosphorus concentrations and digested SM showed highest potassium concentration. Based on the results of the regression analysis, the model using the variable of LIG showed the best (R~2 = 0.851, p = 0.026) for BMP prediction among the single variable models, and the model including variables of TC and TF showed the best prediction for BMPs (R~2 = 0.913, p = 0.068-0.075) comparing with other two-variable models, while the model including variables of CP, LIG and ADF performed the best in BMP prediction (R~2 = 0.999, p = 0.009-0.017) if three-variable models were compared. Among the three kinetic models used, the first order kinetic model fitted the measured BMPs data best (R~2 = 0.996-0.998, rRMSE = 0.171-0.381) and deviations between measured and the first order kinetic model predicted BMPs were less than 3.0%.
机译:缺乏文献报道在相同的厌氧消化条件下(相同的接种物,温度,时间和消化池的大小)几种牲畜粪便的甲烷潜力。据我们所知,以前没有研究报告仅通过使用至少五种不同的家畜粪便测试结果来开发和评估生化甲烷潜力(BMP)预测模型。这项研究的目的是评估五种不同的牲畜粪便(乳牛粪(DM),马粪(HM),山羊粪(GM),鸡粪(CM)和猪粪(SM)的BMP)并预测BMP使用不同的统计模型。还监测了消化的不同肥料的营养。 BMP测试是在中温温度下进行的,粪肥装载因子为3.5 g挥发性固体(VS)/ L,进料与接种物的比率(F / I)为0.5。使用粪便总碳水化合物(TC),粗蛋白(CP),总脂肪(TF),木质素(LIG)和酸性洗涤剂纤维(ADF)以及测得的BMP数据开发了单变量和多变量回归模型。 BMP预测评估了三种不同的动力学模型(一阶动力学模型,改进的Gompertz模型以及Chen和Hashimoto模型)。 DM,HM,GM,CM和SM的BMP分别为204、155、159、259和323 mL / g VS,计算出的VS去除率为58.6%,52.9%,46.4%,81.4 %,81.4%。 DM,HM,GM,CM和SM的技术消化时间(T_(80-90),生产总沼气的80-90%所需的时间)计算为19-28、27-37 ,31-44、13-18、12-17天。 HM的废水显示出最低的氮,磷和钾浓度。 CM蒸煮器的出水显示最高的氮和磷浓度,而消化的SM则显示出最高的钾浓度。根据回归分析的结果,在单个变量模型中,使用LIG变量的模型显示出最佳的BMP预测(R〜2 = 0.851,p = 0.026),并且包含TC和TF变量的模型显示出与其他两变量模型相比,BMP的最佳预测(R〜2 = 0.913,p = 0.068-0.075),而包含CP,LIG和ADF变量的模型在BMP预测中表现最佳(R〜2 = 0.999,p = 0.009-0.017)如果比较了三变量模型。在使用的三个动力学模型中,一阶动力学模型最适合测得的BMPs数据(R〜2 = 0.996-0.998,rRMSE = 0.171-0.381),并且测得的动力学模型与一阶动力学模型预测的BMPs之间的偏差小于3.0% 。

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