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Co-digestion of vegetable peel with cow dung without external inoculum for biogas production: Experimental and a new modelling test in a batch mode

机译:用于牛粪的蔬菜果皮的共消化沼气生产:实验和批量模式下的新型建模试验

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摘要

This paper examined both experimental and a new modelling test for biogas production based on Co-Digestion Ratio (CDR) of vegetable peel (VP) with cow dung (CD) without external inoculum. For this, vegetable peel was used as a substrate and cow dung was used as a co-substrate. Reactors in triplicate were prepared. The vegetable peel concentrations were 12, 8, 6 and 4 g VS/l with the same cow dung concentration (4 g of VS/l) which corresponds to a CDR of 3:1, 2:1, 1.5:1 and 1:1. A new mathematical model corresponding to the biotech anaerobic digestion process based only on the (CDR) and (VS) was implemented under Matlab Simulink. The experimental results indicate that the optimal cumulative methane production (CMP) of 2000 ml was generated in the reactor containing a (CDR) of 3:1 which corresponds to a methane yield of 170 ml CH4/ g VS. i.e., an improvement between 23 and 26% comparing to all other CDRs. The experimental results were conformed by the new mathematical model. After applying the invented new idea by converting the constants (Rm, L and Gm) into functions (Rm =f1 (CDR), L=f2(CDR) and Gm = f3 (VS)) and relating them to each other using the Gompertz relation. The new model was able to predict the methane produced using only two inputs: VS and CDR. While in the literature studies, which were used Gompertz relationship for kinetic modelling, the constants must be recalculated each time as a new model, although the substrates used are the same, only the composition is different. Analysis of the variance (ANOVA) between the experimental and modelling results showed that there is no statistically significant difference, with a significance level of 0.05. Finally, the invented new idea can be a key to another different research that uses the same substrate.
机译:本文研究了基于蔬菜皮(VP)的共消化率(CDR)的实验性和新的沼气产生的新建模试验,其牛粪(vp)没有外部接种物。为此,使用植物果皮用作基材,用牛粪用作共衬底。制备三份的反应器。蔬菜剥离浓度为12,8,6和4g Vs / L,具有相同的牛粪浓度(4g Vs / L),其对应于3:1,2:1,1.5:1和1的CDR: 1。仅基于(CDR)和(VS)对应于Biotech Anaerobic消化过程的新数学模型在Matlab Simulink下实现。实验结果表明,在含有(CDR)的反应器中产生2000ml的最佳累积甲烷产量(CMP),其对应于170ml CH 4 / g的甲烷产率。即,与所有其他CDR相比,23%至26%的改善。实验结果由新的数学模型符合。通过将常量(RM,L和GM)转换为函数(RM = F1(CDR),L = F2(CDR)和GM = F3(VS))并使用GOMPertz将它们相互联系关系。新模型能够预测仅使用两个输入产生的甲烷:VS和CDR。虽然在文献研究中使用了用于动力学建模的Gompertz的关系,但必须每次重新计算常数作为一种新模型,尽管使用的基板是相同的,但只有组成是不同的。实验和建模结果之间的差异(ANOVA)的分析表明,没有统计学上有显着差异,其显着性水平为0.05。最后,发明的新想法可以是使用相同基板的另一个不同研究的关键。

著录项

  • 来源
    《Fuel》 |2021年第15期|121627.1-121627.9|共9页
  • 作者单位

    Univ Ahmed Draia Adrar Lab Energy Environm & Informat Syst Adrar 01000 Algeria;

    CDER Unite Rech Energies Renouvelables Milieu Saharien Ctr Dev Energies Renouvelables URERMS Adrar 01000 Algeria;

    Univ Ahmed Draia Adrar Lab Energy Environm & Informat Syst Adrar 01000 Algeria;

    Univ Ahmed Draia Adrar Lab Energy Environm & Informat Syst Adrar 01000 Algeria;

    Siirt Univ Dept Mech Engn Fac Engn TR-56100 Siirt Turkey;

    Erciyes Univ Energy Div Dept Mech Engn Alternat Fuels Res Lab AFRL TR-38039 Kayseri Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Anaerobic digestion; Methane production; Batch mode; AD modelling; Co-digestion ratio; Vegetable peel;

    机译:厌氧消化;甲烷生产;批量模式;广告建模;共消化率;蔬菜果皮;

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