Characteristics of Biogas Production and Synergistic Effect of Primary Sludge and Food Waste Co-Digestion.

IF 3.1 3区 工程技术 Q3 ENERGY & FUELS
Nikola Rakić, Vanja Šušteršič, Dušan Gordić, Nebojša Jovičić, Goran Bošković, Ivan Bogdanović
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Abstract

Co-digestion implementation in wastewater treatment plants enhances biogas yield, so this research investigated the optimal ratio of biodegradable waste and sewage sludge. The increase in biogas production was investigated through batch tests using basic BMP equipment, while synergistic effects were evaluated by chemical oxygen demand (COD) balance. Analyses were performed in four volume basis ratios (3/1, 1/1, 1/3, 1/0) of primary sludge and food waste with added low food waste: 3.375%, 4.675%, and 5.35%, respectively. The best proportion was found to be 1/3 with the maximum biogas production (618.7 mL/g VS added) and the organic removal of 52.8% COD elimination. The highest enhancement rate was observed among co-digs 3/1 and 1/1 (105.72 mL/g VS). A positive correlation between biogas yield and COD removal is noticed while microbial flux required an optimal pH, value of 8 significantly decreased daily production rate. COD reductions further supported the synergistic impact; specifically, an additional 7.1%, 12.8%, and 17% of COD were converted into biogas during the co-digestions 1, 2, and 3, respectively. Three mathematical models were applied to estimate the kinetic parameters and check the accuracy of the experiment. The first-order model with a hydrolysis rate of 0.23-0.27 indicated rapidly biodegradable co-/substrates, modified Gompertz confirmed immediate commencement of co-digs through zero lag phase, while the Cone model had the best fit of over 99% for all trials. Finally, the study points out that the COD method based on linear dependence can be used for developing relatively accurate model for biogas potential estimation in anaerobic digestors.

Supplementary information: The online version contains supplementary material available at 10.1007/s12155-023-10620-8.

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一级污泥与餐厨废弃物共消化的沼气生产特性及协同效应。
在污水处理厂中实施共消化可以提高沼气产量,因此本研究研究了可生物降解废物和污水污泥的最佳比例。使用基本的BMP设备通过分批试验研究了沼气产量的增加,同时通过化学需氧量(COD)平衡评估了协同效应。对添加低食物垃圾的初级污泥和食物垃圾的四种体积基准比(3/1、1/1、1/3、1/0)进行了分析:分别为3.375%、4.675%和5.35%。最佳比例为1/3,沼气产量最大(添加618.7mL/g VS),有机物去除率为52.8%。在3/1和1/1的共挖掘中观察到最高的增强率(105.72 mL/g VS)。沼气产量和COD去除率呈正相关,而微生物流量需要最佳pH值,值为8显著降低了日生产率。COD的减少进一步支持了协同效应;具体而言,在共消化1、2和3期间,额外的7.1%、12.8%和17%的COD分别转化为沼气。应用三个数学模型来估计动力学参数并检查实验的准确性。水解速率为0.23-0.27的一阶模型表明可快速生物降解的共/底物,改良的Gompertz证实了通过零滞后阶段立即开始共挖掘,而Cone模型对所有试验的最佳拟合度超过99%。最后,研究指出,基于线性相关性的COD方法可以用于建立相对准确的厌氧消化池沼气潜力估算模型。补充信息:在线版本包含补充材料,可访问10.1007/s12155-023-10620-8。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
BioEnergy Research
BioEnergy Research ENERGY & FUELS-ENVIRONMENTAL SCIENCES
CiteScore
6.70
自引率
8.30%
发文量
174
审稿时长
3 months
期刊介绍: BioEnergy Research fills a void in the rapidly growing area of feedstock biology research related to biomass, biofuels, and bioenergy. The journal publishes a wide range of articles, including peer-reviewed scientific research, reviews, perspectives and commentary, industry news, and government policy updates. Its coverage brings together a uniquely broad combination of disciplines with a common focus on feedstock biology and science, related to biomass, biofeedstock, and bioenergy production.
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