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嗜冷温度条件下改善食物垃圾厌氧消化的研究趋势与策略

Research trends and strategies for the improvement of anaerobic digestion of food waste in psychrophilic temperatures conditions.

作者信息

Rodríguez-Jiménez Lina Mariana, Pérez-Vidal Andrea, Torres-Lozada Patricia

机构信息

Universidad Del Valle, Faculty of Engineering, Study and Control of Environmental Pollution - ECCA Research Group, Cali 760032, Colombia.

Universidad Santiago de Cali. School of Engineering, Electronic, Industrial and Environmental Engineering - GIEIAM Research Group, Cali 760032, Colombia.

出版信息

Heliyon. 2022 Oct 20;8(10):e11174. doi: 10.1016/j.heliyon.2022.e11174. eCollection 2022 Oct.

Abstract

The organic fraction of municipal solid waste is mainly composed of food waste (FW), and traditional disposal practices for this fraction are generally considered to have negative environmental and economic impacts. However, the organic characteristics of this fraction could also be exploited through the anaerobic digestion of FW (FW-AD), which represents unique advantages, including the reduction of the area required for final disposal and environmental pollution and the same time the generation of renewable energy (mainly methane gas), and a by-product for agricultural use (digestate) due to its high nutrient content. Although approximately 88% of the world's population resides in areas with temperatures below 8 °C, psychrophilic conditions (temperatures below 20 °C) have hardly been studied, while mesophilic (66%) and thermophilic (27%) ranges were found to be more common than psychrophilic FW-AD (7%). The latter condition could decrease microbial activity and organic matter removal, which could affect biogas production and even make AD unfeasible. To improve the efficiency of the psychrophilic FW-AD process, there are strategies such as: measurement of physical properties as particle size, rheological characteristics (viscosity, consistency index and substrate behavior index), density and humidity, bioaugmentation and co-digestion with other substrates, use of inocula with psychrophilic methanogenic communities, reactor heating and modification of reactor configurations. However, these variables have hardly been studied in the context of psychrophilic conditions and future research should focus on evaluating the influence of these variables on FW-AD under psychrophilic conditions. Through a bibliometric analysis, this paper has described and analyzed the FW-AD process, with a focus on the psychrophilic conditions (<20 °C) so as to identify advances and future research trends, as well as determine strategies toward improving the anaerobic process under low temperature conditions.

摘要

城市固体废物的有机部分主要由食物垃圾(FW)组成,该部分的传统处置方式通常被认为会对环境和经济产生负面影响。然而,这部分的有机特性也可以通过食物垃圾厌氧消化(FW-AD)来加以利用,其具有独特优势,包括减少最终处置所需面积和环境污染,同时产生可再生能源(主要是甲烷气体),以及因其高养分含量而产生可用于农业的副产品(消化液)。尽管世界上约88%的人口居住在温度低于8°C的地区,但嗜冷条件(温度低于20°C)几乎未得到研究,而中温(66%)和高温(27%)范围比嗜冷FW-AD(7%)更为常见。后一种情况会降低微生物活性和有机物去除率,进而影响沼气生产,甚至使厌氧消化不可行。为提高嗜冷FW-AD过程的效率,有以下策略:测量物理性质如粒径、流变特性(粘度、稠度指数和底物行为指数)、密度和湿度,生物强化以及与其他底物共消化,使用具有嗜冷产甲烷菌群的接种物,反应器加热和反应器配置改造。然而,这些变量在嗜冷条件下几乎未得到研究,未来研究应聚焦于评估这些变量在嗜冷条件下对FW-AD的影响。通过文献计量分析,本文描述并分析了FW-AD过程,重点关注嗜冷条件(<20°C),以识别进展和未来研究趋势,并确定在低温条件下改善厌氧过程的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae70/9626950/ecc43d8f77cb/ga1.jpg

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