Study on the Environmental Impact and Benefits of Incorporating Humus Composites in Anaerobic Co-Digestion Treatment

Toxics Pub Date : 2024-05-13 DOI:10.3390/toxics12050360
Ke Zhao, Qiang Wei, Mingxuan Bai, Mengnan Shen
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Abstract

This study evaluated the environmental impact and overall benefits of incorporating humus composites in the anaerobic co-digestion of kitchen waste and residual sludge. The life cycle assessment method was used to quantitatively analyze the environmental impact of the entire anaerobic co-digestion treatment process of waste, including garbage collection, transportation, and final product utilization. Moreover, the comprehensive assessment of the environmental impact, energy-saving and emission-reduction abilities, and economic cost of using humus composites in the anaerobic co-digestion treatment process was conducted using a benefit analysis method. The results showed that the anaerobic co-digestion of kitchen waste and residual sludge significantly contributed to the mitigation of global warming potential (GWP), reaching −19.76 kgCO2-eq, but had the least impact on the mitigation of acidification potential (AP), reaching −0.10 kgSO2-eq. In addition, the addition of humus composites significantly increased the production of biogas. At a concentration of 5 g/L, the biogas yield of the anaerobic co-digestion process was 70.76 m3, which increased by 50.62% compared with the blank group. This amount of biogas replaces ~50.52 kg of standard coal, reducing CO2 emissions by 13.74 kg compared with burning the same amount of standard coal. Therefore, the anaerobic co-digestion treatment of kitchen waste and residual sludge brings considerable environmental benefits.
在厌氧协同消化处理中加入腐殖质复合材料对环境的影响和益处研究
本研究评估了在厌氧协同消化餐厨垃圾和剩余污泥过程中加入腐殖质复合材料的环境影响和整体效益。采用生命周期评估方法,定量分析了垃圾厌氧协同消化处理全过程对环境的影响,包括垃圾收集、运输和最终产品利用。此外,还采用效益分析法对厌氧协同消化处理过程中使用腐殖质复合材料的环境影响、节能减排能力和经济成本进行了综合评估。结果表明,餐厨垃圾和剩余污泥的厌氧协同消化对减缓全球变暖潜势(GWP)有显著贡献,达到-19.76 kgCO2-eq,但对减缓酸化潜势(AP)的影响最小,为-0.10 kgSO2-eq。此外,添加腐殖质复合材料还能显著提高沼气产量。当浓度为 5 克/升时,厌氧协同消化工艺的沼气产量为 70.76 立方米,与空白组相比增加了 50.62%。这一沼气量可替代约 50.52 千克的标准煤,与燃烧同等数量的标准煤相比,可减少 13.74 千克的二氧化碳排放量。因此,厌氧协同消化处理餐厨垃圾和剩余污泥可带来可观的环境效益。
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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