全球变暖潜势对集中式工业废水处理厂危险污泥处理影响的比较

R. Hakiki, M. P. Astuti, T. Wikaningrum
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引用次数: 0

摘要

目的:本研究的目的是比较安全填埋法和气化热污泥处理,找出两种处理将产生的环境影响。方法与结果:本研究采用“门到门LCA法”进行。在执行过程中,已经确定了限制和假设,以接近实际情况。所用的部分数据包括实验数据、理论质量平衡计算和前人研究中获得的二次数据。本研究利用开源的openLCA软件进行。LCA的四个阶段包括目标和范围定义、库存分析、影响评估和数据解释。模拟结果表明,热气化工艺的实施可以减少危险污泥直接运往安全填埋场的体积,从而减少向大气中的排放。结论、意义及影响研究:参考使用openLCA软件的模拟结果,在确定的研究范围内进行了一些假设和调整。可以得出结论,危险污泥的热(气化)处理可以进一步研究,并在处理厂实施。这表明,全球变暖潜在影响类别为673千克二氧化碳当量(用于直接处置到安全填埋场),减少了约424千克二氧化碳当量(用于实施热处理)。或者换句话说,影响的幅度减少到37%左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
COMPARISON OF GLOBAL WARMING POTENTIAL-IMPACT ON THE HANDLING OF THE HAZARDOUS-SLUDGE FROM THE CENTRALIZED INDUSTRIAL-WASTEWATER TREATMENT PLANT
Aims: This study was aimed to compare the secured landfill method and thermally sludge treatment through gasification, to find out the environmental impacts that will result from both treatments. Methodology and results: The study was carried out using the “gate-to-gate LCA method”. In its implementation, limits and assumptions have been determined as an approach to the actual condition. Some of the data used include the experimental data, theoretical mass balance calculation and secondary data obtained from previous research. The study was carried out utilizing the open-source openLCA software. The four-phase in the LCA include goal and scope definition, inventory analysis, impact assessment, and data interpretation. The simulation shows that the implementation of the thermal gasification process can reduce the emission released to the atmosphere by reducing hazardous sludge volume to be transported directly to the secured landfill. Conclusion, significance and impact study: Referring to the simulation results using openLCA software, with several assumptions and adjustments made, in the scope of the study that has been determined. It can be concluded that the thermal (gasification) treatment of hazardous sludge can be studied further in connection with its implementation at the treatment plant. It is indicated by the acquisition of global warming potential impact category of 673 kg CO2 eq (for direct disposal to secured landfill) reduced around 424 kg CO2 eq (for the implementation of thermal treatment). Or in other words, there is a reduction in the magnitude of the impact to around 37%.
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