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A comparison of the technical sustainability of in situ stabilisation/solidification with disposal to landfill

机译:原位稳定/固化与填埋处置的技术可持续性比较

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摘要

Sustainability is becoming a very important issue in contaminated land remediation and should form one of the factors used in future selection of treatment technologies. In situ stabilisation/solidification (S/S) is a remediation technique that is increasingly being applied to the treatment of contaminated sites because of numerous advantages over other remediation techniques. This paper assesses and compares aspects of the technical sustainability of in situ S/S with landfilling. Criteria previously established for the assessment of the technical sustainability of the remediation of contaminated land are employed. The comparison is presented in the form of a case study based on a real remediation project in the UK. The analysis indicated that landfilling had a larger impact than S/S in the majority of areas investigated, such as waste production (1000 kg waste/t soil remediated for landfilling compared to none for S/S), transportation (12.9 km/t for landfilling, 0.4 km/t for S/S) and use of raw materials (1005.5 kg/t for landfilling, 88.9 kg/t for S/S), although S/S had high greenhouse gas emissions (12.6 kg/t for landfilling, 40.9 kg/t for S/S). In addition, a multi-criteria/cost-effectiveness analysis gave cost effectiveness scores of —34.2 to S/S and —138.1 to landfill (where more positive is better).
机译:可持续性正在成为污染土地整治中的一个非常重要的问题,应成为将来选择处理技术时所使用的因素之一。原位稳定化/固化(S / S)是一种修复技术,由于与其他修复技术相比具有许多优势,因此越来越多地应用于污染场地的处理。本文评估并比较了现场S / S和填埋技术的技术可持续性。使用先前建立的评估受污染土地修复技术可持续性的标准。比较结果以案例研究的形式提供,该案例基于英国的一个真正的补救项目。分析表明,在大多数调查区域中,垃圾掩埋的影响大于S / S,例如废物产生(填埋处理的1000 kg废物/吨土壤,而S / S则没有,处理),运输(12.9 km / t)。填埋,S / S为0.4 km / t)和原材料的使用(填埋为1005.5 kg / t,S / S为88.9 kg / t),尽管S / S温室气体排放量很高(填埋为12.6 kg / t ,S / S为40.9千克/吨)。此外,多标准/成本效益分析得出,S / S的成本效益得分为–34.2,垃圾填埋场的成本效益得分为–138.1(越积极越好)。

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