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Enhancements in phytoremediation technology: Environmental assessment including different options of biomass disposal and comparison with a consolidated approach

机译:植物修复技术的改进:环境评估,包括生物质处置的不同选择以及与综合方法的比较

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Phytoremediation represents a solution for treating soils contaminated by heavy metals, provided that appropriate plant species are selected and the proper strategy chosen. When dealing with soil contaminated with arsenic and/or lead, which are non-essential elements for plants but also among the most toxic metals, this task is particularly difficult to achieve. In a previous contribution we showed that metals accumulation by Lupinus albus, Brassica juncea and Helianthus annuus can be improved by dosing suitable chemicals (i.e. phosphate and EDTA), leading to a quicker and cheaper intervention.This study discusses the assisted phytoremediation of a real site contaminated by several metals, presenting an environmental assessment realized by using the GaBi LCA software. The environmental sustainability of the reclamation technology was analyzed in terms of Global Warming Potential (GWP-100 years), considering different destinations for the harvested biomass, and comparing its ecological footprint with the outcomes of a conventional treatment of excavation and landfill disposal.The comparison clearly shows the great advantage of the phytoremediation, in terms of environmental impact, highlighting the importance of correctly handling the disposal of contaminated biomass produced. In fact, its incineration (aimed at reducing the volumes to be disposed of) could be more onerous than a direct land filling, but re-qualify as a more sustainable choice if combined with energy recovery. The same applies to fast pyrolysis, which seems to be the most sustainable approach to date, at least in terms of technological maturity, although this requires technical-economic considerations on the quality and use of biofuels produced.
机译:植物修复是解决重金属污染土壤的一种解决方案,只要选择合适的植物种类并选择适当的策略即可。当处理被砷和/或铅污染的土壤时,砷和/或铅是植物的非必需元素,但也是毒性最高的金属之一,因此很难完成此任务。在以前的贡献中,我们表明,通过添加合适的化学物质(例如磷酸盐和EDTA),可以改善羽扇豆,芥菜和向日葵的金属积累,从而可以更快,更便宜地进行干预。本研究讨论了对实际地点的辅助植物修复。被几种金属污染,提出了使用GaBi LCA软件实现的环境评估。根据全球变暖潜势(GWP-100年),考虑了收获生物质的不同目的地,并将其生态足迹与传统开挖和垃圾填埋处理的结果进行了比较,对填海技术的环境可持续性进行了分析。在对环境的影响方面,清楚地表明了植物修复的巨大优势,突出了正确处理产生的受污染生物质的重要性。实际上,其焚化(旨在减少要处置的体积)可能比直接填埋更为艰巨,但如果与能源回收相结合,则可以重新认定为更可持续的选择。快速热解也是如此,至少在技术成熟方面,快速热解似乎是迄今为止最可持续的方法,尽管这需要对生产的生物燃料的质量和用途进行技术-经济方面的考虑。

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