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Phytoremediation-biorefinery tandem for effective clean-up of metal contaminated soil and biomass valorisation

机译:植物修复-生物精炼串联以有效净化金属污染的土壤和生物质的增值

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摘要

During the last few decades, phytoremediation process has attracted much attention because of the growing concerns about the deteriorating quality of soil caused by anthropogenic activities. Here, a tandem phytoremediation/biorefinery process was proposed as a way to turn phytoremediation into a viable commercial method by producing valuable chemicals in addition to cleaned soil. Two agricultural plants (Sinapis alba and Helianthus annuus) were grown in moderately contaminated soil with ca. 100 ppm of Ni and further degraded by a fungal lignin degrader - Phanerochaete chrysosporium. Several parameters have been studied: the viability of plants, biomass yield and their accumulating and remediating potentials. Further down-stream processing showed that up to 80% of Ni can be easily extracted from contaminated biomass by aqueous extraction at mild conditions. Finally, it was demonstrated that the grown onto contaminated soil plants can be degraded by Phanerochaete chrysosporium and the effect of nickel and biomass pre-treatment on the solid state fermentation was studied. The proposed and studied in this work methodology can pave the way to successful commercialization of the phytoremediation process in the near future.
机译:在过去的几十年中,由于人为活动引起的土壤质量不断下降,植物修复过程引起了人们的广泛关注。在此,提出了一种串联植物修复/生物精炼工艺,作为通过除清洁的土壤之外还生产有价值的化学物质将植物修复转化为可行的商业方法的方法。两种农业植物(Sinapis alba和Helianthus annuus)生长在中等污染的土壤中,约有。 Ni为100 ppm,并被真菌木质素降解剂-Phanerochaete chrysosporium进一步降解。研究了几个参数:植物的生存力,生物量的产量以及它们的积累和修复潜力。进一步的下游处理表明,通过在温和条件下进行水萃取,可以轻松地从污染的生物质中萃取多达80%的Ni。最后,证明了Phanerochaete chrysosporium可以降解到受污染的土壤植物上,并且研究了镍和生物量预处理对固态发酵的影响。在这项工作方法中提出和研究的方法可以为在不久的将来成功实现植物修复过程的商业化铺平道路。

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