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芦竹(Arundo donax L.),一种用于治理受微量元素污染的水和土壤并生产植物性饲料原料的候选植物。综述。

Arundo donax L., a candidate for phytomanaging water and soils contaminated by trace elements and producing plant-based feedstock. A review.

出版信息

Int J Phytoremediation. 2014;16(7-12):982-1017. doi: 10.1080/15226514.2013.810580.

Abstract

Plants and associated microorganisms are used to remediate anthropogenic metal(loid) contamination of water, soils and sediments. This review focuses on the potential of Arundo donax L. (Giant reed) for alleviating risks due to soils, water, and sediments contaminated by trace elements (TE), with emphasis on its advantages and limits over macrophytes and perennial grasses used for bioenergy and plant-based feedstock. Arundo donax is relevant to phytomanage TE-contaminated matrices, notably in its native area, as it possesses characteristics of large biomass production even under nutrient and abiotic stresses, fast growth rate, TE tolerance and accumulation mainly in below ground plant parts. Cultivating A. donax on contaminated lands and in constructed wetlands can contribute to increase land availability and limit the food vs. plant-based feedstock controversy. To gain more tools for decision-taking and sustainable management,further researches on A. donax should focus on: interactions between roots, TE exposure, and rhizosphere and endophytic microorganisms; biomass response to (a)biotic factors; sustainable agricultural practices on marginal and contaminated land; integration into local, efficient, energy and biomass conversion chains with concern to biomass quality and production; Life-Cycle Assessment including contaminant behavior, as well as environmental, agricultural and socio-economic benefits and drawbacks.

摘要

植物及其相关微生物被用于修复人为造成的水、土壤和沉积物中的金属(类)污染。本综述重点介绍了芦竹(Arundo donax L.)缓解受微量元素污染的土壤、水和沉积物风险的潜力,强调了其相对于用于生物能源和植物性饲料的大型水生植物和多年生草类的优势和局限性。芦竹与受 TE 污染的基质的植物管理有关,特别是在其原生地区,因为它具有在养分和非生物胁迫下仍能大量生产生物质的特性、快速生长速度、对 TE 的耐受性和积累,主要集中在地下植物部分。在受污染土地和人工湿地中种植芦竹可以增加土地的可用性,并限制粮食与植物性饲料之间的争议。为了获得更多的决策和可持续管理工具,应进一步研究芦竹:根系、TE 暴露与根际和内生微生物之间的相互作用;生物量对(a)生物因素的响应;边际和污染土地的可持续农业实践;关注生物质质量和生产的整合到当地高效的能源和生物质转化链中;生命周期评估包括污染物行为以及环境、农业和社会经济的利弊。

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