首页> 外文期刊>International Journal of Phytoremediation >Short rotation coppice culture of willows and poplars as energy crops on metal contaminated agricultural soils.
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Short rotation coppice culture of willows and poplars as energy crops on metal contaminated agricultural soils.

机译:在金属污染的农业土壤上,短周期轮作杨柳和杨树作为能源作物的栽培。

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摘要

Phytoremediation, more precisely phytoextraction, has been placed forward as an environmental friendly remediation technique, that can gradually reduce increased soil metal concentrations, in particular the bioavailable fractions. The aim of this study was to investigate the possibilities of growing willows and poplars under short rotation coppice (SRC) on an acid, poor, sandy metal contaminated soil, to combine in this way soil remediation by phytoextraction on one hand, and production of biomass for energy purposes on the other. Above ground biomass productivities were low for poplars to moderate for willows, which was not surprising, taking into account the soil conditions that are not very favorable for growth of these trees. Calculated phytoextraction efficiency was much longer for poplars than these for willows. We calculated that for phytoextraction in this particular case it would take at least 36 years to reach the legal threshold values for cadmium, but in combination with production of feedstock for bioenergy processes, this type of land use can offer an alternative income for local farmers. Based on the data of the first growing cycle, for this particular case, SRC of willows should be recommended.
机译:植物修复,更确切地说是植物提取,已经被提出作为一种环境友好的修复技术,可以逐渐降低土壤金属的浓度,特别是生物可利用部分的浓度。这项研究的目的是研究在酸性,贫瘠,含沙金属污染的土壤上短时旋转小灌木林(SRC)下种植柳树和杨树的可能性,一方面结合通过植物提取的土壤修复方法以及生物量的生产出于能源目的。杨树的地上生物量生产力较低,而柳树则中等,这不足为奇,考虑到土壤条件不利于这些树木的生长。杨树的计算植物提取效率要比柳树的要高得多。我们计算出,在这种特殊情况下,对植物的萃取需要至少36年才能达到镉的法定阈值,但结合用于生物能源工艺的原料生产,这种土地利用可以为当地农民提供替代收入。根据第一个生长周期的数据,对于这种特殊情况,应建议使用柳树的SRC。

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