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Rapid production of willow biomass using a novel microcutting-based field planting technology

机译:利用新型微包的田间种植技术快速生产柳生物量

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摘要

Phytoremediation is becoming recognised as a promising environmental approach to decontaminate land. However, establishing large-scale plantations for phytoremediation purposes can bear prohibitive costs. In order to deliver large-scale phytoremediation projects, easily implemented plant establishment solutions need to be available to practitioners. Here, we present a novel planting technology based on willow microcuttings for the rapid establishment of phytoremediation plantations. An experiment was performed testing the effect of microcutting planting density and diversity on various growth parameters including aboveground biomass yields. After two growing seasons, aboveground dry biomass reached an equivalent of 23.1 t/ha. Willow microcutting planting density and diversity did not significantly affect biomass yields, although other growth parameters (survival, stand density and mean stem height) differed across treatments. Our results suggest that this willow microcutting planting technology is viable at large-scale, robust across willow species and represents a lower cost alternative to more traditional planting technologies.
机译:植物化修复被认为是净化土地的有希望的环境方法。然而,为植物修复目的建立大规模的种植园可以承担禁止成本。为了提供大规模的植物修复项目,需要对从业者提供植物建立解决方案。在这里,我们介绍了一种基于柳树微加密的新型种植技术,用于快速建立植物修复种植园。进行了一种实验,测试微包装种植密度和多样性对各种生长参数的效果,包括地上生物质产量。经过两个生长的季节后,地上干生物量达到相当于23.1 T / HA。杨柳微包装种植密度和多样性没有显着影响生物质产量,尽管其他生长参数(存活率,站立密度和平均茎高)横跨治疗不同。我们的研究结果表明,这种柳树微包装技术在柳树种类的大规模上可行,并且代表了更较低的成本替代更加传统的种植技术。

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