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Heavy Metal Uptake by Novel Miscanthus Seed-Based Hybrids Cultivated in Heavy Metal Contaminated Soil

机译:在重金属污染土壤中栽培的新型芒草种子基杂种对重金属的吸收

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When heavy metal contaminated soils are excluded from food production, biomass crops offer an alternative commercial opportunity. Perennial crops have potential for phytoremediation. Whilst the conditions at heavy metal contaminated sites are challenging, successful phytoremediation would bring significant economic and social benefits. Seed-based Miscanthus hybrids were tested alongside the commercial clone Miscanthus × giganteus on arable land, contaminated with Pb, Cd and Zn near Katowice. Before the randomized experimental plots were established (25m2 plots with plant density 2/m2) ‘time-zero’ soil samples were taken to determine initial levels of total (aqua regia) and bioavailable (CaCl2 extraction) concentration of Pb, Cd and Zn. After the growing season plant material was sampled during autumn (October, green harvest) and winter (March, brown harvest) to determine differences in heavy metal uptake. Results after the first growing season are presented, including the plot establishment success, biomass yield and heavy metal uptake.
机译:如果将重金属污染的土壤排除在粮食生产之外,则生物质作物将提供另一种商业机会。多年生作物具有植物修复的潜力。虽然重金属污染场地的条件充满挑战,但成功的植物修复将带来巨大的经济和社会效益。在可耕地上,与卡托维兹附近的Pb,Cd和Zn污染的商业化克隆Miscanthus×giganteus一起测试了基于种子的Miscanthus杂种。在建立随机实验样地(植物密度为2 / m2的25m2样地)之前,采集“零时光”土壤样品以确定Pb,Cd和Zn的总(王水)和生物利用度(CaCl2提取)的初始浓度。生长季节结束后,在秋季(10月,绿色收获)和冬季(3月,棕色收获)取样植物材料,以确定重金属吸收的差异。介绍了第一个生长季节后的结果,包括样地建立成功,生物量产量和重金属吸收量。

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