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首页> 外文期刊>The Science of the Total Environment >The use of biochar to reduce soil PCB bioavailability to Cucurbita pepo and Eisenia fetida
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The use of biochar to reduce soil PCB bioavailability to Cucurbita pepo and Eisenia fetida

机译:生物炭的使用降低土壤南瓜对南瓜属和赤子菊的生物利用度

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Biochar is a carbon rich by-product produced from the thermal decomposition of organic matter under low oxygen concentrations. Currently many researchers are studying the ability of biochar to improve soil quality and function in agricultural soils while sustainably sequestering carbon. This paper focuses on a novel but complimentary application of biochar - the reduced bioavailability and phytoavailability of organic contaminants in soil, specifically polychlorinated biphenyls (PCBs). In this greenhouse experiment, the addition of 2.8% (by weight) biochar to soil contaminated with 136 and 3.1 μg/g PCBs, reduced PCB root concentration in the known phytoextractor Cucurbita pepo ssp. pepo by 77% and 58%, respectively. At 11.1% biochar, even greater reductions of 89% and 83% were recorded, while shoot reductions of 22% and 54% were observed. PCB concentrations in Eisenia fetida tissue were reduced by 52% and 88% at 2.8% and 11.1% biochar, respectively. In addition, biochar amended to industrial PCB-contaminated soil increased both aboveground plant biomass, and worm survival rates. Thus, biochar has significant potential to serve as a mechanism to decrease the bioavailability of organic contaminants (e.g. PCBs) in soil, reducing the risk these chemicals pose to environmental and human health, and at the same time improve soil quality and decrease CO_2 emissions.
机译:生物炭是低氧浓度下有机物热分解产生的富碳副产物。当前,许多研究人员正在研究生物炭改善农业土壤土壤质量和功能,同时可持续隔离碳的能力。本文着重于生物炭的新颖但互补的应用-降低土壤中有机污染物(特别是多氯联苯(PCB))的生物利用度和植物利用度。在该温室试验中,向被136和3.1μg/ g PCBs污染的土壤中添加2.8%(按重量计)的生物炭,降低了已知植物提取器南瓜属ssp ssp中PCB根的浓度。 pepo分别减少了77%和58%。在生物炭含量为11.1%的情况下,记录到更大的减少量,分别为89%和83%,而芽的减少量则为22%和54%。在生物炭含量分别为2.8%和11.1%的情况下,艾塞斯坦(Eisenia fetida)组织中的PCB浓度分别降低了52%和88%。此外,将生物炭修改为工业用PCB污染的土壤可提高地上植物的生物量和蠕虫的成活率。因此,生物炭具有巨大的潜力,可作为一种机制来降低土壤中有机污染物(例如PCBs)的生物利用度,减少这些化学物质对环境和人类健康构成的风险,同时改善土壤质量并减少CO_2排放。

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