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Phyto-enhanced remediation of soil co-contaminated with lead and diesel fuel using biowaste and Dracaena reflexa: A laboratory study

机译:利用生物废料和龙血树反射植物对植物与铅和柴油燃料共同污染的土壤进行植物修复的实验室研究

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摘要

In phytoremediation of co-contaminated soil, the simultaneous and efficient remediation of multiple pollutants is a major challenge rather than the removal of pollutants. A laboratory-scale experiment was conducted to investigate the effect of 5% addition of each of three different organic waste amendments (tea leaves, soy cake, and potato skin) to enhance the phytoaccumulation of lead (60 mg kg~(-1)) and diesel fuel (25,000mgkg~(-1)) in co-contaminated soil by Dracaena reflexa Lam for a period of 180 day. The highest rate of oil degradation was recorded in co-contaminated soil planted with D. reflexa and amended with soy cake (75%), followed by potato skin (52.8%) and tea leaves (50.6%). Although plants did not accumulate hydrocarbon from the contaminated soil, significant bioaccumulation of lead in the roots and stems of D. reflexa was observed. At the end of 180days, 16.7 and 9.8mg kg~(-1) of lead in the stems and roots of D. reflexa were recorded, respectively, for the treatment with tea leaves. These findings demonstrate the potential of organic waste amendments in enhancing phytoremediation of oil and bioaccumulation of lead.
机译:在对受污染土壤的植物修复中,同时有效地修复多种污染物是一项主要挑战,而不是去除污染物。进行了实验室规模的实验,研究了三种不同的有机废物改良剂(茶叶,大豆饼和土豆皮)分别添加5%以提高铅的植物累积量(60 mg kg〜(-1))的影响。并在龙血树下共同污染的土壤中使用柴油(25,000mgkg〜(-1))180天。油渍降解率最高的是在被D. reflexa种植并被大豆饼改良的共污染土壤中(75%),其次是马铃薯皮(52.8%)和茶叶(50.6%)。尽管植物并未从受污染的土壤中积累碳氢化合物,但观察到反射小球藻根和茎中大量的铅生物积累。在180天结束时,分别记录了茶树茎和根中铅的16.7和9.8mg kg〜(-1)铅。这些发现证明了有机废物改良剂在增强油脂的植物修复和铅的生物富集方面的潜力。

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