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Effects of humic acid on phytodegradation of petroleum hydrocarbons in soil simultaneously contaminated with heavy metals 被引量:3
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作者 Soyoung Park Ki Seob Kim +2 位作者 Jeong-Tae Kim Daeseok Kang kijune sung 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2011年第12期2034-2041,共8页
The use of humic acid (HA) to enhance the efficiency of phytodegradation of petroleum hydrocarbons in soil contaminated with diesel fuel was evaluated in this study. A sample of soil was artificially contaminated wi... The use of humic acid (HA) to enhance the efficiency of phytodegradation of petroleum hydrocarbons in soil contaminated with diesel fuel was evaluated in this study. A sample of soil was artificially contaminated with commercially available diesel fuel to an initial total petroleum hydrocarbons (TPH) concentration of 2300 mg/kg and four heavy metals with concentrations of 400 mg/kg for Pb, 200 mg/kg for Cu, 12 mg/kg for Cd, and 160 mg/kg for Ni. Three plant species, Brassica campestris, Festuca arundinacea, and Helianthus annuus, were selected for the phytodegradation experiment. Percentage degradation of TPH in the soil in a control pot supplemented with HA increased to 45% from 30% without HA. The addition of HA resulted in an increases in the removal of TPH from the soil in pots planted with B. campestris, F. arundinacea, and H. annuus, enhancing percentage degradation to 86%, 64%, and 85% from 45%, 54%, and 66%, respectively. The effect of HA was also observed in the degradation of n-alkanes within 30 days. The rates of removal of n-alkanes in soil planted with B. campestris and H. annuus were high for n-alkanes in the range of C11–C28. A dynamic increase in dehydrogenase activity was observed during the last 15 days of a 30-day experimental period in all the pots amended with HA. The enhanced biodegradation performance for TPHs observed might be due to an increase in microbial activities and bioavailable TPH in soils caused by combined effects of plants and HA. The results suggested that HA could act as an enhancing agent for phytodegradation of petroleum hydrocarbons in soil contaminated with diesel fuel and heavy metals. 展开更多
关键词 phytodegradation TPHs humic acid N-ALKANES DHA combined effects
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石油烃污染土壤中腐植酸对草本植物吸收重金属的影响
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作者 Soyoung Park Ki Seob Kim +4 位作者 Daesok Kang Hansam Yoon kijune sung 陈昊 林启美 《腐植酸》 2014年第3期28-36,共9页
本文研究了重金属和石油烃复合污染土壤中,腐植酸对草本植物吸收重金属的影响。结果显示:腐植酸大幅度地降低了污染土壤中可溶性和交换态重金属含量,但提高了植物可利用态重金属含量。土壤添加腐植酸后,除Ni外,重金属潜在生物有效性和... 本文研究了重金属和石油烃复合污染土壤中,腐植酸对草本植物吸收重金属的影响。结果显示:腐植酸大幅度地降低了污染土壤中可溶性和交换态重金属含量,但提高了植物可利用态重金属含量。土壤添加腐植酸后,除Ni外,重金属潜在生物有效性和可淋出性因子大于1,这表明大多数重金属对植物具有潜在的有效性。此外,腐植酸增加了铅(Pb)、铜(Cu)、镉(Cd)和镍(Ni)在供试植物幼苗和根部的积累,最高的是高羊茅幼苗,达264.7%,生物富集系数从0.30提高到1.10。芸苔根中Ni和Pb的生物富集系数也有所提高。这些研究结果表明,石油烃与重金属同时污染的情况下,加入腐植酸可以促进植物吸收重金属,但降低重金属淋失,防止地下污染。 展开更多
关键词 植物萃取 植物有效性 生物富集系数(BCF) 转移系数(TF) 生物有效性和可淋出性因子(BLF)
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