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首页> 外文期刊>Water, Air, and Soil Pollution >Bioremediation of Co-contamination of Crude Oil and Heavy Metals in Soil by Phytoremediation Using Chromolaena odorata (L) King & H.E. Robinson
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Bioremediation of Co-contamination of Crude Oil and Heavy Metals in Soil by Phytoremediation Using Chromolaena odorata (L) King & H.E. Robinson

机译:使用香樟木(Chromolaena odorata)进行植物修复的土壤中原油和重金属共污染的生物修复(L)King&H.E.罗宾逊

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摘要

The capability of Chromolaena odorata (L) to grow in the presence of different concentrations of three heavy metals in crude oil-contaminated soil and its capability to remediate the contaminated soil was investigated using pot experiments. C. odorata plants were transplanted into contaminated soil containing 50,000 mg kg~(-1) crude oil and between 100 and 2,000 mg kg~(-1) of cadmium, nickel, and zinc and watered weekly with water containing 5% NPK fertilizer for 180 days. C. odorata did not show any growth inhibition in 50,000 mg kg~(-1) crude oil. Plants in experiments containing 2,000 mg kg~(-1) Cd showed little adverse effect compared to those in Zn-treated soil. Plants in 1,000 and 2,000 mg kg~(-1) Ni experiments showed more adverse effects. After 180 days, reduction in heavy metals were: 100 mg kg~(-1) experiments, Zn (35%), Cd (33%), and Ni (23%); 500 mg kg~(-1), Zn (37%), Cd (41%), and Ni (25%); 1,000 mg kg~(-1), Zn (65%), Cd (55%), and Ni (44%); and 2,000 mg kg~(-1), Zn (63%), Cd (62%), and Ni (47%). The results showed that the plants accumulated more of the Zn than Cd and Ni. Accumulation of Zn and Cd was highest in the 2,000 mg kg~(-1) experiments and Ni in the 500 mg kg~(-1) experiments. Crude oil was reduced by 82% in the experiments that did not contain heavy metals and by up to 80% in the heavy metal-treated soil. The control experiments showed a reduction of up to 47% in crude oil concentration, which was attributed to microbial action and natural attenuation. These results show that C. odorata (L) has the capability of thriving and phytoaccumulating heavy metals in contaminated soils while facilitating the removal of the contaminant crude oil. It also shows that the plant's capability to mediate the removal of crude oil in contaminated soil is not significantly affected by the concentrations of metals in the soil.
机译:使用盆栽试验研究了在污染原油的土壤中三种不同重金属浓度下,香游衣藻(L. Chromolaena odorata)(L)的生长能力和修复污染土壤的能力。将香茅(C. odorata)植物移植到含有50,000 mg kg〜(-1)原油和100至2,000 mg kg〜(-1)的镉,镍和锌的污染土壤中,并每周用5%NPK肥料的水浇水以用于180天在50,000 mg kg〜(-1)原油中,香茅衣原体没有表现出任何生长抑制作用。与含锌土壤相比,含2,000 mg kg〜(-1)Cd的植物几乎没有不良反应。在1,000和2,000 mg kg〜(-1)Ni实验中的植物显示出更多的不利影响。 180天后,重金属的还原量为:100 mg kg〜(-1)实验,Zn(35%),Cd(33%)和Ni(23%); 500 mg kg〜(-1),Zn(37%),Cd(41%)和Ni(25%); 1,000 mg kg〜(-1),Zn(65%),Cd(55%)和Ni(44%); 2,000 mg kg〜(-1),Zn(63%),Cd(62%)和Ni(47%)。结果表明,植物中锌的累积量高于镉和镍。在2,000 mg kg〜(-1)实验中,Zn和Cd的积累最高,在500 mg kg〜(-1)实验中,Ni的积累最高。在不含重金属的实验中,原油减少了82%,在经过重金属处理的土壤中,原油减少了80%。对照实验表明,原油浓度降低了47%,这归因于微生物作用和自然衰减。这些结果表明,香茅(L. odorata)(L)具有使受污染土壤中的重金属蓬勃生长和植物富集的能力,同时有利于去除污染的原油。它还表明,该植物介导去除受污染土壤中原油的能力不受土壤中金属浓度的显着影响。

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