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Impact of soil amendment on phytotoxicity of a 5-month old waste engine oil polluted soil

机译:土壤修正对5个月大型废物发动机污染土壤植物毒性的影响

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The present study investigated the effects of soil amendment on the remediation of waste engine oil (WEO) polluted soil, as well as the eventual phytotoxic effects of remediated amended soil on some growth parameters of cowpea. There was significant decrease in heavy metal concentration of the polluted soil more than average, nine months after amendment. There was also total remediation of some PAH compounds (benzo(a)anthracene, benzo(a)pyrene, benzo(b)fluoranthene, benezo(g,h,i)perylene, benzo(k)fluoranthene, chrysene, dibenzo(a,h)anthracene, fluoranthene, fluorene and Indeno(1,2,3-c,d)pyrene).?Achromobacter?sp,?Clostridium?sp,Sarcina?sp and?Micrococcus?sp were prevalent bacteria species found in the polluted soils, while prevalent fungi species included?Aspergillus niger, Penicillium?sp,Geotrichum?sp and?Trichoderma?sp. The actinomycete?Nocardia?sp was prevalent as well. Ecological risk factor initially posed by the presence of heavy metals in the unamended soil was significantly reduced to safe levels.?Phyto assessment of the polluted soil was carried out just before soil was amended with saw dust and results showed that virtually all the cowpea seedlings died within 2 weeks; only those seedlings in unpolluted soils survived. Nine months after soil was amended, all cowpea plants survived up to fruiting. The present study also showed that cowpea was able to bioaccumulate heavy metals into harvestable parts, though bioaccumulation quotients calculated showed that these accumulations were not significant.
机译:本研究调查了土壤修正对废物发动机油(WEO)污染土壤修复的影响,以及对豇豆的一些生长参数进行了修复的修正土壤的最终植物毒性作用。污染土壤的重金属浓度大于平均水平,修正后九个月显着降低。还有一些PAH化合物(苯并(a)蒽,苯并(a)芘,苯并(b)氟丙烯,Benezo(g,h,i)perylene,苯并(k)氟,菊酮(a,a, h)蒽,氟,芴和茚(1,2,3-C,D)芘)。α致作杆杆菌,αsc,βsp,sarcina?sp和αmicocoxsp和αmococcus?sp在污染的土壤中发现普遍存在的细菌种类,而普遍的真菌物种包括?Aspergillus niger,Penicillium?sp,geotrichum?sp和?trichoderma?sp。放射性肌瘤?Nocardia也是普遍的。最初在未来土壤中存在重金属的生态危险因素显着降低到安全水平。污染土壤的评估在土壤修正之前进行锯切和结果表明几乎所有的豇豆幼苗死亡在2周内;只有未污染的土壤中的那些幼苗存活下来。土壤修正后九个月,所有豇豆植物都幸存下来。本研究还表明,豇豆能够将重金属生物累积成收获的部件,但计算的生物累积配方表明这些累积不显着。

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