首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Fate of C-14-Pyrene in soil-plant system amended with pig manure compost and Tween 80: A growth chamber study
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Fate of C-14-Pyrene in soil-plant system amended with pig manure compost and Tween 80: A growth chamber study

机译:用猪粪堆肥和吐温80改良土壤植物系统中C-14 P的命运:一项生长室研究

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摘要

This paper evaluated the effects of a pig manure compost (PMC) and a nonionic surfactant Tween 80 on the fate of C-14-Pyrene (Pyr) in a soil-plant system (Agropyron elongatum). Soils spiked with C-14-4, 5, 9, 10-Pyr were amended with 7.5% (w/w) PMC together with or without 100 mg kg(-1) of Tween 80. Unplanted soil without amendments was set as the control. Gas phases of the systems were monitored for (CO2)-C-14 over a 60 days period. The impact of PMC and Tween 80 on the apparent loss of the PAH and the distribution of C-14-activity in the systems was studied. C-14-activity associated with different soil fractions was further examined by using methyl-isobutyl-ketone (MIBK) fractionation method. The results showed that the addition of PMC could increase the dissipation of Pyr in vegetated soil from 12.1% to 58.7%, while the co-addition of Tween 80 and PMC could further enhance the dissipation to 90.3%. Pyr dissipation in soil was correlated with the mineralization of C-14-Pyr, indicating that Pyr dissipation was mainly due to mineralization. A higher formation of water-extractable metabolites was observed in soil amended with PMC and Tween 80, and this was correlated with a higher biomass accumulation of C-14-activity and higher bound residue formation in the soil. Overall, this study suggested that the co-application of PMC and Tween 80 could improve phytoremediation of Pyr-contarninated soil. (c) 2008 Published by Elsevier Ltd.
机译:本文评估了猪粪堆肥(PMC)和非离子表面活性剂吐温80对土壤-植物系统(Agropyron elongatum)中C-14-P(Pyr)命运的影响。将掺有C-14-4、5、9、10-Pyr的土壤与7.5%(w / w)PMC一起或不与100 mg kg(-1)的Tween 80一起进行修正。控制。在60天内监测系统的气相中的(CO2)-C-14。研究了PMC和Tween 80对PAH的表观损失和系统中C-14活性分布的影响。通过使用甲基异丁基酮(MIBK)分馏方法进一步检查了与不同土壤组分相关的C-14活性。结果表明,添加PMC可使植被土壤中Pyr的耗散率从12.1%增加到58.7%,而Tween 80和PMC的共添加可进一步将耗散率提高至90.3%。土壤中的Pyr消散与C-14-Pyr的矿化有关,这表明Pyr消散主要是由于矿化。在用PMC和Tween 80改良的土壤中观察到较高的水可提取代谢物形成,这与C-14活性较高的生物量积累和土壤中较高的结合残留物形成有关。总体而言,这项研究表明,PMC和Tween 80的共同应用可以改善Pyr污染土壤的植物修复。 (c)2008年由Elsevier Ltd.发布。

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