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芘矿化能力随堆肥成熟度的增加而增强。

Pyrene mineralization capacity increases with compost maturity.

作者信息

Haderlein Andreas, Legros Robert, Ramsay Bruce A

机构信息

Department of Chemical Engineering, Ecole Polytechnique de Montréal, 2900 Edouard-Montpetit, P.O. Box 6079, Montréal, Québec, H3C 3A7, Canada.

出版信息

Biodegradation. 2006 Aug;17(4):293-302. doi: 10.1007/s10532-005-4217-8. Epub 2005 Oct 20.

Abstract

Experiments were conducted to determine the effects of composting or simple addition of compost to the mineralization of n-hexadecane, pyrene and benzo(a)pyrene in soil. Soil (contaminated or clean) was composted with maple leaves and alfalfa. Samples from different composting phases were spiked with radiolabeled and cold n-hexadecane, pyrene or benzo(a)pyrene, placed in aerated microcosms at different temperatures, and monitored for mineralization. It was determined that neither composting nor the addition of compost had any effect on n-alkane or benzo(a)pyrene mineralization. In contrast, the pyrene mineralization rate increased dramatically with the amount of time that soil had been composted. Highest pyrene mineralization rates and extents (more than 60% after 20 days) were obtained when pyrene was in contact with composted soil from the curing stage. Neither thermophiles (55 degrees C) nor fungi were responsible for pyrene mineralization.

摘要

开展了实验以确定堆肥或简单添加堆肥对土壤中正十六烷、芘和苯并(a)芘矿化作用的影响。将土壤(受污染的或清洁的)与枫叶和苜蓿一起进行堆肥处理。在不同堆肥阶段的样品中加入放射性标记的和未标记的正十六烷、芘或苯并(a)芘,置于不同温度下通气的微观环境中,并监测矿化情况。结果表明,堆肥处理和添加堆肥对正构烷烃或苯并(a)芘的矿化均无影响。相比之下,芘的矿化速率随土壤堆肥时间的增加而显著提高。当芘与腐熟阶段的堆肥土壤接触时,可获得最高的芘矿化速率和矿化程度(20天后超过60%)。嗜热菌(55摄氏度)和真菌均与芘的矿化无关。

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