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Biodegradation of Toluene Under Seasonal and Diurnal Fluctuations of Soil-Water Temperature

机译:土壤水温季节和日变化下甲苯的生物降解

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摘要

An increasing interest in bioremediation of hydrocarbon polluted sites raises the question of the influence of seasonal and diurnal changes on soil-water temperature on biodegradation of BTEX, a widespread group of (sub)-surface contaminants. Therefore, we investigated the impact of a wide range of varying soil-water temperature on biodegradation of toluene under aerobic conditions. To see the seasonal impact of temperature, three sets of batch experiments were conducted at three different constant temperatures: 10°C, 21°C, and 30°C. These conditions were considered to represent (1) winter, (2) spring and/or autumn, and (3) summer seasons, respectively, at many polluted sites. Three additional sets of batch experiments were performed under fluctuating soil-water temperature cases (21<>10°C, 30<>21°C, and 10<>30°C) to mimic the day–night temperature patterns expected during the year. The batches were put at two different temperatures alternatively to represent the day (high-temperature) and night (low-temperature) times. The results of constant- and fluctuating-temperature experiments show that toluene degradation is strongly dependent on soil-water temperature level. An almost two-fold increase in toluene degradation time was observed for every 10°C decrease in temperature for constant-temperature cases. Under fluctuating-temperature conditions, toluene degraders were able to overcome the temperature stress and continued thriving during all considered weather scenarios. However, a slightly longer time was taken compared to the corresponding time at daily mean temperature conditions. The findings of this study are directly useful for bioremediation of hydrocarbon-polluted sites having significant diurnal and seasonal variations of soil-water temperature.
机译:人们越来越关注碳氢化合物污染地点的生物修复,这引起了季节性和昼夜变化对土壤-水温的影响对BTEX(一种广泛的(亚)表面污染物)生物降解的影响。因此,我们研究了在有氧条件下,各种不同的土壤水温对甲苯生物降解的影响。为了观察温度的季节性影响,在三个不同的恒定温度下分别进行了三组批处理实验:10°C,21°C和30°C。这些条件被认为分别代表了许多受污染地点的(1)冬季,(2)春季和/或秋季和(3)夏季。在土壤水温波动的情况下(21 <> 10°C,30 <> 21°C和10 <> 30°C),进行了另外三组批处理实验,以模拟一年中预期的昼夜温度模式。将批次分别置于两个不同的温度下以代表白天(高温)和黑夜(低温)时间。恒温和波动温度实验的结果表明,甲苯的降解强烈依赖于土壤水温水平。在恒温情况下,温度每降低10°C,甲苯降解时间就会增加近两倍。在温度波动的情况下,甲苯降解剂能够克服温度应力,并在所有考虑的天气情况下继续蓬勃发展。但是,与每天平均温度条件下的相应时间相比,花费的时间略长。这项研究的发现直接用于土壤水温的昼夜和季节变化显着的碳氢化合物污染站点的生物修复。

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