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首页> 外文期刊>Applied and Environmental Microbiology >Influence of spatial and temporal variations on organic pollutant biodegradation rates in an estuarine environment.
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Influence of spatial and temporal variations on organic pollutant biodegradation rates in an estuarine environment.

机译:河口环境中时空变化对有机污染物生物降解率的影响。

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摘要

The influence of spatial and temporal environmental variations on rates of organic pollutant biodegradation were assessed by using heterotrophic uptake kinetics. These studies were conducted at three sites, representing the gradient from freshwater to estuarine to marine systems. Of the compounds tested, total uptake Vmax rates decreased in the order of nitrilotriacetic acid, m-cresol, chlorobenzene, and 1,2,4-trichlorobenzene. In general, the freshwater site exhibited the highest uptake rates, with somewhat lower rates at the estuarine site. Rates at the marine site were much lower than at the other sites, except during the winter. Metabolic rates at both the freshwater and estuarine areas were significantly decreased during periods of low water temperature. Rates at the marine site were relatively uniform throughout the year. Linear regression analysis was used to compare m-cresol biodegradation rates to characteristics of the microbial community, which included direct microscopic counts, CFU counts, and cellular incorporation of amino acids. The observed rates did not consistently correlate well with any of the measured characteristics of the microbial community.
机译:通过使用异养摄取动力学评估时空环境变化对有机污染物生物降解速率的影响。这些研究在三个地点进行,代表了从淡水到河口再到海洋系统的梯度。在测试的化合物中,总吸收Vmax速率按次氮基三乙酸,间甲酚,氯苯和1,2,4-三氯苯的顺序降低。通常,淡水站点的吸收率最高,河口站点的吸收率略低。除了冬季,海上站点的费率比其他站点低很多。在水温低的时期,淡水和河口地区的代谢率均显着降低。全年,海事地点的费率相对统一。使用线性回归分析将间甲酚的生物降解率与微生物群落特征进行比较,其中包括直接显微镜计数,CFU计数和氨基酸的细胞掺入。观察到的速率与微生物群落的任何测量特征均未始终具有很好的相关性。

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