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Temporal and spatial variations in hydrophobicity dependence of field-derived metrics to assess the biomagnification potential of hydrophobic organochlorine compounds

机译:现场衍生度量疏水性依赖性的时间和空间变化,以评估疏水性有机氯化合物的生物镀锌电位

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The bioaccumulation potential ("B") of compounds is one of the major considerations in assessing chemical hazards. A variety of metrics, including hydrophobicity (K-ow), bioconcentration factor (BCF), bioaccumulation factor (BAF), and to an increasing degree biomagnification factor (BMF) and trophic magnification factor (TMF), are widely used to characterize "B". In the present study, the variation and hydrophobicity-dependence of each of these metrics for recalcitrant hydrophobic organochlorine compounds (HOCs) was determined from four food webs collected in two different seasons at two different sites of the Han River, Korea. Measured environmental parameters and stable isotopic ratios exhibited distinct seasonal and spatial shifts in the ecological condition of the river. The observed values of individual metrics were positively and linearly related with their log K-ow values, but linearized slopes differed significantly among the four food webs, with the largest variation being exhibited by TMF and log fugacity ratio (log F) followed by log BMF log BAF. When based on field-derived mean linear equations, different log K-ow values were obtained for a critical point for the identification of biomagnification of HOCs. Consequently, the biomagnification potential of HOCs and its relationship with K-ow can vary, being seriously affected by not only on the metrics used for its assessment but also on spatial and temporal variations in ecological conditions. Our results indicate that TMF for "B" might be more robust than the other metrics but the development of new methodologies to reduce uncertainty and to enhance the accuracy of TMFs by correcting for ecological variation, together with addition efforts to harmonize individual metrics for "B". (C) 2019 Elsevier B.V. All rights reserved.
机译:化合物的生物积累潜力(“B”)是评估化学危害的主要考虑之一。各种度量,包括疏水性(K-OW),生物浓度因子(BCF),生物累积因子(BAF)和增加的生物磁化因子(BMF)和营养倍数因子(TMF),广泛用于表征“B. “。在本研究中,从韩国两种不同部位收集的四个不同季节收集的四个食物网中测定这些度量的各种度量的变化和疏水性依赖性。测量的环境参数和稳定的同位素比率在河流的生态条件下表现出不同的季节性和空间变化。观察到的单个度量的值与它们的日志k-ow值正面和线性相关,但是线性化斜率在四个食物纤维网中有显着差异,具有TMF和日志Fugacity比率(Log F)所呈现的最大变化,然后是日志BMF >日志BAF。当基于现场衍生的平均线性方程时,获得了不同的日志k-ow值,用于识别HOCS生物磁化的关键点。因此,Hocs的生物镀金潜力及其与k oy的关系可以变化,不仅受到用于评估的度量,而且严重影响了生态条件的空间和时间变化。我们的结果表明,“B”的TMF可能比其他指标更强大,而是通过纠正生态变化来扩大不确定性并提高TMFS的准确性,以及加入为“B” “。 (c)2019 Elsevier B.v.保留所有权利。

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