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On the detoxification of benthic bivalves contaminated by POPs: insights from experimental and modelling approaches

机译:关于被持久性有机污染物污染的底栖双壳类动物的排毒:来自实验和建模方法的见解

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摘要

Rearing benthic bivalves that are contaminated by persistent organic pollutants (POPs) in areas with low pollution levels permits their natural detoxification. Here, we present the results of novel detoxification experiments conducted with the Manila clam (Tapes philippinarum) in the Venice Lagoon; these experiments were conducted both in summer and winter. Measurements of dioxins (PCDD), furans (PCDF), polychlorinated biphenyl (PCB) and hexachlorobenzene (HCB) concentrations in clam flesh over time after their resettlement in cleaner areas allowed for determining the minimum time required to reach safe toxicity levels. Moreover, dioxin fingerprint dynamics demonstrated successful detoxification from industrial contaminants. A simple bioaccumulation/detoxification model applied to the collected data provided for the first time estimation of detoxification rates and half-lives for POP congeners in clam flesh. This work provides a basis for considering natural detoxification as a viable solution for safely exploiting resources otherwise restricted from human consumption due to associated health risks.
机译:在污染程度低的地区饲养受持久性有机污染物(POPs)污染的底栖双壳类动物,可以自然排毒。在这里,我们介绍在威尼斯泻湖中用马尼拉蛤(菲律宾Tapes philippinarum)进行的新型排毒实验的结果;这些实验是在夏季和冬季进行的。将蛤肉重新安置在清洁区域后,随时间对二恶英(PCDD),呋喃(PCDF),多氯联苯(PCB)和六氯苯(HCB)的浓度进行测量,从而确定达到安全毒性水平所需的最短时间。此外,二恶英的指纹图谱动力学证明已成功从工业污染物中解毒。一个简单的生物蓄积/解毒模型应用于收集的数据,用于首次估算蛤肉中POP同源物的解毒率和半衰期。这项工作为考虑将自然排毒作为安全开发资源的可行解决方案提供了基础,否则由于相关的健康风险而限制了人类的食用。

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