School of Geography, Earth and Environmental Sciences, Plymouth University, Drake Circus, Plymouth, PL4 8AA, UK.
Environ Pollut. 2018 May;236:1020-1026. doi: 10.1016/j.envpol.2018.01.023. Epub 2018 Feb 16.
Samples of plastic collected from two beaches in southwest England (n = 185) have been analysed by XRF spectrometry for elements that are hazardous or restricted in synthetic polymers (namely, As, Ba, Br, Cd, Cr, Hg, Pb, Sb and Se). Overall, one or more restricted element was detected in 151 samples, with 15 cases exhibiting non-compliance with respect to the Restriction of Hazardous Substances (RoHS) Directive. Twelve plastics that were RoHS-non-compliant were subsequently processed into microplastic-sized fragments and subjected to an avian physiologically-based extraction test (PBET) that simulates the chemical conditions in the gizzard-proventriculus of the northern fulmar. Kinetic profiles of metal and metalloid mobilisation in the PBET were fitted using a pseudo-first-order diffusion model with rate constants ranging from ∼0.02 to 0.5 h, while profiles for Br were better fitted with a parabolic diffusion model and rate constants of 7.4-9.5 (μg L)h. Bioaccessibilities, based on maximum or equilibrium concentrations mobilised relative to total (XRF) concentrations, ranged from <1% for Cd and Se in polyethylene and polypropylene to over 10% for Br in a sample of expanded polystyrene and Pb in a sample of PVC. Calculations suggest that ingested plastic could contribute about 6% and 30% of a seabird's exposure to and accumulation of Pb and brominated compounds, respectively.
从英格兰西南部的两个海滩收集的塑料样本(n=185)已通过 X 射线荧光光谱法进行了分析,以测定对合成聚合物具有危害性或受到限制的元素(即 As、Ba、Br、Cd、Cr、Hg、Pb、Sb 和 Se)。总体而言,在 151 个样本中检测到了一种或多种受限元素,其中 15 个样本不符合有害物质限制(RoHS)指令。随后,对 12 种 RoHS 不合规的塑料进行加工,制成微塑料大小的碎片,并进行了鸟类生理基础提取测试(PBET),该测试模拟了北方海雀胃-前胃中的化学条件。使用具有 0.02 至 0.5 h 范围内的速率常数的拟一级扩散模型对 PBET 中金属和类金属的迁移动力学曲线进行拟合,而 Br 的曲线则更适合使用抛物线扩散模型和 7.4-9.5(μg L)h 的速率常数进行拟合。基于与总(XRF)浓度相比,最大或平衡浓度下的生物可利用性,从聚乙烯和聚丙烯中 Cd 和 Se 的<1%到膨胀聚苯乙烯中 Br 和 PVC 中 Pb 的>10%不等。计算表明,摄入的塑料可能分别使海鸟接触和积累 Pb 和溴化化合物的比例增加约 6%和 30%。