Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake of Ministry of Education, College of Environment, Hohai University, Nanjing 210098, PR China.
Key Laboratory of Integrated Regulation and Resource Development on Shallow Lake of Ministry of Education, College of Environment, Hohai University, Nanjing 210098, PR China; Yangtze Institute for Conservation and Development, Hohai University, Nanjing 210098, PR China.
J Hazard Mater. 2023 Jan 15;442:130103. doi: 10.1016/j.jhazmat.2022.130103. Epub 2022 Sep 30.
Microplastics (MPs) are considered to influence the bioavailability of heavy metals through direct adsorption, but this neglects the distribution of heavy metal chemical speciation indirectly influenced by MPs by altering geochemical properties. The present study aims to explore the link between the fractionation distribution of cadmium (Cd) and changes in geochemical properties in sediments induced by polyethylene terephthalate microplastics (PET-MPs). The PET-MPs reduced the acid-soluble fraction of Cd in sediments and increased its organically bound fraction. In addition, the concentration of bioavailable Cd in the sediment decreased by 4.09-25.96 % with increasing PET-MPs doses and aging. Whereas the thermal aging of PET-MPs led to a decrease in the molar ratio of oxygen-containing functional groups and the BET surface area, which is not favorable for improving the adsorption capacity of PET-MPs. On the other hand, the correlation analysis demonstrated the key role of PET-MPs in increasing the content of sediment organic matter and its humification level, which indirectly led to a decrease in Cd bioavailability. The microbial analysis demonstrated that PET-MPs increase the relative abundances of Chloroflexi, hexokinase, and 6-phosphofructose kinase in sediments, thereby increasing the humification level of sediment organic matter. The present study provides a new perspective for understanding the environmental risks of MPs-altered heavy metals.
微塑料(MPs)被认为通过直接吸附来影响重金属的生物有效性,但这忽略了 MPs 通过改变地球化学性质间接影响重金属化学形态分布的情况。本研究旨在探索聚对苯二甲酸乙二醇酯微塑料(PET-MPs)引起的沉积物中镉(Cd)分馏分布与地球化学性质变化之间的联系。PET-MPs 减少了沉积物中酸可溶态 Cd 的含量,增加了其有机结合态的含量。此外,随着 PET-MPs 剂量和老化的增加,沉积物中生物可利用 Cd 的浓度降低了 4.09-25.96%。而 PET-MPs 的热老化导致含氧官能团的摩尔比和 BET 表面积减少,这不利于提高 PET-MPs 的吸附能力。另一方面,相关分析表明 PET-MPs 在增加沉积物有机质含量及其腐殖化水平方面起着关键作用,这间接导致 Cd 生物有效性降低。微生物分析表明,PET-MPs 增加了沉积物中绿弯菌门、己糖激酶和 6-磷酸果糖激酶的相对丰度,从而提高了沉积物有机质的腐殖化水平。本研究为理解 MPs 改变重金属的环境风险提供了新的视角。