Effects of naturally aged microplastics on the distribution and bioavailability of arsenic in soil aggregates and its accumulation in lettuce

拉图卡 生物利用度 微塑料 化学 环境化学 开枪 生物量(生态学) 农学 叶绿素 园艺 生物 生物信息学 有机化学
作者
Yanwei Liu,Weigang Huang,Yujue Wang,Qian Wen,Juanjuan Zhou,Shengze Wu,Hui Liu,Guikui Chen,Rongliang Qiu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:914: 169964-169964 被引量:26
标识
DOI:10.1016/j.scitotenv.2024.169964
摘要

Naturally aged microplastics (NAMPs) and arsenic (As) have been reported to coexist in and threaten potentially to soil-plant ecosystem. The research explored the combined toxic effects of NAMPs and As to lettuce (Lactuca sativa L.) growth, and the distribution, accumulation and bioavailability of As in soil aggregates. The As contaminated soil with low, medium and high concentrations (L-As, M-As, H-As) were treated with or without NAMPs, and a total of six treatments. The results displayed that, in comparison to separate treatments of L-As and M-As, the presence of NAMPs increased the total biomass of lettuce grown at these two As concentrations by 68.9 % and 55.4 %, respectively. Simultaneous exposure of NAMPs and L-As or M-As led to a decrease in As content in shoot (0.45–2.17 mg kg−1) and root (5.68–14.66 mg kg−1) of lettuce, indicating an antagonistic effect between them. In contrast, co-exposure to H-As and NAMPs showed synergistic toxicity, and the leaf chlorophyll and nutritional quality of lettuce were also reduced. NAMPs altered the ratio of different soil aggregate fractions and the distribution of bioavailable As within them, which influenced the absorption of As by lettuce. In conclusion, these direct observations assist us in enhancing the comprehend of the As migration and enrichment characteristics in soil-plant system under the influence of NAMPs.
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