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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Environmental Sources Marine & Wildlife Sign in to save

Effect of polyethylene microplastics and acid rain on the agricultural soil ecosystem in Southern China

Environmental Pollution 2022 52 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Ziqiang Liu, Ziqiang Liu, Zhenxiu Liu, Zhenxiu Liu, Ziqiang Liu, Ziqiang Liu, Ziqiang Liu, Hui Wei, Ziqiang Liu, Yazheng Li, Zhenxiu Liu, Zhenxiu Liu, Li‐Zhu Wu, Zhenxiu Liu, Ziqiang Liu, Ziqiang Liu, Li‐Zhu Wu, Zhenxiu Liu, Yazheng Li, Jiaen Zhang Yazheng Li, Ziqiang Liu, Hui Wei, Li‐Zhu Wu, Ziqiang Liu, Li‐Zhu Wu, Jiaen Zhang Zhenxiu Liu, Jiaen Zhang Jiaen Zhang Zhenxiu Liu, Jing Wang, Jiaen Zhang Jiaen Zhang Jiaen Zhang Jing Wang, Zhenxiu Liu, Yazheng Li, Ziqiang Liu, Ziqiang Liu, Ziqiang Liu, Ziqiang Liu, Jiaen Zhang Hui Wei, Hui Wei, Hui Wei, Hui Wei, Hui Wei, Li‐Zhu Wu, Yazheng Li, Hui Wei, Ziqiang Liu, Jiaen Zhang Jiaen Zhang Hui Wei, Jiaen Zhang Jiaen Zhang Jiaen Zhang Jiaen Zhang Li‐Zhu Wu, Hui Wei, Jiaen Zhang

Summary

Researchers studied how polyethylene microplastics interact with acid rain in agricultural soils in Southern China. They found that microplastics reduced soil water retention and nitrate nitrogen, and when combined with acid rain at high concentrations, further decreased total nitrogen and increased CO emissions. The study suggests that interactions between microplastics and other environmental stressors like acid rain may compound their effects on soil ecosystems.

Polymers

The increasing microplastics (MPs) pollution and continuous acid rain coincide in many areas of the world. However, how MPs interact with acid rain is still unclear. Herein, we conducted a microcosm experiment to decipher the combined effect of polyethylene (PE) MPs (1%, 5%, and 10%) and acid rain (pH 4.0) on the agricultural soil ecosystem of Southern China, in which edaphic property, microbial community, enzymatic activity and CO emission were investigated. The results showed that PE MPs significantly decreased soil water retention and nitrate nitrogen content regardless of acid rain. Soil total nitrogen significantly decreased under the co-exposure of 10% PE MPs and acid rain. However, PE MPs did not alter soil microbial biomass, i.e., the content of microbial biomass carbon, total phospholipid fatty acids, with or without acid rain. 10% PE MPs and acid rain treatment significantly increased the activity of catalase and soil CO emission. PE MPs addition did not affect the temperature sensitivity (Q) of soil CO emission regardless of acid rain. These findings suggest that MPs may interact with acid rain to affect soil ecosystems, thus underscoring the necessity to consider the interaction between MPs and ambient environmental factors when exploring the impact of MPs on the soil biodiversity and function.

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