0
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 Sign in to save

Photo-aged non-biodegradable and biodegradable mulching film microplastics alter the interfacial behaviors between agricultural soil and inorganic arsenic

Journal of Hazardous Materials 2023 45 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Shuai Tang, Shuai Tang, Shuai Tang, Md. Nahid Pervez, Shuai Tang, Shuai Tang, Md. Nahid Pervez, Shuai Tang, Shuai Tang, Peipei Sun, Shuai Tang, Shuai Tang, Shuai Tang, Shuai Tang, Shuai Tang, Chengjin Cao, Shuai Tang, Shuai Tang, Chengjin Cao, Peipei Sun, Yaping Zhao, Peipei Sun, Peipei Sun, Shuai Tang, Shuai Tang, Chengjin Cao, Shuai Tang, Guojuan Qu, Chengjin Cao, Yaping Zhao, Guojuan Qu, Chengjin Cao, Shuai Tang, Peipei Sun, Shuai Tang, Chengjin Cao, Chengjin Cao, Yue Tian, Shuai Tang, Shuai Tang, Chengjin Cao, Yaping Zhao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Yaping Zhao, Md. Nahid Pervez, Junlai Liu, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Yaping Zhao Yaping Zhao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Yaping Zhao, Yaping Zhao Md. Nahid Pervez, Chengjin Cao, Md. Nahid Pervez, Yaping Zhao Yaping Zhao, Xiuyan Li, Chengjin Cao, Yaping Zhao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Chengjin Cao, Md. Nahid Pervez, Chengjin Cao, Chengjin Cao, Yaping Zhao, Yaping Zhao Yaping Zhao, Yaping Zhao, Yaping Zhao

Summary

Researchers found that both biodegradable PLA and non-biodegradable polyethylene mulching film microplastics alter arsenic transport in agricultural soil, with photo-aging changing their adsorption capacity and potentially affecting arsenic mobility and ecological risk.

Polymers

The impacts of microplastics (MPs) prevalent in soil on the transport of pollutants were urged to be addressed, which has important implications for ecological risk assessment. Therefore, we investigated the influence of virgin/photo-aged biodegradable polylactic acid (PLA) and non-biodegradable black polyethylene (BPE) mulching films MPs on arsenic (As) transport behaviors in agricultural soil. Results showed that both virgin PLA (VPLA) and aged PLA (APLA) enhanced the adsorption of As(Ⅲ) (9.5%, 13.3%) and As(Ⅴ) (22.0%, 6.8%) due to the formation of abundant H-bonds. Conversely, virgin BPE (VBPE) reduced the adsorption of As(Ⅲ) (11.0%) and As(Ⅴ) (7.4%) in soil owing to the "dilution effect", while aged BPE (ABPE) improved arsenic adsorption amount to the level of pure soil due to newly generated O-containing functional groups being feasible to form H-bonds with arsenic. Site energy distribution analysis indicated that the dominant adsorption mechanism of arsenic, chemisorption, was not impacted by MPs. The occurrence of biodegradable VPLA/APLA MPs rather than non-biodegradable VBPE/ABPE MPs resulted in an increased risk of soil accumulating As(Ⅲ) (moderate) and As(Ⅴ) (considerable). This work uncovers the role of biodegradable/non-biodegradable mulching film MPs in arsenic migration and potential risks in the soil ecosystem, depending on the types and aging of MPs.

Sign in to start a discussion.

Share this paper