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Distribution and Risk Assessment of Organophosphate Esters in Agricultural Soils and Plants in the Coastal Areas of South China

Toxics 2024 13 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Jianteng Sun, Ling Jin Wangxing Luo, Wangxing Luo, Ling Jin Siyu Yao, Ling Jin Ling Jin Jiahui Huang, Jiahui Huang, Jianteng Sun, Haochuan Wu, Haochuan Wu, Haijun Zhou, Haijun Zhou, Mingjiang Du, Mingjiang Du, Jianteng Sun, Ling Jin Jianteng Sun, Ling Jin Ling Jin

Summary

This study measured organophosphate esters, chemicals used as flame retardants and plasticizers in plastic products, in agricultural soils and crops along China's southern coast. These chemicals were found in every soil and plant sample tested, with some areas showing high ecological risk levels. While focused on chemical additives rather than microplastics directly, these are the same toxic compounds that leach from microplastics, showing how plastic-related chemicals contaminate the food supply.

Body Systems

Organophosphate esters (OPEs) are frequently used as flame retardants and plasticizers in various commercial products. While initially considered as substitutes for brominated flame retardants, they have faced restrictions in some countries due to their toxic effects on organisms. We collected 37 soil and crop samples in 20 cities along the coast of South China, and OPEs were detected in all of them. Meanwhile, we studied the contamination and potential human health risks of OPEs. In soil samples, the combined concentrations of eight OPEs varied between 74.7 and 410 ng/g, averaging at 255 ng/g. Meanwhile, in plant samples, the collective concentrations of eight OPEs ranged from 202 to 751 ng/g, with an average concentration of 381 ng/g. TDCIPP, TCPP, TCEP, and ToCP were the main OPE compounds in both plant and soil samples. Within the study area, the contaminants showed different spatial distributions. Notably, higher OPEs were found in coastal agricultural soils in Guangdong Province and crops in the Guangxi Zhuang Autonomous Region. The results of an ecological risk assessment show that the farmland soil along the southern coast of China is at high or medium ecological risk. The average non-carcinogenic risk and the carcinogenic risk of OPEs in soil through ingestion and dermal exposure routes are within acceptable levels. Meanwhile, this study found that the dietary intake of OPEs through food is relatively low, but twice as high as other studies, requiring serious attention. The research findings suggest that the human risk assessment indicates potential adverse effects on human health due to OPEs in the soil-plant system along the coast of South China. This study provides a crucial foundation for managing safety risks in agricultural operations involving OPEs.

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