Aug 2026· Ecotoxicology and Environmental Safety· Vol 323, pp.
120647
· 0 citations· 58 references
Medicine
Abstract
Phthalates (PAEs) and organophosphate esters (OPEs) have been widely detectable in agricultural soils and pose potential risks to ecosystems. However, their regional variations and the influencing factors in agricultural soils in China remain unclear. To address these issues, we assessed the regional accumulation and combined ecological risks of PAEs and OPEs in agricultural soils across China using the literature data, and then analysed their influencing factors from the perspectives of pollutant property parameters, soil physicochemical properties, meteorological conditions, agricultural activities, and geographical variables using Random Forest models and multi-source spatial data. The results showed that the mean concentration of Σ6PAEs (1591 ± 1610 ng/g) was generally higher than that of Σ11OPEs (52.6 ± 111 ng/g). Di-(2-ethylhexyl) phthalate (DEHP) (791 ± 902 ng/g) and Σ5Alkyl-OPEs (29.2 ± 88.9 ng/g) were the dominant compounds. The combined ecological risks of the Σ6PAEs and Σ11OPEs were the highest in agricultural soils in Eastern China (median risk quotient (RQ): 3.75). PAEs showed high risks (RQ ≥ 1) across China, whereas OPEs exhibited moderate risks (0.1 ≤ RQ < 1) except in the West (RQ < 0.1). The importance of pollutant property parameters for PAE and OPE accumulation in agricultural soils reached 49.9 ± 6.44% and 28.9 ± 2.24%, respectively. The soil physicochemical properties and meteorological parameters contributed higher impacts on the OPEs than on the PAEs, especially the precipitation, which contributed 9.13 ± 0.56% to OPEs. These findings provide scientific support for the ecological risk evaluation and environmental management of plastic additives in agricultural soils.
Organonitrogen pesticides (ONPs) are widely used in agriculture and can enter the ocean via surface runoff, posing potential threats to marine ecosystems. This study systematically investigated the occurrence and spatiotemporal distribution of 49 ONPs in seawater of the Beibu gulf, China, examined their key influencing...
This study investigated organochlorine pesticide (OCP) residues in agricultural soils and pepper samples to assess their ecological and human health risks. Eighty soil samples (pre‐[40] and post‐[40] pesticide application) and 40 pepper samples were analysed using gas chromatography–mass spectrometry. Bioaccumulati...
M. B. Adekola, A. Taiwo, B. S. Bada et al.· CLEAN - Soil, Air, Water· 0 citations
Soil contamination by potentially toxic elements (PTEs) can alter the structure and functioning of ecosystems and pose risks to public health. In this context, micro.watersheds are important units of analysis, as they integrate natural and anthropogenic processes that influence the distribution of these elements in the...
L. R. F. Alleoni, Evandro Barbosa da Silva, Adriele Laena Ferreira de Moraes· Environmental Geochemistry a...· 0 citations
Tropical lagoons are vulnerable coastal ecosystems where intensive aquaculture and plastic-related activities may promote the accumulation of phthalate esters (PAEs) in sediments. However, the distribution patterns, potential sources, and ecological risks of PAEs in tropical lagoon systems remain insufficiently underst...
Potentially toxic elements (PTEs) are one of the most concerning pollutant types in the surface environment. In this study, a total of 115 farmland soils from the 0–20 cm layer were collected from the Ibinur Lake Basin (ILB) in northwest China to investigate the concentration characteristics, pollution status, potentia...
M. Eziz, Mireguli Ainiwaer· Land· 0 citations
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