Unveiling pollution of benzophenone and triazine-derived ultraviolet filters in fishing-port sediment: Implications for ecological risk management

Benzophenone-derived ultraviolet filters (BP-UVFs) and triazine-derived UVFs (TA-UVFs) have garnered important attention in recent years due to their environmental persistence, potential for bioaccumulation, and associated toxicity. However, there is limited understanding of their co-occurrence and ecological risks in fishing port sediments. In this study, ten BP-UVFs and nine TA-UVFs were investigated in 24 fishing port sediments from Northern China (Dalian area). BP-UVFs were found in significantly higher concentrations than those of TA-UVFs. The total concentrations in sediments of nineteen UVFs (Σ 19 UVFs) ranged from 7.00 to 42.29 ng/g (dry weight). Notably, higher Σ 19 UVFs were observed in first-, second-class and central fishing ports compared to the natural fishing port. The contamination levels of BP-UVFs and TA-UVFs did not increase with the scale of fishing-ports, suggesting that contamination was not clearly associated with the grade or scale of fishing-ports, and was influenced by site-specific geographical and environmental characteristics. Additionally, semi-enclosed fishing ports were found to be particularly susceptible to higher accumulation of BP-UVFs and TA-UVFs in sediments, with mass inventories ranging from 25.56 to 154.36 ng/cm 2 . Benzophenone (BP), benzophenone-7 (BP-7), and bis-ethylhexyloxyphenol methoxyphenyl triazine (UV-627) were identified as ecological risk compounds. This study highlights the ubiquitous presence and ecological risk posed by BP-UVFs and TA-UVFs in fishing-port sediments, underscoring the importance of fishing port location over fishing activities as a factor in their distribution and implications.

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Publication Details

Journal
Ecotoxicology and Environmental Safety
Published
2026-09-18
DOI
https://doi.org/10.1016/j.ecoenv.2026.120813
Primary Topic
Toxic Organic Pollutants Impact
Type
article
Field-Weighted Citation Impact
0.00

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article

Unveiling pollution of benzophenone and triazine-derived ultraviolet filters in fishing-port sediment: Implications for ecological risk management

Xuan Jia, Xing Liu, Xiaodan Pei, Haichao Mu et al.
Ecotoxicology and Environmental Safety
Toxic Organic Pollutants Impact
article

Unveiling pollution of benzophenone and triazine-derived ultraviolet filters in fishing-port sediment: Implications for ecological risk management

Xuan Jia, Xing Liu, Xiaodan Pei, Haichao Mu, Hao Sun, Yali Shi, Zhao Tang, Zilan Wu, Jianzhong Li, Ziwei Yao, Gu Tao, Minxia Zhang
article en

Abstract

Benzophenone-derived ultraviolet filters (BP-UVFs) and triazine-derived UVFs (TA-UVFs) have garnered important attention in recent years due to their environmental persistence, potential for bioaccumulation, and associated toxicity. However, there is limited understanding of their co-occurrence and ecological risks in fishing port sediments. In this study, ten BP-UVFs and nine TA-UVFs were investigated in 24 fishing port sediments from Northern China (Dalian area). BP-UVFs were found in significantly higher concentrations than those of TA-UVFs. The total concentrations in sediments of nineteen UVFs (Σ 19 UVFs) ranged from 7.00 to 42.29 ng/g (dry weight). Notably, higher Σ 19 UVFs were observed in first-, second-class and central fishing ports compared to the natural fishing port. The contamination levels of BP-UVFs and TA-UVFs did not increase with the scale of fishing-ports, suggesting that contamination was not clearly associated with the grade or scale of fishing-ports, and was influenced by site-specific geographical and environmental characteristics. Additionally, semi-enclosed fishing ports were found to be particularly susceptible to higher accumulation of BP-UVFs and TA-UVFs in sediments, with mass inventories ranging from 25.56 to 154.36 ng/cm 2 . Benzophenone (BP), benzophenone-7 (BP-7), and bis-ethylhexyloxyphenol methoxyphenyl triazine (UV-627) were identified as ecological risk compounds. This study highlights the ubiquitous presence and ecological risk posed by BP-UVFs and TA-UVFs in fishing-port sediments, underscoring the importance of fishing port location over fishing activities as a factor in their distribution and implications.

Ecotoxicology and Environmental SafetyVol. 324
Chinese Academy of Sciences (CN), Ministry of Ecology and Environment (CN), China National Chemical Engineering (China) (CN), Agilent Technologies (Australia) (AU), Research Center for Eco-Environmental Sciences (CN), University of Chinese Academy of Sciences (CN)
Key Technologies Research and Development Program
Life below water
Openalex Percentile: Top 12%
Toxic Organic Pollutants Impact
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