Occurrence of phthalic acid esters in sediment samples from East China Sea DOI
Hongmei Hu, Shuhong Fang, Meirong Zhao

et al.

The Science of The Total Environment, Journal Year: 2020, Volume and Issue: 722, P. 137997 - 137997

Published: March 17, 2020

Language: Английский

Dibutyl phthalate induced oxidative stress and genotoxicity on adult zebrafish (Danio rerio) brain DOI
Nan Jiang,

Peipei Song,

Xianxu Li

et al.

Journal of Hazardous Materials, Journal Year: 2021, Volume and Issue: 424, P. 127749 - 127749

Published: Nov. 21, 2021

Language: Английский

Citations

113

Comparison of phthalate esters (PAEs) in freshwater and marine food webs: Occurrence, bioaccumulation, and trophodynamics DOI
Baolin Liu,

Linyang Lv,

Lingjie Ding

et al.

Journal of Hazardous Materials, Journal Year: 2024, Volume and Issue: 466, P. 133534 - 133534

Published: Jan. 18, 2024

Language: Английский

Citations

36

Phthalates contamination in sediments: A review of sources, influencing factors, benthic toxicity, and removal strategies DOI
Yanli Xu, Yuqiong Sun, Ming Lei

et al.

Environmental Pollution, Journal Year: 2024, Volume and Issue: 344, P. 123389 - 123389

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Language: Английский

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19

Degradation of phthalate esters in marine sediments by persulfate over Fe–Ce/biochar composites DOI
Cheng‐Di Dong, Chiu‐Wen Chen, Thanh-Binh Nguyen

et al.

Chemical Engineering Journal, Journal Year: 2019, Volume and Issue: 384, P. 123301 - 123301

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Language: Английский

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91

Distribution and characteristics of microplastics and phthalate esters from a freshwater lake system in Lesser Himalayas DOI
Ajay Kumar,

Diptimayee Behera,

Sharmila Bhattacharya

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Chemosphere, Journal Year: 2021, Volume and Issue: 283, P. 131132 - 131132

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Language: Английский

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89

Horizontal and vertical distribution of phthalates acid ester (PAEs) in seawater and sediment of East China Sea and Korean South Sea: Traces of plastic debris? DOI
Andrea Paluselli, Seung‐Kyu Kim

Marine Pollution Bulletin, Journal Year: 2020, Volume and Issue: 151, P. 110831 - 110831

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Language: Английский

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79

Contaminant occurrence, mobility and ecological risk assessment of phthalate esters in the sediment-water system of the Hangzhou Bay DOI

Liu-Yong Wang,

Yan-Yu Gu,

Zeming Zhang

et al.

The Science of The Total Environment, Journal Year: 2021, Volume and Issue: 770, P. 144705 - 144705

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Language: Английский

Citations

76

Phthalate esters in seawater and sediment of the northern South China Sea: Occurrence, distribution, and ecological risks DOI
Yaru Cao, Jing Li, Rongben Wu

et al.

The Science of The Total Environment, Journal Year: 2021, Volume and Issue: 811, P. 151412 - 151412

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Language: Английский

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72

Environmental occurrence of phthalate and organophosphate esters in sediments across the Gulf of Lion (NW Mediterranean Sea) DOI Creative Commons
Nigar Alkan, Ali Alkan, Javier Castro-Jiménez

et al.

The Science of The Total Environment, Journal Year: 2020, Volume and Issue: 760, P. 143412 - 143412

Published: Nov. 7, 2020

Language: Английский

Citations

71

Insights Into the Prevalence and Impacts of Phthalate Esters in Aquatic Ecosystems DOI Creative Commons
Ntsako Dellas Baloyi, Memory Tekere, Khumbudzo Walter Maphangwa

et al.

Frontiers in Environmental Science, Journal Year: 2021, Volume and Issue: 9

Published: July 15, 2021

Phthalate esters (PEs) are by far the most produced and extensively used synthetic organic chemicals with notable applications in many industrial products such as vinyl upholstery, adhesives, food containers, packaging materials, printing inks, cosmetics, paints, pharmaceuticals munitions, insecticides among other. PEs have long been recognised ubiquitous pollutants of prime environmental concern, urbanisation amongst main cause source these compounds. Due to their notoriety, compounds known pose devastating effects living organisms including humans. The presence metabolites aquatic ecosystems is concern primarily due endocrine disrupting carcinogenicity properties. Several research studies reported prevalence, exposure pathways, toxicity, impacts Their principal routes could be direct or indirect, which route include contact, eating, drinking contaminated foods, indirect constitute aerosols, leaching other forms contamination. find way into water systems through means effluent discharges, urban agricultural land runoff, from waste dumps diffuse sources. High-end instrumentation improved methodologies on hand resulted increased ability measure trace levels (μg/L) different matrices ecological compartments lakes, oceans, rivers, sediments, wetlands samples. In light above, this article provides an informed focused information prevalence phthalate related Furthermore, techniques that enabled extraction analysis samples also explained. Future outlooks needs highlighted manuscript. This will better understand temporal spatial distributions aid devising prudent curtail footprints.

Language: Английский

Citations

66