揭示微塑料对生物体的生态毒理学影响--持久性有机污染物(POP):全面综述。

IF 3.5 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Journal of contaminant hydrology Pub Date : 2024-07-25 DOI:10.1016/j.jconhyd.2024.104397
Sneha Siwach , Meghali Bharti , Sheetal Yadav , Padma Dolkar , Sonakshi Modeel , Pankaj Yadav , Tarana Negi , Ram Krishan Negi
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引用次数: 0

摘要

几十年来,微塑料在我们的环境中无处不在,大量研究揭示了它们的广泛分布,远远超出了陆地、土壤和水生生态系统的表面。它们已经渗透到食物链、食物网,甚至我们呼吸的空气和饮用的水中。在我们食用的食物中发现了微塑料,它们是附着在疏水表面的有害化学物质的载体。这可能导致这些化学物质转移到水生生物中,对它们的健康造成威胁。微塑料释放到不同的环境中会产生各种生态毒理影响。大量文献已使科学家们达成共识,即微塑料污染是一个全球性问题,有可能影响几乎所有类型的生态系统。本文旨在讨论有关微塑料的发生、积累和对生物的生态影响的重要信息。它还强调了一种名为 "塑料病 "的新兴疾病,这种疾病与微塑料及其毒理效应(如海鸟消化系统中的永久性疤痕和长期炎症)直接相关。通过了解这些微塑料污染物在不同栖息地的行为并评估其生态后果,可以更好地了解这一毒理学问题。
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Unveiling the ecotoxicological impact of microplastics on organisms - the persistent organic pollutant (POP): A comprehensive review

Microplastics have been ubiquitous in our environment for decades, and numerous studies have revealed their extensive dispersion, reaching far beyond the surface of the land, soil, aquatic ecosystems. They have infiltrated the food-chain, the food web, even the air we breathe, as well as the water we drink. Microplastics have been detected in the food we consume, acting as vectors for hazardous chemicals that adhere to their hydrophobic surfaces. This can result in the transfer of these chemicals to the aquatic life, posing a threat to their well-being. The release of microplastics into different environmental settings can give rise to various eco-toxicological implications. The substantial body of literature has led scientists to the consensus that microplastic pollution is a global problem with the potential to impact virtually any type of ecosystem. This paper aims to discuss crucial information regarding the occurrence, accumulation, and ecological effects of microplastics on organisms. It also highlights the new and emerging disease named “Plasticosis” that is directly linked to microplastics and its toxicological effects like permanent scarring and long-term inflammation in the digestive system of the seabirds. By comprehending the behaviour of these microplastic pollutants in diverse habitats and evaluating their ecological consequences, it becomes possible to facilitate a better understanding of this toxicological issue.

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来源期刊
Journal of contaminant hydrology
Journal of contaminant hydrology 环境科学-地球科学综合
CiteScore
6.80
自引率
2.80%
发文量
129
审稿时长
68 days
期刊介绍: The Journal of Contaminant Hydrology is an international journal publishing scientific articles pertaining to the contamination of subsurface water resources. Emphasis is placed on investigations of the physical, chemical, and biological processes influencing the behavior and fate of organic and inorganic contaminants in the unsaturated (vadose) and saturated (groundwater) zones, as well as at groundwater-surface water interfaces. The ecological impacts of contaminants transported both from and to aquifers are of interest. Articles on contamination of surface water only, without a link to groundwater, are out of the scope. Broad latitude is allowed in identifying contaminants of interest, and include legacy and emerging pollutants, nutrients, nanoparticles, pathogenic microorganisms (e.g., bacteria, viruses, protozoa), microplastics, and various constituents associated with energy production (e.g., methane, carbon dioxide, hydrogen sulfide). The journal''s scope embraces a wide range of topics including: experimental investigations of contaminant sorption, diffusion, transformation, volatilization and transport in the surface and subsurface; characterization of soil and aquifer properties only as they influence contaminant behavior; development and testing of mathematical models of contaminant behaviour; innovative techniques for restoration of contaminated sites; development of new tools or techniques for monitoring the extent of soil and groundwater contamination; transformation of contaminants in the hyporheic zone; effects of contaminants traversing the hyporheic zone on surface water and groundwater ecosystems; subsurface carbon sequestration and/or turnover; and migration of fluids associated with energy production into groundwater.
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