Papers

61,005 results
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Article Tier 2

Interactions between microplastics and organic compounds in aquatic environments: A mini review

Researchers reviewed the mechanisms of interaction between microplastics and organic compounds in aquatic environments, examining factors related to the plastics themselves, the organic compounds, and environmental conditions. The study found that properties like crystallinity, surface area, and weathering state of microplastics all influence how they adsorb and transport organic pollutants, with implications for environmental and health risk assessments.

2020 The Science of The Total Environment 290 citations
Article Tier 2

The bioaccumulation effects of microplastics and associated organic pollutants in the aquatic environment

This review examined how microplastics in aquatic environments interact with organic pollutants through adsorption, affecting the bioaccumulation and toxicity of those pollutants in aquatic organisms due to the high hydrophobicity of microplastic surfaces.

2021 Chinese Science Bulletin (Chinese Version) 5 citations
Article Tier 2

Microplastic properties and their interaction with hydrophobic organic contaminants: a review

This review examines the physical and chemical properties of microplastics that determine how they interact with hydrophobic organic contaminants in the environment. Researchers found that factors like polymer type, particle size, weathering, and surface chemistry all influence how strongly microplastics bind to co-occurring pollutants. The findings suggest that microplastics can serve as carriers for harmful chemicals, potentially increasing exposure risks for organisms that ingest them.

2022 Environmental Science and Pollution Research 169 citations
Article Tier 2

Adsorption behaviour and interaction of organic micropollutants with nano and microplastics – A review

This review analyzed the adsorption behavior of organic micropollutants — including pharmaceuticals, pesticides, and industrial chemicals — onto nano- and microplastics, finding that adsorption is governed by pollutant hydrophobicity, particle surface area, and aging state, and that microplastics can act as vectors delivering co-contaminants to aquatic organisms.

2021 The Science of The Total Environment 216 citations
Article Tier 2

Microplastics as vectors for environmental contaminants: Exploring sorption, desorption, and transfer to biota

This review explores how microplastics interact with hydrophobic organic chemicals in aquatic environments, examining the processes of chemical sorption onto and desorption from plastic particles. Researchers discuss the factors that influence whether microplastics act as significant carriers of environmental contaminants into living organisms compared to natural pathways. Understanding these processes is essential for accurately assessing the real-world risk that microplastics pose as chemical transport vehicles.

2017 Integrated Environmental Assessment and Management 632 citations
Article Tier 2

Transport of persistent organic pollutants: Another effect of microplastic pollution?

This review examines how microplastics act as vectors for persistent organic pollutants (POPs) in aquatic environments, covering the physical and chemical factors governing pollutant adsorption and desorption. The authors discuss how interactions between microplastics and POPs vary with polymer type, particle properties, and environmental conditions, and when these interactions may result in toxic effects on aquatic organisms.

2022 Wiley Interdisciplinary Reviews Water 47 citations
Article Tier 2

Mikroplastika Kao Adsorbens Opasnih Materija

This paper reviews how microplastics act as effective adsorbents for toxic substances including persistent organic pollutants, heavy metals, and pharmaceuticals in freshwater, marine, and urban environments. The ability of microplastics to concentrate and transport hazardous chemicals amplifies their potential harm to ecosystems and human health.

2021 Zbornik radova Građevinskog fakulteta
Article Tier 2

Partitioning of chemical contaminants to microplastics: Sorption mechanisms, environmental distribution and effects on toxicity and bioaccumulation

This review critically examines how chemical contaminants like persistent organic pollutants and heavy metals sorb onto microplastic surfaces in the environment. Researchers found that while microplastics can concentrate pollutants at levels far above surrounding water, the actual contribution of microplastics to contaminant transfer into organisms may be less significant than direct exposure from water and food. The study calls for more realistic experimental designs to clarify the true risk.

2019 Environmental Pollution 487 citations
Review Tier 2

Microplastic-Toxic Chemical Interaction: A Review Study on Quantified Levels, Mechanism and Implication

This review summarizes quantified levels of heavy metals and hydrophobic organic contaminants sorbed onto microplastics in environmental media, examining adsorption and desorption mechanisms and discussing health implications of ingested microplastics acting as vectors for toxic chemical transport.

2019 Preprints.org 21 citations
Article Tier 2

Adsorption of organic pollutants by microplastics: Overview of a dissonant literature

This review critically examines the scientific literature on how microplastics adsorb organic pollutants in aquatic environments. Researchers found significant inconsistencies across studies regarding the mechanisms and extent of pollutant uptake by microplastics, noting that factors like particle size, polymer type, and environmental conditions all play important roles. The study calls for more standardized research methods to better understand whether microplastics meaningfully increase human and wildlife exposure to these co-pollutants.

2022 Journal of Hazardous Materials Advances 113 citations
Review Tier 2

Physisorption and Chemisorption Mechanisms Influencing Micro (Nano) Plastics-Organic Chemical Contaminants Interactions: A Review

This review explains the chemical and physical mechanisms by which microplastics attract and carry organic pollutants like pesticides, pharmaceuticals, and industrial chemicals in the environment. The ability of microplastics to absorb these contaminants depends on factors like plastic type, particle size, weathering, and water conditions. Understanding these interactions is critical because when contaminated microplastics are ingested by organisms or humans, the absorbed chemicals can be released inside the body.

2021 Frontiers in Environmental Science 295 citations
Article Tier 2

Research progress on environmental occurrence of microplastics and their interaction mechanism with organic pollutants

This review summarizes how microplastics in the environment interact with organic pollutants—adsorbing, carrying, and releasing them. Microplastics act as mobile carriers for persistent organic chemicals, altering their distribution and toxicity in ecosystems and the organisms, including humans, that consume them.

2021 Scientia Sinica Chimica 4 citations
Review Tier 2

Microplastics as vectors of organic pollutants in aquatic environment: A review on mechanisms, numerical models, and influencing factors

This review examines how microplastics act as carriers for organic pollutants in water, adsorbing chemicals like pesticides and pharmaceuticals onto their surfaces and transporting them through aquatic environments. Researchers analyzed the mechanisms behind this process, including hydrophobic interactions and surface adsorption, along with the mathematical models used to predict pollutant uptake. The study highlights that microplastics may amplify the environmental impact of other contaminants by concentrating and redistributing them.

2023 The Science of The Total Environment 64 citations
Article Tier 2

Adsorption behavior of organic pollutants and metals on micro/nanoplastics in the aquatic environment

This review examines how micro- and nanoplastics in aquatic environments adsorb organic pollutants and metals onto their surfaces, effectively acting as carriers for other contaminants. Researchers found that environmental factors like pH, salinity, and aging of the plastic significantly influence this sorption behavior. The findings raise concerns that microplastics may increase the bioavailability and toxicity of chemical pollutants in waterways.

2019 The Science of The Total Environment 685 citations
Article Tier 2

Microplastics meet micropollutants in a central european river stream: Adsorption of pollutants to microplastics under environmentally relevant conditions

Researchers investigated how microplastics adsorb organic micropollutants in a Central European river under real-world conditions. They found that aged microplastics showed higher adsorption capacity for contaminants compared to pristine ones, and that the type of plastic material influenced which pollutants were absorbed. The findings suggest that microplastics in rivers can act as carriers for harmful chemicals, potentially spreading contamination through aquatic ecosystems.

2024 Environmental Pollution 15 citations
Article Tier 2

Fate of microplastics and emerging contaminants: Mechanisms of interactions, bioaccumulation and combined toxicity to aquatic organisms

This review summarizes how microplastics interact with other emerging contaminants in water, finding that microplastics can absorb pollutants at concentrations up to a million times higher than surrounding water and carry them into living organisms. The combined toxicity of microplastics plus these hitchhiking chemicals is often greater than either alone, and these pollutants can reach humans through the food chain.

2025 Marine Pollution Bulletin 11 citations
Article Tier 2

Microplastics with adsorbed contaminants: Mechanisms and Treatment

This review examines how microplastics adsorb environmental contaminants including heavy metals, organic pollutants, and pathogens, and surveys treatment methods for removing contaminated microplastics from water. Researchers found that microplastics can act as vectors for hazardous substances, potentially increasing their bioavailability and toxicity in aquatic ecosystems. The study evaluates emerging remediation technologies and highlights the complex environmental risks posed by microplastics carrying adsorbed pollutants.

2021 Environmental Challenges 321 citations
Article Tier 2

Microplastics and organic contaminants: Investigation of the sorption process on different polymer types

Researchers investigated sorption of organic contaminants onto microplastics collected from environmental samples, finding that real-world MPs had different sorption capacities than laboratory-prepared particles due to surface aging, biofouling, and co-sorption of natural organic matter.

2025 Journal of Contaminant Hydrology 2 citations
Article Tier 2

Microplastics as a vector of hydrophobic contaminants: Importance of hydrophobic additives

This paper examines the role of hydrophobicity in determining whether organic pollutants sorbed to microplastics pose a meaningful additional risk beyond direct water exposure. The authors argue that for most scenarios, the contribution of microplastics to total pollutant exposure is smaller than commonly assumed and depends heavily on the properties of the specific chemical and polymer.

2017 Integrated Environmental Assessment and Management 211 citations
Article Tier 2

Review on microplastic-polymer composite interactions: assessing contaminant adsorption, structural integrity, and environmental impacts

This review examined how microplastics interact with polymer composites and serve as carriers for heavy metals, organic pollutants, and pathogens. The study assessed how polymer type, surface properties, and environmental conditions influence contaminant adsorption and transport, highlighting the complex role of microplastics in pollutant cycling.

2025 Communication in Physical Sciences
Article Tier 2

Source, transport, and toxicity of emerging contaminants in aquatic environments: A review on recent studies

This review examines emerging contaminants in water, with a focus on how microplastics act as carriers for other pollutants due to their strong ability to absorb chemicals. When microplastics carry these hitchhiking pollutants, the combined effect on aquatic organisms can be amplified thousands of times as they move up the food chain. The findings highlight how microplastic pollution does not just add plastic to the environment but also concentrates and transports other harmful chemicals toward humans.

2023 Environmental Science and Pollution Research 40 citations
Article Tier 2

Mini Review on Recent Advances of the Adsorption Mechanism Between Microplastics and Emerging Contaminants for Conservation of Water

This mini-review examines the adsorption mechanisms between microplastics and emerging contaminants such as pharmaceuticals, highlighting how physicochemical properties like hydrophobicity and pH influence pollutant uptake onto different polymer types. The review synthesizes recent advances relevant to understanding how microplastics act as vectors for pharmaceutical contaminants in aquatic environments.

2023 International Journal of Conservation Science 3 citations
Article Tier 2

Microplastics and Nanoplastics in the Aquatic Environment: Contamination, Determination and Interaction with Other Contaminants

This review gathers information on microplastic and nanoplastic contamination in aquatic environments, examining their detection methods, environmental persistence, and interactions with other contaminants including their capacity to adsorb and release chemical compounds.

2023 PERIÓDICO TCHÊ QUÍMICA 6 citations
Article Tier 2

Mechanistic Insights into PFAS Adsorption on Microplastics: Effects of Contaminant Properties and Water Chemistry

Researchers investigated how two widely detected PFAS compounds, PFOS and PFOA, adsorb onto five common types of microplastics in aquatic environments. The study found that contaminant properties and water chemistry significantly influence adsorption behavior, confirming that microplastics can serve as carriers for PFAS transport in waterways.

2026 Environmental Research