Papers

12 results
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Article Tier 2

Updated review on microplastics in water, their occurrence, detection, measurement, environmental pollution, and the need for regulatory standards

This review examines microplastic occurrence, detection methods, and measurement techniques in aquatic environments, highlighting the urgent need for explicit regulatory frameworks to address the growing threat of microplastic pollution in water systems.

2021 Environmental Pollution 130 citations
Article Tier 2

A review of methods for measuring microplastics in aquatic environments

This review critically evaluates methods used to measure microplastics in aquatic environments, covering sampling design, sample processing, and spectroscopic identification, and identifies the most significant sources of methodological variation. Standardizing these methods is essential for generating comparable data across studies and enabling robust environmental risk assessment.

2018 Environmental Science and Pollution Research 361 citations
Article Tier 2

Nanoplastics: Detection and impacts in aquatic environments – A review

This review examined nanoplastic detection methods and their impacts in aquatic environments, concluding that current analytical capabilities severely underestimate nanoplastic exposure levels due to the difficulty of detecting sub-micron particles. The authors called for standardized nanoplastic detection protocols to enable meaningful risk assessment.

2022 The Science of The Total Environment 69 citations
Article Tier 2

A critical view on microplastic quantification in aquatic organisms

Researchers critically reviewed the methods used to quantify microplastics in aquatic organisms including zooplankton, bivalves, and fish. The study highlights that no standardized methodology exists for measuring microplastic contamination in biota, which makes comparing results across studies difficult and underscores the need for consistent analytical protocols.

2015 Environmental Research 463 citations
Article Tier 2

A critical review of microplastics characterisation in aquatic environments: recent trends in the last 10 years

This critical review assessed current approaches to characterizing microplastics in aquatic environments, evaluating sampling methods, extraction protocols, and analytical techniques. It identified persistent inconsistencies in methodology and recommended standardization practices to improve data comparability.

2024 Analytical Methods 4 citations
Article Tier 2

Micro/nanoplastics in aquatic ecosystems: Analytical challenges, ecological impacts, and mitigation strategies

This review provides a comprehensive assessment of micro- and nanoplastic pollution in aquatic ecosystems, covering detection methods, toxic effects across the food chain, and emerging cleanup strategies. Researchers highlight the limitations of current analytical techniques and the challenges of accurately measuring these tiny particles in water and living organisms. The study identifies key research priorities needed to better understand and mitigate the growing threat of plastic particle pollution in waterways.

2025 Environmental Chemistry and Ecotoxicology 2 citations
Article Tier 2

Microplastic Contamination: An Introduction to an Emerging Issue

This review examines microplastics as emerging environmental pollutants, covering their persistence in the environment, accumulation in aquatic organisms, and the need for standardized detection and monitoring approaches to address growing contamination concerns.

2025
Article Tier 2

Disparities in Methods Used to Determine Microplastics in the Aquatic Environment: A Review of Legislation, Sampling Process and Instrumental Analysis

This review examined the wide disparities in sampling, processing, and analytical methods used across microplastic studies, highlighting how inconsistent approaches make it difficult to compare results and calling for standardized international protocols and regulatory frameworks.

2021 International Journal of Environmental Research and Public Health 45 citations
Article Tier 2

Microplastics in aquatic systems: A review of occurrence, monitoring and potential environmental risks

Researchers review the presence of microplastics — tiny plastic fragments less than 5 mm — across freshwater and marine environments worldwide, finding that polyethylene, polypropylene, and polystyrene are the most commonly detected types. Exposure disrupts feeding, movement, and reproduction in aquatic wildlife, and the authors call for standardized measurement methods and legal limits to protect ecosystems.

2023 Environmental Advances 80 citations
Article Tier 2

Micro-Nano Plastic in the Aquatic Environment: Methodological Problems and Challenges

This critical review examines methodological inconsistencies in microplastic research, arguing that many studies conflate correlation with causation and that contamination controls and size detection limits are often inadequate. The authors call for more rigorous experimental design before concluding that microplastics are definitively harmful vectors for co-occurring contaminants.

2022 Animals 41 citations
Systematic Review Tier 1

Microplastic contamination, an emerging threat to the freshwater environment: a systematic review

Researchers systematically reviewed the spread of microplastics in freshwater ecosystems — rivers, lakes, and streams — documenting their sources, how they move through water, the damage they cause to aquatic organisms, and the methods used to detect them. Their review serves as a baseline reference for future research and calls for improved waste management to protect freshwater environments from ongoing microplastic contamination.

2024 ENVIRONMENTAL SYSTEMS RESEARCH 98 citations
Systematic Review Tier 1

A Systematic Review of Microplastic Detection in Water

This systematic review summarizes current methods for detecting microplastics in water sources. The research highlights significant challenges in accurately measuring these tiny plastic particles, with different techniques yielding very different results. Better detection methods are essential for understanding how much microplastic is present in the water people drink and use daily.

2024 2 citations