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61,005 resultsShowing papers similar to Micro Plastic Contamination: A Comprehensive Review of Risks and Sustainable Solutions
ClearMicroplastics Pollution in Aquatic Ecosystems: Challenges and Perspectives
A comprehensive review covered the challenges and future directions for addressing microplastic pollution in aquatic ecosystems, synthesizing knowledge on sources, fate, ecological impacts, and removal strategies. The paper provides a roadmap for research and policy priorities to reduce aquatic microplastic contamination.
Environmental Impact of Microplastics in Aquatic Ecosystems: A Review of Current Research and Future Directions
This review examines microplastic pollution in aquatic ecosystems, covering chemical, biological, and ecological processes beyond simple physical contamination and identifying priority areas for future research directions.
Microplastics in the Aquatic Environment: Overview of the Problem and Current Research Areas
This review summarizes the current state of microplastic research in aquatic environments, covering sources, distribution, ecological impacts, and knowledge gaps. The paper identifies priority research areas needed to better understand and manage microplastic contamination in water bodies.
From Origins to Impacts: A Comprehensive Review of Microplastics in Freshwater Environments
This comprehensive review covers microplastics in freshwater ecosystems from sources and transport to biological uptake and food web effects, synthesizing current evidence on ecological risks and identifying research priorities.
Microplastics in aquatic environments: a review of recent advances
This review synthesizes recent advances in understanding microplastic contamination in aquatic environments, covering sources, distribution, and physical, chemical, and biological removal methods, and highlighting that no standardized cost-effective removal solution currently exists. The review emphasizes that microplastics cycle through natural and engineered systems, requiring whole-system approaches to avoid unintended recontamination.
Micro- and Nano-Plastics Contaminants in the Environment: Sources, Fate, Toxicity, Detection, Remediation, and Sustainable Perspectives
This review provides a broad overview of micro- and nanoplastic pollution, covering where these particles come from, how they spread through the environment, and the damage they cause to living things including humans. The authors also compare different methods for removing microplastics from the environment, including physical, chemical, and biological approaches. The paper calls for more research and global cooperation to develop better tools for measuring the health risks of plastic pollution.
Microplastics in Aquatic Ecosystems: Pathways, Impacts and Integrated Solutions for Environment and Human Health
This review synthesizes current knowledge on microplastic contamination in freshwater and marine ecosystems, covering their sources, environmental behavior, and biological effects. Evidence indicates that microplastics enter waterways through wastewater, runoff, atmospheric deposition, and the breakdown of larger debris, and they accumulate across food webs through ingestion and trophic transfer. The study calls for integrated solutions combining reduced plastic use, advanced filtration, bioremediation, and stronger policy enforcement.
Pollution to Solution: Understanding and Addressing Microplastic Contamination in the Environment
This review synthesizes current knowledge on how microplastics and nanoplastics are distributed across freshwater and marine environments, how they interact with and are taken up by aquatic organisms, and what removal technologies show the most promise. It covers the full lifecycle from macroplastic fragmentation to nano-scale particles, and surveys physical, chemical, and biological treatment methods. The review provides a useful overview for researchers and environmental managers looking to understand the scope of the microplastic problem and identify where interventions are most needed.
Microplastics in marine ecosystems: Sources, effects, and mitigation strategies
This review examines the sources, environmental pathways, ecological impacts across trophic levels, and mitigation strategies for microplastic pollution in marine ecosystems, synthesizing current evidence on biological harm and evaluating policy frameworks, technological solutions, and individual behavioral changes aimed at reducing marine microplastic loads.
Microplastics in aquatic environment: Challenges and perspectives
This review provides a comprehensive overview of microplastic pollution in water environments, covering sources, transport, health effects, detection methods, and control strategies. Microplastics enter waterways from everyday plastic products, industrial discharge, and wastewater treatment plants, where aquatic organisms ingest them and pass them up the food chain. The review highlights the urgent need for better analytical techniques and global policies to reduce microplastic contamination that ultimately reaches human food and drinking water.
A Global Perspective of Beginning to the End of the Microplastics in the Aquatic Environment
This comprehensive review examines microplastics in aquatic environments from initial release through environmental fate, biological uptake, and ecological effects, identifying key knowledge gaps in freshwater and marine ecosystems.
Can We Find a Way to Solve Microplastic Pollution?
This review examines sources, environmental distribution, ecological impacts, and potential mitigation strategies for microplastic pollution across terrestrial, freshwater, and marine ecosystems. The authors survey evidence of harm to marine wildlife including seabirds, fish, and sea turtles through ingestion and entanglement, and assess emerging technological and regulatory approaches to reducing global microplastic contamination.
Microplásticos en ecosistemas acuáticos: una revisión sobre su impacto y gestión
This literature review analyzes the ecological impact of microplastic pollution in aquatic ecosystems and available management strategies. Researchers found that microplastics affect aquatic organisms through ingestion and bioaccumulation, altering physiological functions and acting as vectors for toxic pollutants and pathogens. While filtration technologies, bioremediation, and regulatory measures have been developed, their effectiveness remains limited and a comprehensive approach combining prevention, mitigation, and stricter policies is needed.
Microplastic: A Silent Contaminant in Aquatic Ecosystems and Its Ecological Consequences
This review examines microplastics as a pervasive but underappreciated contaminant in aquatic ecosystems, synthesizing evidence on their sources, distribution, uptake pathways in aquatic organisms, and broader ecological consequences for freshwater and marine food webs.
Emerging microplastic contamination in ecosystem: An urge for environmental sustainability
This review summarized the sources, environmental distribution, and ecological effects of microplastics, emphasizing the exponential increase in plastic production and waste mismanagement driving MP accumulation across terrestrial and aquatic ecosystems. The authors called for urgent policy measures to reduce single-use plastic production and improve waste infrastructure globally.
Review on impacts of micro- and nano-plastic on aquatic ecosystems and mitigation strategies
This review examines the environmental fate, ecological impacts, and remediation strategies for microplastics and nanoplastics in aquatic ecosystems. Researchers highlight that microbial remediation shows particular promise for breaking down these pollutants, while many nations are adopting regulations to limit plastic contamination of waterways. The study suggests that integrating approaches from nanoscience, microbial ecology, and remediation technologies is needed to address this growing environmental challenge.
Microplastics in aquatic systems, a comprehensive review: origination, accumulation, impact, and removal technologies
This comprehensive review traced the sources of microplastics in aquatic environments, from industrial products and packaging to cosmetics and agricultural materials, and examined their toxic effects on living organisms. Researchers found that microplastics are remarkably stable and widespread, posing growing ecotoxicological risks to aquatic ecosystems. The study also evaluated current removal technologies, noting their advantages and limitations, and warns that without better strategies, microplastic pollution will become significantly worse in coming decades.
Microplastics influencing aquatic environment and human health: A review of source, determination, distribution, removal, degradation, management strategy and future perspective
This review paper provides a broad summary of microplastic pollution in water environments, covering where they come from, how to detect them, how they spread, and how to remove them. The authors emphasize that microplastics persist for extremely long periods in water and can harm both aquatic life and human health, calling for better management strategies worldwide.
Ecotoxicological perspectives of microplastics
This review summarized the ecotoxicological effects of microplastics across aquatic and terrestrial organisms, covering the global scale of plastic production and the chronic harm MPs cause to ecosystems. The paper called for greater research standardization and policy intervention to address the escalating contamination.
Microplastics in Aquatic Ecosystems: A Critical Review of Sources, Transport Mechanisms and Ecotoxicological Risks
This review provides a broad overview of microplastic pollution in rivers, oceans, and other aquatic environments, covering where these particles come from, how they move through water systems, and the harm they can cause. Evidence indicates that microplastics accumulate toxins and disrupt growth, feeding, and reproduction in aquatic species, with potential consequences for human health through seafood and drinking water. The authors stress the need for better global monitoring, stronger waste management systems, and development of eco-friendly plastic alternatives.
Microplastics in Aquatic Environments: Sources, Ecotoxicity, Detection & Remediation
This review provides a comprehensive overview of microplastic sources, ecotoxicity, detection methods, and remediation strategies in aquatic environments. Researchers found that microplastics act as carriers for toxic chemicals and pose threats to both marine and freshwater ecosystems as well as human health through drinking water exposure. The study highlights the need for improved detection technologies and effective remediation approaches to address this growing environmental challenge.
Microplastics: Environmental Presence and Ecological Impact
This review examined the sources, environmental distribution, ecological impacts, and current detection and removal advances for microplastic pollution across marine, terrestrial, and freshwater systems. It synthesized the state of knowledge on MP effects on biodiversity, food chains, and human health, and highlighted gaps in remediation technology.
The Harmful Effects of Microplastic Pollution on Aquatic Organisms
This review summarized evidence on the harmful effects of microplastic pollution on aquatic organisms in both marine and freshwater environments, covering ingestion, entanglement, and chemical toxicity pathways. The paper highlighted how the lightweight, durable, and widespread nature of plastics makes them a pervasive threat to aquatic biodiversity.
Microplastic contaminants in the aqueous environment, fate, toxicity consequences, and remediation strategies
This review covers the sources, fate, and toxic effects of microplastic contaminants in aquatic environments, along with current remediation strategies for removing them. Researchers found that microplastics cause various health problems in aquatic organisms and can enter the human food chain through contaminated seafood and water. The study emphasizes the urgent need for improved waste management and novel cleanup technologies to address microplastic pollution in water systems.