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Dataset supporting the article "Estimating methane emissions during microplastic degradation in aquatic environments": Phthalic acid ester content in selected microplastic materials
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Scientists measured phthalates, chemicals linked to hormone disruption, in microplastics and rubber that end up in water. This data helps researchers understand what's leaching out of plastic waste as it breaks down, and supports ongoing work estimating methane released during microplastic decay in lakes and rivers. Understanding these chemical releases matters since they can enter waterways we rely on for drinking water and food.
Dataset supporting the article Kida, M., Pochwat, K., Ziembowicz, S., Strojny, W., & Koszelnik, P. (2026). Estimating methane emissions during microplastic degradation in aquatic environments. Journal of Environmental Chemical Engineering. https://doi.org/10.1016/j.jece.2026.123808 This repository contains aggregated experimental results generated during laboratory analyses of phthalic acid ester (PAE) content in selected microplastic and rubber materials. The repository contains: Aggregated analytical results (Phthalate_content.xlsx) Data dictionary describing all variables and measurement units (Data_dictionary_Phthalate.xlsx) The dataset contains mean analytical results based on three measurements (n = 3). The dataset has been prepared according to the FAIR (Findable, Accessible, Interoperable and Reusable) principles to facilitate transparency, reproducibility and reuse of the published research. Funding This research was funded in part by the National Science Centre (Poland), grant number 2025/57/B/ST8/02149.
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Dataset supporting the article "Estimating methane emissions during microplastic degradation in aquatic environments": Phthalic acid ester content in selected microplastic materials
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Scientists measured phthalates, chemicals linked to hormone disruption, in common microplastics and rubber to understand what breaks down when these materials degrade in water. This data supports a broader study estimating methane gas released as microplastics decompose, helping researchers better understand pollution risks in lakes, rivers, and oceans that can ultimately affect our water and food supply.
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This review pulls together existing research showing that microplastics floating in rivers and lakes aren't just plastic particles, they're also slowly leaking out chemical additives called phthalates, which are known to disrupt hormones. Even worse, as plastics break down over time from sun and physical wear, they release these chemicals faster and can also carry along other pollutants like heavy metals, potentially making the combined exposure more harmful to fish and other aquatic life that ingest them. While this study focused on water ecosystems rather than direct human health effects, it matters because these contaminated waters and organisms are part of the food chain and water supply humans rely
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Researchers demonstrated that microplastics are a major source of phthalate esters in aquatic environments, with PVC products leaching the highest concentrations and environmental factors like UV exposure and salinity increasing release rates.
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