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February 21, 2026ACS ES&T Water0 citations

Lifecycle of a Wipe: Determining the Contamination, Fate, and Transformation of Wet Wipe Pollution in the Environment

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SHSimran HansraJHJacob HaneyCRChelsea M. Rochman

Key Points

  • The central aim is to assess the prevalence, material composition, and degradation of plastic wet wipes in urban rivers.
  • Assessed wet wipe pollution levels in an urban river.
  • Evaluated industry labeling practices for material and disposal information.
  • Conducted laboratory experiments to study wet wipe degradation under various conditions.
  • Wet wipes constituted 25.7% of macroplastics collected in the river.
  • 99% of wipes were plastic, mainly polypropylene and polyester.
  • Only 48 out of 72 surveyed packages had disposal information, and just 7 indicated material composition.
  • Laboratory tests showed that wipes shed microplastics more significantly in wet conditions, especially polypropylene.

Abstract

Globally, plastic wet wipes are common in urban rivers – likely due to unclear labeling about material composition, leading to improper disposal (i.e., flushed down the toilet). Once in the environment, wipes likely break down into microplastics (5 mm) collected in the urban river, located primarily downstream of combined sewer outflows. Of the collected wipes, 99% were plastic (predominantly polypropylene (PP) and polyester (PET)). Among the 72 wipe packages surveyed across six stores and 42 brands, 48 displayed disposal information and only 7 specified information on product material. Finally, our laboratory experiment showed that wipes shed microplastics, with PP shedding more than PET, and more were generated under wet conditions versus dry. This suggests that wipes that enter rivers as macroplastics can transform into microplastics. Our work highlights the need for better labeling and management practices to mitigate wet wipe pollution.

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Cite This Study

Hansra et al. (2026) studied this question.

synapsesocial.com/papers/69994aab873532290d01f06fhttps://doi.org/10.1021/acsestwater.5c00838
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