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Updated: Jan 19, 2026

Proper Handling and Disposal of Laboratory Waste
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Automotive wastes.

Hannah Giacomin1, Mio Unno1, Kelsey Eichbauer1

  • 1Arcadis, Atlanta, Georgia.

Water Environment Research : a Research Publication of the Water Environment Federation
|September 19, 2019
PubMed
Summary
This summary is machine-generated.

This 2018 literature review covers automotive waste management, pollution control, and health risks. It highlights sustainable practices and methods for mitigating environmental impacts from vehicles.

Keywords:
alternative fuelsautomotivehealth riskstoxicologyvehicle emissionswaste tires

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Area of Science:

  • Environmental Science
  • Materials Science
  • Toxicology

Background:

  • Automotive waste presents significant environmental challenges, encompassing solid wastes from autobodies, batteries, tires, and electronics.
  • Automobiles are recognized as primary sources of air and water pollution, necessitating focused research on their environmental impact.
  • Sustainable development and life cycle analyses of automotive components were prominent themes in 2018 research.

Purpose of the Study:

  • To review the 2018 literature on automotive wastes, pollution control, and associated health risks.
  • To identify key research areas including waste stream characterization, pollution mitigation strategies, and toxicological assessments.
  • To consolidate findings on sustainable automotive components and waste management practices.

Main Methods:

  • Literature review of scientific publications from 2018 focusing on automotive waste and pollution.
  • Analysis of research concerning solid waste generation (autobodies, batteries, tires, electronics).
  • Examination of studies on pollution treatment, control measures, and toxicological/health risk assessments.

Main Results:

  • Key research focused on life cycle analyses and sustainable automotive components.
  • Automobiles identified as point sources for air and water pollution.
  • Studies investigated energy consumption, emissions control, catalytic converter function, and non-point source pollution control (e.g., biodegradation, adsorption).

Conclusions:

  • Continued research is vital for managing automotive waste and mitigating pollution.
  • Sustainable practices and advanced control technologies are crucial for reducing the environmental footprint of vehicles.
  • Understanding toxicological risks associated with automotive waste is essential for public health protection.