PDF

Sustainability and Green Polymer Chemistry—An Overview

H. N. Cheng, Richard A. Gross

2020ensustainabilitygreen chemistrypolymersenvironmentclimate change

Abstract

Language:

With increasing public awareness of climate change, environmental pollution, and earth’s declining resources, the concepts of sustainability and green chemistry have gained significant attention. This chapter provides an overview of selected polymer research areas that align with sustainability goals, particularly in the context of the 17 Sustainable Development Goals (SDGs) adopted by the United Nations in 2015. The chapter categorizes the approaches into three main areas: first, strategies aimed at reducing or replacing polymer waste, including the use of agro-based materials, recycling, and the design of more easily degradable or recyclable polymers; second, advancements in polymer processes that enhance cost efficiency, energy reduction, and toxicity minimization; third, the design and utilization of polymers that support the achievement of other SDGs. By examining examples from the subsequent chapters, the chapter highlights the active and ongoing research and development initiatives in this field, indicating a promising future for green polymer chemistry and its role in sustainable development.

Download

Cite This Work

@article{4dd85809-8e53-49ce-8dd5-9bcd60e01ac0,
  title={Sustainability and Green Polymer Chemistry—An Overview},
  author={H. N. Cheng and Richard A. Gross},
  year={2020},
  language={en}
}
TY  - JOUR
TI  - Sustainability and Green Polymer Chemistry—An Overview
AU  - H. N. Cheng
AU  - Richard A. Gross
PY  - 2020
LA  - en
ER  -

Similar Items

Challenges and opportunities in the recovery of gold from electronic waste

Mudila Dhanunjaya Rao, Kamalesh K. Singh

Rapid global technological development has resulted in increased production of electronic waste, which presents both challenges and opportunities in r

2023enPDF

THE FUTURE OF ELECTRONIC WASTE RECYCLING IN THE UNITED STATES: Obstacles and Domestic Solutions

Jennifer Namias, Dr. Nickolas J. Themelis

This study explores the future of electronic waste recycling in the United States, addressing the challenges and proposing domestic solutions. The rap

2013enPDF

Recycling of Printed Circuit Boards

2026enPDF

Chapter 20 Electronic Waste

Jirang Cui, Hans Jørgen Roven

Rapid growth in electronic equipment consumption has generated large quantities of electronic waste containing hazardous substances and high-value met

2026enPDF

Metallurgical Plant Design and Operating Strategies

P Card, J Canterford

This document presents a collection of papers from the METPLANT 2011 conference focusing on metallurgical plant design and operating strategies. The o

2011enPDF

A Study of Ferrospheres in the Coal Fly Ash

Danzandorj Sunjidmaa, Ganbat Batdemberel

Coal fly ash is an industrial by-product produced from coal combustion in thermal power plants. It is a complex anthropogenic material consisting of v

2019enPDF