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IMPACT OF MANAGING ELECTRONIC WASTE TO ENSURE GREEN COMPUTING

IMPACT OF MANAGING ELECTRONIC WASTE TO ENSURE GREEN COMPUTING

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IMPACT OF MANAGING ELECTRONIC WASTE TO ENSURE GREEN COMPUTING

 

Introduction

In this age of information and communication technology, the utilisation of electronics and computational resources has increased tremendously.

Excessive usage of electronics equipment has resulted in a variety of enemies, including increased energy consumption (418 Ranjita Panda), global warming, e-waste accumulation, and environmental degradation.

Faced with the harsh realities of global warming and rising energy bills, government organisations and business companies around the world have begun to investigate solutions to protect the environment. To address these concerns, there is a rising global push to develop more environmentally friendly computing.

Green computing

Green computing refers to the efficient use of computing resources. It is the name given to the movement that promotes ecologically friendly computing by reducing power consumption.

It is also related with the proper use of computing resources, which plays an important role in reducing their negative influence on the environment.

Green computing addresses two primary issues: energy consumption reduction and pollution control. While the former can be accomplished by proper usage of electronic goods and the creation of energy efficient and low-power hardware, the latter can be accomplished through reduced use, proper recycling procedures, and the use of less hazardous ingredients in the equipment’s construction.
Other features of green computing include increasing economic viability and guaranteeing long-term sustainability. In this paper, we will focus on difficulties connected to waste management and recycling, among other aspects of green computing mentioned above.

Waste Management Any discarded substance is referred to as waste. It is a valuable raw material at the wrong place. Many wastes are either being used inefficiently or left completely unused, posing significant risks to the human environment.

It can be transformed into a valuable product by applying proper processing techniques. These wastes are of numerous types and can be classified as hazardous or nonhazardous.

These can be further classified as municipal wastes, electronic wastes, biomedical wastes, and industrial wastes. Many research have been conducted in many parts of the world to determine the relationship between health and hazardous wastes.

Certain compounds, such as cyanides, mercury, and polychlorinated biphenyls, are extremely poisonous when discharged unchecked, and exposure to them can result in disease or death. Some studies have found an increased risk of cancer among residents exposed to hazardous garbage.

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