E-Waste disposal has been becoming a global concern day by day as the pace at which diverse kind of waste gets produced is highly daunting for mother Earth. As the technological advancement takes place, the utilization of the current technology starts decreasing and eventually it gets antiquated. The environmental activist agency reckons that only 15 to 20 % of the e-waste is recycled, the rest of the electronic junk is disposed directly.
The environmental activist agency reckons that only 15 to 20 % of the e-waste is recycled, the rest of the electronic junk is disposed directly.
The recyclability of a material is not necessarily related to whether it is biodegradable or non-biodegradable. Both biodegradable and non-biodegradable materials can be recycled, depending on their properties and the availability of recycling facilities and processes.
This materials are those that can be broken down by natural processes, such as bacteria or other micro organisms, into simpler compounds that are not harmful to the environment. Examples of biodegradable materials include food and yard waste, and some types of paper and cardboard.
This materials, on the other hand, are those that do not break down naturally and may persist in the environment for a long time. Examples of non-biodegradable materials include plastics, glass, and metals.
Recycling can save energy, but the amount of energy saved depends on a variety of factors such as the materials being recycled, the process used to recycle them, and the energy required to transport the materials to and from recycling facilities. In general, recycling requires less energy than producing new materials from scratch. For example, recycling aluminum cans requires only about 5% of the energy needed to produce new aluminum cans from raw materials. Similarly, recycling paper uses less energy than producing new paper from wood pulp.
However, there are some cases where recycling may not save energy or may even use more energy than producing new materials. For example, recycling certain types of plastics can be energy-intensive, and if the recycling process is not efficient, it may use more energy than producing new plastics. Overall, recycling is a valuable tool for reducing waste and conserving resources, but it is important to consider the specific materials and processes involved in each case to determine whether recycling will save energy or not.
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