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Recycling of polyethylene waste materials to useful products via pyrolysis.

 

Table Of Contents


Project Abstract

Abstract
Polyethylene is one of the most commonly used polymers in the world, with a significant portion of it ending up as waste in landfills or oceans. Recycling of polyethylene waste materials via pyrolysis has gained attention as a promising method to convert this waste into useful products. Pyrolysis is a thermochemical process that breaks down organic materials at high temperatures in the absence of oxygen, resulting in the production of liquid fuels, gases, and char. This research project focuses on the recycling of polyethylene waste materials through pyrolysis to obtain valuable products. The process involves heating the polyethylene waste in a controlled environment to break down the polymer chains into smaller hydrocarbons. The liquid fraction obtained from pyrolysis can be further refined to produce fuels such as gasoline, diesel, and lubricants. The gaseous products can be used as fuel for heating or electricity generation, while the solid char can be used as a carbon source in various industrial applications. The main objectives of this study include optimizing the pyrolysis conditions for polyethylene waste, characterizing the products obtained from pyrolysis, and assessing the feasibility of scaling up the process for commercial applications. Various parameters such as temperature, heating rate, residence time, and catalysts will be investigated to determine their effects on the pyrolysis products' yield and quality. The characterization of the pyrolysis products will involve analyzing the chemical composition, physical properties, and potential applications of the liquid, gas, and solid fractions. This will provide insights into the quality and value of the products obtained from polyethylene waste recycling via pyrolysis. Furthermore, economic and environmental assessments will be conducted to evaluate the feasibility and sustainability of the pyrolysis process for recycling polyethylene waste materials. Factors such as cost of feedstock, energy consumption, product value, and environmental impact will be considered to determine the overall viability of the recycling process. Overall, this research aims to contribute to the development of sustainable waste management practices by providing a viable solution for recycling polyethylene waste materials to useful products via pyrolysis. The findings of this study can potentially support the transition towards a circular economy by promoting the reuse of plastic waste and reducing environmental pollution.

Project Overview

1.0 INTRODUCTION

1.1 BACKGROUND OF STUDY

Recycling is a dynamic process that restores the life cycle of a material. Also recycling refers to as a process of collecting and processing materials that would otherwise be thrown away as trash and turning them into a new product. Recycling as well reduce the consumption of fresh raw materials, energy usage, water and air pollution and lower green house gas emission as compared to a plastic production. (Roach John 2003).

Polyethylene plastic bags are petroleum-based so the manufacturing process releases harmful pollutants into the atmosphere. Some speculate that these emissions and other smog-related types of pollution accumulate over time in the atmosphere.                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                    Uioolk1

Countries and large corporations are beginning to realize the threat that these plastic bags pose to our planet. Many are proposing or have already enacted laws and taxes to decrease the use of polyethylene plastic bags. Many grocery stores are even rewarding customers for bringing reusable grocery bags as an alternative to these polyethylene plastic bags. Customers choosing not to use alternatives to plastic bags either find the alternatives are inconvenient or are simply unaware of the problem at hand.

Polyethylene recycling bags are currently being used all over the world but there is currently no environmentally friendly way to dispose of them.

The rate of consumption of plastic materials in the world is highly expanding, more waste plastics are generated. In past years, their generation amount in China becomes about six million per year, according to data from the National Institute of Environmental Research (Roach John 2005).

Typically, raw materials are manufactured into products for consumption. Leftovers are then thrown away. This linear process, from extraction of raw materials, to production, then consumption and disposal, has created a waste crisis.

To reduce this one-way flow of re-sources to overburdened waste disposal facilities, materials no longer needed or wanted can be remanufactured. (Roach John 2003).

1.2 AIM

The aim is to recycle polyethylene waste materials to useful products via pyrolysis.

1.3 OBJECTIVES

The objectives of this work are includes:-

(a). To collect the polyethylene waste materials (discarded water sachets plastic bottle )

(b). To carry out thermal pyrolysis of the materials at temperature of 300oC – 350oC

 (c). To monitor the quantity of fuel gas and hydrocarbon liquids evolved

1.4 SIGNIFICANCE OF THE STUDY

The significance studies of recycling polyethylene waste materials via pyrolysis are:

It serve as an economics important to the society or nations

The recycling of polyethylene waste materials to useful appear intervene with our consuming society where it will be hard to imaging in modern society today without plastic which have found amyriad of used in fields as diverse as household appliance, packaging, construction, medicine and electronic.

The recycling of polyethylene waste help in an industrial production of plastic and polymer products such as sachet water, plastic bottle, rubber paint, e.t.c. As sources of raw materials to produces other useful product from those polyethylene waste materials.

It helps in prevent waste pollutant from an environment.

1.5 SCOPES OF THE STUDY

The research is restricted to the recycling of polyethylene products, arising specifically from Low Density Polyethylene (LDPE). No attempt is made to suggest new production process. the study does not include of alternative materials.  



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