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Reduction of Pollutants of Insulated Diesel Engine with Plastic Oil with Supercharging
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This paper aims at alternative fuel technology for diesel engine and environmental protection. The exhaust emissions from diesel engine are particulate matter (PM), nitrogen oxide (NOx ) levels, carbon mono oxide (CO) emissions and un-burnt hydro carbons (UBHC) and cause severe health hazards when they are inhaled in. They also cause environmental disorders like Global warming, Green-House effect, acid rain etc,. Hence control of these emissions is urgent and an immediate step. Vegetable oils and alcohols are important substitutes for diesel fuel, as they are renewable in nature. Though vegetable oils have comparable properties with diesel fuel, however, they have high viscosity and low volatility causing combustion problems in diesel engines. Alcohols have high volatility but low Cetane number (a measure of combustion quality in diesel engine). Plastic oil derived from waste plastic collected from debris by the process of pyrolysis has equitant calorific value with diesel fuel. However, its viscosity is higher than diesel fuel calls for low heat rejection (LHR) diesel engine. The concept of LHR diesel engine is to minimize the heat flow to the coolant there by increase of thermal efficiency. This LHR engine is useful for burning high viscous and low calorific value fuels. LHR engine consisted of ceramic coated cylinder head engine. The exhaust emissionsof PM, CO, NOx and UBHC with plastic oil were determined with conventional engine (CE) and LHR engine with varied injection timing at full load operation of the engine. Injection timing was varied with an electronic sensor. PM was determined by AVL Smoke meter, while NOx , CO and UBHC were measured by Netel Chromatograph multi gas analyzer at full load operation of the engine. The data was compared with neat diesel operation on conventional engine.
Title: Reduction of Pollutants of Insulated Diesel Engine with Plastic Oil with Supercharging
Description:
This paper aims at alternative fuel technology for diesel engine and environmental protection.
The exhaust emissions from diesel engine are particulate matter (PM), nitrogen oxide (NOx ) levels, carbon mono oxide (CO) emissions and un-burnt hydro carbons (UBHC) and cause severe health hazards when they are inhaled in.
They also cause environmental disorders like Global warming, Green-House effect, acid rain etc,.
Hence control of these emissions is urgent and an immediate step.
Vegetable oils and alcohols are important substitutes for diesel fuel, as they are renewable in nature.
Though vegetable oils have comparable properties with diesel fuel, however, they have high viscosity and low volatility causing combustion problems in diesel engines.
Alcohols have high volatility but low Cetane number (a measure of combustion quality in diesel engine).
Plastic oil derived from waste plastic collected from debris by the process of pyrolysis has equitant calorific value with diesel fuel.
However, its viscosity is higher than diesel fuel calls for low heat rejection (LHR) diesel engine.
The concept of LHR diesel engine is to minimize the heat flow to the coolant there by increase of thermal efficiency.
This LHR engine is useful for burning high viscous and low calorific value fuels.
LHR engine consisted of ceramic coated cylinder head engine.
The exhaust emissionsof PM, CO, NOx and UBHC with plastic oil were determined with conventional engine (CE) and LHR engine with varied injection timing at full load operation of the engine.
Injection timing was varied with an electronic sensor.
PM was determined by AVL Smoke meter, while NOx , CO and UBHC were measured by Netel Chromatograph multi gas analyzer at full load operation of the engine.
The data was compared with neat diesel operation on conventional engine.
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