The utilization of catalytic converter in reducing motorized vehicles emissions with copper and brass wire combined catalyst in the spiderwebs-shape
Ali Mokhtar, Andinusa Rahmandhika, Suwignyo, Fredy Wijayanto
Abstract
Ali Mokhtar, Andinusa Rahmandhika, Suwignyo, Fredy Wijayanto
Abstract
The annual growing number of motorized vehicles generates an unexpectedly depraved impact on the environment, especially on the pollution due to exhaust gases. Therefore, it is compulsory to modify the combustion gas filter system prior to being released into the environment. It is thus not surprising that the exhaust gas filter in the form of a catalytic converter has been continuously industrialized for this purpose. This research aims to discover a catalytic converter design made from a catalytic combination of brass wire and copper wire in the shape of spiderwebs by examining the catalytic converters exhaust emissions. The combined catalyst of brass wire and copper wire in the shape of a cobweb is preferred as a catalyst for catalytic converters. Regarding the affordability and accessibility, the discussed catalysts are feasible to reduce and oxidize motor vehicle emissions. The applied method in this research is the experimental method, containing steps initiated from designing the catalytic converter housing, determining the type of catalyst, to constructing a spiderwebs catalytic converter made from a combination of copper brass wire. Furthermore, testing is conducted to determine the exhaust emissions of motorized vehicles employing catalytic converters and without using catalytic converters. The results of emission testing affirmed that the application of catalytic converters made from a combined brass wire and copper wire in the shape of a spider’s web could significantly reduce HC and CO emissions, along with the increasing CO2 emissions. The reduction in HC gas emissions was 39 ppm or 16.72% compared to the value without using a catalytic converter. The reduction in CO gas emission was 4.5 ppm or 20.45% compared to the value without using a catalytic converter. Meanwhile, CO2 gas emissions increased by 4.3 ppm or 9.7% compared to the value without using a catalytic converter, due to the addition of oxygen in the oxidation process.
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The annual growing number of motorized vehicles generates an unexpectedly depraved impact on the environment, especially on the pollution due to exhaust gases. Therefore, it is compulsory to modify the combustion gas filter system prior to being released into the environment. It is thus not surprising that the exhaust gas filter in the form of a catalytic converter has been continuously industrialized for this purpose. This research aims to discover a catalytic converter design made from a catalytic combination of brass wire and copper wire in the shape of spiderwebs by examining the catalytic converters exhaust emissions. The combined catalyst of brass wire and copper wire in the shape of a cobweb is preferred as a catalyst for catalytic converters. Regarding the affordability and accessibility, the discussed catalysts are feasible to reduce and oxidize motor vehicle emissions. The applied method in this research is the experimental method, containing steps initiated from designing the catalytic converter housing, determining the type of catalyst, to constructing a spiderwebs catalytic converter made from a combination of copper brass wire. Furthermore, testing is conducted to determine the exhaust emissions of motorized vehicles employing catalytic converters and without using catalytic converters. The results of emission testing affirmed that the application of catalytic converters made from a combined brass wire and copper wire in the shape of a spider’s web could significantly reduce HC and CO emissions, along with the increasing CO2 emissions. The reduction in HC gas emissions was 39 ppm or 16.72% compared to the value without using a catalytic converter. The reduction in CO gas emission was 4.5 ppm or 20.45% compared to the value without using a catalytic converter. Meanwhile, CO2 gas emissions increased by 4.3 ppm or 9.7% compared to the value without using a catalytic converter, due to the addition of oxygen in the oxidation process.
Key concepts: Brass, Catalysis, Catalytic converter, Copper, Converters, Exhaust gas, Materials science, Automotive engineering