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Experimental Investigations on CO_2 Recovery from Engine Exhaust Using Adsorption Technology

机译:使用吸附技术对发动机排气CO_2回收的实验研究

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Energy policy reviews state that automobiles contribute 25% of the total Carbon dioxide (CO_2) emission. The current trend in emission control techniques of automobile exhaust is to reduce CO_2 emission. We know that CO_2 is a greenhouse gas and it leads to global warming. Conversion of CO_2 into carbon and oxygen is an energy-consuming process compared to the catalytic converters. The best way to reduce CO_2 is to capture it from the source, store it and use it for industrial applications. To physically capture the CO_2 from the engine exhaust, adsorbents like molecular sieves are utilized. In comparison to other CO_2 separation methods, adsorption technique consumes less work and energy. Moreover, the sieves can be regenerated, reused and recycled once it is completely saturated. In this research work, zeolite X13 was chosen as a molecular sieve to adsorb CO_2 from the exhaust. A chamber was designed to store the zeolite and it is attached to the exhaust manifold. The selected engine was a single-cylinder Briggs and Stratton petrol engine. The experiments were conducted in two phases, the first phase to adsorb and the second phase to regenerate. Temperature pressure swing adsorption was chosen as the preferred process for the regeneration. This study was conducted by varying chamber length in three measurements and sieve quantities. The gas separated from the sieves during regeneration is tested using AVL Ditest analyser to study the percentage of CO_2 adsorbed from the engine exhaust. From the results, it was found that 70% of the CO_2 emissions were absorbed using low cost zeolite sieves.
机译:能源政策评价州的汽车贡献总二氧化碳(CO_2)排放的25%。汽车排气排放控制技术的目前趋势是减少CO_2排放。我们知道Co_2是温室气体,它导致全球变暖。与催化转化器相比,CO_2转化为碳和氧气是一种能量消耗过程。减少CO_2的最佳方法是从源捕获,存储它并将其用于工业应用。为了物理捕获来自发动机排气的CO_2,利用如分子筛的吸附剂。与其他CO_2分离方法相比,吸附技术消耗更少的工作和能量。此外,一旦完全饱和,就可以再生,重复使用和再循环筛。在该研究工作中,选择沸石X13作为分子筛,从排气中吸附CO_2。腔室设计用于存储沸石,它连接到排气歧管。所选发动机是单缸布里格斯和Stratton Petrol发动机。实验以两相进行,第一相对于吸附和第二阶段进行再生。温度升温吸附作为再生的优选方法。该研究通过三次测量和筛量的不同室长进行。使用AVL DITEST分析仪测试从再生期间与筛子分离的气体研究从发动机排气中吸附的CO_2的百分比。从结果中,发现使用低成本沸石筛吸收70%的CO_2排放。

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