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SCR Catalyst Volume Reduction of Vanadium for BSIV Emission Norms

机译:BSIV发射规范的SCR催化剂减少钒

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SCR being an advanced active emission technology system for diesel engine, is one of the most cost-effective and fuel-efficient technologies available for complying with the stringent NOx emission legislations. SCR catalyst volume is being considered as the most concerned part for NOx reduction and durability and a key element leading to high financial assessments. The SCR Optimization reduces the possibility of ammonia slip and leads to high NOx conversion rates. By improving the performance of the SCR, the optimization solution also reduces the amount of catalyst needed, thereby reducing associated costs. The decrease in SCR catalyst volume by 1m3 with respect to current set-up will lead to 15% reduction in the total cost of catalyst. All the factors affecting the SCR catalyst volume were focused in detail and the plausible range of catalyst volume was investigated by comparative measurement of these factors. The durability evaluation was done in addition on test bed, it was found that the volume was decreased by 20% and it was further concluded that the application of this study increases the degree of freedom in selecting the catalyst and optimization of catalyst volume but detoriating the NOx conversion. The various iterations performed for the optimization of catalyst have been discussed in this paper with test results to show the comparison study with all.
机译:SCR是柴油发动机的先进主动发射技术系统,是最具成本效益和省油的技术之一,可遵守严格的NOx排放法规。 SCR催化剂的体积被视为NOx还原和耐用性,导致高财务评估的一个关键因素,最关心的部分。该SCR优化减少氨逃逸,并导致高NOx转化率的可能性。通过提高SCR的性能,优化解决方案还减少了所需的催化剂的量,从而降低了相关成本。相对于目前的设置在SCR催化剂体积的减小通过1立方米将导致催化剂的总成本降低15%。影响SCR催化剂体积的所有因素都集中在细节和催化剂体积的合理范围是由这些因素的比较测量的影响。耐久性评价除了在试验台上进行,人们发现,在体积减少了20%,并进一步得出结论,该研究中的应用增加了选择的催化剂和催化剂量的优化,但detoriating的自由度NOx转化。催化剂的优化进行的各种迭代已经在本文讨论了与测试结果表明所有的对比研究。

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