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首页> 外文期刊>Computers & Chemical Engineering >Enhancement of light naphtha quality and environment using new synthetic nano-catalyst for oxidative desulfurization: Experiments and process modeling
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Enhancement of light naphtha quality and environment using new synthetic nano-catalyst for oxidative desulfurization: Experiments and process modeling

机译:采用新型合成纳米催化剂进行氧化脱硫的光石脑油质量和环境的增强:实验和过程建模

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摘要

Batch oxidative desulfurization (ODS) process is investigated here for the removal sulfur compound from light naphtha using homemade new nano-catalyst. The catalyst is made of manganese dioxide supported on zeolite nanoparticles which shows an excellent catalytic performance with good impregnation, high activity, good pore size distribution and larger surface area. Different reaction temperature, time and initial sulfur concentration are used to have a deeper insight of the process. The experimental results reveal that the conversion of sulfur compound is increased by increasing the initial sulfur concentration, the reaction temperature and batch time. A mathematical model of the process is developed and validated using the experimental data within gPROMS software with high accuracy. The validated model (errors less than 5% between experimental and predicted results) is then utilized to obtain the optimal operation conditions of the process giving maximum conversion of sulfur (higher than 99%) resulting in an environmentally friendly fuel.
机译:本文研究了使用自制的新纳米催化剂从轻质石脑油中去除硫化合物的分批氧化脱硫(ODS)方法。催化剂由负载在沸石纳米颗粒上的锰二氧化锰制成,其显示出具有良好的浸渍,高活性,良好的孔径分布和较大的表面积具有优异的催化性能。不同的反应温度,时间和初始硫浓度用于具有更深的过程的更深入的过程。实验结果表明,通过增加初始硫浓度,反应温度和批量时间来增加硫化合物的转化。使用高精度的GPROM软件中的实验数据开发和验证该过程的数学模型。然后利用验证的模型(实验和预测结果之间小于5%的误差,以获得最大的过程的最佳操作条件,其最大限度地转化硫(高于99%),导致环保燃料。

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