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Investigation of Titanium Dioxide Effectiveness of BTX Photocatalytic Oxidation for Automotive Applications Using Advanced Optimisation Algorithms

机译:采用先进优化算法研究BTX光催化氧化二氧化BTX光催化氧化钛的研究

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This paper constitutes the approach of determination the benzene, toluene and xylene (BTX) oxidation properties of titanium dioxide at condition simulating the passenger compartment. Here the oxidation properties of the catalytic agent are considered as its effectiveness. The factors which were under investigation was the temperature, UV light length and the time of pollutant exposition to the catalytic agent. In order to investigate full range of possible solution, the level of variance of all input factors was chosen to be in the maximal possible value which can occur inside a passenger car. Furthermore the experiment was performed according to static, three - dimensional full factorial plan which allowed to developed models of the catalytic agent BTX removal properties. In order to unify the investigation the results were presented as a percentage change of benzene toluene and xylene with respect to the first - reference sample. In consequence the models of titanium dioxide effectiveness are expressed as a second degree polynomial predicting the percentage change of BTX with respect to temperature, UV light length and the time of pollutant exposition. Those models were farther multi objectively optimized in the Pareto sense which allowed to determine optimal condition for the catalytic agent effectiveness within the assumed range of input factors. The complexity of the research and results analyses required usability a variety of computer software starting form constructional software - Autodesk Inventor ending on advanced mathematical environment in which the results were optimised - Matlab optimisation toolbox.
机译:本文构成了在模拟乘客室的状态下二氧化钛的苯,甲苯和二甲苯(BTX)氧化性能的方法。这里催化剂的氧化性能被认为是其有效性。正在研究的因素是催化剂的温度,UV光长和污染物阐述的时间。为了调查各种可能的解决方案,选择所有输入因子的方差水平被选中是在乘用车内部可能发生的最大可能值。此外,根据静态的三维完整因子计划进行实验,其允许开发催化剂BTX去除性能的模型。为了统一调查,将结果作为苯甲苯和二甲苯相对于第一参考样品的百分比变化呈现。因此,二氧化钛有效性的模型表示为第二程度多项式预测BTX相对于温度,UV光长和污染物阐述时间的百分比变化。这些模型在帕累托的意义上较多地对客观地优化,其允许确定在假定的输入因子范围内的催化剂效果的最佳条件。研究和结果的复杂性分析了所需的可用性各种计算机软件起始表单结构软件 - Autodesk Inventor结尾的高级数学环境,其中结果是优化的 - Matlab优化工具箱。

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