一种改进的Scheffe单纯形点阵设计方法在气体排放催化中和剂陶瓷载体开发中的应用

IF 0.5 Q4 CHEMISTRY, MULTIDISCIPLINARY
V. Ved, H. Ponomarenko, Yevhen Ponomarenko, K. Gorbunov
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引用次数: 0

摘要

提出了一种改进的Scheffe单纯形点阵设计方法来研究多组分材料的性能。在化学实验设计中,通常采用舍夫单纯形晶格法来描述三组分体系。这种改进的Scheffe的方法允许确定堇青石和刚玉基陶瓷材料的最佳组成,用作气体净化设备的催化剂载体。所得材料质量分数为0.63-1.25 mm,堇青石质量分数为0.35 %;<0.63 mm质量分数的堇青石质量分数为0.35 %;重量<0.06 mm的刚玉分数为0.2质量%的分数;用质量分数为0.2 %的堇青石(质量分数为1.25 ~ 2.5 mm)成功地制备了气体排放催化中和剂。这种方法对乌克兰哈尔科夫客运火车站废物回收综合设施的催化中和剂的设计和制造至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Modified Scheffe's Simplex Lattice Design Method in Development of Ceramic Carriers for Catalytic Neutralizers of Gas Emissions
A modified Scheffe’s simplex lattice design method is proposed to study the properties of multicomponent materials. Usually, the Scheffe’s simplex lattice method is used to describe threecomponent systems in design of chemical experiments. This modified Scheffe’s method allowed determining the optimal compositions of cordierite and corundum based ceramic materials that are used as catalyst carrier for gas purification equipment. The obtained material (0.63-1.25 mm weight fraction of cordierite of 0.35 mass% fraction; <0.63 mm weight fraction of cordierite of 0.35 mass% fraction; <0.06 mm weight fraction of corundum of 0.2 mass% fraction; 1.25-2.5 mm weight fraction of cordierite of 0.2 mass% fraction) was used successfully for the manufacturing of catalytic neutralizers of gas emissions. This method was essential for the designing and manufacturing of a catalytic neutralizer for waste recycling complex at the Kharkiv Passenger railway station in Ukraine.
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来源期刊
Chemistry Journal of Moldova
Chemistry Journal of Moldova CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
20.00%
发文量
8
审稿时长
12 weeks
期刊介绍: "Chemistry Journal of Moldova. General, Industrial and Ecological Chemistry" seeks to publish experimental or theoretical research results of outstanding significance and timeliness in all fields of Chemistry, including Industrial and Ecological Chemistry. The main goal of this edition is strengthening the Chemical Society of Moldova, following development of research in Moldovan chemical institutions and promotion of their collaboration with international chemical community. Manuscripts are welcome from all countries.
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