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首页> 外文期刊>Journal of Ceramic Processing Research. (Text in English) >Thermal and chemical degradation behavior of a catalytic ceramic filter for dust/ NOx removal
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Thermal and chemical degradation behavior of a catalytic ceramic filter for dust/ NOx removal

机译:催化陶瓷过滤器用于除尘/去除NOx的热和化学降解行为

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摘要

The thermal and the chemical degradation characteristics of a catalytic ceramic filter were investigated using various stresses. The stress factors with modes and levels were designed in consideration of the pseudo-real environmental conditions for hot gas cleaning. The apparent porosity and the compressive strength of the filters, which were prepared using cordierite powder and coated with V2O5 catalyst were 58% and 10 MPa, respectively. The failure mechanism of the ceramic filter was cracking due to thermal shock. The crack formation gave an increase in baseline differential pressure by the depth filtration of dust With thermal stress tests of catalytic filters, the peak intensity for active sites of the V2O5 catalyst was decreased due to the weak bond strength of the V = O double bond against the thermal stress. Moreover the degradation of the catalyst was accelerated by sulfur adsorption during thermal durability tests.
机译:利用各种应力研究了催化陶瓷过滤器的热降解和化学降解特性。考虑到用于热气清洁的伪真实环境条件,设计了具有模式和水平的应力因子。使用堇青石粉制备并涂有V2O5催化剂的过滤器的表观孔隙率和抗压强度分别为58%和10 MPa。陶瓷过滤器的失效机理是由于热冲击而破裂。裂纹的形成通过粉尘的深度过滤增加了基线压差。通过催化过滤器的热应力测试,由于V = O双键相对于V2O5的弱键合强度,V2O5催化剂活性位点的峰值强度降低了。热应力。此外,在热耐久性测试期间,催化剂的降解通过硫吸附而加速。

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