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首页> 外文期刊>Catalysis science & technology >Design of Pt/SAPO-11 bifunctional catalyst with superior metal-acid balance constructedviaa novel one-step pre-loading strategy for enhancingn-dodecane hydroisomerization performance
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Design of Pt/SAPO-11 bifunctional catalyst with superior metal-acid balance constructedviaa novel one-step pre-loading strategy for enhancingn-dodecane hydroisomerization performance

机译:设计的Pt / SAPO-11双功能催化剂上级metal-acid平衡constructedviaa小说一步预装的策略enhancingn-dodecane hydroisomerization性能

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摘要

A novel metal preloading route is proposed to prepare Pt/SAPO-11 bifunctional catalysts. The addition of platinum brings about an increase in catalyst product yield with a growth rate of 87% attributed to chemical adsorption between Pt and the lone pair of electrons in the nitrogen atom of the structure-directing agent. More interestingly, it can be concluded from the HAADF-STEM, SE-STEM images and DRIFTS data on CO adsorption, there are small Pt nanoparticles confined inside the SAPO-11 molecular sieve, while the big Pt nanoparticles are dispersed on the surface. The synergistic effect between the metal sites and acid sites can be improved by the enhancement of metal-acid balance, by adjusting then(Pt)/n(A)ratio. A better metal-acid balance property is achieved and the carbenium ion can quickly go through the hydrogenating reaction on Pt nanoparticles, hence shortening the time it is trapped in the acid sites uponn-dodecane hydroisomerization. Consequently, the cracking reaction can be effectively avoided and liquid yield as high as 99% and isomer yield up to 84% is produced, much superior than the Pt/SAPO-11 catalyst synthesizedviathe traditional impregnation method of Pt with the maximum isomer yield of 52%. Moreover, more multi-branched isomers are produced and can further help improve the low-temperature rheology when used as lubricant base oil.
机译:提出了一种新颖的金属预加载路径准备Pt / SAPO-11双功能催化剂。铂带来的增加催化剂产品产量的增长率为87%由于化学吸附与Pt氮原子的孤对电子的一类代理。有趣的是,它可以得出结论的HAADF-STEM, SE-STEM图片和漂移数据有限公司吸附,有小Pt纳米粒子局限在SAPO-11分子筛,而大Pt纳米粒子分散表面。金属网站和酸网站可以提高的增强metal-acid平衡,通过调整然后(Pt) / n (A)的比例。财产和碳正离子可以实现很快经过加氢,反应Pt纳米粒子,因此缩短时间被困在酸uponn-dodecane网站hydroisomerization。反应可以有效地避免和液体收益率高达99%和异构体收益率高达84%生产,比Pt / SAPO-11优越吗催化剂synthesizedviathe传统浸渍法的Pt最大的异构体收益率为52%。同分异构体产生,可以进一步改善当用作低温流变学润滑油基础油。

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