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Catalysis on Nano-oxide with Nano-zeolite

机译:纳米沸石纳米氧化物催化分析

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@@1.Introduction As the demand of the lighter oils, middle distillates and gasoline is increasing in the oil products, the technology should be more developed for heavy oil upgrading or conversion to lighter oils. Among the refinery processes for the heavy oils to lighter oils, RFCC (Resid Fluid Catalytic Cracking) is more attractive as a carbon-and-hydrogen balanced technology than carbon rejection technology by thermal cracking without catalysts or hydrogen addition technology by catalytic hydroeracking (HC). The performance of RFCC which increases the yield of lighter oils adjusting to the demand depends on the catalysts developed. Porous matrix as a pre-aetive zone is usually required for the RFCC catalyst because either higher carbon residue (CCR) or a large amount of metals (V+Ni) usually contained in the heavy oils is pretreated in the zone before cracking on the zeolite. The well-controlled nano-pore structure has been studied to be consisting of well-designed zeolite and matrix made of llano-oxide[1,2,3]. The nano-pore structure of zeolite and matrix shown in Fig. 1 was studied on a base of RFCC catalyst.
机译:@@一,简介随着打火机油,中间馏分油和汽油的需求在石油产品的增加,这项技术应该更多的重油升级或转换为轻质油品开发。在用于重油至轻油的精炼工艺,RFCC(残油流化催化裂化)是无催化剂或氢加成技术通过催化hydroeracking裂解碳 - 和 - 氢平衡技术比通过热碳排斥技术(HC)更有吸引力。 RFCC的增加轻质油品适应需求的产量的性能取决于开发的催化剂。多孔基体作为预aetive区通常是必需的RFCC催化剂,因为无论更高残炭(CCR)或通常包含在重质油的大量金属(V + Ni)的区域中的是经预处理的沸石裂化之前。在良好控制的纳米孔结构进行了研究,被由精心设计的沸石和基质制成亚诺氧化物[1,2,3]的。在图1中所示的沸石和基质的纳米孔结构进行了研究RFCC催化剂的基座上。

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