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Effect of reactor configuration on performance of vacuum gas oil (VGO) hydrotreater: Modelling studies

机译:反应堆配置对真空粗柴油(VGO)加氢处理机性能的影响:建模研究

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摘要

While kinetics is independent of either scale or configuration of hydrotreating reactor, hydrodynamics of reactor depend on both. The hydrodynamics of reactor which comprise of phase mass-transfer, catalyst wetting and pressure drop affect its performance significantly and should be addressed adequately while deciding on configuration or scale up issues. This study evaluates and compares the performance of different configurations of commercial VGO hydrotreater by employing mathematical model encompassing kinetics and hydrodynamics. Two configurations have been studied: 1) Conventional trickle-bed reactor, subdivided into (a) beds in parallel and (b) beds in series. 2) Pre-saturated one liquid flow (POLF) reactor, subdivided into (a) reactor with single pre-saturator (POLF-SP) and (b) multiple reactors in series with intermittent pre-saturators (POLF-MP). The performance of conventional reactor in series/parallel is found to be superior to POLF configurations. The inferior performance of POLF configurations is attributed to mixed flow behaviour due to recycle as against plug flow behaviour in conventional trickle-bed reactors.
机译:虽然动力学与加氢处理反应器的规模或构型无关,但反应器的流体动力学取决于两者。反应器的流体动力学包括相传质,催化剂润湿和压降,会显着影响其性能,在确定构型或规模问题时应适当解决。本研究通过使用包含动力学和流体动力学的数学模型,评估和比较了商用VGO加氢处理机不同配置的性能。研究了两种构造:1)传统的滴流床反应器,细分为(a)平行床和(b)串联床。 2)预饱和的一个液体流(POLF)反应器,细分为(a)具有单个预饱和器(POLF-SP)的反应器和(b)与间歇性预饱和器(POLF-MP)串联的多个反应器。发现常规反应器的串联/并联性能优于POLF构造。 POLF配置的较差性能归因于与常规滴流床反应器中的活塞流行为相比,由于再循环导致的混合流行为。

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