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IMPACT OF THROUGHPUT INCREMENT ON CORROSION ENABLERS AND RISK LEVELS IN A HYDROCRACKING UNIT- CASE STUDY

机译:吞吐量增量对加氢裂化单位研究中腐蚀使能器和风险水平的影响

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Increasing plant capacity is one of the critical changes that should be assessed thoroughly to avoid the possibility of increasing corrosion risks and introducing hazards to operations, processes, and control parameters. A systematic approach was developed and utilized to directly assess the impact of the capacity increase in a hydrocracking unit. This study has determined the possible changes in corrosion drivers and subsequent corrosion loops, risk matrix, and inspection strategies using a quantitative risk-based decision process. The sensitivity analysis revealed that increased capacity requires focus in the following areas: erosion-corrosion due to velocity increases and ammonium bisulfide (NH_4HS) fouling. Process simulations along with Risk Based Inspection assessments were employed. The study concluded that the capacity increase is feasible provided: the water wash treatment is increased to account for additional NH_4HS, additional on-stream inspection points are provided for systems susceptible to erosion-corrosion, and selective metallurgical upgrades are planned for improved sulfidation resistance.
机译:增加的工厂能力是应彻底评估的关键变化之一,以避免增加腐蚀风险并向运营,过程和控制参数引入危险的可能性。开发并利用系统方法,直接评估水裂化装置的容量增加的影响。本研究确定了使用定量风险的决策过程的腐蚀驱动因素和随后的腐蚀环,风险矩阵和检验策略的可能变化。敏感性分析表明,增加的能力需要在以下领域的关注:由于速度增加和双硫化铵(NH_4HS)污垢导致的侵蚀腐蚀。使用流程模拟以及基于风险的检查评估。该研究得出结论,提供的能力增加是可行的:水洗处理增加以占额外的NH_4HS,为易受腐蚀腐蚀的系统提供了额外的流程检查点,并计划改善硫化性耐腐蚀的系统。

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