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Optimal Design of Safety Instrumented Systems for Pressure Control of Methanol Separation Columns in the Bisphenol a Manufacturing Process

机译:双酚a生产过程中甲醇分离塔压力控制安全仪表系统的优化设计

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A bisphenol A production plant possesses considerable potential risks in the top of the methanol separation column, as pressurized acetone, methanol, and water are processed at an elevated temperature, especially in the event of an abnormal pressure increase due to a sudden power outage. This study assesses the potential risks in the methanol separation column through hazard and operability assessments and evaluates the damages in the case of fire and explosion accident scenarios. The study chooses three leakage scenarios: a 5-mm puncture on the methanol separation column, a 50-mm diameter fracture of a discharge pipe and a catastrophic rupture, and, simulated using Phast (Ver. 6.531), the concentration distribution of scattered methanol, thermal radiation distribution of fires, and overpressure distribution of vapor cloud explosions. Implementation of a safety-instrumented system equipped with two-out-of-three voting as a safety measure can detect overpressure at the top of the column and shut down the main control valve and the emergency shutoff valve simultaneously. By applying a safety integrity level of three, the maximal release volume of the safety relief valve can be reduced and, therefore, the design capacity of the flare stack can also be reduced. Such integration will lead to improved safety at a reduced cost.
机译:双酚A生产装置在甲醇分离塔的顶部具有相当大的潜在风险,因为加压的丙酮,甲醇和水是在高温下处理的,特别是在突然停电导致压力异常升高的情况下。这项研究通过危险和可操作性评估来评估甲醇分离塔中的潜在风险,并评估在发生火灾和爆炸事故时的损害程度。该研究选择了三种泄漏情况:甲醇分离柱上的5毫米刺孔,排放管直径50毫米的破裂和灾难性破裂,并使用Phast(版本6.531)进行模拟,分析了分散的甲醇的浓度分布,火的热辐射分布以及蒸气云爆炸的超压分布。实施配备了三分之二表决权的安全仪表系统,可以检测到色谱柱顶部的超压并同时关闭主控制阀和紧急切断阀。通过将安全完整性等级设置为三,可以减小安全释放阀的最大释放量,因此,也可以减小火炬烟囱的设计容量。这种集成将以降低的成本提高安全性。

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