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MITIGATION OF FOULING WITH POPCORN COKE

机译:爆米花焦油的缓解

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摘要

How often is petroleum fouling mitigated by raising temperature? One case is if the fouling is caused by a polymerization reaction. Such carbonaceous solids are the result of molecular weight growth reactions of conjugated olefins in the oil that were formed by the thermal cracking process. An olefin is conjugated to another olefin when the double bond is one carbon away from a carbon connected to a different double bond or an aromatic. Those conjugated to aromatics are the greater fouling problem in oils formed by thermally cracking resids. A property of polymerization reactions is that they are greatest over a range of temperatures. At lower temperatures the reaction rate is too slow and at higher temperatures the polymerization bonds thermally crack faster than they are formed (ceiling temperature). Therefore, the recommended mitigation action (US Patent 6,210,560) is to minimize the residence time of the thermally cracked oil in this temperature range (particularly 500 - 580℉) of greatest polymerization rate. An analytical method to monitor conjugated olefins in thermally cracked oils will be described. In addition, a case study will be given when the coking of a fractionator downstream of a Flexicoker was mitigated by raising the bottom pool temperature.
机译:通过提高温度多久减少一次石油污垢?一种情况是结垢是由聚合反应引起的。这种碳质固体是通过热裂化过程形成的油中共轭烯烃分子量增长反应的结果。当双键与连接至不同双键或芳族化合物的碳相距一个碳原子时,一个烯烃与另一个烯烃共轭。在芳烃热裂解残油形成的油中,与芳烃共轭的那些是更大的结垢问题。聚合反应的特性是它们在一定温度范围内最大。在较低的温度下,反应速率太慢,而在较高的温度下,聚合键的热裂解速度快于它们形成的温度(上限温度)。因此,推荐的缓解措施(美国专利6,210,560)是使热裂化油在最大聚合速率的该温度范围内(特别是500-580℉)的停留时间最小化。将描述监测热裂化油中的共轭烯烃的分析方法。另外,将通过提高底部池温度减轻Flexicoker下游分馏塔的焦化情况进行案例研究。

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