【24h】

PERFORMANCE EVALUATION AND FOULING MITIGATION IN A GASOLINE FRACTIONATOR

机译:汽油分馏塔的性能评估和除臭

获取原文
获取原文并翻译 | 示例

摘要

The Gasoline Fractionator (Gas Frac) at NOVA Chemicals Corunna Ethylene facility has a history of fouling since coming on-stream in 1977. Fouling of the packed bed affects separation efficiency of the column, and therefore influences raw pyrolysis gasoline (RPG) quality. Fouling also reduces overall run length, imposes added cleaning costs during turn-around (T/A), and impacts the overall efficiency of the unit. Moreover, it is well known that fouled equipment exhibits a high risk of developing process fires due to the high reactivity and combustibility of fouling deposits. Mitigating Gas Frac fouling is key to extending the Corunna Olefins Unit operating time between full maintenance turnarounds. This research effort was initiated to better understand current tower performance and to experimentally establish the role of process parameters on the fouling rate. To accomplish this, current performance of the tower was evaluated by simulation. Simulation results convey the importance of good initial liquid distribution in a large diameter tower. Improper liquid distribution is a primary cause of poor separation efficiency and can potentially compound the fouling problem. In a second phase, fouling reactions were replicated in a lab scale unit to identify fouling precursors and to understand the fouling mechanism. The effects of temperature and metallurgy on fouling rate were determined. The experimental study revealed that fouling rate has an Arrhenius type dependence on temperature, with negligible polymer formation below a fouling threshold temperature. The fouling propensity of various metallurgies showed that stainless steel alloys can reduce the amount of fouling by up to forty percent compared to carbon steel. Based on the data collected, a new stainless steel distributor and stainless steel packing for the top bed were installed during the 2005 turnaround.
机译:自1977年投产以来,NOVA Chemicals Corunna乙烯工厂的汽油分馏塔(Gas Frac)就有结垢的历史。填充床的结垢会影响色谱柱的分离效率,因此会影响原料裂解汽油(RPG)的质量。结垢还会缩短总运行时间,在周转(T / A)期间增加清洁成本,并影响设备的整体效率。此外,众所周知的是,由于结垢沉积物的高反应性和可燃性,结垢的设备表现出产生过程起火的高风险。减轻瓦斯碎片的结垢是延长Corunna烯烃装置在全面维护之间的运行时间的关键。开展这项研究工作是为了更好地了解当前的塔性能,并通过实验确定过程参数对结垢率的作用。为此,通过仿真评估了塔的当前性能。模拟结果传达了在大直径塔中良好的初始液体分布的重要性。液体分配不当是分离效率差的主要原因,并且可能使结垢问题复杂化。在第二阶段中,在实验室规模的装置中复制结垢反应,以识别结垢前体并了解结垢机理。确定了温度和冶金学对结垢率的影响。实验研究表明,结垢速率与温度有关,与Arrhenius类型有关,在结垢阈值温度以下,聚合物的形成可忽略不计。各种冶金学的结垢倾向表明,与碳钢相比,不锈钢合金可以减少多达40%的结垢量。根据收集的数据,在2005年的周转期间安装了新的不锈钢分配器和上层床用不锈钢填料。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号