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Role of advancing the multiphase reactors in minimizing the wastes from oil and gas industry

机译:推进多相反应器在最大程度减少石油和天然气工业废物中的作用

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Multiphase Reactors are essential parts for all industrial processes particularly oil and gas processes. They have more phases (gas, liquid and solid) that are brought in contact using various configurations to perform either chemical, biological or physical transformations through reactions to generate various desired products while producing wastes, by-products or undesired products. Hence, these reactors in general are the key to environmentally friendly processing in preventing pollution at the source. Accordingly, understanding the phenomena involved in these reactors and quantifying the interactions and transports among the phases and the interrelationships among transports and kinetics are essential for proper and energy efficient operation, performance, design, and scale-up of these reactors to produce cleaner and sustainable products. However, quantifying is a challenging task since these reactors are opaque and the interactions among phases are complex. We have studied various types of multiphase reactors for a wide range of processes using in house developed advanced measurement techniques and experimental and computing facilities that put my research laboratories as unique and state-of-the-art laboratories in USA and in the world. These techniques contributed significantly in advancing the knowledge of these multiphase reactors and in providing benchmarking data for validating CFD models and simulations for enabling the minimization of the wastes generated in oil and gas processes and other industries. These techniques are gamma ray based techniques for imaging and visualization and other sophisticated techniques that complement them with advanced rigs and separate effects and integrated effects experimental setups. To lean more, you may visit our website through, www.mst.edu.
机译:多相反应器是所有工业过程(尤其是石油和天然气过程)必不可少的部分。它们具有更多的相(气相,液相和固相),它们可以使用各种配置进行接触,以通过反应进行化学,生物或物理转化,生成各种所需的产物,同时产生废物,副产物或不良产物。因此,这些反应器通常是在防止源头污染方面进行环境友好处理的关键。因此,了解这些反应堆涉及的现象并量化各相之间的相互作用和输运以及输运和动力学之间的相互关系对于这些反应堆的适当和节能运行,性能,设计和规模生产以产生更清洁和可持续的发展至关重要。产品。然而,由于这些反应器是不透明的并且相之间的相互作用很复杂,因此定量是一项具有挑战性的任务。我们使用内部开发的先进测量技术以及实验和计算设备,对各种类型的多相反应器进行了广泛的研究,这些研究使我的研究实验室成为美国和世界上独一无二的,最先进的实验室。这些技术在增进这些多相反应器的知识以及为验证CFD模型和模拟提供基准数据方面做出了重要贡献,从而能够最大程度地减少在石油和天然气加工及其他行业中产生的废物。这些技术是用于成像和可视化的基于伽马射线的技术,以及其他先进的技术,以先进的装备,独立的效果和集成效果实验设置对其进行补充。要获取更多信息,您可以通过www.mst.edu访问我们的网站。

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