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Catalyst method and apparatus for an on-stream particle replacement system for countercurrent contact of a gas and liquid feed stream with a packed bed

机译:用于使气体和液体进料流与填充床逆流接触的在线颗粒替换系统的催化剂方法和设备

摘要

This invention makes possible substantially continuous flow of uniformly distributed hydrogen and hydrocarbon liquid across a densely packed catalyst bed to fill substantially the entire volume of a reactor vessel by introducing the fluids as alternate annular rings of gas and liquid (i.e. a mixture of liquid hydrocarbon and a hydrogen-containing gas) at a rate insufficient to levitate or ebullate the catalyst bed. Catalyst are selected by density, shape and size at a design feed rate of liquids and gas to prevent ebullation of the packed bed at the design feed rates. Catalysts are selected by measuring bed expansion, such as in a large pilot plant run, with hydrocarbon, hydrogen, and catalyst at the design pressures and flow velocities. The liquid and gas components of the feed flow into the bed in alternate annular rings across the full area of the bed. At the desired flow rate, such catalyst continually flows in a plug-like manner downwardly through the reactor vessel by introducing fresh catalyst at the top of the catalyst bed by laminarly flowing such catalyst in a liquid stream on a periodic or semicontinuous basis. Catalyst is similarly removed by laminarly flowing catalyst particles in a liquid stream out of the bottom of the catalyst bed. Intake for such flow is out of direct contact with the stream of gas flowing through the bed and the flow path is substantially constant in cross-sectional area and greater in diameter by several times than the diameter of the catalyst particles. The catalyst of this invention produces a plug-flowing substantially packed bed of hydroprocessing catalyst which occupies at least about 75% by volume of the reactor volume.
机译:通过引入作为气体和液体的交替环形环的液体(即,液态烃和液态烃的混合物),本发明使得均匀分布的氢和烃液体基本上连续地流过密集堆积的催化剂床,从而基本上填充了反应器容器的整个体积。含氢气体)的速率不足以使催化剂床悬浮或沸腾。在液体和气体的设计进料速率下,根据密度,形状和尺寸选择催化剂,以防止填充床在设计进料速率下发生沸腾。通过测量床膨胀来选择催化剂,例如在大型试验工厂中,在设计压力和流速下使用碳氢化合物,氢和催化剂。进料中的液体和气体成分以交替的环形圈的形式流过整个床层。在所需的流速下,通过使这种催化剂在液体流中周期性或半连续地层流流动,从而在催化剂床的顶部引入新鲜的催化剂,使这种催化剂连续地以塞状方式向下流过反应器容器。类似地,通过使液体流中的催化剂颗粒层流地从催化剂床的底部流出,来除去催化剂。这种流的入口不与流过该床的气流直接接触,并且流路的横截面面积基本恒定,并且直径比催化剂颗粒的直径大几倍。本发明的催化剂产生加氢处理催化剂的塞流式基本填充床,其占反应器体积的至少约75%。

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