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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Comparison of techniques for measuring CFB solids circulation rates at low and high temperatures
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Comparison of techniques for measuring CFB solids circulation rates at low and high temperatures

机译:测量低温和高温CFB固体循环速率的技术比较

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The solids circulation rate between two reactors is a key parameter in circulating fluidized bed reactor processes. This paper reports on attempts to establish the reliability of a novel thermal-tracing technique to provide useful solid circulation information for industrial-scale systems. A novel butterfly valve technique was developed to test the thermal-tracing technique at high temperatures. Closing the valve causes solids to accumulate in the downcomer of a pilot gasifier. The level of the bed top surface was tracked with high-temperature capacitance sensors. The circulation rates were also estimated using two indirect techniques, the firsts based on a pressure balance between the riser and the bubbling bed, and the second utilizing a balance of all input and output energy streams to and from the bubbling bed reactor. Agreement among the solids circulation rates from these four independent techniques is encouraging, given the difficulty in obtaining accurate measurements. (C) 2019 Elsevier B.V. All rights reserved.
机译:两个反应器之间的固体循环速率是循环流化床反应器工艺的关键参数。本文报告了建立新型热跟踪技术可靠性的尝试,为工业规模系统提供有用的固体循环信息。开发了一种新型蝶形阀技术,以在高温下测试热跟踪技术。关闭阀门导致固体积聚在先导气体化器的降液管中。用高温电容传感器跟踪床顶表面的水平。还使用两种间接技术估计循环速率,首先是基于提升管和鼓泡床之间的压力平衡的第一,以及利用所有输入和输出能量流的第二次和从鼓泡床反应器的平衡。鉴于获得准确测量,这四种独立技术的固体流通率之间的协议是令人鼓舞的。 (c)2019年Elsevier B.V.保留所有权利。

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