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Shell pass multi-cavity type fixed bed reactor

A fixed-bed reactor and reactor technology, applied in chemical/physical processes, chemical instruments and methods, etc., can solve the problems of high equipment operation cost, high output energy consumption, and less residual heat of device reaction, so as to improve heat exchange Efficiency, reducing kinetic energy consumption, and improving production capacity

Active Publication Date: 2011-10-26
西安航天华威化工生物工程有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The current devices have the following problems: 1. The single production capacity of the device is limited, which cannot meet the needs of market development; 2. When the device is in use, the energy consumption per unit of output is large, the effective utilization rate is low, and the equipment operation cost is high; 3. Easy It causes heat concentration and it is difficult to remove it evenly; 4. The residual heat of the reaction in the existing device is too little to be fully utilized

Method used

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  • Shell pass multi-cavity type fixed bed reactor
  • Shell pass multi-cavity type fixed bed reactor
  • Shell pass multi-cavity type fixed bed reactor

Examples

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Embodiment Construction

[0032] see figure 1 , At present, the shell-and-tube fixed-bed reactor adopts the structure of one chamber on the shell side, which consumes a lot of energy per unit of output, low effective utilization rate, and high equipment operating cost; it is easy to cause heat concentration and it is difficult to remove it uniformly; And the residual heat of reaction is too little to be fully utilized.

[0033] see figure 2 , image 3 , the structure of the embodiment of the present invention is further elaborated: this shell-side multi-chamber fixed-bed reactor includes an upper head tube box 1, an upper tube plate 2, a shell 4, a reaction tube 5, a lower tube plate 8, a lower seal The head tube box 9 constitutes the main body of the reactor, and two shell-side baffles 10 are arranged in the shell 4 between the upper tube sheet 2 and the lower tube sheet 8 along the shell axial direction, and the shell-side baffles 10 divide the shell into three parts. A cavity, reaction tubes 5 a...

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Abstract

The invention relates to a fixed-bed reactor, a shell side of which is divided into a plurality of chambers. Currently, all the fixed-bed reactors with shells and tubes adopt a shell-side structure as a chamber, thus causing uneven heat transfer, insufficient heat exchange and worse utilization of residual heat. Between an upper cannular plate and a lower cannular plate inside the shell of the invention, two shell-side baffles are arranged along the shell axial direction and divide the shell into three chambers, and reaction tubes as well as three semicircular traverse baffles are arranged inside the chambers at the two sides, thus forming cross current and parallel flow as a flow form of heat-exchanging mediums between tubes. Under the condition of existing equipments, the capacity of manufacturing large-scale reactors is doubled by the invention; the reactors are applicable for catalysts with high load and have balanced reaction, even heat transfer and sufficient heat exchange, and the utilization of residual heat is more complete.

Description

Technical field: [0001] The invention relates to a fixed-bed reactor whose shell side is divided into multiple chambers. The reactor of this type is mainly used in the field of large-scale phthalic anhydride, maleic anhydride, acrylic acid and the like using a fixed bed for gas-phase oxidation reaction. Background technique: [0002] With the rapid development of the chemical industry, the requirements for chemical equipment are becoming more and more large-scale. The large-scale chemical equipment has great benefits in terms of ease of operation, energy saving and consumption reduction, and reduction of production and operation costs. The current devices have the following problems: 1. The single production capacity of the device is limited, which cannot meet the needs of market development; 2. When the device is in use, the energy consumption per unit of output is large, the effective utilization rate is low, and the equipment operation cost is high; 3. Easy Concentration ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J8/04
Inventor 邰向阳赵仕哲郭新峰
Owner 西安航天华威化工生物工程有限公司
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