CN1966139A - Double circumfluence composite type reaction device - Google Patents

Double circumfluence composite type reaction device Download PDF

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Publication number
CN1966139A
CN1966139A CN 200510047732 CN200510047732A CN1966139A CN 1966139 A CN1966139 A CN 1966139A CN 200510047732 CN200510047732 CN 200510047732 CN 200510047732 A CN200510047732 A CN 200510047732A CN 1966139 A CN1966139 A CN 1966139A
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gas
reaction
reactor
separator
mouthful
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CN 200510047732
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CN100460051C (en
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周明昊
龙飞
杨薇
王贺全
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Shenyang Research Institute of Chemical Industry Co Ltd
Sinochem Corp
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Shenyang Research Institute of Chemical Industry Co Ltd
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Abstract

The invention relates to a dual-circle composite reactor, which comprises reactor 1, gas separator 2, and gas purifier 3; circulate pump 4, and heat exchanger 5, wherein the reactor comprises injector 1-1, gas absorber 1-2, reaction room 1-3, cowl 1-4, and gas inlet 1-5. gas material inlet 1-6, liquid material inlet 1-7, gas outlet 1-8; the gas separator comprises throttle element 2-1, overflow circulate tube 2-2, absorber outlet 2-3, absorber inlet 2-4. The invention can quickly separate the generated gas from material gas and discharge it on time; and the non-reacted material gas will be circulated to be used again. Therefore, the invention can improve the material utilization and reaction speed.

Description

Double circumfluence composite type reaction device
Technical field
The invention belongs to the chemical industry equipment field, relate to a kind of double circumfluence composite type reaction device.
Technical background
Gas liquid reaction is a kind of common reaction type in the chemical synthesis, occupies important position in production processes such as oil, chemical industry, light industry, medicine.Corresponding with it gas-liquid reaction apparatus, use also extensively in these industries, common gas-liquid reaction apparatus mainly contains following several pattern: packed column reactor, plate-type reactor, falling film reactor, spray reactor, bubbling reactor, stirring bubbling reactor, injection circulation reactor.Advantages such as wherein injection circulation reactor is a kind of gas-liquid reaction equipment of generally being paid close attention in recent years, has the production intensity height, and to the specific reaction selectivity height in the complex reaction, energy consumption is low, heat exchange performance is good because mass-transfer performance is excellent.But the circulation suspension reactor (Chem.Eng. of above-mentioned all kinds of reactor and German H.Kurten and P.Zehnir design, 2,220~227 (1979)) and spraying cycle reactor (the AIChE J. of R.V.Chaudhari and P.A.Ramachandran design, 26 (2), 177~201 (1980)) related gas all is the unstrpped gas that participates in reaction, does not consider that reaction generates the timely separation problem of gas.Therefore for those gas liquid reactions that has new gas to generate, there is following problem in above-mentioned reactor:
1. can not effectively newly-generated gas in time be separated with unstrpped gas, thereby the concentration that causes unstrpped gas sharply reduces along with the carrying out of reaction and influences reaction speed and yield;
2. as with unreacted unstrpped gas and generation gas be used as reaction end gas directly absorption or emptying, then the utilization rate of unstrpped gas reduces greatly even can bring to environment and pollute and harm.
Therefore these reaction units have been subjected to certain limitation on industrial implementation.
Summary of the invention
In order to overcome deficiencies such as existing gas-liquid reactor is slow in the reaction speed that is used for existing when those have gas liquid reactions that new gas generates, yield is low, unstrpped gas consumption is big, the present invention proposes a kind of double circumfluence composite type reaction device.Newly-generated gas separates rapidly with unstrpped gas and in time shifts out reaction system when utilizing reaction unit provided by the invention can realize reacting; Unreacted unstrpped gas is circulated back to main reactor and continues to participate in reaction, has improved raw material availability, reaction speed and yield thus, has overcome the deficiency that pre-existing reactors exists, thereby has realized the present invention.
The double circumfluence composite type reaction device technical scheme that the present invention proposes is as follows:
A kind of double circumfluence composite type reaction device comprises: reactor 1, gas separator 2, gas purifier 3, circulating pump 4, heat exchanger 5.Reactor 1 comprise the injection injector 1-1 that is installed in top, injected injector 1-1 be divided into the reative cell 1-3 of the induction chamber 1-2 on top and bottom, with spray radome fairing 1-4, the gas suction inlet 1-5 that lays respectively at induction chamber 1-2 both sides and the gas phase charging aperture 1-6 that injector 1-1 lower end links to each other, the liquid phase feeding mouth 1-7 and the gas that lay respectively at both sides, reative cell 1-3 top extrude a mouth 1-8.Gas separator 2 comprises that the restricting element 2-1, the two ends that are positioned at the lower end are connected to overflow circulation pipe 2-2, the absorbent import 2-3 that lays respectively at gas separator both sides about in the of 2 and the absorbent outlet 2-4 of gas separator 2 upsides and the horizontal inlet of restricting element 2-1.Reactor 1 and circulating pump 4 and heat exchanger 5 are connected into the liquid phase loop of a gas liquid reaction; Gas separator 2 is connected with gas purifier 3, gas on the reative cell 1-3 extrudes mouthful vertical inlet of the restricting element 2-1 of 1-8 device separated from the gas 2 lower ends and links to each other, gas purifier 3 outlet links to each other with gas suction inlet 1-5 on the induction chamber 1-2, constitutes the gas phase loop of a gas separation and recovery.
The vertical height that gas separator 2 is installed should be lower than gas and extrude a mouthful 1-8, with separation and the recovery that more helps gas.
Further preferred scheme: extrude at the gas suction inlet 1-5 of reaction unit of the present invention and gas and to be provided with pipeline between mouthful 1-8 and to connect and be provided with valve 6-1; Be provided with valve 6-2 between circulating pump 4 and the heat exchanger 5; Gas extrudes mouthful 1-8 and is provided with valve 6-3 to the connecting line of restricting element 2-1; Be respectively equipped with valve 6-4, valve 6-5 on reactor 1 outlet and the discharging opening pipeline; Be provided with valve 6-6 between overflow circulation pipe 2-2 and the restricting element 2-1.Described valve can adopt manually or control automatically.
Gas purifier 3 can be removed the harmful substance in the unstripped gas of utilization to be recycled, selects different cleansers according to concrete reaction, and this is as well known to those skilled in the art.For example in chlorination reaction, need remove the impurity of from separator, carrying secretly (as water) by gas purifier 3, and then participate in reaction again through gas separator 2 isolated unreacted chlorine.So can think also that gas separator 2 is connected with gas purifier 3 constitutes an absorber.
The double circumfluence composite type reaction device that the present invention proposes is applicable to some gas liquid reactions in the organic synthesis, be particularly useful for reaction raw materials and under reaction temperature and pressure, have a kind of gas-liquid phase reaction at least from reaction system for having new gas (tail gas) to generate and tail gas in time should be shifted out in gaseous state, the course of reaction, chlorination reaction in the production processes such as oil, chemical industry, light industry, medicine for example, carbon monoxide reduction reaction etc.Use this device, mist in the course of reaction (unstrpped gas and tail gas) does not need extra additional power equipment promptly can realize continuous the separation, and unstrpped gas can be repeated to utilize.The gas (tail gas) that generates absorbs with suitable absorbent, for example, can use water as absorbent for the reaction that has hydrogen chloride to generate; Then can make absorbent for the reaction that has carbon dioxide to generate with alkaline aqueous solution.Adopt this device to carry out above-mentioned gas-liquid phase reaction, can shorten the reaction time significantly, reduce energy consumption, improve selectivity, conversion ratio and the raw material availability of reaction; Simultaneously can simplify technological process; Avoid reaction end gas that environment is polluted and endanger.
Description of drawings
Fig. 1 is the double circumfluence composite type reaction device structure diagram.
The specific embodiment
In conjunction with following example and accompanying drawing device of the present invention is further described, but the present invention only limits to this absolutely not.
As shown in Figure 1, the double circumfluence composite type reaction device of the present invention's proposition comprises: reactor 1, gas separator 2, gas purifier 3, circulating pump 4, heat exchanger 5.
Reactor 1 comprise the injection injector 1-1 that is installed in top, injected injector 1-1 be divided into the reative cell 1-3 of the induction chamber 1-2 on top and bottom, with spray radome fairing 1-4, the gas suction inlet 1-5 that lays respectively at induction chamber 1-2 both sides and the gas phase charging aperture 1-6 that injector 1-1 lower end links to each other, the liquid phase feeding mouth 1-7 and the gas that lay respectively at both sides, reative cell 1-3 top extrude a mouth 1-8.Gas separator 2 comprises that the restricting element 2-1, the two ends that are positioned at the lower end are connected to overflow circulation pipe 2-2, the absorbent import 2-3 that lays respectively at gas separator both sides about in the of 2 and the absorbent outlet 2-4 of gas separator 2 upsides and the horizontal inlet of restricting element 2-1.Reactor 1 and circulating pump 4 and heat exchanger 5 are connected into the liquid phase loop of a gas liquid reaction; Gas separator 2 is connected with gas purifier 3, gas on the reative cell 1-3 extrudes mouthful vertical inlet of the restricting element 2-1 of 1-8 device separated from the gas 2 lower ends and links to each other, gas purifier 3 outlet links to each other with gas suction inlet 1-5 on the induction chamber 1-2, constitutes the gas phase loop of a gas separation and recovery.
The vertical height that gas separator 2 is installed is lower than gas and extrudes a mouthful 1-8.
The operating process of double circumfluence composite type reaction device of the present invention is:
Gas, liquid charging stock is disposable or in reaction is carried out continuously by in gas-phase feed mouth 1-6, the liquid phase feeding mouth 1-7 injecting reactor 1, charging liquid level should be lower than that gas extrudes mouthful 1-8 and the distance of keeping certain height (this height distance, with start circulating pump 4, when opening valve 6-1 fully no liquid from gas extrude a mouthful 1-8 overflow be as the criterion).After meeting the requirements of reaction condition, start circulating pump 4, open valve 6-2 and valve 6-4, reactant liquor enters the injection injector 1-1 on reactor 1 top through circulating pump 4, heat exchanger 5 from reactor 1 bottom, and carry gas raw material among the induction chamber 1-2, in spraying injector 1-1 and reative cell 1-3, carry out gas-liquid and contact and react.Mist in the reactant liquor (comprising gas and unreacted unstripped gas that reaction generates) is present in the liquid phase with the form of bubble, under buoyancy function, rise and also constantly grow up, the final liquid phase that breaks away from, the vertical inlet through gas extrusion mouthful 1-8, a valve 6-3, restricting element 2-1 under action of pressure is pressed into gas separator 2.Liquid phase is extracted out from reactor 1 bottom again, forms the liquid phase closed circuit.Liquid phase is finished in heat exchanger 5 with extraneous exchange heat process.
In gas separator 2, the absorbent (2-3 adds in advance by the absorbent import) that the admixture of gas that is entered by the bottom entrainments at restricting element 2-1 place among the overflow circulation pipe 2-2 also mixes with it.Since there is the difference of physicochemical properties, the gas that absorbent selectivity absorption reaction generates, and unreacted unstripped gas purifies by gas purifier 3 after gas suction inlet 1-5 is inhaled into and continues to participate in reaction in the reactor 1, forms the gas phase closed circuit.Absorbent is by overflow circulation pipe 2-2 circulation, and the reaction that constantly absorbs in the admixture of gas generates gas.In order to keep absorbing motive force, when constantly replenishing fresh absorbent by auxiliary equipment, the fractional saturation absorbent is discharged continuously from absorbent outlet 2-4.
The operating technology parameter that double circumfluence composite type reaction device of the present invention suits is as follows:
Liquid circulation rate: 1~60 time/hour;
Spray the injector jet velocity: 0.5~25 meter per second (nozzle place);
0.05~2.5 meter per seconds (exit);
Pressure at two ends is poor up and down for absorber: 50~650 millimetress of mercury (gas extrudes between mouthful 1-8 and the gas suction inlet 1-5);
Operating pressure: normal pressure or pressurization;
Operating temperature: 0~150 ℃;
Absorbent cycle rate: 1~20 time/hour.
The double circumfluence composite type reaction device that adopts the present invention to propose carries out the ortho-methylnitrobenzene chlorination reaction:
800 kilograms and 15 kilograms ferric trichlorides of ortho-methylnitrobenzene with 99% and 1.5 kilograms of iodines are from liquid phase feeding mouth 1-7 adding reactor 1, and the height distance that its liquid level is lower than gas extrusion mouthful 1-8 guarantees to start circulating pump 4, no liquid is overflowed from a gas extrusion mouth 1-8 when opening valve 6-1 fully.1-6 charges into chlorine in reactor 1 by the gas-phase feed mouth, and the valve 6-1 that keeps connecting on the pipeline between gas suction inlet 1-5 and the gas extrusion mouthful 1-8 is in full-gear, reactor 1 internal pressure is maintained about 0.1MPa (gauge pressure), ON cycle pump 4, begin reaction, at 40~50 ℃, the cycle rate of liquid phase is 30~40 times/hour in the reactor by heat exchanger 5 control reaction temperatures.Regulate or shut off valve 6-1, make mist partly or entirely entrainment absorbent at gas separator 2 bottom restricting element 2-2 and enter gas separator 2 by valve 6-3, the water that the hydrogen chloride gas that reaction generates in gas separator 2 is used as absorbent absorbs, and unreacted chlorine passes absorbent, in gas purifier 3, purify (for this reaction, purifying mainly is to remove the moisture of wherein carrying secretly, makes drier with silica gel) after be pressed into induction chamber 1-2 and participate in reaction again.The cycle rate of absorbent is 5~15 times/hour, and absorber pressure at two ends difference is 350~450mm mercury column.The reaction beginning detected chloride density and reaches at 1.31~1.32 o'clock after 1.5~2.0 hours, and reaction finishes.
The chlorine consumption is 1.02 times of theoretical amount.Compare with the bubble type chlorination reaction device that adopts in the existing industrial production, the reaction time shortened to 2 hours by 6 hours; The chlorine consumption reduces by 20%; Purpose product ratio in isomers rises to 1.8 by 1.5; Reactant liquor does not need to blow for a long time with air to catch up with hydrogen chloride again, has simplified postprocessing working procedures; Technical-economic index improves obviously.

Claims (3)

1. double circumfluence composite type reaction device, it is characterized in that: described device comprises reactor (1), gas separator (2), gas purifier (3), circulating pump (4), heat exchanger (5), reactor (1) comprises the injection injector (1-1) that is installed in top, injected injector (1-1) is divided into the induction chamber (1-2) on top and the reative cell (1-3) of bottom, the radome fairing (1-4) that links to each other with injection injector (1-1) lower end, lay respectively at the gas suction inlet (1-5) and the gas phase charging aperture (1-6) of induction chamber (1-2) both sides, the liquid phase feeding mouth (1-7) and the gas that lay respectively at reative cell (1-3) both sides, top extrude mouthful (1-8); Gas separator (2) comprises that the restricting element (2-1), the two ends that are positioned at the lower end are connected to the overflow circulation pipe (2-2) of gas separator (2) upside and the horizontal inlet of restricting element (2-1), lay respectively at gas separator (2) the absorbent import (2-3) and the absorbent outlet (2-4) of both sides up and down; Reactor (1) and circulating pump (4) and heat exchanger (5) are connected into the liquid phase loop of a gas liquid reaction; Gas separator (2) is connected with gas purifier (3), gas on the reative cell (1-3) extrudes mouthful vertical inlet of the restricting element (2-1) of (1-8) device separated from the gas (2) lower end and links to each other, gas purifier (3) outlet links to each other with gas suction inlet (1-5) on the induction chamber (1-2), constitutes the gas phase loop of a gas separation and recovery.
2. reaction unit according to claim 1 is characterized in that: the vertical height that gas separator (2) is installed is lower than gas and extrudes mouthful (1-8).
3. reaction unit according to claim 1 and 2 is characterized in that: gas suction inlet (1-5) and gas extrude to be had the pipeline connection and is provided with valve between mouthful (1-8); Be provided with valve between circulating pump (4) and the heat exchanger (5); Gas extrusion mouthful (1-8) to the pipeline of restricting element (2-1) is provided with valve; Reactor (1) outlet and discharging opening pipeline are provided with valve.
CNB2005100477327A 2005-11-17 2005-11-17 Double circumfluence composite type reaction device Active CN100460051C (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103071444A (en) * 2013-01-30 2013-05-01 北京工商大学 Gas-liquid reaction device
CN105642220A (en) * 2016-01-06 2016-06-08 南京大学 Multi-stair circulating type jet reactor
CN105745014A (en) * 2013-10-25 2016-07-06 赢创德固赛有限公司 Jet loop reactor with nanofiltration and gas separator
WO2020155505A1 (en) * 2019-01-29 2020-08-06 南京延长反应技术研究院有限公司 Low-pressure gas-liquid enhanced emulsifying bed reaction device and method

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2618786B1 (en) * 1987-07-31 1989-12-01 Bp Chimie Sa PROCESS FOR THE POLYMERIZATION OF GASEOUS OLEFINS IN A FLUIDIZED BED REACTOR
US6815512B2 (en) * 2000-02-28 2004-11-09 Union Carbide Chemicals & Plastics Technology Corporation Polyolefin production using condensing mode in fluidized beds, with liquid phase enrichment and bed injection
DE10016625A1 (en) * 2000-04-04 2001-10-11 Basell Polyolefine Gmbh Gas phase polymerization process with direct cooling system
CN2518585Y (en) * 2001-12-20 2002-10-30 沈阳化工研究院 Gas spouted outside circulation reaction device
CN1166449C (en) * 2002-02-07 2004-09-15 武汉化工学院 Coupling equipment of reaction and separation

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103071444A (en) * 2013-01-30 2013-05-01 北京工商大学 Gas-liquid reaction device
CN103071444B (en) * 2013-01-30 2014-12-10 北京工商大学 Gas-liquid reaction device
CN105745014A (en) * 2013-10-25 2016-07-06 赢创德固赛有限公司 Jet loop reactor with nanofiltration and gas separator
US9694341B2 (en) 2013-10-25 2017-07-04 Evonik Degussa Gmbh Jet loop reactor with nanofiltration and gas separator
CN105745014B (en) * 2013-10-25 2018-02-06 赢创德固赛有限公司 Jet flow loop reactor with nanofiltration and gas separator
CN105642220A (en) * 2016-01-06 2016-06-08 南京大学 Multi-stair circulating type jet reactor
WO2020155505A1 (en) * 2019-01-29 2020-08-06 南京延长反应技术研究院有限公司 Low-pressure gas-liquid enhanced emulsifying bed reaction device and method

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Denomination of invention: Double circumfluence composite type reaction device

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