CN2792604Y - Non-aqueous phase enzyme catalytic reactor with microwave assistant - Google Patents

Non-aqueous phase enzyme catalytic reactor with microwave assistant Download PDF

Info

Publication number
CN2792604Y
CN2792604Y CN 200520070911 CN200520070911U CN2792604Y CN 2792604 Y CN2792604 Y CN 2792604Y CN 200520070911 CN200520070911 CN 200520070911 CN 200520070911 U CN200520070911 U CN 200520070911U CN 2792604 Y CN2792604 Y CN 2792604Y
Authority
CN
China
Prior art keywords
microwave
reaction
micro
wave screening
aqueous phase
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
CN 200520070911
Other languages
Chinese (zh)
Inventor
黄伟
方云
夏咏梅
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jiangnan University
Original Assignee
Jiangnan University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jiangnan University filed Critical Jiangnan University
Priority to CN 200520070911 priority Critical patent/CN2792604Y/en
Application granted granted Critical
Publication of CN2792604Y publication Critical patent/CN2792604Y/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Landscapes

  • Preparation Of Compounds By Using Micro-Organisms (AREA)
  • Physical Or Chemical Processes And Apparatus (AREA)
  • Apparatus Associated With Microorganisms And Enzymes (AREA)

Abstract

The utility model relates to a non-aqueous phase enzyme catalyzing reactor with microwave assistance, which belongs to the technical field of chemical reactors. The utility model uses a magnetron of a commercial household microwave oven as an adjustable microwave emission source in order to arrange an enzyme reactor in a microwave shielding cavity body by combining the characteristics of enzyme reaction to combine with a microwave-shielding temperature-sensing automatic feedback control system by using magnetic stir and gas stir or without gas stir, and the utility model is a combined device using two catalyzing methods of microwave radiation and non-aqueous phase enzyme catalysis together for catalyzing organic reaction. The device used for non-aqueous phase enzyme catalyzing reaction is characterized in that reaction is carried out with the preset temperature of +/-1 DEG C under the condition of continuous radiation maintained by the whole constant microwave power; reaction masses can be mixed fast and uniformly; samples can be taken under uninterrupted microwave radiation, and thus the characteristics of non-aqueous phase enzyme catalyzing reaction in a microwave field can be authentically presented. The device having the advantages of simple operating process and stable operation provides convenience for studying the enzyme catalyzing reaction in the microwave field.

Description

A kind of microwave assisted non-aqueous phase enzyme catalytic reacting device
Technical field
A kind of microwave assisted non-aqueous phase enzyme catalytic reacting device, the utility model belong to the chemical reaction equipment technical field.
Background technology
The auxiliary nonaqueous phase enzymic catalytic reaction of microwave is a kind of with microwave radiation and two kinds of means of nonaqueous phase enzymatic and be used for the emerging synthetic technology of catalyse organic reaction, and the fuel factor of microwave and non-thermal effect make this technology can reach the catalytic effect that single catalytic way institute can not reach.
Domestic existing microwave reaction device is not fit to the temperature control unit and the agitator of enzymatic reaction, their temperature control principle is by regulating microwave power or controlling reaction temperature with the batch microwave mode of heating, thereby can't be used for studying and making full use of the non-thermal effect of microwave, and can not effectively guarantee the mechanical stability of enzyme catalyst, the uniformly dispersed and reaction safety of reaction system, can not control temperature of reaction system quickly and accurately.Also existing abroad expensive microwave reaction devices come out, and the reaction unit seen in the research report of relevant microwave-assisted enzyme catalysis mostly very is fit to enzymatic reaction at present, such as aspect temperature control and the variation of temperature amplitude.One of significant difference of enzymatic reaction and conventional chemical reaction is the former mildness, promptly can and generally react at a lower temperature; Two of difference is the sensitiveness of enzymatic reaction to variations in temperature, and 5 ℃ reaction temperature difference generally can not have considerable influence to the conventional chemical reaction, but often very big to the influence of enzymatic reaction.But existing microwave reaction device can not satisfy the meticulous control requirement of enzymic catalytic reaction to temperature.
The utility model content
The purpose of this utility model provides a kind of microwave assisted non-aqueous phase enzyme catalytic reacting device, is to overcome the shortcoming that above-mentioned commercially available microwave reaction device is not suitable for the nonaqueous phase enzymatic reaction; This Design of device scheme is kept continuous radiation and micro-wave screening TEMP automatic feedback control system by the constant microwave power of whole process, reaction is remained in the scope of design temperature ± 1 ℃ carry out, and can in time show reaction temperature; The alr mode that adopts can the realization response system be uniformly dispersed, and suffered microwave radiation is even; Use additional load to make the range of choice of reaction system inventory bigger, can satisfy the requirement of nonaqueous phase enzymic catalytic reaction.The utility model adopts the magnetron of commercially available household microwave oven as the adjustable type microwave rf generator, the characteristics of desmoenzyme reaction, the enzyme reaction container is placed in the micro-wave screening cavity, with magnetic agitation and with or stir without gas, with micro-wave screening TEMP automatic feedback control system combination, be a kind of composite set that microwave radiation and two kinds of means of nonaqueous phase enzymatic is applied to simultaneously catalyse organic reaction.
Technical scheme
Apparatus structure
The utility model as shown in drawings, by the micro-wave screening temperature sensor, probe tube, the glass reaction container of strap clamp cover, the micro-wave screening cavity, magnetic stirring apparatus, cooling medium, temperature feedback control unit, additional load etc. partly constitute.
The micro-wave screening cavity is the closed stainless steel cavity, installs magnetic stirring apparatus additional in its bottom, as long as put into the magnetic agitation rotor in reaction vessel, can control mixing speed like a cork like this.Magnetic agitation after the improvement is compared with mechanical agitation, more convenient operation, and rotating speed is more stable; And stir more fully, it is more even that reaction system is disperseed, and overcome the uneven shortcoming of the suffered microwave radiation of reaction system; The simultaneous adaptation enzymic catalytic reaction requires the relatively mild characteristics of alr mode.Reaction vessel is the glass jacket reaction vessel that can see through microwave, can lead to different cooling mediums in the chuck.At micro-wave screening cavity back or sidepiece have the turnover interface tube of the circular hole of two about 3.5cm of diameter as cooling medium.A circular hole is opened on micro-wave screening cavity top, faces the reaction vessel mouth, and the circular hole on this top is as the insertion mouth of micro-wave screening temperature sensor, online sample tap and gas introduction tube mouth.Sensor, probe tube and gas introduction tube all insert in the reaction vessel.All perforates of micro-wave screening cavity are all installed metal sleeve additional with shield microwaves, and microwave leakage meets national safety standard.Adopt thermocouple to have accurately, stablize, reliably reach advantages such as inexpensive as temperature transducer.Thermocouple itself and transmission line thereof are metal materials, can produce induced current under microwave field, because kelvin effect and eddy current effect, self temperature raises, and make the temperature indicating value produce very mistake or can't carry out stable temperature survey.For eliminating microwave interference, mainly on thermocouple probe, install the aluminium foil and the metallic shield cover net of the anti-microwave interference of energy additional, and proofread and correct with kerosene thermometer.The temperature feedback control unit shows the reaction system real time temperature, and is used for default reaction temperature, and the keying that the control cooling medium is carried also is equipped with additional load in the micro-wave screening cavity.
Operation principle
Add reactant in reaction vessel, connect cooling medium in catalyst enzyme and the stirrer, reaction vessel chuck, be placed on then on the magnetic stirring apparatus, opening is over against the circular hole on micro-wave screening cavity top.If need to add reactant in the course of reaction in addition, the circular hole that can pass through top easily adds.Be the protection magnetron, should place additional load simultaneously in the micro-wave screening cavity (generally is Al 3O 2, molecular sieve, water or polar organic solvent etc. can absorb the material of microwave energy in a large number), the not absorbent excess energy of absorption reaction thing.Utilize the temperature feedback control unit to preset reaction temperature, start agitating device simultaneously, transfer to suitable rotating speed, and carry cooling medium to realize automatic accurate temperature controlling.
Beneficial effect
Compare with existing microwave reaction device, the utlity model has outstanding technical characterstic, as realize finely dispersed reaction system and suffered microwave radiation evenly, the range of choice of reaction system amount more greatly, in time shows and control temperature, maintenance continuous microwave radiation and online sampling.Concrete technique table is at first high to temperature control requirement according to enzymic catalytic reaction characteristics now, temperature automatic feedback system and jacketed reaction container have been designed, and temperature measuring equipment is installed additional gauze screen make it to be subjected to the microwave radiation less, be reflected in the more stable temperature range and carry out; Next increases magnetic stirring apparatus and gas stirring device, and reaction system is in the even microwave radiation; Add the range of choice that additional load guarantees reaction safety and increases the system inventory once more; By being set, shielded-plate tube realizes the online sampling to reacting under the microwave field at last.This reaction unit can be used for studying the speed of microwave radiation for the nonaqueous phase enzymic catalytic reaction, and the influence of selective effect and kinetics provides necessary basic means for accelerating the biological organic synthesis of microwave organic chemistry, particularly microwave.
Description of drawings
Fig. 1 microwave-assisted enzyme catalyst reaction device schematic diagram.1, micro-wave screening cavity, 2, magnetron, 3, reaction vessel, 4, chuck, 5, magnetic stirring apparatus, 6,7, micro-wave screening cooling medium inlet and outlet connectors, 8, micro-wave screening cavity top micro-wave screening interface, 9, micro-wave screening temperature sensor, 10, probe tube, 11, gas introduction tube, 12, temperature feedback control unit, 13, additional load.
The specific embodiment
Referring to apparatus structure and operation principle part and accompanying drawing.
Embodiment 1: microwave assisted non-aqueous phase enzyme catalytic reacting device
In micro-wave screening cavity (1), place magnetron (2) as the adjustable type microwave rf generator, be built-in with glass reaction container (3) at the micro-wave screening cavity, this reaction vessel has chuck (4), reaction vessel places on the magnetic stirring apparatus (5), magnetic stirring apparatus places the bottom of micro-wave screening cavity, at micro-wave screening cavity back or sidepiece have two circular holes (6,7) as the inlet and outlet connectors of cooling medium, be connected with in the reaction vessel chuck by the outer cooling medium that inserts of micro-wave screening cavity, have a circular hole on micro-wave screening cavity top, be that top micro-wave screening interface (8) faces the reaction vessel mouth, in circular hole, be equipped with micro-wave screening temperature sensor (9), online probe tube (10), adorn or do not adorn gas introduction tube (11), all perforates on the micro-wave screening cavity are all installed metal sleeve additional with shield microwaves, microwave leakage meets national safety standard, adopt thermocouple as temperature sensor, on thermocouple probe, install the aluminium foil and the metallic shield cover net of the anti-microwave interference of energy additional, the micro-wave screening temperature sensor is connected with temperature feedback control unit (12) by lead, the temperature feedback control unit shows the reaction system real time temperature, and be used for default reaction temperature, the keying that the control cooling medium is carried also is equipped with additional load (13) in the micro-wave screening cavity.
With concrete examples of implementation application of the present utility model is described below.
Embodiment 2: amyl octylate is synthesized in microwave-assisted enzyme catalysis
With the glass jacket reaction vessel that n-amyl alcohol and the 0.06g distilled water of 3.6g caprylic acid and 2.2g places the microwave reaction device, to open magnetic agitation reaction system is mixed, it is 200w that microwave power is set, setting reaction temperature is 50 ℃.Open the microwave reaction device, adding immobilized lipase LRI 200mg and timing began after the question response temperature rose to 50 ℃.At the initial velocity of the different phase of reacting from the sample tap sampling and measuring reaction of this device.The initial velocity of the auxiliary nonaqueous phase enzymic catalytic reaction of this microwave is 4.2mmol/ming; And under other reaction condition same cases, the initial velocity of reaction in the conventional heating mode only is 1.8mmol/ming.The microwave radiation has obviously improved the initial velocity of reaction.
Embodiment 3: butyl caprylate is synthesized in microwave-assisted enzyme catalysis
The tetrahydrofuran solvent of 1.44g caprylic acid, 0.74g n-butanol, 0.02g distilled water and 15mL is added in the glass jacket reaction vessel of microwave reaction device, opening magnetic agitation mixes reaction system, it is 400w that microwave power is set, and setting reaction temperature is 55 ℃.Open the microwave reaction device, adding immobilized lipase LRI 100mg and timing began after the question response temperature rose to 55 ℃.At the initial velocity of the different phase of reacting from the sample tap sampling and measuring reaction of this device.The initial velocity of the auxiliary nonaqueous phase enzymic catalytic reaction of this microwave is 0.76mmol/ming; And under other reaction condition same cases, the initial velocity of reaction in the conventional heating mode only is 0.25mmol/ming.The microwave radiation has obviously improved the initial velocity of reaction.
Two examples of above embodiment 2,3 show, use this microwave assisted non-aqueous phase enzyme catalytic reacting device, not only can improve initial velocity of reaction greatly, and this device operating process is simple, stable, for the enzymic catalytic reaction in the research microwave field provides a great convenience.

Claims (3)

1. microwave assisted non-aqueous phase enzyme catalytic reacting device, it is characterized in that in micro-wave screening cavity (1), placing magnetron (2) as the adjustable type microwave rf generator, be built-in with glass reaction container (3) at the micro-wave screening cavity, this reaction vessel has chuck (4), reaction vessel places on the magnetic stirring apparatus (5), magnetic stirring apparatus places the bottom of micro-wave screening cavity, at micro-wave screening cavity back or sidepiece have the inlet and outlet connectors (6 of two circular holes as cooling medium, 7), be connected with in the reaction vessel chuck by the outer cooling medium that inserts of micro-wave screening cavity, have a circular hole on micro-wave screening cavity top, be that top micro-wave screening interface (8) faces the reaction vessel mouth, in the micro-wave screening interface, be equipped with micro-wave screening temperature sensor (9), online probe tube (10), adorn or do not adorn gas introduction tube (11), all perforates on the micro-wave screening cavity are all installed metal sleeve additional with shield microwaves, microwave leakage meets national safety standard, adopt thermocouple as temperature sensor, on thermocouple probe, install the aluminium foil and the metallic shield cover net of the anti-microwave interference of energy additional, the micro-wave screening temperature sensor is connected with temperature feedback control unit (12) by lead, the temperature feedback control unit shows the reaction system real time temperature, and be used for default reaction temperature, the keying that the control cooling medium is carried also is equipped with additional load (13) in the micro-wave screening cavity.
2. microwave assisted non-aqueous phase enzyme catalytic reacting device according to claim 1 is characterized in that used cooling medium comprises kerosene or water or atoleine.
3. microwave assisted non-aqueous phase enzyme catalytic reacting device according to claim 1 is characterized in that additional load is Al 3O 2, or molecular sieve or water or polar organic solvent.
CN 200520070911 2005-04-18 2005-04-18 Non-aqueous phase enzyme catalytic reactor with microwave assistant Expired - Lifetime CN2792604Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 200520070911 CN2792604Y (en) 2005-04-18 2005-04-18 Non-aqueous phase enzyme catalytic reactor with microwave assistant

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 200520070911 CN2792604Y (en) 2005-04-18 2005-04-18 Non-aqueous phase enzyme catalytic reactor with microwave assistant

Publications (1)

Publication Number Publication Date
CN2792604Y true CN2792604Y (en) 2006-07-05

Family

ID=36819755

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 200520070911 Expired - Lifetime CN2792604Y (en) 2005-04-18 2005-04-18 Non-aqueous phase enzyme catalytic reactor with microwave assistant

Country Status (1)

Country Link
CN (1) CN2792604Y (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1329112C (en) * 2005-04-18 2007-08-01 江南大学 Microwave assisted non-aqueous phase enzyme catalytic reacting device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1329112C (en) * 2005-04-18 2007-08-01 江南大学 Microwave assisted non-aqueous phase enzyme catalytic reacting device

Similar Documents

Publication Publication Date Title
CN1329112C (en) Microwave assisted non-aqueous phase enzyme catalytic reacting device
Ravichandran et al. Microwave synthesis-a potential tool for green chemistry
Nuechter et al. Microwave‐assisted chemical reactions
WO2005102510A1 (en) Chemical reaction apparatus utilizing microwave
Shen et al. Improving the mixing performances of rice straw anaerobic digestion for higher biogas production by computational fluid dynamics (CFD) simulation
WO2016192405A1 (en) Hydrothermal reaction kettle
BRPI0701638B1 (en) microwave assisted reactor and system
Choedkiatsakul et al. Integrated flow reactor that combines high-shear mixing and microwave irradiation for biodiesel production
CN105154475A (en) Method and device for rapidly starting anaerobic fermentation of kitchen waste to generate biogas
CN106000254B (en) A kind of microwave-heating microalgae orientation liquefaction device of Intelligent Single-Chip Based control
JP2002113350A (en) High-temperature and high-pressure vessel with microwave supplying apparatus for promoting chemical reaction
JPWO2009110245A1 (en) Microwave chemical reaction apparatus and reaction method using the apparatus
CN2792604Y (en) Non-aqueous phase enzyme catalytic reactor with microwave assistant
CN102949974A (en) Microwave heating device and application thereof
CN107796831A (en) A kind of microwave calorimeter and its calorimetric method for being used to measure material microwave fuel factor
CN108003921B (en) A kind of heavy oil faces hydrogen microwave-heating reaction system and method
Senise et al. MICROWAVE CHEMISTRY A FERTILE FIELD FOR SCIENTIFIC RESEARCH AND INDUSTRIAL APPLICATIONS
CN211586169U (en) Heating agitator tank
CN205088239U (en) Quick starting drive of marsh gas is produced to kitchen garbage anaerobic fermentation
CN103623755B (en) Industrialization continuous type microwave reactor
CN102397772A (en) Efficient reaction kettle
CN109279752A (en) A kind of next-out sludge microwave-heating system and method for collection of products
CN1199703C (en) Microwave extracting device for Chinese medicine
CN216366704U (en) Miniaturized microwave solid-liquid micro-extraction device
CN209338357U (en) Next-out sludge microwave-heating system for collection of products

Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Effective date of abandoning: 20050418

C25 Abandonment of patent right or utility model to avoid double patenting