CN103357436B - The preparations and applicatio of the silver catalyst of alumina support alkali treatment modifying, its load - Google Patents
The preparations and applicatio of the silver catalyst of alumina support alkali treatment modifying, its load Download PDFInfo
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Abstract
The present invention relates to a kind of alkali treatment modifying method producing the shaping alpha-alumina supports of oxirane silver catalyst for ethylene, the method adopts certain density alkaline solution to process shaping alpha-alumina supports under heating and stirring condition, increases the duct of carrier.Modification alpha-alumina supports obtained in this way makes the silver catalyst of its load, is conducive to the diffusion of reaction product.This modification alpha-alumina supports is applied to ethylene to produce reacting ethylene oxide process and demonstrate good selective.
Description
Technical field
The present invention relates to catalyst and catalyst carrier technical field, specifically, relate to the preparations and applicatio of a kind of alkali treatment modifying of alpha-alumina supports, the silver catalyst of its load, more particularly, relate to a kind of adopt alkaline solution to process alpha-alumina supports method of modifying and this modification alpha-alumina supports load silver catalyst preparation method and produced the application in oxirane by ethylene.
Background technology
Under silver catalyst effect, ethylene mainly generates oxirane (EO), and side reaction occurs simultaneously and generates carbon dioxide and water etc., wherein active, selective and stability is the main performance index of silver catalyst.So-called activity refers to the reaction temperature that process for ethylene oxide production reaches required when necessarily reacting load, and reaction temperature is lower, and the activity of catalyst is higher.What is called is selective refers to that in reaction, ethylene conversion becomes the ratio of the molal quantity of oxirane and the overall reaction molal quantity of ethene.So-called stability is then expressed as the fall off rate of activity and selectivity, and the stability of fall off rate more small catalyst is better.
Produce at ethylene in the process of oxirane and use high activity, high selectivity and the silver catalyst that has good stability greatly to increase economic efficiency, the silver catalyst therefore manufacturing high activity, high selectivity and good stability is the Main way of silver catalyst research.
The preparation method of silver catalyst mainly comprises these two processes on the preparation of porous carrier (as aluminium oxide) and carrier as described in active component and auxiliary agent being loaded to.Therefore, the performance of silver catalyst is except having important relationship with the composition of catalyst and preparation method, and performance and the preparation method of the carrier also used with catalyst have important relationship.What silver catalyst carrier was generally selected is the Alpha-alumina that specific area is less.
Carrier needs to provide certain surface to carry out load active component, and active component is in the above dispersed, and this just proposes very high requirement to the pore structure of carrier.The hole of alumina support can be divided three classes: 1) primary particle intercrystalline hole, the mainly dewatering hole of alumina raw material crystal grain, be substantially 1 ~ 2nm size parallel-plate face between gap; 2) hole between alumina raw material offspring, changing with the effusion of moisture and crystalline phase change in calcining, is hole more than tens nanometer; And 3) pore creating material and carrier shaping time produce defective hole and macropore.
Suitable carrier not only should have higher intensity, also should be able to provide suitable specific surface and pore structure.By processing Manufactured carrier, can to carrier surface modification, improve the dispersion situation of catalytic active component silver, change the Acidity of Aikalinity of carrier surface, the suction of modulation metal silver surface electronics situation and reaction species, desorption situation, thus the catalytic performance improving silver catalyst.This respect has some research work report.
Chinese patent CN1044416 reports a kind of method by dipping, the unformed silica being covered with 0.03 ~ 20%wt is coated with at carrier channel surfaces, the silicon oxide surface modified support that drying and 700 ~ 1500 DEG C of high-temperature roastings afterwards obtains, it is said after this carrier loaded active component silver and auxiliary agent, 400 ~ 950 DEG C of heat treatments under inert atmosphere again, gained catalyst has higher selective, active and lasting service life.
US Patent No. 4786743 also illustrates a kind of silver catalyst be made up of acid-treated, containing step-like structure the carrier of surface through pKa≤3, and gained catalyst has good heat endurance, activity and selective.But most high selectivity also only about 80%.
German patent DE 2933950 reports a kind of method of silver catalyst carrier being carried out to purifying.This patent is thought should use pure α-Al
2o
3as carrier material, if can't buy the α-Al of this purity
2o
3, α-Al that can be common commercially
2o
3start to carry out purifying, boil 30min by the NaOH solution that the concentration of about equivalent is 1wt%, be then finished the water washing completely without salt, until moistening α-Al
2o
3pH value lower than 8.This patent is thought additive method also can be adopted to obtain described carrier, being that the hydrofluoric acid solution of 1wt% boils carrier 10min, then washing with water, until pH value is not less than 5 as adopted the concentration of about equivalent.It is said, active and obviously improve service life (stability) after adopting the method gained carrier to make the silver catalyst of alkali metal containing auxiliary agent, but selective also only about 81.7%, and complex disposal process.
Japan Patent JP2002136868 reports a kind of alumina support.It is first by support material forming, at 500 ~ 2000 DEG C, roasting becomes main component to be the support precursor of aluminium oxide again, then adopt concentration 0.1 ~ 15% hydrofluoric acid solution process gained presoma, afterwards roasting a few hours at 1000 ~ 2000 DEG C, finally make carrier finished product.It is said that the rhenium-containing silver catalyst obtained by this carrier has excellent catalytic activity, selective and service life.But this preparation process is higher to equipment requirement, and production cost is high, be unfavorable for implementing.
Chinese patent CN1467022A discloses a kind of preparation method of silver catalyst for ethylene oxide carrier, and the method, by alpha-alumina supports alkaline matter is carried out alkali treatment, solves the active defect high not enough of silver catalyst that conventional art obtains.The alkali treatment of this invention comprises solution or gas two kinds of modes, alkaline matter consumption with vehicle weight percentages for 0.01 ~ 500%, treatment temperature 30 ~ 800 DEG C, processing time 1 ~ 30h, carrier after alkali treatment is washed with water to efflux for neutral, dry, make silver catalyst carrier, load silver and the auxiliary agent being selected from least one in sulphur, rhenium, molybdenum, tungsten, nickel, alkali metal or alkaline-earth metal on this carrier, the load capacity of silver counts 5 ~ 40% of catalyst weight with silver, auxiliary agent is catalyst weight in the load capacity of element wt 0.001 ~ 1%.Silver catalyst prepared by this inventive method, for the production of oxirane, has the advantage that reaction temperature is low, reactivity is high.
Chinese patent CN101850243A reports a kind of alpha-alumina supports through fluorine-containing acid solution-treated and carried silver catalyst thereof.Described carrier adopts industrial hydrated alumina to be prefabricated into the semi-finished product alpha-alumina supports particle of the alkaline including earth metal of definite shape, adopts certain density this semi-finished product carrier of fluorine-containing acid solution-treated afterwards, then obtains after roasting.After gained carrier makes silver catalyst, it has higher activity, stability and service life.
Foregoing invention all mainly improves activity, the stability of silver catalyst, but to optionally raising effect is little.Therefore, need at present to develop a kind for the treatment of technology improving silver catalyst optionally preformed catalyst carrier, and the silver catalyst be made up of it and application process thereof.
Summary of the invention
Technical problem to be solved by this invention is the alkali treatment modifying method providing a kind of alpha-alumina supports for above-mentioned the deficiencies in the prior art, the method adopts certain density alkaline solution to process shaping alpha-alumina supports under heating and stirring condition, increases the duct of carrier.Modification alpha-alumina supports obtained in this way makes the silver catalyst of its load, is conducive to the diffusion of product.Therefore, this modification alpha-alumina supports is applied to ethylene and produces reacting ethylene oxide process, it is selective significantly improves.
For this reason, the invention provides a kind of alkali treatment modifying method of alpha-alumina supports, comprise after alpha-alumina supports is carried out alkali treatment, then carry out the process of washing, modification alpha-alumina supports is produced in drying; Wherein, described alkali treatment process is carry out heating the process of stir process with alkaline solution, and the concentration of described alkaline solution is 0.2 ~ 4mol/l, and reaction temperature is 20 ~ 200 DEG C.The concentration of preferred described alkaline solution is 0.5 ~ 1.5mol/l, and reaction temperature is 40 ~ 100 DEG C.
In an embodiment of the inventive method, the alpha-alumina supports of described alkali treatment process and the solid-liquid mass ratio of alkaline solution are 1: 1 ~ 1: 150, and the reaction time is 0.2 ~ 3h.
In a preferred embodiment of the inventive method, the alpha-alumina supports of described alkali treatment process and the solid-liquid mass ratio of alkaline solution are 1: 20 ~ 1: 60, and the reaction time is 0.5 ~ 1.5h.
According to the inventive method, described alkali is inorganic base and/or alkaline, inorganic salts, and it is selected from any one in potassium hydroxide, a hydration ammonia, barium hydroxide, NaOH, calcium hydroxide, magnesium hydroxide or sodium carbonate, or the wherein mixture of more than two kinds.Any one in preferred potassium hydroxide, NaOH, sodium carbonate, or the mixture of wherein two kinds or three kinds.
In one embodiment of the invention, described alpha-alumina supports is shaping alpha-alumina supports, and its raw material is a kind of mixture, comprising:
Three water α-Al
2o
3, its content is 50 ~ 90wt%, and particle diameter is 200 order ~ 500 orders;
A false water Al
2o
3, its content is 5 ~ 50wt%, and particle diameter is 200 order ~ 400 orders;
Heavy alkaline earth metal compound, its content is 0 ~ 1.5wt%;
Fluoride-mineralization agent, its content is 0.1 ~ 3.0wt%;
Binding agent, its content is 15 ~ 60wt%;
Water, in right amount.
In another embodiment of the present invention, described shaping alpha-alumina supports is the common form in this area, comprises annular, spherical, cylindricality or porous column shape, or other shape.
According to the inventive method, described water-washing process is by the α-Al after alkali treatment by deionized water
2o
3carrier is washed till filtrate in neutral.The baking temperature of described dry run is 60 ~ 180 DEG C, and preferred baking temperature is 80 ~ 120 DEG C.
Present invention also offers a kind of preparation method of silver catalyst of the modification alpha-alumina supports load obtained with method of the present invention, comprising:
Steps A, by silver catalyst impregnation fluid modification alpha-alumina supports;
Step B, leaching silver catalyst maceration extract;
Step C, has the silver catalyst of the obtained modification alpha-alumina supports load of modification alpha-alumina supports activation of silver catalyst maceration extract by load;
Wherein, the specific area of the alpha-alumina supports of modification described in steps A is 0.2 ~ 2.0m
2/ g, pore volume is 0.35 ~ 0.85ml/g, water absorption rate>=30%, and crushing strength is 20 ~ 140N/ grain.
In one embodiment of the invention, the maceration extract of silver catalyst described in steps A comprises:
Silver compound, its consumption is 1 ~ 40wt%;
Alkali metal promoter, its consumption is 5 ~ 2000wtppm;
Base earth metal promoter, its consumption is 0 ~ 10000wtppm;
Rhenium auxiliary agent, its consumption is 10 ~ 2000wtppm;
Organic amine, its consumption is 1 ~ 24wt%.
According to the present invention, in described silver catalyst maceration extract, described silver compound is major catalyst, and described alkali metal promoter, base earth metal promoter, rhenium auxiliary agent etc. are catalyst promoter.
In a preferred embodiment of the invention, the maceration extract of silver catalyst described in steps A comprises:
Silver compound, its consumption is 5 ~ 25wt%;
Alkali metal promoter, its consumption is 5 ~ 1500wtppm;
Base earth metal promoter, its consumption is 0 ~ 8000wtppm;
Rhenium auxiliary agent, its consumption is 100 ~ 1000wtppm.
According to the inventive method, described silver compound comprises silver oxide, silver nitrate and/or silver oxalate; Described alkali metal promoter be selected from the compound of lithium, sodium, potassium, rubidium or caesium one or more, comprising cesium sulfate, cesium nitrate, lithium nitrate and/or potassium hydroxide, preferred as alkali auxiliary agent is cesium sulfate; Described base earth metal promoter be selected from the compound of magnesium, calcium, strontium or barium one or more, comprising one or more in the oxide of magnesium, calcium, strontium and barium, oxalates, sulfate, acetate and nitrate; Described rhenium auxiliary agent be selected from the oxide of rhenium, perrhenic acid, perrhenic acid caesium or ammonium perrhenate one or more, preferred described rhenium auxiliary agent is ammonium perrhenate; Described organic amine is pyridine, butylamine, ethylenediamine, 1,3-propane diamine, monoethanolamine or its mixture, and preferred described organic amine is the mixture of ethylenediamine and monoethanolamine.
In a preferred embodiment according to the present invention, the maceration extract of silver catalyst described in steps A also comprises the coassist agent of rhenium auxiliary agent, to improve the activity of gained silver catalyst, selective and stability further.The coassist agent of described rhenium auxiliary agent can be the compound of arbitrary transition metal in the periodic table of elements, or the mixture of several transistion metal compound, the oxyacid of preferred group vib and VIIB race element and salt thereof, such as wolframic acid, sodium tungstate, potassium tungstate, ammonium tungstate, wolframic acid caesium, molybdic acid, ammonium molybdate, ammonium metatungstate etc., its consumption is 0 ~ 1000wtppm, and preferably its consumption is 0 ~ 500wtppm.
According to the inventive method, described dipping process carries out under subatmospheric pressure conditions, carries out preferably be less than the condition of 10mmHg in vacuum under, and dip time is 10 ~ 60min.
According to the inventive method, activation described in step C is not more than at air or oxygen content to carry out in the nitrogen oxygen atmosphere of 21v%.Its activation temperature is 180 ~ 700 DEG C, and soak time is 1 ~ 120min; Preferred described activation temperature is 200 ~ 500 DEG C, and soak time is 2 ~ 60min.
Present invention also offers the application of silver catalyst in ethylene production oxirane process of modification alpha-alumina supports load prepared by a kind of method of the present invention.Wherein, described ethylene oxidation reactions is carried out under oxygen and silver catalyst existence condition, and described silver catalyst is the silver catalyst of the modification alpha-alumina supports load obtained by alkali treatment modifying.Described reaction temperature is 200 ~ 275 DEG C.
In the present invention, the specific area of carrier adopts nitrogen physisorption BET method to measure according to international test standards ISO-9277.Such as, U.S. Kang Ta company NOVA2000e type nitrogen physisorption instrument can be used to measure the specific area of carrier.
The pore volume of carrier adopts mercury injection method to measure.Such as, Merck & Co., Inc of U.S. AutoPore9510 type mercury injection apparatus can be used to measure the pore volume of carrier.
In carrier, the amount of alkaline earth metal compound can obtain by calculating or measure (as adopted x-ray fluorescence analysis).
The side pressure strength of carrier, such as, Dalian Chemical Research &. Design Inst. can be adopted to produce DLII type intelligence detector for strength of particles, and random selecting 30 support samples, average after measuring radial crushing strength and obtain.
In the present invention, term used " water absorption rate " refers to the volume of the carrier saturated adsorption water of unit mass, and unit is ml/g.Assay method is as follows, first takes a certain amount of carrier (assuming that its quality is m
1), carrier taking-up be erected on the moderate wet gauze of water content boil 1h in boiling water after and remove the unnecessary moisture of carrier surface, the quality of the carrier after finally weighing adsorbed water (is assumed to m
2), calculate the water absorption rate of carrier as follows.
Water absorption rate=(m
2-m
1)/m
1/ ρ
water
Wherein ρ
waterthe density of water under mensuration temperature, atmospheric pressure.
According to the inventive method, modification is carried out to alpha-alumina supports, the more horn of plenty of the unmodified carrier of orifice throat ratio of the modification alpha-alumina supports obtained, the silver catalyst be made up of this modification alpha-alumina supports, produce at ethylene in the process of oxirane demonstrate good selective.The present invention is all easy to obtain to the raw material that alumina support carries out modification, and preparation method's step is simple.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the present invention is described in further detail:
Fig. 1 is the scanning electron microscope (SEM) photograph of unmodified alpha-alumina supports prepared by embodiment 1.
Fig. 2 is the scanning electron microscope (SEM) photograph of modification alpha-alumina supports prepared by embodiment 6.
Detailed description of the invention
Describe the present invention in detail below in conjunction with embodiment and accompanying drawing, these embodiments and accompanying drawing only play illustrative effect, are not limited to range of application of the present invention.
Embodiment 1 prepares α-Al
2o
3carrier, and as the comparative example of embodiment 2 ~ 7; α-the Al that embodiment 2 ~ 7 is obtained to embodiment 1 under different reaction conditions respectively
2o
3carrier carries out alkali treatment, obtained modified alpha-Al
2o
3carrier; α-the Al that embodiment 8 adopts embodiment 1 obtained
2o
3carrier prepares silver catalyst, and as the comparative example of embodiment 9 ~ 14; Modified alpha-the Al that embodiment 9 ~ 14 adopts embodiment 2 ~ 7 obtained respectively
2o
3carrier prepares silver catalyst.The mensuration of catalyst performance
The various silver catalyst laboratories microreactor that relates in the present invention (hereinafter referred to as " micro-anti-") evaluating apparatus tests its initial activity and selective.The reactor that micro anti-evaluation device uses is the stainless steel tube of internal diameter 4mm, and reactor is placed in heating jacket.The admission space of catalyst is 1ml, and inert filler is arranged at bottom, makes beds be positioned at the flat-temperature zone of heating jacket.
The condition determination of the catalyst activity and selectivity that the present invention uses is as follows:
Reacting gas composition (mol%)
When stable reach above-mentioned reaction condition after METHOD FOR CONTINUOUS DETERMINATION reactor enter, exit gas composition.Measurement result calculates selective S after carrying out volume contraction correction as follows:
Wherein Δ EO be work off one's feeling vent one's spleen poor with inlet gas ethylene oxide concentration, Δ CO
2be work off one's feeling vent one's spleen poor with inlet gas gas concentration lwevel, get the result of the test of average as the same day of more than 10 groups test datas.
Embodiment
Embodiment 1: preparation α-Al
2o
3carrier
By 200 ~ 500 object three water α-Al
2o
3the false water Al of 403g, 200 ~ 400 objects
2o
381g, NH
4f3g and BaSO
40.5g puts into blender mixing, then proceeds in kneader, adds dust technology (nitric acid: water=1: 3, weight ratio) 90ml, and being kneaded into can the paste of extrusion molding.Extrusion molding is the five hole columns of external diameter 8.0mm, long 6.0mm, internal diameter 1.0mm, and dry 10h at 80 ~ 120 DEG C, makes free water content be reduced to below 10wt%, obtained shaping alpha-alumina supports green compact.Then these green compact are put into electric furnace, be elevated to 1400 DEG C through 30h from room temperature, constant temperature 2h, by obtained white α-Al
2o
3carrier called after Z-1, and measure its crushing strength and water absorption rate, the results are shown in Table 1, the stereoscan photograph of this carrier is shown in Fig. 1.
Embodiment 2: prepare modified alpha-Al
2o
3carrier
The Ba (OH) of 20g0.2mol/l is prepared by solid-liquid mass ratio 1: 1
2solution, and by Ba (OH)
2solution temperature constant temperature to 20 DEG C, takes 20gZ-1 carrier and puts into Ba (OH)
2solution, after stirring 0.2h, carrier is taken out, and by washed with de-ionized water, is about 7 to filtrate pH value.Then carrier is put into baking oven in 100 DEG C of dry 10h, by obtained modification alpha-alumina supports called after Z-2, and measure its crushing strength and water absorption rate, the results are shown in Table 1.
Embodiment 3: prepare modified alpha-Al
2o
3carrier
The Ca (OH) of 3000g4.0mol/l is prepared by solid-liquid mass ratio 1: 150
2solution, and by Ca (OH)
2solution is heated to 200 DEG C, takes 20gZ-1 carrier and puts into Ca (OH)
2solution, after stirring 3.0h, carrier is taken out, and by washed with de-ionized water, is about 7 to filtrate pH value.Then carrier is put into baking oven in 100 DEG C of dry 10h, by obtained modification alpha-alumina supports called after Z-3, and measure its crushing strength and water absorption rate, the results are shown in Table 1.
Embodiment 4: prepare modified alpha-Al
2o
3carrier
The Mg (OH) of 400g0.5mol/l is prepared by solid-liquid mass ratio 1: 20
2solution, and by Mg (OH)
2solution is heated to 40 DEG C, takes 20gZ-1 carrier and puts into Mg (OH)
2solution, after stirring 0.5h, carrier is taken out, and by washed with de-ionized water, is about 7 to filtrate pH value.Then carrier is put into baking oven in 100 DEG C of dry 10h, by obtained modification alpha-alumina supports called after Z-4, and measure its crushing strength and water absorption rate, the results are shown in Table 1.
Embodiment 5: prepare modified alpha-Al
2o
3carrier
Prepare the KOH solution of 600g0.8mol/l by solid-liquid mass ratio 1: 30, and KOH solution is heated to 60 DEG C, take 20gZ-1 carrier and put into KOH solution, after stirring 0.8h, carrier is taken out, and by washed with de-ionized water, is about 7 to filtrate pH value.Then carrier is put into baking oven in 100 DEG C of dry 10h, by obtained modification alpha-alumina supports called after Z-5, and measure its crushing strength and water absorption rate, the results are shown in Table 1.
Embodiment 6: prepare modified alpha-Al
2o
3carrier
Prepare the NaOH solution of 800g1.2mol/l by solid-liquid mass ratio 1: 40, and NaOH solution is heated to 80 DEG C, take 20gZ-1 carrier and put into NaOH solution, after stirring 1.1h, carrier is taken out, and by washed with de-ionized water, is about 7 to filtrate pH value.Then carrier is put into baking oven in 100 DEG C of dry 10h, by obtained modification alpha-alumina supports called after Z-6, and measure its crushing strength and water absorption rate, the results are shown in Table 1, the stereoscan photograph of this carrier is shown in Fig. 2.
Embodiment 7: prepare modified alpha-Al
2o
3carrier
The Na of 1200g1.5mol/l is prepared by solid-liquid mass ratio 1: 60
2cO
3solution, and by Na
2cO
3solution is heated to 100 DEG C, takes 20gZ-1 carrier and puts into Na
2cO
3solution, after stirring 1.5h, carrier is taken out, and by washed with de-ionized water, is about 7 to filtrate pH value.Then carrier is put into baking oven in 100 DEG C of dry 10h, by obtained modification alpha-alumina supports called after Z-7, and measure its crushing strength and water absorption rate, the results are shown in Table 1.
Table 1
Embodiment | 1 | 2 | 3 | 4 | 5 | 6 | 7 |
Support samples | Z-1 | Z-2 | Z-3 | Z-4 | Z-5 | Z-6 | Z-7 |
Crushing strength (N/ grain) | 126 | 127 | 110 | 127 | 129 | 131 | 129 |
Water absorption rate (%) | 50.54 | 50.56 | 53.2 | 50.82 | 51.06 | 51.20 | 51.03 |
Specific area (m 2/g) | 1.438 | 1.419 | 1.412 | 1.420 | 1.396 | 1.313 | 1.399 |
Embodiment 8: prepare silver catalyst
700g silver nitrate is dissolved in obtained liquor argenti nitratis ophthalmicus in 750ml deionized water; 325g ammonium oxalate is dissolved in obtained ammonium oxalate solution in the deionized water of 250ml50 DEG C; Liquor argenti nitratis ophthalmicus and ammonium oxalate solution Homogeneous phase mixing, generate white silver oxalate precipitate with vigorous stirring; After aging for silver oxalate precipitate 1h, filter, and spend deionized water filter cake until without nitrate ion in filtrate, obtained paste silver oxalate filter cake, containing metal silver about 60wt% in the filter cake obtained, moisture about 15wt%.
By 300g ethylenediamine, 110g monoethanolamine and 375g deionized water add glass flask, stir, after mixing, in obtained mixed solution, slowly add paste silver oxalate while stirring, temperature remains between-5 DEG C to 10 DEG C, silver oxalate is all dissolved, then adds 2.2g cesium sulfate and 1.4g strontium acetate, then add deionized water and make solution gross mass reach 2000g, make silver catalyst maceration extract, the silver content of the silver compound maceration extract obtained is 22wt%.
The support samples Z-1 getting 15g embodiment 1 obtained puts into the container that can vacuumize.Vacuum is evacuated to lower than 10mmHg, adds silver catalyst maceration extract, submergence carrier, keeps 30min.Then unnecessary silver catalyst maceration extract is removed in leaching.Carrier after dipping is heated 5min in the air stream of 350 DEG C, cooling, by obtained silver catalyst called after CZ-1, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Embodiment 9: prepare silver catalyst
Carrier Z-1 changes and makes carrier Z-2 by embodiment 9 as different from Example 8, by obtained silver catalyst called after CZ-2, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Embodiment 10: prepare silver catalyst
Carrier Z-1 changes and makes carrier Z-3 by embodiment 10 as different from Example 8, by obtained silver catalyst called after CZ-3, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Embodiment 11: prepare silver catalyst
Carrier Z-1 changes and makes carrier Z-4 by embodiment 11 as different from Example 8, by obtained silver catalyst called after CZ-4, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Embodiment 12: prepare silver catalyst
Carrier Z-1 changes and makes carrier Z-5 by embodiment 12 as different from Example 8, by obtained silver catalyst called after CZ-5, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Embodiment 13: prepare silver catalyst
Carrier Z-1 changes and makes carrier Z-6 by embodiment 13 as different from Example 8, by obtained silver catalyst called after CZ-6, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Embodiment 14: prepare silver catalyst
Carrier Z-1 changes and makes carrier Z-7 by embodiment 14 as different from Example 8, by obtained silver catalyst called after CZ-7, the content (wherein content is all in metal) of the silver in obtained silver catalyst and auxiliary agent is analyzed, and use microreactor evaluating apparatus to measure its activity and selectivity, the results are shown in Table 2.
Table 2 (in table listed reaction temperature and selective be the data of reaction when proceeding to the 20th day)
Respectively by above-described embodiment 2 ~ 7 and embodiment 1, and embodiment 9 ~ 14 compares can find out with embodiment 8, carries out to alpha-alumina supports the duct that alkali treatment increases carrier.Modification alpha-alumina supports obtained in this way makes the silver catalyst of its load, is conducive to the diffusion of reaction product; This modification alpha-alumina supports is applied to ethylene and produces reacting ethylene oxide process, the selective of catalyst significantly improves.
The foregoing is only the preferred embodiment of the present invention; but scope is not limited thereto; any those skilled in the art, in technical scope disclosed by the invention, can easily carry out changing or changing, and this change or change all should be encompassed within protection scope of the present invention.Therefore, protection scope of the present invention should be as the criterion with the protection domain of claims.
Claims (8)
1. an alkali treatment modifying method for alpha-alumina supports, comprises after alpha-alumina supports is carried out alkali treatment, then carries out the process of washing, modification alpha-alumina supports is produced in drying; Wherein, described alkali treatment process is carry out heating the process of stir process with alkaline solution, described alkali is inorganic base and/or alkaline, inorganic salts, it is selected from any one in potassium hydroxide, a hydration ammonia, barium hydroxide, NaOH, calcium hydroxide, magnesium hydroxide or sodium carbonate, or the wherein mixture of more than two kinds, and the concentration of described alkaline solution is 0.2 ~ 4mol/l, reaction temperature is 20 ~ 200 DEG C, the alpha-alumina supports of described alkali treatment process and the solid-liquid mass ratio of alkaline solution are 1:20 ~ 1:60, and the reaction time is 0.5 ~ 0.8h.
2. method according to claim 1, is characterized in that: the concentration of described alkaline solution is 0.5 ~ 1.5mol/l, and reaction temperature is 40 ~ 100 DEG C.
3. method according to claim 1, is characterized in that: described alkali be selected from potassium hydroxide, NaOH, sodium carbonate any one, or the mixture of wherein two kinds or three kinds.
4. a preparation method for the silver catalyst of the modification alpha-alumina supports load obtained according to the method in claims 1 to 3 described in any one, comprising:
Steps A, by silver catalyst impregnation fluid modification alpha-alumina supports;
Step B, leaching silver catalyst maceration extract;
Step C, has the silver catalyst of the obtained alpha-alumina supports load of modification alpha-alumina supports activation of silver catalyst maceration extract by load;
It is characterized in that: the specific area of the alpha-alumina supports of modification described in steps A is 0.2 ~ 2.0m
2/ g, pore volume is 0.35 ~ 0.85ml/g, water absorption rate>=30%, and crushing strength is 127 ~ 140N/ grain.
5. method according to claim 4, is characterized in that: the maceration extract of silver catalyst described in steps A comprises:
Silver compound, its consumption is 1 ~ 40wt%;
Alkali metal promoter, its consumption is 5 ~ 2000wtppm;
Base earth metal promoter, its consumption is 0 ~ 10000wtppm;
Rhenium auxiliary agent, its consumption is 10 ~ 2000wtppm;
Organic amine, its consumption is 1 ~ 24wt%.
6. method according to claim 5, is characterized in that: described silver catalyst maceration extract comprises:
Silver compound, its consumption is 5 ~ 25wt%;
Alkali metal promoter, its consumption is 5 ~ 1500wtppm;
Base earth metal promoter, its consumption is 0 ~ 8000wtppm;
Rhenium auxiliary agent, its consumption is 100 ~ 1000wtppm.
7. method according to claim 4, is characterized in that: activation described in step C is not more than at air or oxygen content to carry out in the nitrogen oxygen atmosphere of 21v%.
8. the application in oxirane process produced by the silver catalyst of the modification alpha-alumina supports load prepared according to the method in claim 4 ~ 7 described in any one at ethylene.
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CN108097200B (en) * | 2016-11-25 | 2020-08-11 | 中国石油化工股份有限公司 | Method for preparing modified alumina |
CN108097201B (en) * | 2016-11-25 | 2020-08-07 | 中国石油化工股份有限公司 | Modified alumina and preparation method thereof |
CN111905732B (en) * | 2019-05-09 | 2022-05-20 | 中国石油化工股份有限公司 | Silver catalyst and activation method and application thereof |
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