CN102600828A - Visible light responded composite oxide photocatalyst LiBiTiO4 and its preparation method - Google Patents

Visible light responded composite oxide photocatalyst LiBiTiO4 and its preparation method Download PDF

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Publication number
CN102600828A
CN102600828A CN2012100292119A CN201210029211A CN102600828A CN 102600828 A CN102600828 A CN 102600828A CN 2012100292119 A CN2012100292119 A CN 2012100292119A CN 201210029211 A CN201210029211 A CN 201210029211A CN 102600828 A CN102600828 A CN 102600828A
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libitio4
preparation
composite oxide
ball
oxide photocatalyst
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CN102600828B (en
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方亮
向飞
郑少英
郭汝丽
韦珍海
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Nanjing Puyu Investment Co ltd
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Guilin University of Technology
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Abstract

The invention discloses a visible light responded composite oxide photocatalyst LiBiTiO4 and its preparation method. The composite oxide photocatalyst has a chemical composition formula as: LiBiTiO4. And the preparation method comprises: 1) weighing and burdening the 99.9% analytically pure chemical raw materials Li2CO3, Bi2O3 and TiO2 according to chemical formula LiBiTiO4; 2) mixing the raw materials well burdened in step (1), and putting the mixture into a ball milling pot, adding a zirconia ball and anhydrous ethanol, conducting ball milling for 12 hours for mixing and grinding, then taking out of the mixture, drying it, and sieving it through a sieve of 200 meshes; and 3) presintering the powder obtained in step (2) at a temperature of 800-950DEG C, and conducting heat preservation for 8-10 hours, and leaving the powder to cool naturally to room temperature, then decreasing the particle diameter to less than 2 micrometers through the ball mill and other crushing means, thus obtaining the composite oxide photocatalyst LiBiTiO4 powder. The preparation method of the invention is characterized by simplicity and low cost. The prepared photocatalyst has excellent catalytic performance, and has the effects of harmful chemical substance and organic biomass decomposition as well as sterilization under irradiation of visible lights.

Description

Visible light responded composite oxide photocatalyst LiBiTiO 4And preparation method thereof
Technical field
The present invention relates to a kind of visible light responded composite oxide photocatalyst LiBiTiO 4And preparation method thereof, belong to inorganic field of photocatalytic material.
Background technology
Along with The development in society and economy, people more and more pay close attention to for the energy and ecological environment, solve energy shortage and problem of environmental pollution and be to realize sustainable development, raising people's living standard and pressing for of safeguarding national security.
From phase late 1970s, people proposed to utilize in the photochemical catalyst decomposition water with atmosphere in organic matters such as agricultural chemicals and odorant, and application examples such as self-cleaning that scribble the surface of solids of photochemical catalyst.The principle of light-catalyzed reaction is that photochemical catalyst is after having absorbed the photon that is higher than its band-gap energy; Hole and electronics have been generated; These holes and electronics carry out oxidation reaction and reduction reaction respectively, reach the purpose of decomposing harmful chemical, organic-biological matter and sterilization.Photochemical catalyst has many kinds, and wherein most representative is titanium dioxide (TiO 2); Utilized titanium dioxide in the water with atmosphere in organic matters such as agricultural chemicals and odorant decompose; Yet the band gap of titanium dioxide is 3.2eV, only under the ultraviolet irradiation shorter than 400nm, just can show activity, can only be indoor or the local work of uviol lamp arranged; Almost can not utilize visible light, this has limited the use of titanium dioxide optical catalyst greatly.
Consider the practicality of photochemical catalyst in decomposing harmful substances, utilizing sunshine is indispensable as light source.Irradiation is maximum near sunshine medium wavelength visible light intensity 500nm on the face of land; Wavelength is that the energy of the visible region of 400nm~750nm approximately is 43% of a sunshine gross energy; So in order to utilize solar spectrum efficiently, searching has the attention that visible light-responded photochemical catalyst has caused people.
Catalysis material is having important application prospects aspect the solution energy and the environmental problem.In the last few years; Photochemical catalyst has caused countries in the world scientist's concern; Many famous research institutions and enterprise drop into the research that huge fund is engaged in photochemical catalyst mechanism and application in succession, and photochemical catalyst has begun to get in many fields such as antibiotic, deodorization, antifouling and water treatments to be applied the stage.Some scientists think that because photochemical catalyst has good depollution of environment effect, along with going deep into of various countries' research work, this new material will become one of 21 century brand-new material product the most likely.
Though photocatalysis research has been carried out the several years; But at present report to have visible light-responded photochemical catalyst kind still very limited; Problem such as exist still that light conversion efficiency is low, poor stability and spectrum respective range are narrow is very necessary so research and develop the new visible light-responded high efficiency photocatalyst that has.
Summary of the invention
The purpose of this invention is to provide a kind of have visible light responded composite oxide photocatalyst with and preparation method thereof.
A kind of visible light responded composite oxide photocatalyst that has provided by the invention is characterized in that the chemical constitution formula of said compound oxide photocatalyst is: LiBiTiO 4
The preparation method of above-mentioned visible light responded composite oxide photocatalyst, carry out according to the following steps:
1) with 99.9% analytically pure chemical raw material Li 2CO 3, Bi 2O 3And TiO 2, press LiBiTiO 4The chemical formula weigh batching;
2) step (1) confected materials is mixed, put into ball grinder, add zirconia ball and absolute ethyl alcohol, ball milling 12 hours mixes levigately, takes out oven dry, 200 mesh sieves;
3) with step (2) gained powder 800~950 ℃ of pre-burnings, and the insulation 8-10 hour, naturally cool to room temperature, through pulverizing means such as ball mills particle diameter is diminished then, be lower than 2 μ m, can obtain composite oxide photocatalyst Li BiTiO 4Powder.
Preparation method of the present invention is simple, cost is low, and the photochemical catalyst of preparation has excellent catalytic performance, under radiation of visible light, has the effect of decomposing harmful chemical, organic-biological matter and sterilization.
The specific embodiment
To specify the present invention below:
1, in order to obtain employed composite oxides among the present invention, at first use solid-phase synthesis to prepare powder, promptly mix various oxides or carbonate according to target composition stoichiometric proportion as raw material, synthetic in air atmosphere under normal pressure again.
2, in order effectively to utilize light, the size of the photochemical catalyst among the present invention is preferably in micron level, or even nano particle, and specific area is bigger.With the oxide powder of solid-phase synthesis preparation, its particle is big and surface area is less, but can particle diameter diminished through pulverizing means such as ball mills.
3, as the simulation organic pollution, its concentration is 20mg/L with methyl orange in photocatalysis experiment of the present invention; The addition of bismuth-system compound oxide photocatalyst is 1g/L; Light source uses the xenon lamp of 300W, and the vessel that reactive tank uses pyrex to process obtain the light of wavelength greater than 420nm long wavelength, irradiates light catalyst then through wave filter; The catalysis time set is 120min.
Embodiment 1:
1) with 99.9% analytically pure chemical raw material Li 2CO 3, Bi 2O 3And TiO 2, press LiBiTiO 4The chemical formula weigh batching;
2) step (1) confected materials is mixed, put into ball grinder, add zirconia ball and absolute ethyl alcohol, ball milling 12 hours mixes levigately, takes out oven dry, 200 mesh sieves.
3) with step (2) gained powder 800 ℃ of pre-burnings, and be incubated 10 hours, naturally cool to room temperature, pulverize through ball mill then particle diameter diminished, be lower than 2 μ m, can obtain composite oxide photocatalyst Li BiTiO 4Powder.
Prepared photochemical catalyst, under the radiation of visible light of wavelength greater than 420nm, 120min reaches 97.9% to the methyl orange clearance.
Embodiment 2:
1) with 99.9% analytically pure chemical raw material Li 2CO 3, Bi 2O 3And TiO 2, press LiBiTiO 4The chemical formula weigh batching;
2) step (1) confected materials is mixed, put into ball grinder, add zirconia ball and absolute ethyl alcohol, ball milling 12 hours mixes levigately, takes out oven dry, 200 mesh sieves.
3) with step (2) gained powder 850 ℃ of pre-burnings, and be incubated 10 hours, naturally cool to room temperature, pulverize through ball mill then particle diameter diminished, be lower than 2 μ m, can obtain composite oxide photocatalyst Li BiTiO 4Powder.
Prepared photochemical catalyst, under the radiation of visible light of wavelength greater than 420nm, 120min reaches 98.8% to the methyl orange clearance.
Embodiment 3:
1) with 99.9% analytically pure chemical raw material Li 2CO 3, Bi 2O 3And TiO 2, press LiBiTiO 4The chemical formula weigh batching;
2) step (1) confected materials is mixed, put into ball grinder, add zirconia ball and absolute ethyl alcohol, ball milling 12 hours mixes levigately, takes out oven dry, 200 mesh sieves.
3) with step (2) gained powder 900 ℃ of pre-burnings, and be incubated 9 hours, naturally cool to room temperature, pulverize through ball mill then particle diameter diminished, be lower than 2 μ m, can obtain composite oxide photocatalyst Li BiTiO 4Powder.
Prepared photochemical catalyst, under the radiation of visible light of wavelength greater than 420nm, 120min reaches 99.3% to the methyl orange clearance.
Embodiment 4:
1) with 99.9% analytically pure chemical raw material Li 2CO 3, Bi 2O 3And TiO 2, press LiBiTiO 4The chemical formula weigh batching;
2) step (1) confected materials is mixed, put into ball grinder, add zirconia ball and absolute ethyl alcohol, ball milling 12 hours mixes levigately, takes out oven dry, 200 mesh sieves.
3) with step (2) gained powder 950 ℃ of pre-burnings, and be incubated 8 hours, naturally cool to room temperature, pulverize through ball mill then particle diameter diminished, be lower than 2 μ m, can obtain composite oxide photocatalyst Li BiTiO 4Powder.
Prepared photochemical catalyst, under the radiation of visible light of wavelength greater than 420nm, 120min reaches 98.9% to the methyl orange clearance.
The present invention never is limited to above embodiment.Have element such as Zr with Ti analog structure and chemical property, Sn etc. also can make the photochemical catalyst with analogous crystalline structure of the present invention and performance.Bound, the interval value of the technological parameter of each raw material (like temperature, time etc.) can both realize the present invention, do not enumerate embodiment one by one at this.
The made photocatalyst powder of above inventive embodiments can be carried on the multiple matrix surface.Matrix can be glass, pottery, active carbon, quartz sand etc., and photochemical catalyst can be carried on matrix surface with the form of film.

Claims (1)

1. composite oxides is characterized in that the chemical constitution formula of said composite oxides is: LiBiTiO as the application of visible light-responded photochemical catalyst 4
Preparation method's step of said composite oxides is:
1) with 99.9% analytically pure chemical raw material Li 2CO 3, Bi 2O 3And TiO 2, press LiBiTiO 4The chemical formula weigh batching;
2) step (1) confected materials is mixed, put into ball grinder, add zirconia ball and absolute ethyl alcohol, ball milling 12 hours mixes levigately, takes out oven dry, 200 mesh sieves;
3) with step (2) gained powder 800~950 ℃ of pre-burnings, and the insulation 8-10 hour, naturally cool to room temperature, through pulverizing means such as ball mills particle diameter is diminished then, be lower than 2 μ m, can obtain composite oxides LiBiTiO 4Powder.
CN 201210029211 2012-02-08 2012-02-08 Visible light responded composite oxide photocatalyst LiBiTiO4 and its preparation method Expired - Fee Related CN102600828B (en)

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103055839A (en) * 2013-01-19 2013-04-24 桂林理工大学 Composite oxide photocatalyst (Li2TiO3) with lithium halite structure and preparation method thereof
CN103170323A (en) * 2013-04-16 2013-06-26 桂林理工大学 Titanate photocatalyst A2TiO4 and preparation method thereof
CN103877967A (en) * 2014-04-07 2014-06-25 桂林理工大学 Visible-light response photocatalyst Li3Nb3Bi2O12 and preparation method thereof
CN104001527A (en) * 2014-05-03 2014-08-27 桂林理工大学 Visible-light-responsive photocatalyst Li3Ti2PO8 and preparation method thereof
CN104492419A (en) * 2014-12-28 2015-04-08 桂林理工大学 Visible light responding photocatalyst LiBi3B3O11 and preparation method thereof

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CN101222046A (en) * 2008-01-25 2008-07-16 南京大学 Anode material of lithium battery and high temperature solid-phase sintering production method
CN102205246A (en) * 2011-03-25 2011-10-05 桂林理工大学 Visible light-responsive composite oxide photocatalyst LiCuNb1-xTaxO4 and preparation method thereof

Patent Citations (2)

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Publication number Priority date Publication date Assignee Title
CN101222046A (en) * 2008-01-25 2008-07-16 南京大学 Anode material of lithium battery and high temperature solid-phase sintering production method
CN102205246A (en) * 2011-03-25 2011-10-05 桂林理工大学 Visible light-responsive composite oxide photocatalyst LiCuNb1-xTaxO4 and preparation method thereof

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103055839A (en) * 2013-01-19 2013-04-24 桂林理工大学 Composite oxide photocatalyst (Li2TiO3) with lithium halite structure and preparation method thereof
CN103170323A (en) * 2013-04-16 2013-06-26 桂林理工大学 Titanate photocatalyst A2TiO4 and preparation method thereof
CN103877967A (en) * 2014-04-07 2014-06-25 桂林理工大学 Visible-light response photocatalyst Li3Nb3Bi2O12 and preparation method thereof
CN103877967B (en) * 2014-04-07 2016-01-13 桂林理工大学 Visible light-responded photocatalyst Li 3nb 3bi 2o 12and preparation method thereof
CN104001527A (en) * 2014-05-03 2014-08-27 桂林理工大学 Visible-light-responsive photocatalyst Li3Ti2PO8 and preparation method thereof
CN104492419A (en) * 2014-12-28 2015-04-08 桂林理工大学 Visible light responding photocatalyst LiBi3B3O11 and preparation method thereof

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