Photocatalyst for removing condensed water trace steam turbine oil and preparation method thereof

A photocatalyst and turbine oil technology, applied in chemical instruments and methods, organic compound/hydride/coordination complex catalysts, physical/chemical process catalysts, etc. The conditions for catalytic degradation are difficult to achieve and other problems, to achieve the effect of low density, high loading rate and small grain size

Inactive Publication Date: 2013-10-30
CHANGSHA UNIVERSITY OF SCIENCE AND TECHNOLOGY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At present, the main carriers used are hollow glass spheres, wood chips, silicon-aluminum hollow microspheres, etc. Among them, when hollow glass microspheres are used as carriers, they are only used to degrade oil pollution on the water surface, and they are used to load TiO 2 , the loading rate is low; and with epoxy resin as the adhesive, the TiO 2 Adhering to wood chips, it is mainly used for the degradation of crude oil in water. At present, there is no application example in the removal of trace turbine oil in condensed water; the use of silane coupling agent to combine TiO 2 Coupling on silica-alumina hollow microspheres, the photocatalytic degradation conditions are difficult to achieve in industrial use
[0010] In summary, the photocatalytic degradation method of TiO 2 With its excellent performance, it becomes a good semiconductor for photocatalysts, but as TiO 2 A good carrier for TiO, there is still no ideal material, therefore, to invent a kind of TiO 2 As a semiconductor, a photocatalyst with good load capacity and strong economic applicability to remove condensed water and trace turbine oil is very necessary for the safe operation of the entire generator set

Method used

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  • Photocatalyst for removing condensed water trace steam turbine oil and preparation method thereof
  • Photocatalyst for removing condensed water trace steam turbine oil and preparation method thereof
  • Photocatalyst for removing condensed water trace steam turbine oil and preparation method thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0034] A photocatalyst for removing trace amounts of turbine oil, consisting of the following components:

[0035]

[0036]

[0037] The preparation method of the coating of embodiment 1 is:

[0038] (1) 1kg of 8nm nano-TiO 2 The powder was added to 4kg of deionized water, and ultrasonically dispersed for 0.5h to obtain nano-TiO with good dispersibility 2 ;

[0039] (2) Add polyethylene glycol into the concentrated slurry, stir and disperse for 1 hour, and cool to room temperature;

[0040] (3) Add 0.5kg of toluene diisocyanate after cooling, and stir at a high speed for 0.5h at a certain temperature to obtain a prepolymer;

[0041] (4) Add ethylene glycol, glycerin and polysiloxane into the prepolymer, and keep stirring for 0.25h;

[0042] (5) heat up the mixture prepared in (4) and keep it warm for 12 hours to solidify.

[0043] The photocatalyst of embodiment 1, analyze TiO through SEM picture 2 The particles are filled in the pores of the foam to ensure that th...

Embodiment 2

[0045] A photocatalyst for removing trace amounts of turbine oil, consisting of the following components:

[0046]

[0047]

[0048] The preparation method of the coating of embodiment 2 is:

[0049] (1) 15kg of 8nm nano-TiO 2 The powder was added to 60kg of deionized water, and ultrasonically dispersed for 0.8h to obtain nano-TiO with good dispersibility 2 ;

[0050] (2) Add polyethylene glycol into the concentrated slurry, stir and disperse for 1 hour, and cool to room temperature;

[0051] (3) Add 30kg of toluene diisocyanate after cooling, and stir at a high speed for 0.8h at a certain temperature to obtain a prepolymer;

[0052] (4) Add ethylene glycol, glycerin and polysiloxane into the prepolymer, and keep stirring for 0.5h;

[0053] (5) heat up the mixture prepared in (4) and keep it warm for 12 hours to solidify.

[0054] The catalytic efficiency of the photocatalyst of Example 2 is more than 90%, the number of times of reuse is more than three times, and its...

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Abstract

The invention discloses a photocatalyst for removing condensed water trace steam turbine oil. The photocatalyst comprises the following components by weight percent: 5-20% of nanometer TiO2 powder, 1.3-7% of dispersing agent, 15-40% of toluene diisocynate, 10-20% of addition agent, 5-15% of foam stabilizer and 20-50% of solvent, wherein the dispersing agent refers to low-molecular wax, the addition agent refers to dihydric alcohol or trihydric alcohol; the foam stabilizer refers to silicon polyether or surface active agent containing -SO3H; the solvent refers to deionized water. Nanometer TiO2 is loaded through polyurethane foam by using a special photocatalyst formula. The obtained load-type photocatalyst is low in density, high in load rate and high in photocatalytic efficiency, and can be recycled, so that the economic applicability is strong.

Description

technical field [0001] The invention belongs to a kind of photocatalyst, specifically, the invention relates to a kind of photocatalyst used for removing condensed water trace steam turbine oil. Background technique [0002] With the rapid development of the power industry, the requirements for water quality control are becoming more and more stringent, and the water quality of condensate water, which is the main source of water supply, directly affects the operating status of the boiler. The oil content in the condensed water is also more and more strict with the increase of the unit parameters, but due to improper operation or imprecise seal system of the steam turbine, the effluent water of the condenser often contains a small amount of steam turbine oil, especially when the new power plant is put into operation , It is often encountered that the lubricating oil leaks and the condensate resin is polluted, resulting in a decrease in the exchange capacity of the resin; when...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J31/38C02F1/30
Inventor 朱志平周艺付晶赵永福陆海伟王磊静
Owner CHANGSHA UNIVERSITY OF SCIENCE AND TECHNOLOGY
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