Low-carbon high-efficiency nano-zirconium silicate manufacturing method and manufacturing device

A manufacturing method and high-efficiency technology, applied in grain processing, etc., can solve problems such as the inability to meet the high-efficiency and low-cost manufacturing of nano-zirconium silicate, achieve the effect of circular production and sales, and reduce costs

Active Publication Date: 2017-06-16
唐山市康陶新材料有限公司
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

However, the existing technology cannot meet the needs of high-efficiency and low-cost production of nano-zirconium silicate in terms of equipment, mechanism, grinding media and auxiliary materials.

Method used

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  • Low-carbon high-efficiency nano-zirconium silicate manufacturing method and manufacturing device
  • Low-carbon high-efficiency nano-zirconium silicate manufacturing method and manufacturing device
  • Low-carbon high-efficiency nano-zirconium silicate manufacturing method and manufacturing device

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Embodiment Construction

[0079] Refer to the attached Figure 1-16 , a method for manufacturing low-carbon and high-efficiency nano-zirconium silicate, comprising the steps of:

[0080] 1), selected zircon sand;

[0081] 2) Processing procedure of high-energy roller type ultra-fine ball mill;

[0082] 3), transfer storage process;

[0083] Consists of 5 units×17m 3 It is composed of a stainless steel tank with a pneumatic stirring device at the bottom; it accepts incoming materials from the previous process for storage, and supplies stable slurry for the next process;

[0084] 4), high-efficiency stirring nano ball mill processing procedures;

[0085] 5), Secondary slurry storage tank process:

[0086] Consists of 2 units×17m 3 It is composed of a stainless steel tank, and the bottom is equipped with a pneumatic stirring device, which is used to receive incoming materials from the previous process for storage, and to supply stable slurry for the next process;

[0087] 6), Nano material slurry w...

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Abstract

The invention relates to a method and device for manufacturing low-carbon and high-efficiency nano-zirconium silicate, comprising: a high-energy drum-type ultra-fine ball mill, a high-efficiency stirring nano-ball mill and a nano-material slurry water separation device. The low-carbon high-efficiency nano-zirconium silicate manufacturing method of the present invention improves the traditional ball mill into a high-energy drum-type ultra-fine ball mill, improves the traditional agitating ball mill into a high-efficiency agitating nano-ball mill, and newly invents a nano-material slurry water separation unit, Make zirconium silicate products enter the era of high-efficiency nano-scale processing and production from the micron-scale era. It is the first time to use liquid packaging technology in the zirconium silicate industry, which saves the drying process, reduces costs, and has no carbon emissions. It realizes the low-carbon, green, and circular production and sales methods of nano-zirconium silicate production.

Description

technical field [0001] The invention relates to the field of mechanically processing nano-inorganic non-metallic materials, in particular to a method for manufacturing low-carbon and high-efficiency nano-zirconium silicate. Background technique [0002] Zirconium silicate (ZrSiO 4 ), commonly known as zirconium silicate, is made of natural zircon through superfine crushing, iron removal, titanium processing, surface modification and other processes. Its products belong to the category of chemical products and are mainly used as opalescent agents for ceramic blank glazes. The processing of zirconium silicate in my country began in 1992. Its main equipment is a stirring ball mill, the grinding medium is Φ8mm yttrium-stabilized zirconia grinding balls, and a single periodic grinding process is adopted. The fineness of zirconium silicate powder is: D 50 ≦1.5μm, spray drying tower is used for drying, the process is characterized by low efficiency, high cost and large dust. In ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B02C21/00
Inventor 赵祥启
Owner 唐山市康陶新材料有限公司
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