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Method for preparing high-performance PAL (phenylalanine ammonia lyase) material by using non-metallic mineral palygorskite

A non-metallic mineral, palygorskite technology, applied in non-metallic elements, chemical instruments and methods, silicon compounds, etc., can solve the problems of harsh nucleation growth conditions and immature technical processes

Inactive Publication Date: 2014-03-19
兰州沃迪受损土地修复与环境工程研究院
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0015] However, with the mechanical method, its size can generally only reach the level of about 3 μm. Although the nucleation growth method can obtain ultrafine particles of a specific size (greater than 5nm and smaller than 100nm), it is basically based on chemical reactions, or nucleation The growth conditions are harsh, and some technical processes are not yet mature
Especially for the preparation of special granular micro-nano powders with special functions and high product added value, and the recovery and utilization of polymer materials and polymer composite materials with huge markets, there are ultra-fine crushing equipment for these tough materials Obvious insufficiency has become a technical bottleneck

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0029] 1. Principles of the program

[0030] Natural one-dimensional nano-particulate matter and palygorskite with nano-level layers, chains, and fibrous microstructures are crystalline minerals. Minerals are usually absorbed or inlaid to form aggregates, mixed with different amounts of impurities, so that the mineral materials The excellent functions such as functions and elements contained in the structure are not fully exerted, or it is difficult to exert them. Therefore, it is necessary to integrate modern technology and technology, and adopt economical and reasonable technical solutions to prepare high-performance materials with good quality and mesoscopic size.

[0031] 2. Program technical measures

[0032] Under the guidance of the principle of flexible crushing, the present invention utilizes the endogenous characteristics of palygorskite to be highly dispersed in the water medium, selects the most flexible water medium as the power, does not add any beneficiatio...

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Abstract

The invention specifically discloses a method for preparing a high-performance PAL (phenylalanine ammonia lyase) material by using non-metallic mineral palygorskite, which is characterized in that the method is implemented by using a flexible crushing principle and a flexible crushing technique, as well as no-drug high-speed liquid flow depolymerized dispersion, separated purification and concentration processes, and crushing, superfine milling, purifying, drying and classifying processes. The deeper meaning of the high performance of the PAL material is embodied in the level of physical scientific research, namely, crossing the boundary of living matters and non-living matters, therefore, the method disclosed by the invention provides a support for new revolution of life science, material science and energy science.

Description

technical field [0001] The invention relates to a method for preparing high-performance PAL material by using non-metallic mineral palygorskite. Background technique [0002] There are usually two ways to prepare micro-nano powders: one is to obtain fine powders by crushing large-size bulk materials, which is called the pulverization method. The particle size is basically around 3 μm; the second is to control the crystal nucleation and growth conditions to obtain micro-nano materials of specific sizes, which is called the nucleation growth method. Different approaches mean differences in theory and technical principles, and the physical and chemical properties of the resulting microparticles are also different. Therefore, product performance and economic factors are the basic requirements for choosing a preparation route. Based on the above requirements, at present, two processes of superfine pulverization and fine classification are generally used in the preparation techno...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C01B33/40
Inventor 曹发魁史振业孙矿生
Owner 兰州沃迪受损土地修复与环境工程研究院
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