Method for preparing special rare earth composite phosphor for three-band plant growth lamp

A plant growth lamp and rare earth composite technology, which is applied in the field of preparation of rare earth composite phosphors, can solve the problems of unsuitability, low photosynthesis efficiency, easy spectrum, etc., and achieve the promotion of plant growth and development, significant supplementary light effect, and clear technical indicators Effect

Active Publication Date: 2013-10-30
李迎九
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  • Abstract
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  • Application Information

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Problems solved by technology

But so far, most foreign countries use high-pressure sodium lamps and LEDs to "light" plants. The former consumes high energy, the product price is high, and the photosynthesis efficiency is low; the latter is prone to problems such as spectral red shift and light decay due to technical problems such as heat dissipation , and the manufacturing cost is too high to achieve the ideal purpose of supplementing light for plants
Therefore, the above two products are not suitable for plant lighting at present, nor are they suitable for my country's national conditions.

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  • Method for preparing special rare earth composite phosphor for three-band plant growth lamp
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  • Method for preparing special rare earth composite phosphor for three-band plant growth lamp

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Embodiment Construction

[0022] According to the technical process, the components and preparation methods of the present invention are described in detail below;

[0023] 1. The components of the rare earth composite phosphor include strontium hydrogen phosphate, magnesium oxide, aluminum oxide, germanium oxide, europium oxide, cerium oxide, and terbium oxide as basic materials for activators, wherein the ratio of each component is: phosphoric acid 10-30 parts of strontium hydrogen, 10-25 parts of magnesium oxide, 10-30 parts of aluminum oxide, 3-18 parts of germanium oxide, 5-15 parts of europium oxide, 5-18 parts of cerium oxide, 15-20 parts of terbium oxide, each The sum of the components is 100%, including flux aluminum fluoride, one part of special gas, the amount of aluminum fluoride added is 3-20% of the total weight of the base material, special gas contains 7% hydrogen, 1% helium and 92% nitrogen.

[0024]2. Microwave-to-lattice treatment of some materials, controlling electromagnetic waves...

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Abstract

The invention relates to a special rare earth composite phosphor for a three-band plant growth lamp and a preparation method thereof. The rare earth composite phosphor comprises a base material with an activator including, by weight, 10-30 parts of strontium hydrogen phosphate, 10-25 parts of magnesium oxide, 10-30 parts of alumina, 3-18 parts of germanium oxide, 5-15 parts of europia, 5-18 parts of cerium oxide, 15-20 parts of terbium oxide, with the sum of the components being 100%, and also comprises a cosolvent aluminium fluoride and a special gas. Wherein, the additive amount of aluminium fluoride accounts for 3-20% of the gross weight of the base material, and the special gas includes 7% of hydrogen, 1% of helium and 92% of nitrogen. According to the invention, a light source made with the special rare earth composite phosphor for a ZW-2 three-band plant growth lamp has three-band spectrums, containing a suitable visible spectrum which is high in radiation energy and contributes to the growth and development of plants and ultraviolet light which inhibits excessive growth and promote the formation of anthocyanidin and various pigments, thus enjoying an absolute advantage in light supplement for plants.

Description

technical field [0001] The invention relates to a preparation method of a special rare earth composite fluorescent powder for a ZW-2 three-band plant growth lamp. Background technique [0002] Everything grows by the sun, without sunlight there is no life. The normal growth and development, flowering and fruiting of plants are all accomplished through photosynthesis, photomorphogenesis, and photoperiod regulation. We know that solar radiation is composed of light waves of different wavelengths. The solar radiation reaching the ground includes three parts: ultraviolet rays, visible light and infrared rays. Scientific experiments have proved that different wavelengths of light have different effects on plant growth. [0003] 1. Visible light: the wavelength ranges from 400nm to 750nm, including red, orange, yellow, green, cyan, blue and purple light. Among visible light, red-orange light (wavelength 600-700nm) and blue-violet light (wavelength 400-500nm) are absorbed most by...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C09K11/86A01G7/06
Inventor 李迎九
Owner 李迎九
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