Nutrition type water retention ball and method for manufacturing the same

A nutritional and water-retaining agent technology, applied in botany equipment and methods, automatic watering devices, fertilizer mixtures, etc., can solve problems such as lack of production process and technical standardization, high prices of agricultural and forestry products, and reduced water absorption multiples. Enhance crop stress resistance performance, improve fertilizer use efficiency, and stabilize water absorption multiples

Inactive Publication Date: 2006-02-08
王洪伟
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Before the mid-1990s in China, there were more than 40 kinds of water-retaining agents, but due to: 1. Due to technical problems, the product has a bad appearance and unstable quality, and some of them are less effective after being applied to the soil. Second, without considering the characteristics of agricultural applications, especially the lack of the most basic understanding of soil, fertilizer, water, and seed knowledge, the effect and performance of water-retaining agents directly applied to agricultural production are unstable. For example, after being applied to the soil, The water absorption ratio is reduced by 2 / 3; 3. Due to the influence of raw materials and production process efficiency, the product price is high, and the cost per mu is as high as 120-180 yuan and many other reasons, so that the demonstration and application of water-retaining agents in agricultural production have been in a state of hesitation.
After the mid-1990s, the development of water-retaining agents began a new round of climax, but in general, the industrialization of agricultural water-retaining agents is quite difficult: one is to use organic monomers such as acrylic acid, acrylamide, etc. The water-retaining agent products of raw materials have high production costs, and the price of agricultural and forestry products is high, which is difficult for farmers to accept; secondly, from the perspective of chemistry, physics and biology, water-retaining agents are high-tech products, but for composite water-retaining agents, new There is a lack of necessary research and development in the technical formula, production process and technical standardization of drought-resistant agents; third, the existing water-retaining agent products are highly technical when applied in actual production, and certain training and guidance are required to master the use methods Work
Moreover, most of the water-retaining agents currently produced are in the form of powder, flake, fiber, and liquid, and are widely used in powder form, which is very inconvenient to apply.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] The making of embodiment 1 nutritional compound water retaining agent

[0041]700g of polymer water-absorbing material sodium polyacrylate, 1g of cerium nitrate, 50g of plant cellulose, 2g of trace elements, 20g of urea, 80g of diammonium phosphate, 35g of potassium chloride and other composite water-retaining agent materials are organically combined to make Powder or small granule nutritional compound water retaining agent, the water absorption rate is 150 times.

Embodiment 2

[0042] Embodiment 2 The making of nutrient type composite water-retaining agent

[0043] Organically blend 750g of polymer water-absorbing material modified starch, 9g of lanthanum nitrate, 50g of cellulose, 3g of trace elements, 80g of urea, 20g of phosphorus pentoxide, 20g of potassium oxide and other raw materials of composite water-retaining agent, and make it into powder Or small granular nutrient-type compound water-retaining agent, the water absorption rate is 200 times.

Embodiment 3

[0044] Embodiment 3 The making of nutrient-type composite water-retaining agent

[0045] Organically blend 800g of polymer water-absorbing material acrylic acid-acrylamide copolymer, 3g of rare earth, 50g of cellulose, 4g of trace elements, 45g of urea, 25g of phosphorus pentoxide, and 80g of potassium chloride as composite water-retaining agent raw materials, etc., to produce In the form of powder or small granule nutritional compound water retaining agent, the water absorption rate is 300 times.

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Abstract

The invention discloses a nutrimental water-saving polo and the preparing method, the said water-saving polo concludes kernel and shell, the said kernel is water-saving material, the shell is the nutrimental organic-inorganic complex, and the kernel is covered by the shell. The strong compressive resistance characterizes the said water-saving polo, the durability of transportation, rapid water intake rate, good expansion pressure, the 50-150% increase of the repeatable water intake, simple manufacturing technique and advanced method.

Description

【Technical field】 [0001] The invention relates to a nutritional water-retaining agent and a manufacturing method thereof. 【Background technique】 [0002] At present, there are many kinds of superabsorbent materials produced in the world, and there are mainly four types: one is the total synthesis type based on organic monomers such as acrylic acid and acrylamide; the other is the cellulose graft modified type based on cellulose. The third is the starch graft modified type with starch as raw material; the fourth is the natural type with natural minerals such as vermiculite, montmorillonite, sepiolite, etc. as raw materials. Before the mid-1990s in China, there were more than 40 kinds of water-retaining agents, but due to: 1. Due to technical problems, the product has a bad appearance and unstable quality, and some of them are less effective after being applied to the soil. Second, without considering the characteristics of agricultural applications, especially the lack of th...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01G27/00C05G3/00
Inventor 王洪伟武继承孙建设孙阳郑惠玲王悦
Owner 王洪伟
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