High-efficiency slow-release sterilizing composite material for lobster pond

A composite material and pond technology, applied in the directions of fungicides, urea compound fertilizers, applications, etc., can solve the problems of destroying the ecological balance of ponds, damage to aquatic plants, and poor bactericidal effect.

Inactive Publication Date: 2018-02-13
宿松县辉煌家庭农场
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the common fungicides in the prior art have poor continuous bactericidal effect when they enter the water, and most of them disappear because of the dilution or evaporation of water. Another important factor affecting the environment of the breeding pond is the oxygen content. The use of fungicides At the same time, it also causes serious damage to the aquatic plants at the bottom of the pond, and some bactericidal elements will also cause the death of plants, which seriously damages the ecological balance of the pond. Therefore, it is urgent to design a kind of efficient slow-release bactericidal composite material for lobster ponds to solve the current problem. There is a technical problem

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0015] The present invention proposes a high-efficiency slow-release sterilization composite material for lobster ponds. Its raw materials include 30 parts by weight of modified filler A, 25 parts of modified filler B, 3.5 parts of methylisothiazolone, and 2.5 parts of glutaraldehyde. Parts, 4.5 parts of sorbate, 6 parts of benzoic acid, 3.5 parts of fixative, 2 parts of benzalkonium bromide, 4 parts of starch, 4.5 parts of isobutyraldehyde, 3.5 parts of benzoate, 4.5 parts of chlorhexidine acetate, 4.5 parts of sodium acetate, 3.5 parts of disodium edetate, 3 parts of sodium polyacrylate, 4.5 parts of cetyl dimethyl ethyl ammonium bromide, 3.5 parts of glyceryl linoleate, 10 parts of propylene glycol, fatty alcohol 2 parts of polyoxyethylene ether, 2 parts of sodium chloride, 4 parts of polyethylene glycol, 6.5 parts of oxalic acid, 3.5 parts of asarone, 2.5 parts of β-sitosterol, 3.5 parts of sodium humate, 2 parts of fulvic acid, 4 parts of photosynthetic bacteria and 15 par...

Embodiment 2

[0019] The present invention proposes a high-efficiency sustained-release sterilization composite material for lobster ponds. Its raw materials include 20 parts by weight of modified filler A, 35 parts of modified filler B, 2 parts of methylisothiazolone, and 4 parts of glutaraldehyde. Parts, 3 parts of sorbate, 8 parts of benzoic acid, 2 parts of fixative, 3 parts of benzalkonium bromide, 2 parts of starch, 6 parts of isobutyraldehyde, 2 parts of benzoate, 6 parts of chlorhexidine acetate, 3 parts of sodium acetate, 5 parts of disodium ethylenediaminetetraacetic acid, 2 parts of sodium polyacrylate, 6 parts of cetyl dimethyl ethyl ammonium bromide, 3 parts of linoleic acid glycerides, 15 parts of propylene glycol, fatty alcohol 1.5 parts of polyoxyethylene ether, 3 parts of sodium chloride, 3 parts of polyethylene glycol, 8 parts of oxalic acid, 2 parts of asarone, 4 parts of β-sitosterol, 2 parts of sodium humate, 3 parts of fulvic acid, 2 parts of photosynthetic bacteria, 20...

Embodiment 3

[0023] The present invention proposes a high-efficiency slow-release sterilization composite material for lobster ponds. Its raw materials include, by weight, 40 parts of modified filler A, 15 parts of modified filler B, 5 parts of methylisothiazolone, and 1 part of glutaraldehyde. Parts, 6 parts of sorbate, 4 parts of benzoic acid, 5 parts of fixative, 1 part of benzalkonium bromide, 6 parts of starch, 3 parts of isobutyraldehyde, 5 parts of benzoate, 3 parts of chlorhexidine acetate, 6 parts of sodium acetate, 2 parts of disodium ethylenediaminetetraacetic acid, 4 parts of sodium polyacrylate, 3 parts of cetyl dimethyl ethyl ammonium bromide, 4 parts of linoleic acid glycerides, 5 parts of propylene glycol, fatty alcohol 2.5 parts of polyoxyethylene ether, 1 part of sodium chloride, 5 parts of polyethylene glycol, 5 parts of oxalic acid, 5 parts of asarone, 1 part of β-sitosterol, 5 parts of sodium humate, 1 part of fulvic acid, 6 parts of photosynthetic bacteria and 10 parts...

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PUM

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Abstract

The invention discloses a high-efficiency slow-release sterilizing composite material for a lobster pond. The high-efficiency slow-release sterilizing composite material comprises the following raw materials of modified filler A, modified filler B, methylisothiazolinone, glutaraldehyde, sorbate, benzoic acid, fixative, benzalkonium bromide, starch, isobutyraldehyde, benzoate, chlorhexidine acetate, sodium acetate, disodium ethylene diamine tetraacetic acid, sodium polyacrylate, hexadecyl dimethyl ethyl ammonium bromide, linoleic acid glycerides, propylene glycol, fatty alcohol-polyoxyethyleneether, sodium chloride, polyethylene glycol, oxalic acid, asarone, beta-sitosterol, sodium humate, fulvic acid, photosynthetic bacteria and deionized water. The high-efficiency slow-release sterilizing composite material has the advantages that the composite material is used for sterilizing the lobster pond, and the excellent slow-release property of bactericide is realized; after the composite material is applied to the pond, the rich inorganic growth auxin is provided for the vegetation at the bottom part of the pond; while the high-efficiency and high-quality sterilizing is guaranteed, themaintaining ability of an ecological system in the pond is improved.

Description

Technical field [0001] The invention relates to the technical field of aquatic sterilization materials, in particular to a high-efficiency slow-release sterilization composite material for lobster ponds. Background technique [0002] my country is a large aquaculture country with a large number of aquaculture species, and the aquaculture production accounts for about 70% of the world's total aquaculture production. However, with the rapid expansion of the scale of breeding, the over-limit of the regional breeding capacity, and the increasingly serious environmental pollution, the domestic breeding ecological environment is deteriorating. In addition, the germplasm of many traditional breeding species has degraded and the disease resistance has declined, which has caused the breeding The incidence of diseases is increasing day by day, and the pathogens are mostly bacterial diseases. The above diseases have become important factors restricting the healthy development of aquaculture ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A01N63/00A01N61/00A01N59/08A01N47/44A01N45/00A01N43/78A01N37/46A01N37/10A01N37/06A01N37/02A01N35/02A01N33/12A01N31/16A01N25/08A01P1/00A01P3/00C05G3/00
CPCA01N25/08A01N31/16A01N33/12A01N35/02A01N37/02A01N37/06A01N37/10A01N37/46A01N43/78A01N45/00A01N47/44A01N59/08A01N61/00A01N63/00C05B7/00C05G3/00A01N2300/00C05C1/00C05C3/00C05C9/00C05D1/02C05D9/00C05D9/02C05F11/02C05F11/08
Inventor 何灿煌
Owner 宿松县辉煌家庭农场
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