Method for preparing boiler water regulator through microbial fermentation method

A microbial fermentation method and water conditioner technology, applied in the field of biochemistry, can solve the problems affecting the long-term safety and stable operation of the steam compressor, no boiler water conditioner, no scale inhibition effect, etc. Improve the effect of anti-fouling and highlight the economic purpose

Active Publication Date: 2018-09-07
侯文燕
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] In recent years, the treatment of boiler water and industrial circulating water (circulating cooling water in nitrogen fertilizer plants, oxygen production workshops and pharmaceutical factories, etc.) is mostly phosphate-based formulations, usually using orthophosphate, pyrophosphate, sodium tripolyphosphate , sodium hexametaphosphate, etc. The above-mentioned water treatment agents have good corrosion and scale inhibition effects and are widely used, but they have the following disadvantages in use: ①PO 4 3- There is no threshold effect on scale inhibition, so it has no inhibitory effect on scale and can only generate Ca 10 (OH) 2 (PO 4 ) 6 Water slag is formed according to

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] A method for preparing a boiler water conditioner by microbial fermentation, the specific process steps comprising:

[0036] (1) Raw material pretreatment: crush seaweed and cotton straw and pass through a 100-mesh sieve; the seaweed is a mixture of kelp and Enteromorpha, and its mass ratio is 1:1;

[0037] (2) Ingredients: 6.8 parts of sodium tannate, 4 parts of glucose, 9.2 parts of seaweed, ethylene glycol derivatives, sodium tannate, glucose, seaweed, ethylene glycol derivatives, cotton straw, starch, and oxygen scavenger 3 parts, 4 parts of cotton stalks, 2 parts of starch, 1 part of oxygen scavenger, and 70 parts of pure water;

[0038] (4) Mixing: Add the mixed raw materials into pure water through the dosing device, and mix evenly;

[0039] (5) Strain activation: activate Aspergillus niger, yeast and Bacillus subtilis as follows:

[0040] The preparation method of the above-mentioned Aspergillus niger seed solution is as follows: under aseptic conditions, the ...

Embodiment 2

[0047] A method for preparing a boiler water conditioner by microbial fermentation, the specific process steps comprising:

[0048] (1) Raw material pretreatment: pulverize Enteromorpha and cotton straw and pass through a 100-mesh sieve;

[0049] (2) Ingredients: 6.8 parts of sodium tannate, 4 parts of glucose, 9.2 parts of seaweed, ethylene glycol derivatives, sodium tannate, glucose, seaweed, ethylene glycol derivatives, cotton straw, starch, and oxygen scavenger 3 parts, 4 parts of cotton stalks, 2 parts of starch, 1 part of oxygen scavenger, and 70 parts of pure water;

[0050] (4) Mixing: Add the mixed raw materials into pure water through the dosing device, and mix evenly;

[0051] (5) Strain activation: activate Aspergillus niger, yeast and Bacillus subtilis as follows:

[0052] The preparation method of the above-mentioned Aspergillus niger seed solution is as follows: under aseptic conditions, the potato medium is used to cultivate at 35-40°C for 24 hours to obtain ...

Embodiment 3

[0059] A method for preparing a boiler water conditioner by microbial fermentation, the specific process steps comprising:

[0060] (1) Raw material pretreatment: pulverize Enteromorpha and cotton straw and pass through a 100-mesh sieve;

[0061] (2) Ingredients: 6.8 parts of sodium tannate, 4 parts of glucose, 9.2 parts of seaweed, ethylene glycol derivatives, sodium tannate, glucose, seaweed, ethylene glycol derivatives, cotton straw, starch, and oxygen scavenger 3 parts, 4 parts of cotton stalks, 2 parts of starch, 1 part of oxygen scavenger, and 70 parts of pure water;

[0062] (4) Mixing: Add the mixed raw materials into pure water through the dosing device, and mix evenly;

[0063] (5) Strain activation: activate Aspergillus niger, yeast and Bacillus subtilis as follows:

[0064] The preparation method of the above-mentioned Aspergillus niger seed solution is as follows: under aseptic conditions, the potato medium is used to cultivate at 35-40°C for 24 hours to obtain ...

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PUM

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Abstract

The invention discloses a method for preparing a boiler water regulator through a microbial fermentation method. The boiler water regulator is composed of the following raw materials in parts by mass:5-10 parts of sodium tannate, 3-5 parts of glucose, 5-12 parts of alga, 3 parts of glycol derivatives, 3-5 parts of cotton straws, 2 parts of starch, 1 part of a deoxidant and the balance of water. According to the boiler water regulator prepared by utilizing the microbial fermentation method, the requirements of the boiler water regulator on raw materials are reduced, and effects of the boiler water regulator are obviously improved by utilizing flocculation of heating modification of micro-proteins; and the regulator does not contain phosphate and hydrazine compounds or any other toxic substance, boiler oxygen corrosion and condensate water corrosion can be controlled, the boiler water concentration multiple can be greatly improved, the boiler blow-down rate is reduced, water resources and heat energy are saved, and aims of energy conservation and emission reduction are achieved.

Description

technical field [0001] The invention relates to a method for preparing a boiler water conditioner by microbial fermentation, in particular to a new type of green and environment-friendly boiler water conditioner that does not contain sulfur and toxic oxygen scavenger based on the resource utilization of seaweed and straw, and belongs to the biochemical industry. field. Background technique [0002] In recent years, the treatment of boiler water and industrial circulating water (circulating cooling water in nitrogen fertilizer plants, oxygen production workshops and pharmaceutical factories, etc.) is mostly phosphate-based formulations, usually using orthophosphate, pyrophosphate, sodium tripolyphosphate , sodium hexametaphosphate, etc. The above-mentioned water treatment agents have good corrosion and scale inhibition effects and are widely used, but they have the following disadvantages in use: ①PO 4 3- There is no threshold effect on scale inhibition, so it has no inhibi...

Claims

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Application Information

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IPC IPC(8): C02F5/10
CPCC02F5/10
Inventor 侯文燕
Owner 侯文燕
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