A high-efficiency inhibitor for coal mines
A chemical inhibitor and high-efficiency technology, which is applied in the field of high-efficiency chemical inhibitor for coal mines, can solve the problems of low resistance efficiency and low resistance efficiency of high-efficiency chemical inhibitor, and achieves improved resistance efficiency, improved resistance effect, The effect of ensuring coal mine safety
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Embodiment 1
[0031] A high-efficiency inhibitor for coal mines consists of the following components:
[0032] Compound (I) 2.5wt%;
[0033] Bis(2,3-dibromopropyl)fumarate 7.5wt%;
[0034] Inorganic flame retardant 10wt%;
[0035] Surfactant 10wt%;
[0036] Sodium percarbonate 10wt%;
[0037] the rest is water;
[0038] Wherein, the inorganic flame retardant is magnesium chloride, and the surfactant is sorbitan fatty acid ester;
[0039] Wherein, the structural formula of compound (I) is as follows:
[0040]
[0041] The preparation process of this inhibitor is as follows:
[0042] A. Mix inorganic flame retardant, surfactant, sodium percarbonate and water in a certain proportion;
[0043] B. Filter the solution with a 1000-mesh filter, cool and let it stand;
[0044] C. Add the solution into the reactor and heat it. The heating temperature is 60° C. and the heating time is 45 minutes;
[0045] D. Stir and add a certain amount of organic flame retardant at the same time, the sti...
Embodiment 2
[0052] The mass fraction of compound (I) and bis(2,3-dibromopropyl) fumarate in Example 1 is replaced by 5wt% and 5wt% respectively, and all the other process parameters, process steps, assay methods and implementation Example 1 is exactly the same. The averaging rate results of Example 2 are listed in Table 2.
Embodiment 3
[0054] The mass fraction of compound (I) and two (2,3-dibromopropyl) fumarate in embodiment 1 is changed to 7.5wt% and 2.5wt% respectively, all the other process parameters, process steps, assay method Exactly the same as Example 1. The average resistivity results of Example 3 are listed in Table 2.
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