Preparation method for ethyne hydrochlorination homogeneous complex catalyst
An acetylene hydrochlorination and catalyst technology, which is applied to the preparation of acetylene hydrochlorination homogeneous complex catalysts and the field of acetylene hydrochlorination homogeneous complex catalysts, can solve the problems of poor catalytic conversion effect and short service life, and achieves the Long use time, many catalytic active sites, good catalytic conversion effect
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Embodiment 1
[0022] In terms of weight percentage, the finished complex catalyst contains 6.5% of mercuric chloride and 4% of potassium chloride for calculation, and based on this, related solutions are prepared. This embodiment includes the following steps:
[0023] Step 1: Activated carbon pretreatment: Treat the activated carbon with hydrochloric acid solution, the pH value of the hydrochloric acid solution is ≤3, the temperature is 75-100°C, and the treatment time is 1 hour;
[0024] Step 2: Prepare the mercury chloride aqueous solution by stirring in the dissolution tank, and adjust the pH value to ≤3 with hydrochloric acid solution;
[0025] Step 3: Step 2) adds potassium chloride by stirring in the solution prepared to generate complex potassium tetrachloromercurate solution, and the amount of substance added by potassium chloride is 2 times of the amount of mercuric chloride substance in the solution ;
[0026] Step 4: impregnate the activated carbon with the complex potassium te...
Embodiment 2
[0030] In terms of weight percentage, the finished complex catalyst contains 6.5% of mercuric chloride and 4% of potassium chloride for calculation, and based on this, related solutions are prepared. This embodiment includes the following steps:
[0031] Step 1: Activated carbon pretreatment: Activated carbon is treated with hydrochloric acid solution, the pH value of the hydrochloric acid solution is ≤3, the temperature is 50°C, and the treatment time is 1 hour;
[0032] Step 2: Prepare the mercury chloride aqueous solution by stirring in the dissolution tank, and adjust the pH value to ≤3 with hydrochloric acid solution;
[0033] Step 3: Separately configure potassium chloride solution in another soaking tank, its pH value is less than or equal to 3, and the amount of potassium chloride in the solution is twice the amount of mercuric chloride in the solution;
[0034] Step 4: First impregnate the activated carbon with the mercuric chloride solution prepared in step 2), the ...
Embodiment 3
[0038] In terms of weight percentage, the finished complex catalyst contains 5% of mercuric chloride and 3% of potassium chloride for calculation, and based on this, related solutions are prepared. This embodiment includes the following steps:
[0039] Step 1: Activated carbon pretreatment: Activated carbon is treated with hydrochloric acid solution, the pH value of the hydrochloric acid solution is ≤3, the temperature is 50°C, and the treatment time is 1 hour;
[0040] Step 2: Prepare the mercury chloride aqueous solution by stirring in the dissolution tank, and adjust the pH value to ≤3 with hydrochloric acid solution;
[0041] Step 3: in the solution that step 2) prepares, add potassium chloride by stirring mode, generate complex potassium tetrachloromercuric acid solution, the amount of the substance that potassium chloride adds is 2% of the amount of mercuric chloride substance in the solution times;
[0042] Step 4: impregnate activated carbon with the complex potassiu...
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