Process for desulfurization by reacting hydrogen sulfide with sulfur dioxide
A technology of sulfur dioxide and hydrogen sulfide, which is applied in chemical instruments and methods, sulfur preparation/purification, separation methods, etc., can solve the problems of low purity of solid sulfur products, harsh liquid reaction conditions, and difficult refining, and shorten the reaction time. , The equipment is easy to process and the investment is low.
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Embodiment 1
[0045] use figure 1 The hydrogen sulfide and sulfur dioxide reaction desulfurization process of the device shown is as follows:
[0046] Pure SO 2 The gas is passed into the bottom of the reactor 100 through the gas flow meter I11, and the bottom of the reactor 100 is provided with a gas distributor 101, and the aqueous solution of an organic basic compound is installed in the reactor 100 as a reaction solution, SO 2 The gas is dissolved in the reaction solution after passing through the gas distributor 101. An online pH detector 102 is installed on the wall of the reactor 100. When the pH detector 102 shows 6.8, pure H begins to be introduced into the reactor 100. 2S gas is passed into the reactor 100 after passing through the gas flow meter II12, and the liquid in the reactor 100 quickly turns yellow, which shows that the two react immediately to generate sulfur; the product sulfur in the reactor 100 is released from the reactor along with part of the reaction solution The...
Embodiment 2
[0050] use figure 1 The device shown is a process for reactive desulfurization of hydrogen sulfide and sulfur dioxide:
[0051] Except that the organic basic compound solution is a 20% benzylamine solution, other conditions are the same as in Example 1.
[0052] According to the material balance calculation, H 2 The conversion rate of S was 94.1%.
Embodiment 3
[0054] use figure 1 The device shown is a process for reactive desulfurization of hydrogen sulfide and sulfur dioxide:
[0055] In addition to the organic alkaline compound solution is 20% isopropanolamine solution, SO 2 Gas flow rate is 400mL / min, H 2 Except that the flow rate of S gas is 800mL / min, other conditions are the same as embodiment 1.
[0056] According to the material balance calculation, H 2 The conversion rate of S was 97.7%.
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