A recovery and treatment device for waste gas containing chlorosilane
A technology for recycling and processing chlorosilanes, applied in the directions of halosilanes, halogenated silicon compounds, lighting and heating equipment, etc., which can solve the problems of non-recyclability, pollution of the surrounding environment, and large amount of eluent, and improve the recycling rate. , Overcome technical deficiencies and achieve the effect of recycling
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Embodiment 1
[0030] Such as figure 1 As shown, this embodiment provides a recovery and treatment device for chlorosilane-containing waste gas, including: a chlorosilane recovery unit, a chlorosilane washing unit and a tail gas venting unit.
[0031] Wherein, the chlorosilane waste gas includes nitrogen, hydrogen, hydrogen chloride gas, chlorosilane gas and impurities such as B and P, and the impurities such as B and P include: PCl 3 (phosphorus trichloride), PCl 5 (phosphorus pentachloride), BCl 5 (boron pentachloride) and PH 3(phosphine), and chlorides of B (boron), P (phosphorus); chlorosilane (chlorosilane) is silane (SiH 4 ) in which hydrogen atoms are replaced by chlorine atoms, which is a gas when the chlorine content is low, and a liquid when the chlorine content is high, and the general formula is SiH n Cl 4-n , n=0,1,2,3.
[0032] The chlorosilane recovery unit is connected with the chlorosilane washing unit, and is used for recovering part of the chlorosilane gas in the chl...
Embodiment 2
[0055] Such as figure 2 As shown, this embodiment provides a recycling and processing device for chlorosilane-containing waste gas, including: a frozen brine precooler 2, a booster 6, an absorption tower 8, a circulation pump 11, a deep cooler 12, a resin adsorption column 15, Mixing subunit 18, rinsing tower 19, stirring subunit 20, spray head 21, booster pump 24, water seal tank 28.
[0056] The operating principle of the recycling device is:
[0057] After the chlorosilane waste gas 1 enters the frozen brine precooler 2, part of the chlorosilane gas forms a chlorosilane condensate 3, and is delivered to the recovery system 4, while the remaining chlorosilane waste gas 5 (i.e. not described in Example 1) The chlorine-containing silane exhaust gas that forms condensate) enters the booster 6, and after being pressurized by the booster 6 to 0.05MPaG-0.2MPaG, it becomes a high-pressure exhaust gas 7. After the high-pressure exhaust gas 7 enters the absorption tower 8, it enter...
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