Solid desulfuration adsorbent and preparation method and application thereof
An adsorbent and solid technology, which is applied in the field of solid desulfurization adsorbent and its preparation and application, can solve the problems of low adsorption purification depth, low sulfur capacity, and poor desulfurization selectivity, and achieve improved adsorption selectivity, high adsorption capacity, and improved The effect of sulfur capacity
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Embodiment 1
[0024] Contains Cu 2+ The preparation process of the solid desulfurization adsorbent of ion-exchanged NaY molecular sieve and activated alumina is as follows. First prepare Cu(NO) with a mass concentration of 5% 3 ) 2 solution, add NaY molecular sieve original powder, and stir at 60°C for 12 hours. Filter, rinse with deionized water. Repeat the above operation three times. Then, it was molded with alumina as a binder, dried naturally, and calcined in the air at 500° C. for 2 hours. Grinding 10-20 mesh, drying at 500 ℃ until the quality is no longer reduced, to obtain a solid desulfurization adsorbent.
[0025] The adsorption and purification performance evaluation of low-concentration methyl mercaptan in isobutene was carried out on a fixed bed device. The experimental conditions are: 2.0MPa, 30℃, the content of methyl mercaptan in isobutene is about 200ppmv, and the liquid volume space velocity is 2 hours -1 , the adsorbent particle diameter is 830-1700 μm, and the bed h...
Embodiment 2~20
[0027] The solid adsorbent was prepared and evaluated according to the various steps and conditions of [Example 1]. Only the composition or preparation conditions were changed, the changed conditions are listed in Table 1, and the evaluation results thereof are listed in Table 2.
[0028] Table 1
[0029]
[0030] Table 2
[0031]
[0032] *The measurement condition of the equilibrium adsorption amount of isobutene is 30°C.
Embodiment 21
[0034] According to the method and preparation steps of [Example 1], with Al 2 O 3 As a binder, the NaY molecular sieve exchanged with a mixed solution of two salts of copper acetate and lithium acetate is molded to obtain an adsorbent. The prepared ion exchange solution contains 5% copper acetate and 5% nickel acetate. The obtained solid adsorbent is Al in weight fraction 2 O 3 40 parts, the rest is Cu 2+ and Ni 2+ Two ion-exchanged NaY molecular sieves. According to the same evaluation conditions of [Example 1], the breakthrough adsorption capacity of methyl mercaptan is 20.1 mg / g adsorbent, and the content of methyl mercaptan after purification is lower than 0.5 ppmv.
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