石油炼制与化工 ›› 2022, Vol. 53 ›› Issue (2): 63-68.

• 催化剂 • 上一篇    下一篇

硅酸锌生成对 S Zorb 吸附剂活性的影响

刘玉良,王文寿,邹亢,徐莉   

  1.  中国石化石油化工科学研究院
  • 收稿日期:2021-05-14 修回日期:2021-10-18 出版日期:2022-02-12 发布日期:2022-01-20
  • 通讯作者: 刘玉良 E-mail:lyl.ripp@sinopec.com

EFFECT OF ZINC SILICATE ON DESULFURIZATION ACTIVITY OF S Zorb ADSORBENT

  • Received:2021-05-14 Revised:2021-10-18 Online:2022-02-12 Published:2022-01-20

摘要: 在小型固定床反应器上,以噻吩模型化合物和催化裂化汽油为S Zorb吸附精制对象,研究了硅酸锌生成对S Zorb吸附剂活性的影响。结果表明:当吸附剂中无硅酸锌生成时,吸附剂脱硫活性较高,穿透硫容(w)达12%以上;当生成硅酸锌的含量较低时,对吸附剂脱硫活性和脱硫选择性影响不大,模型化合物和汽油保持高脱硫率,可以避免过多的烯烃加氢饱和,减少汽油辛烷值损失;硅酸锌含量的大幅增长对吸附剂的载硫能力影响显著,当吸附剂中硅酸锌质量分数为39.4%时,吸附剂的穿透硫容(w)降至2.18%,吸附剂脱硫活性大幅降低。因此,在工业装置的运行中应控制操作条件,尽可能降低硅酸锌的生成。

关键词: S Zorb, 吸附脱硫, 硅酸锌, 失活, 脱硫选择性

Abstract: Effect of zine silicate on desulfurization activity of S Zorb adsorbent was studied in a fixed bed reactor. The results showed that the sorbents had higher desulfurization activity, and the sulfur breakthrough capacity were more than 12% when there was no zinc silicate in the S Zorb adsorbent. The sorbents had little influence on sorbents desulfurization activity and selectivity when the content of zinc silicate was low. The great increase of zinc silicate content had a significant effect on the sulfur carrying capacity of the adsorbent. When the mass fraction of zinc silicate in the adsorbent was 39.4%, the sulfur breakthrough capacity of the adsorbent was decreased to 2.18%, and the desulfurization activity of the adsorbent was decreased greatly. When the mass fraction of zinc silicate in the adsorbent was low, the adsorbent could maintain high desulfurization rate and high desulfurization selectivity, which could avoid excessive olefin hydrogenation saturation and reduce the octane number loss of gasoline. In addition, the increase of zinc silicate in adsorbent could reduce the desulfurization selectivity of the S Zorb adsorbent and lead to more olefin saturation and RON loss while producing gasoline products with sulfur content below 10 μg/g. Therefore in the operation of S Zorb commercial units, the operating conditions should be controlled to reduce the formation of zinc silicate as much as possible.

Key words: S Zorb, adsorption desulfurization, zinc silicate, deactivation, desulfurization selectivity