Hebei Key Laboratory of Inorganic Nano-Materials, College of Chemistry and Material Sciences, Hebei Normal University, Shijiazhuang 050024, China.
Hebei Key Laboratory of Innovative Drug Research and Evaluation, College of Pharmaceutical Sciences, Hebei Medical University, Shijiazhuang 050017, China.
Molecules. 2022 Aug 11;27(16):5129. doi: 10.3390/molecules27165129.
Efficient removal of cumene from gaseous streams and recovery of its derivatives was accomplished using a MCM-41-supported sulfuric acid (SSA/MCM-41) adsorbent. The results indicated that the removal performance of the SSA/MCM-41 for cumene was significantly influenced by the process conditions such as bed temperature, inlet concentration, bed height, and flow rate. The dose-response model could perfectly describe the collected breakthrough adsorption data. The SSA/MCM-41 adsorbent exhibited a reactive temperature region of 120-170 °C, in which the cumene removal ratios () were greater than 97%. Rising the bed height or reducing the flow rate enhanced the theoretical adsorption performance metrics, such as theoretical breakthrough time () and theoretical breakthrough adsorption capacity (), whereas increasing the inlet concentration resulted in shortening and rising. As demonstrated in this paper, the highest and were 69.60 min and 324.50 mg g, respectively. Meanwhile, the spent SSA/MCM-41 could be desorbed and regenerated for cyclic reuse. Moreover, two recoverable adsorbed products, 4-isopropylbenzenesulfonic acid and 4, 4'-sulfonyl bis(isopropyl-benzene), were successfully separated and identified using FTIR and H/C NMR characterization. Accordingly, the relevance of a reactive adsorption mechanism was confirmed. This study suggests that the SSA/MCM-41 has remarkable potential for application as an adsorbent for the resource treatment of cumene pollutants.
采用介孔分子筛 MCM-41 负载硫酸(SSA/MCM-41)吸附剂,实现了从气态物流中高效去除异丙苯及其衍生物并回收的目标。结果表明,SSA/MCM-41 对异丙苯的去除性能受床层温度、入口浓度、床层高度和流速等工艺条件的显著影响。剂量响应模型能够完美描述收集到的穿透吸附数据。SSA/MCM-41 吸附剂表现出 120-170°C 的反应温度区域,在此温度区域内,异丙苯的去除率()大于 97%。增加床层高度或降低流速可提高理论吸附性能指标,如理论穿透时间()和理论穿透吸附容量(),而增加入口浓度则会导致缩短和上升。如本文所示,最高和分别为 69.60 min 和 324.50 mg g。同时,失活的 SSA/MCM-41 可以通过解吸和再生进行循环再利用。此外,还使用 FTIR 和 H/C NMR 表征成功分离和鉴定了两种可回收吸附产物,即 4-异丙基苯磺酸和 4,4'-亚磺酰基二(异丙基苯)。因此,证实了反应性吸附机制的相关性。本研究表明,SSA/MCM-41 作为吸附剂在异丙苯污染物的资源处理方面具有显著的应用潜力。