State Key Laboratory of Chemical Engineering , East China University of Science and Technology , Shanghai 200237 , China.
Dalian Research Institute of Petroleum and Petrochemicals , SINOPEC , Dalian 116045 , China.
ACS Appl Mater Interfaces. 2018 Jun 20;10(24):20611-20620. doi: 10.1021/acsami.8b05829. Epub 2018 Jun 8.
As a potential candidate for precombustion CO capture at intermediate temperatures (200-400 °C), MgO-based sorbents usually suffer from low kinetics and poor cyclic stability. Herein, a general and facile approach is proposed for the fabrication of high-performance MgO-based sorbents via incorporation of CaCO into MgO followed by deposition of a mixed alkali metal salt (AMS). The AMS-promoted MgO-CaCO sorbents are capable of adsorbing CO at an ultrafast rate, high capacity, and good stability. The CO uptake of sorbent can reach as high as above 0.5 g g after only 5 min of sorption at 350 °C, accounting for vast majority of the total uptake. In addition, the sorbents are very stable even under severe but more realistic conditions (desorption in CO at 500 °C), where the CO uptake of the best sorbent is stabilized at 0.58 g g in 20 consecutive cycles. The excellent CO capture performance of the sorbent is mainly due to the promoting effect of molten AMS, the rapid formation of CaMg(CO), and the plate-like structure of sorbent. The exceptional ultrafast rate and the good stability of the AMS-promoted MgO-CaCO sorbents promise high potential for practical applications, such as precombustion CO capture from integrated gasification combined cycle plants and sorption-enhanced water gas shift process.
作为中温(200-400°C)预燃烧 CO 捕获的潜在候选物,基于氧化镁的吸附剂通常存在动力学性能低和循环稳定性差的问题。在此,提出了一种通用且简便的方法,通过将 CaCO3 掺入 MgO 并随后沉积混合碱金属盐(AMS)来制备高性能的 MgO 基吸附剂。所制备的 AMS 促进的 MgO-CaCO3 吸附剂能够以超快的速率、高容量和良好的稳定性吸附 CO。在 350°C 下仅吸附 5 分钟,吸附剂的 CO 吸收量可高达 0.5 g/g 以上,占总吸收量的绝大部分。此外,即使在更苛刻但更现实的条件(在 500°C 下用 CO 解吸)下,吸附剂也非常稳定,其中最佳吸附剂的 CO 吸收量在 20 次连续循环中稳定在 0.58 g/g。吸附剂具有优异的 CO 捕集性能,主要归因于熔融 AMS 的促进作用、CaMg(CO3)的快速形成以及吸附剂的片状结构。所制备的 AMS 促进的 MgO-CaCO3 吸附剂具有出色的超快速率和良好的稳定性,有望在实际应用中具有很大的潜力,例如从整体煤气化联合循环工厂中预燃烧捕获 CO 和吸附增强水汽变换过程。