1 引言
2 结果与讨论
图1 (a) Mn-DHBQ的3D网络结构; (b) Mn-DHBQ的一维链结构; (c) Mn-DHBQ脱除水后的的孔道结构Figure 1 (a) 3D network structure of Mn-DHBQ; (b) 1D chain structure of Mn-DHBQ; (c) Channel structure of Mn-DHBQ after dehydration C: gray; O: red; Mn: purple; H: cyan |
图2 (a)不同制备方法或处理后的Mn-DHBQ样品PXRD图谱; (b) Mn-DHBQ和放大制备样品在77 K条件下的N2吸附等温线; (c) 298 K条件下CH4和N2吸附等温线; (d) Mn-DHBQ在273 K和298 K条件下对CH4/N2 (V/V, 50/50)的IAST选择性Figure 2 (a) PXRD Patterns of Mn-DHBQ samples prepared under different conditions; (b) N2 adsorption isotherms at 77 K of Mn-DHBQ samples synthesized in different scales; (c) CH4 and N2 adsorption isotherms at 298 K; (d) IAST selectivity of Mn-DHBQ for CH4/N2 (V/V, 50/50) at 273 K and 298 K |
图4 (a) 298 K条件下, Mn-DHBQ对等体积CH4/N2混合气体穿透曲线; (b) 298 K, Mn-DHBQ对等体积CH4/N2混合气体穿透进行三次循环; (c) Mn-DHBQ放大制备; (d) 298 K, 不同条件制备的Mn-DHBQ对CH4/N2穿透曲线图Figure 4 (a) Breakthrough curves of the equal-volume CH4/N2 on Mn-DHBQ at 298 K; (b) Breakthrough curves of the equal-volume CH4/N2 gas mixture on Mn-DHBQ were performed for three cycles at 298 K; (c) Scale-up synthesis of Mn-DHBQ; (d) Breakthrough curve of CH4/N2 on Mn-DHBQ prepared under different conditions at 298 K |