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Silicoaluminophosphates as CO2 sorbents

机译:硅铝磷酸盐作为二氧化碳吸附剂

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Silicoaluminophosphates (SAPO-17, SAPO-35, SAPO-56 and SAPO-RHO) synthesised via hydrothermal means are tested for their abilities to adsorb carbon dioxide. These 8-ring microporous phosphates show high capacities to adsorb CO2. SAPO-RHO has a high uptake of CO2 and a very low uptake of N2 due to its narrow pore window aperture at 273 K. Its significant uptake of N2 at 77 K is rationalised by a temperature induced shrinkage effect. SAPO-56 has a slightly higher CO2 capacity (5.42 mmol/g, 273 K, 101 kPa) and is less water sensitive than zeolite 13X. Cyclic adsorption and in situ infrared spectroscopy (1R) reveal that SAPOs retain 95% of their original CO2 capacity after six cycles and that adsorption occurs via phys-isorption. The calculated heat of adsorption for CO2 (at 0.2-0.7 mmol/g loading) on SAPO-56 and SAPO-RHO lies in the physisorption range (~35 kJ/mol). SAPOs, in particular SAPO-56 and SAPO-RHO, possess many desirable properties and are potentially good adsorbents for CO2 capture in swing adsorption processes.
机译:测试了通过水热法合成的硅铝磷酸盐(SAPO-17,SAPO-35,SAPO-56和SAPO-RHO)吸附二氧化碳的能力。这些8环微孔磷酸盐显示出高的吸收CO2的能力。 SAPO-RHO由于在273 K处狭窄的孔窗口孔径而具有较高的CO2吸收量和非常低的N2吸收量。温度诱导的收缩效应可合理地使其在77 K时的大量N2吸收量。 SAPO-56的CO2容量略高(5.42 mmol / g,273 K,101 kPa),并且对水的敏感性低于13X沸石。循环吸附和原位红外光谱(1R)表明,SAPO在六个循环后保留了其原始CO2容量的95%,并且吸附是通过物理吸附发生的。在SAPO-56和SAPO-RHO上计算出的CO2吸附热(0.2-0.7 mmol / g负载)在物理吸附范围内(约35 kJ / mol)。 SAPO,特别是SAPO-56和SAPO-RHO,具有许多理想的性能,并且是在摆动吸附过程中捕获CO2的潜在良好吸附剂。

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