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New Composite Water Sorbents CaCl2-PHTS for Low-Temperature Sorption Heat Storage: Determination of Structural Properties

机译:用于低温吸附储热的新型复合吸水剂CaCl2-PHTS:结构性质的确定

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摘要

Sorption heat storage, as one of low-energy consuming technologies, is an approach to reduce CO2 emissions. The efficiency of such technology is governed by the performance of the applied sorbents. Thus, sorbents with high water sorption capacity and regeneration temperature from 80 to 150 °C are required. Incorporation of hygroscopic salt such as calcium chloride into porous materials is a logical strategy for increasing the water sorption capacity. This work reports the study on the development of composites with PHTS (plugged hexagonal templated silicate) matrix with an average pore size of 5.7 nm and different amounts of calcium chloride (4, 10, 20 wt.%) for solar thermal energy storage. These composites were prepared by wetness incipient impregnation method. Structural properties were determined by X-ray diffraction (XRD), nitrogen physisorption, scanning electron microscopy (SEM) and transmission electron microscopy (TEM). CaCl2 was confined in micro- and mesopores of the matrix. The resulting CaCl2-PHTS materials were used for water sorption at 40 °C, showing an increase of maximal water uptake with higher amount of calcium chloride from 0.78 g/g to 2.44 g/g of the dry composite. A small reduction in water uptake was observed after 20 cycles of sorption/desorption between temperatures of 140 °C and 40 °C, indicating good cycling stability of these composites under the working conditions.
机译:吸附式储热作为一种低能耗技术,是一种减少二氧化碳排放的方法。这种技术的效率取决于所应用吸附剂的性能。因此,需要具有高吸水能力和80至150°C再生温度的吸附剂。将吸湿盐(例如氯化钙)掺入多孔材料中是提高吸水能力的逻辑策略。这项工作报告了关于开发具有PHTS(塞入六角形模板化硅酸盐)基质的复合材料的研究,该基质具有5.7 nm的平均孔径和不同量的太阳能热储存氯化钙(4、10、20 wt。%)。这些复合材料是通过湿法初期浸渍法制备的。通过X射线衍射(XRD),氮物理吸附,扫描电子显微镜(SEM)和透射电子显微镜(TEM)确定结构性质。 CaCl 2被限制在基质的微孔和中孔中。所得的CaCl2-PHTS材料在40°C下用于水吸附,显示出较高的最大吸水量,而干燥的复合材料中氯化钙的量从0.78 g / g增加到2.44 g / g。在140°C和40°C之间的温度下进行20次吸附/解吸循环后,观察到吸水率略有下降,表明这些复合材料在工作条件下具有良好的循环稳定性。

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