Silva Neto Luiz D, Meili Lucas, Freire José T
Drying Center of Pastes, Suspensions, and Seeds, Department of Chemical Engineering, Federal University of São Carlos (UFSCar), São Carlos, São Paulo, 13565-905, Brazil.
Laboratory of Processes, Center of Technology, Federal University of Alagoas, Av. Lourival Melo Mota, s/n, Campus A.C. Simões, Tabuleiro do Martins, Maceió, AL, 57072-970, Brazil.
Heliyon. 2024 Apr 13;10(8):e29646. doi: 10.1016/j.heliyon.2024.e29646. eCollection 2024 Apr 30.
Layered Double Hydroxides (LDH) are synthetic materials nanostructured in two dimensions that present positively charged layers with interspersed anions for charge and structure balancing. Being recognized as a promising material for various applications, a complete exploration of its possible attractive properties and its synthesis process is essential. However, drying, a necessary step in the process, is still little studied. This work aimed to produce MgAl-CO/LDH microspheres and calculate the volumetric heat coefficient in spray drying, evaluating the drying air inlet temperature and the concentration of the feed paste in the dryer. LDH synthesis was carried out using the coprecipitation method, maintaining a 2:1 Mg/Al ratio. The infrared spectra presented the bands characteristic of the hydrotalcite-type material. Through XRD, it was possible to observe that the variation in drying air temperature and feed paste concentration produced LDHs with structural differences. The results obtained for the basal spacing ranged from 7.685 to 7.705 Å. Scanning electron microscopy images confirm the production of LDH microspheres, showing variation in the size of the agglomerates with changes in the feed paste concentration. The volumetric heat transfer coefficient values ranged from 4.31 to 5.36 W m K, with only the air inlet temperature significantly influencing the process under the conditions studied.
层状双氢氧化物(LDH)是二维纳米结构的合成材料,其具有带正电荷的层,层间穿插着阴离子以实现电荷和结构平衡。作为一种在各种应用中具有潜力的材料,全面探索其可能具有的吸引人的特性及其合成过程至关重要。然而,干燥作为该过程中的一个必要步骤,仍鲜少被研究。这项工作旨在制备MgAl-CO/LDH微球,并计算喷雾干燥中的体积传热系数,评估干燥空气进口温度和干燥器中进料浆料的浓度。采用共沉淀法进行LDH的合成,保持Mg/Al比为2:1。红外光谱呈现出水滑石型材料的特征谱带。通过X射线衍射(XRD),可以观察到干燥空气温度和进料浆料浓度的变化产生了具有结构差异的LDH。获得的基面间距结果在7.685至7.705 Å之间。扫描电子显微镜图像证实了LDH微球的制备,显示出团聚体尺寸随进料浆料浓度的变化而变化。体积传热系数值在4.31至5.36 W m K之间,在所研究的条件下,只有空气进口温度对该过程有显著影响。