冰模板法制备Sm0.5Sr0.5CoO3多孔陶瓷及光热转换性能研究任务书

 2021-10-20 07:10

1. 毕业设计(论文)的内容和要求

能源和水是人类生存最基本要素,是社会发展的两大重要战略需求。

利用太阳能进行海水淡化及水处理,是可持续发展过程中能源、环境和水资源领域共同的关注焦点。

然而传统的太阳能驱动海水淡化系统的的光热转换与蒸汽发生两个过程是分开的,导致系统的热量损失大,蒸发效率低。

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2. 参考文献

[1] DENG R, XIE L, LIN H, et al. 2010. Integration of thermal energy and seawater desalination[J]. Energy, 35(11): 4368-74.[2] GAO M, ZHU L, PEH C K, et al. 2019. Solar absorber material and system designs for photothermal water vaporization towards clean water and energy production[J]. Energy 36 (2015).[5] E. Munch, M. E. Launey, D. H. Alsem, E. Saiz, A. P. Tomsia, R. O. Ritchie, Tough, bio-inspired hybrid materials. Science 322, 15161520 (2008).[6] C. Chen, J. Song, S. Zhu, Y. Li, Y. Kuang, J. Wan, D. Kirsch, L. Xu, Y. Wang, T. Gao, Y. Wang, H. Huang, W. Gan, A. Gong, T. Li, J. Xie, L. Hu, Scalable and sustainable approach toward highly compressible, anisotropic, lamellar carbon sponge. Chem 4, 544554 (2018).[7] S. Deville, E. Saiz, R. K. Nalla, A. P. Tomsia, Freezing as a path to build complex composites. Science 311, 515518 (2006).[8] Z.-Z. Pan, H. Nishihara, S. Iwamura, T. Sekiguchi, A. Sato, A. Isogai, F. Kang, T. Kyotani, Q.-H. Yang, Cellulose nanofiber as a distinct structure-directing agent for xylem-like microhoneycomb monoliths by unidirectional freeze-drying. ACS Nano 10, 1068910697 (2016).[9] M. Fukushima, Y.-i. Yoshizawa, Fabrication of highly porous honeycomb-shaped mullitezirconia insulators by gelation freezing. Adv. Powder Technol. 27, 908913 (2016).[10] M. A. Meyers, P.-Y. Chen, A. Y.-M. Lin, Y. Seki, Biological materials: Structure and mechanical properties. Prog. Mater. Sci. 53, 1206 (2008).[11] M. C. Gutirrez, M. L. Ferrer, F. del Monte, Ice-templated materials: Sophisticated structures exhibiting enhanced functionalities obtained after unidirectional freezing and ice-segregation-induced self-assembly. Chem. Mater. 20, 634648 (2008).

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