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为了研发具有蓄热调温功能的智能纺织品,利用两种储能材料,以溶胶-凝胶法制备二元复合储能溶胶体系;依据Freunallich和Langmul 两种吸附模型,运用硅钼蓝法确定硅含量的方法,详细研究了二元复合储能溶胶在棉织物上的吸附行为.结果表明,吸附过程符合Langmuir吸附模型,且呈一级反应,确立了吸附速率常数及其活化能;处理后的织物具有良好的蓄热调温性能.

参考文献

[1] Sehossig P;Henning H M;Gschwander S et al.[J].Solar Energy Materials & Solar Cells,2005,89:297-306.
[2] Sari A;Sari H;Qnal A .[J].Energy Conversion and Management,2004,45:365-376.
[3] Akiyama T;Yagi J .[J].High Temperature Materials and Processes,2000,19(3-4):219-222.
[4] Ma XiaoGuang .[J].Journal of Applied Polymer Science,2003,90:2288-2292.
[5] Sar A .[J].Energy Conversion and Management,2004,45:2033-2042.
[6] Ye H;Ge X S .[J].Solar Energy Materials & Solar Cells,2000,64:37-44.
[7] Shishoo R.[J].International Journal of Clothing Science and Technology,2002(3-4):201-215.
[8] Xiao M.;Gong KC.;Feng B. .Thermal performance of a high conductive shape-stabilized thermal storage material[J].Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion,2001(3):293-296.
[9] Mahltig B .[J].Journal of Sol-Gel Science and Technology,2004,31:293-297.
[10] Kohjiya S;Ikeda Y .[J].Journal of Sol-Gel Science and Technology,2003,26:495-498.
[11] Yan Bing;Huang Hong-Hua .[J].Journal of Materials Science,2004,39:3529-3531.
[12] Murugesan S;Sur G S;Mark J E .[J].Journal of Inorganic and Organometallic,2004,14(04):239-250.
[13] Yano S;Iwata K;Kurita K .[J].Materials Science and Engineering,2002,6:75-79.
[14] Gill I .[J].Chemistry of Materials,2001,13:3404-3421.
[15] Liu D M;Chen I W .[J].Acta Materialia,2000,47(18):4535-4544.
[16] Walid A .[J].Journal of Sol-Gel Science and Technology,2004,29:25-29.
[17] Liu Fengyi;Fu Lianshe;Wang Jun .Luminescent Thin Film of Doped Terbium Complex Obtained by Sol-Gel Method[J].Journal of Rare Earths,2003(3):322-323.
[18] 宋林艳,马晓光,张莹.二元储能材料的复合及热性能研究[J].天津工业大学学报,2009(04):44-48.
[19] 国标GBl2149-89[S].
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