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以硫酸钛为钛源,粉煤灰厚壁空心微珠为基体,采用化学沉积和900~1000℃煅烧2 h 的联合工艺制备了表面镀覆金红石型 TiO2的功能性粉煤灰微珠.借助激光粒度分析仪、X射线衍射仪、场发射扫描电子显微镜、X 射线能谱仪等表征技术对包覆前后微珠粒径分布、化学成分、表面形貌和结构进行了对比分析.275 W红外灯对上表面分别涂抹掺原微珠涂料和掺功能性微珠(占涂料质量的20%)涂料的水泥砂浆基板照射2 h,后者基板下表面温度比前者约低1.4℃,这是粉煤灰微珠表面金红石型 TiO2热反射效应作用的结果.

The functionality fly ash microsphere plated rutile TiO2 was prepared by means of the union process of chemical sedimentation and burned of 2 h at 900-1 000 ℃ with the matrix of fly ash thick wall microspheres the titanium source of titanium sulfate.The size distribution,chemical composition,surface morphology and struc-ture of un-cladding and cladding microsphere were comparatively analyzed by the characterization techniques of laser particle size analyzer,SEM,XRD,and EDS.The upper surfaces of the cement mortar base plates,which were painted respectively exterior wall coating material adding original microsphere or adding functionality mi-crosphere (20% of coating material mass)coating material,were continuously irradiated for 2 h under a infra-red lamp of 275 kW.The temperature of the bottom side of the latter base plate was lower about 1.4 ℃ than that of the bottom side of the former base plate.This was the consequence of heat reflection effect of rutile TiO2 cladding on the surface of fly ash microsphere.

参考文献

[1] Liu Xiaohong;Liu Zhichun .Research on preparing hollow fly-ash beads by low waste technology in thermal[J].Safety and Environmental Engineering,2011,18(05):29-32.
[2] Weinberger B;Garber R.Titanium dioxide photocatalysts produced by reactive magnetron sputtering[J].Applied Physics Letters,1995(66):2409.
[3] Vorotilov K;Orlova E;Petrovsky V.Sol-gel TiO2 films on silicon substrates[J].THIN SOLID FILMS,1992(207):180.
[4] Fu Chunlin;Wei Xiwen.Progress in study of the transi-tion of crystal form of TiO2[J].Paint & Coatings Indus-try,1999(02):28-30.
[5] 孙秀果,张建民,彭政.包覆沉淀法制备氧化硅改性的纳米二氧化钛及其性质[J].功能材料,2007(11):1898-1900,1907.
[6] 文明芬,王秋萍,陈靖,景山,宋崇立.纳米二氧化钛晶型互变的研究[J].功能材料,2004(05):651-653.
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