POROUS TITANIUM DIOXIDE/CALCIUM ALGINATE COMPOSITE HYDROGEL FOR PHOTOCATALYTIC DEGRADATION OF WASTEWATER

Fu. Weihao
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Abstract

. Nano-titanium dioxide (TiO 2 ) is one of the most promising photocatalysts. It has the advantages of low cost, non-toxicity, high photocatalytic activity, etc. However, the nano-titanium dioxide has a problem in difficult to recycle and reuse. If it cannot be recycled, nano-titanium dioxide dispersed in water will cause secondary pollution. Since the material that used for current approach for recycling TiO 2 – steel wire, glass beads, ceramic, cotton fabric and other materials- would absorb or block light, the photocatalytic efficiency of titanium dioxide nanoparticles is drastically reduced. In order to improve the photocatalytic efficiency of titanium dioxide nanoparticles, we decided to prepare a titanium dioxide/sodium alginate mixed solution and prepared titanium dioxide/calcium alginate composite hydrogel spheres by calcium chloride cross-linking. The size of a single particle is about 20 nm. By using the spectrometer, under the irradiation of ultraviolet lamp, the photocatalytic efficiency of titanium dioxide nanoparticles can be determined by the rate of the degradation of methyl orange which is the simulation of pollutant. The result of experiment showed that the porous titanium dioxide/ calcium alginate composite hydrogel beads have a higher photocatalytic activity, approximately about an increase of 20% in the degradation of methyl orange after 120 minutes. This experiment has a good reference value for the preparation of high activity and easy recovery photocatalysts in large quantities.
多孔二氧化钛/海藻酸钙复合水凝胶用于光催化降解废水
. 纳米二氧化钛(tio2)是最有前途的光催化剂之一。它具有成本低、无毒、光催化活性高等优点。然而,纳米二氧化钛存在难以回收再利用的问题。如果不能回收利用,分散在水中的纳米二氧化钛会造成二次污染。由于目前用于回收二氧化钛的材料——钢丝、玻璃珠、陶瓷、棉织物和其他材料——会吸收或阻挡光线,因此二氧化钛纳米颗粒的光催化效率大大降低。为了提高二氧化钛纳米颗粒的光催化效率,我们决定制备二氧化钛/海藻酸钠混合溶液,并通过氯化钙交联法制备二氧化钛/海藻酸钙复合水凝胶球。单个粒子的大小约为20纳米。利用分光计,在紫外光照射下,通过模拟污染物甲基橙的降解速率来确定二氧化钛纳米颗粒的光催化效率。实验结果表明,多孔二氧化钛/海藻酸钙复合水凝胶珠具有较高的光催化活性,120分钟后对甲基橙的降解能力提高约20%。本实验对大批量制备高活性、易回收的光催化剂具有很好的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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