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机构地区:[1]中南大学冶金科学与工程学院,长沙410083 [2]中南大学化学化工学院,长沙410083
出 处:《中国有色金属学报》2009年第4期744-748,共5页The Chinese Journal of Nonferrous Metals
基 金:国家重点基础研究发展计划资助项目(2005CB623702)
摘 要:基于超细氢氧化铝粒度分布曲线和红外光谱,通过粒子数计算和3700~3000cm^-1间红外光谱分峰拟合,研究了干燥过程中表面活性剂对超细粉体粒度的影响规律。结果表明:加入表面活性剂后,干燥后超细氢氧化铝粒子总数的减少不大于6%;而不加表面活性剂时,粒子总数减少99.98%;同时可能是由于粒度小于0.1μm的粒子易吸附于表面活性剂的原因,干燥过程中的团聚程度较小,而粒径为0.5~10μm的粒子团聚较明显。红外光谱分析结果表明:加入表面活性剂A和B后,在1310cm^-1处出现游离O-H特征峰,同时游离的O-H从32.3%(质量分数)分别增加至39.88%和35.95%,多分子间缔合的O-H特征峰从36.65%分别减少至29.78%和27.79%;这说明表面活性剂的加入可以明显抑制分子间O-H的形成,从而可降低粒子的团聚程度。The influence of surfactant on the particle size and agglomeration mechanism was studied in term of the particle numbers calculated from particle size distribution and multi-peak fitting of IR spectra. The results show that the particle number reduces less than 6% with addition of surfactant, while that reduces 99.98% without adding surfactant. The coarse particle (0.5-10μm) is much easier to be agglomerated than the ultra-fine particle(less than 0.1μm), which maybe due to the easy absorption of surfactant for the ultra-fine particle. The results from IR show that the characteristic peak appears at 1 310 cm^-1 accounting for flee O--H when surfactant is added, and then free O--H increases from 32.30% (mass fraction) to 39.88% and 35.95%, respectively, and O--H in association molecular reduces from 36.65% to 29.78% and 27.79%, respectively. This shows that the agglomeration is inhibited by reducing the amount of O-H in association molecules with addition of surfactant in the drying process.
分 类 号:TF821[冶金工程—有色金属冶金]
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