中国有色金属学报(英文版)
中國有色金屬學報(英文版)
중국유색금속학보(영문판)
Transactions of Nonferrous Metals Society of China
2015年
10期
3475-3483
,共9页
方富强%刘亚辉%孟凡成%王伟菁%薛天艳%齐涛
方富彊%劉亞輝%孟凡成%王偉菁%薛天豔%齊濤
방부강%류아휘%맹범성%왕위정%설천염%제도
硫酸钛溶液%水解过程%生长模型%硫酸镁%硫酸铝%颗粒粒径
硫痠鈦溶液%水解過程%生長模型%硫痠鎂%硫痠鋁%顆粒粒徑
류산태용액%수해과정%생장모형%류산미%류산려%과립립경
titanyl sulfate solution%hydrolysis process%growth model%magnesium sulfate%aluminum sulfate%particle size
研究硫酸钛溶液中作为杂质的硫酸镁和硫酸铝对 TiOSO4水解过程的影响。考察水解过程中,钛的转化率和偏钛酸粒径随硫酸钛溶液中硫酸镁和硫酸铝浓度的变化情况。采用Boltzmann生长模型拟合水解率曲线,可得到较好的拟合结果且R2>0.988。使用ICP、SEM、XRD和激光粒度仪对样品进行表征。结果表明,硫酸镁能够同时提高水解速率和最终的水解率,当硫酸钛溶液的F值(硫酸与TiO2的质量浓度比)较高时,这种趋势尤为明显(水解率由42.8%提高至83.0%),而硫酸铝对水解率的影响不明显(水解率由42.8%提高至51.9%)。通过对偏钛酸粒径的考察发现,硫酸镁和硫酸铝均能够明显地增加微晶粒径及减小偏钛酸聚集体粒径。
研究硫痠鈦溶液中作為雜質的硫痠鎂和硫痠鋁對 TiOSO4水解過程的影響。攷察水解過程中,鈦的轉化率和偏鈦痠粒徑隨硫痠鈦溶液中硫痠鎂和硫痠鋁濃度的變化情況。採用Boltzmann生長模型擬閤水解率麯線,可得到較好的擬閤結果且R2>0.988。使用ICP、SEM、XRD和激光粒度儀對樣品進行錶徵。結果錶明,硫痠鎂能夠同時提高水解速率和最終的水解率,噹硫痠鈦溶液的F值(硫痠與TiO2的質量濃度比)較高時,這種趨勢尤為明顯(水解率由42.8%提高至83.0%),而硫痠鋁對水解率的影響不明顯(水解率由42.8%提高至51.9%)。通過對偏鈦痠粒徑的攷察髮現,硫痠鎂和硫痠鋁均能夠明顯地增加微晶粒徑及減小偏鈦痠聚集體粒徑。
연구류산태용액중작위잡질적류산미화류산려대 TiOSO4수해과정적영향。고찰수해과정중,태적전화솔화편태산립경수류산태용액중류산미화류산려농도적변화정황。채용Boltzmann생장모형의합수해솔곡선,가득도교호적의합결과차R2>0.988。사용ICP、SEM、XRD화격광립도의대양품진행표정。결과표명,류산미능구동시제고수해속솔화최종적수해솔,당류산태용액적F치(류산여TiO2적질량농도비)교고시,저충추세우위명현(수해솔유42.8%제고지83.0%),이류산려대수해솔적영향불명현(수해솔유42.8%제고지51.9%)。통과대편태산립경적고찰발현,류산미화류산려균능구명현지증가미정립경급감소편태산취집체립경。
The influence of magnesium and aluminum salts as impurities on the hydrolysis of titanyl sulfate was investigated. The degree of TiOSO4 conversion to hydrated titanium dioxide (HTD) and the particle size of HTD were measured as functions of the concentrations of MgSO4 and Al2(SO4)3 in the TiOSO4 solution. The Boltzmann growth model, which focuses on two main parameters, namely the concentrations of Mg2+and Al3+(ρ(Mg2+) andρ(Al3+), respectively), fits the data from the hydrolysis process well with R2>0.988. The samples were characterized by ICP, SEM, XRD, and laser particle size analyzer. It is found that the addition of MgSO4 simultaneously improves the hydrolysis ratio and the hydrolysis rate, especially when F (the mass ratio of H2SO4 to TiO2) is high, hydrolysis ratio increases from 42.8% to 83.0%, whereas the addition of Al2(SO4)3 has negligible effect on the chemical kinetics of HTD precipitation during the hydrolysis process, hydrolysis ratio increases from 42.8%to 51.9%. An investigation on the particle size of HTD reveals that the addition of MgSO4 and Al2(SO4)3 clearly increases the size of the crystallites and decreases the size of the aggregates.