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Development of highly porous mullite whisker ceramic membranes for oil-in-water separation and resource utilization of coal gangue

机译:煤矸石油水分离高度多孔莫来石晶须陶瓷膜的研制

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摘要

To realize the recycling of coal gangue and obtain high value-added products, highly porous mullite whisker ceramic microfiltration membranes for the treatment of emulsified oily wastewater were prepared using Al(OH)(3) and coal gangue as primary materials and MoO3 as the additive. By a comparative study on the ceramic membranes with and without MoO3 addition, the sintering reaction process, thermal shrinkage behavior, microstructure, open porosity, flexural strength, pore size distribution, and pure water permeate flux of the ceramic membranes were illuminated. The MoO3 addition enhances mullitization reaction and promotes mullite whisker growth. Through changing the sintering temperature so as to control mullitization reaction and mullite whisker growth, the satisfactory porosity and pore size are achieved for the mullite whisker ceramic membrane sintered at 1400 degrees C. The mullite whisker ceramic microfiltration membrane, possessed a high open porosity of 47.21 +/- 0.48%, the average pore size of 185.3 nm and flexural strength of 34 +/- 2.5 MPa, shows the highest permeability of 35.8 mL.m(-2)s(-1) and above 97% oil rejection when operating at 0.1 MPa trans-membrane pressure in oil-in-water separation experiments.
机译:为了实现煤矸石的再循环,获得高附加值的产品,使用Al(OH)(3)和煤矸石作为初级材料和MOO3作为添加剂制备用于处理乳化油性废水的高度多孔莫来石晶须陶瓷微滤膜。通过对陶瓷膜的比较研究,烧结反应过程,热收缩行为,微观结构,开放孔隙率,弯曲强度,孔隙尺寸分布和陶瓷膜的纯净水渗透通量被照射。 MOO3添加增强了培瘤反应并促进了莫来石晶须生长。通过改变烧结温度以控制瘤瘤反应和莫来石晶须生长,令人满意的孔隙率和孔径为在1400摄氏度下烧结的莫来石晶须陶瓷膜。莫来石晶须陶瓷微滤膜具有47.21的高开孔率+/- 0.48%,平均孔径为185.3nm,弯曲强度为34 +/- 2.5 mpa,显示出35.8ml.m(-2)的最高渗透率(-1),并且在操作时排斥以上97%在水包内分离实验中的0.1MPa跨膜压力下。

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