Ibadat Nur Faezah, Saallah Suryani, Ongkudon Clarence M, Misson Mailin
Bioprocess Engineering Research Group, Biotechnology Research Institute, Universiti Malaysia Sabah, Jalan UMS, Kota Kinabalu 88400, Sabah, Malaysia.
Materials (Basel). 2021 Nov 25;14(23):7165. doi: 10.3390/ma14237165.
Porous monoliths prepared using templates are highly sought after for filtration applications due to their good mass transport properties and high permeability. Current templates, however, often lead to the formation of dead-end pores and irregular pore distributions, which reduce the efficiency of the substrate flow across the monolith column. This study focused on the preparation of a microsphere-templated porous monolith for wastewater filtration. The optimal template/monomer ratio (50:50, 60:40, 70:30) was determined, and appropriate template removal techniques were assessed for the formation of homogenous pores. The physicochemical characteristics and pore homogeneity of the monoliths were examined. The 60:40 ratio was determined to result in monoliths with homogeneous pore distributions ranging from 1.9 μm to 2.3 μm. SEM and FTIR investigations revealed that solvent treatment was effective for removing templates from the resulting solid monolith. The water quality assessments revealed reductions in the turbidity and the total number of suspended particles in the tested wastewater of up to 96-99%. The findings of this study provide insightful knowledge regarding the fabrication of monoliths with homogenous pores that are beneficial for wastewater treatment.
由于具有良好的传质性能和高渗透性,使用模板制备的多孔整体材料在过滤应用中备受青睐。然而,目前的模板往往会导致死端孔的形成和不规则的孔分布,从而降低了底物流过整体柱的效率。本研究聚焦于制备用于废水过滤的微球模板多孔整体材料。确定了最佳模板/单体比例(50:50、60:40、70:30),并评估了合适的模板去除技术以形成均匀的孔。对整体材料的物理化学特性和孔均匀性进行了研究。确定60:40的比例会产生孔分布均匀、范围在1.9μm至2.3μm之间的整体材料。扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)研究表明,溶剂处理对于从所得固体整体材料中去除模板是有效的。水质评估显示,测试废水中的浊度和悬浮颗粒总数最多可降低96 - 99%。本研究结果为制备对废水处理有益的具有均匀孔的整体材料提供了有见地的知识。