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Preparation of affordable and multifunctional clay-based ceramic filter matrix for treatment of drinking water

机译:用于治疗饮用水的实惠和多功能粘土陶瓷过滤基质的制备

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摘要

Affordable clay-based ceramic filters with multifunctional properties were prepared using low-cost and active ingredients. The characterization results clearly revealed well crystallinity, structural elucidation, extensive porosity, higher surface area, higher stability, and durability which apparently enhance the treatment efficiency. The filtration rates of ceramic filter were evaluated under gravity and the results obtained were compared with a typical gravity slow sand filter (GSSF). All ceramic filters showed significant filtration rates of about 50-180 m/h, which is comparatively higher than the typical GSSF. Further, purification efficiency of clay-based ceramic filters was evaluated by considering important drinking water parameters and contaminants. A significant removal potential was achieved by the clay-based ceramic filter with 25% and 30% activated carbon along with active agents. Desired drinking water quality parameters were achieved by potential removal of nitrite (98.5%), nitrate (80.5%), total dissolved solids (62%), total hardness (55%), total organic pollutants (89%), and pathogenic microorganisms (100%) using ceramic filters within a short duration. The remarkable purification and disinfection efficiencies were attributed to the extensive porosity (0.202 cm(3) g(-1)), surface area (124.61 m(2) g(-1)), stability, and presence of active nanoparticles such as Cu, TiO2, and Ag within the porous matrix of the ceramic filter.
机译:使用低成本和活性成分制备具有多功能性质的实惠的基于粘土的陶瓷过滤器。表征结果清楚地揭示了结晶度,结构阐明,广泛的孔隙率,高度的表面积,更高的稳定性和耐用性,显然提高了治疗效率。在重力下评价陶瓷过滤器的过滤速率,并将得到的结果与典型的重力慢砂过滤器(GSSF)进行比较。所有陶瓷过滤器显示出约50-180米/小时的显着过滤速率,其比典型的GSSF相对高。此外,通过考虑重要的饮用水参数和污染物来评价粘土基陶瓷过滤器的净化效率。通过粘土基陶瓷过滤器实现显着的去除电位,其具有25%和30%活性炭以及活性剂。期望的饮用水质量参数通过潜在去除亚硝酸盐(98.5%),硝酸盐(80.5%),总溶解固体(62%),总硬度(55%),总有机污染物(89%)和病原微生物( 100%)在短时间内使用陶瓷过滤器。显着的纯化和消毒效率归因于广泛的孔隙率(0.202cm(3 )g(-1)),表面积(124.61m(2)g(-1)),稳定性和存在活性纳米颗粒如Cu ,陶瓷过滤器多孔基质内的TiO2和Ag。

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