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Surface Properties Characterization of Local Eichornia crassipes Biosorbent

机译:局部Eichornia Crassipes生物吸附剂的表面特性表征

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Eichornia crassipes is potentially used as biosorbent of high metal. There are still incomplete data about the surface properties of local Eichornia crassipes biomass. The objective of this research is to obtain surface acidity, specific surface area, and pore structure of Eichornia crassipes biosorbent. Eichornia crassipes plant obtains form Selorejo belly Ngantang District area of Malang, East Java, Indonesia. Samples characterized were root, stem and leaf part. Surface acidity characterization was carried out on unwashed and washed samples by variation of HC1. Surface acidity was determined by acid-base titration, the specific surface area was measured by methylene blue and stereological analysis method and pore structure were analyzed by optical and SEM. The results showed that surface acidity of unwashed biosorbent on the root, stem, and leaf was small compared to surface acidity of washed biosorbent. The specific surface area of root, stem and leaf measured by methylene blue method seemed alike. Stereological analysis of specific surface area showed a more varying number. Pore structure described by SEM for root was in the form of a round hole, trilateral and spasmodic, whereas the stem pores were resembling to a piece of broken pipe while leaf pores were a coral stone-like.
机译:Eichornia沉思杆可能用作高金属的生物吸附剂。关于本地Eichornia沉思生物质的表面特性仍有不完整的数据。该研究的目的是获得Eichornia Crassipes生物吸附剂的表面酸度,比表面积和孔隙结构。 Eichornia Crassipes Plant获得了印度尼西亚东爪哇省玛朗的Selorejo Belly Ngantang区地区。表征的样品是根,茎和叶部分。通过HCl的变异,在未洗涤的和洗涤的样品上进行表面酸度表征。表面酸度通过酸碱滴定测定,通过亚亚亚亚亚甲基和立体分析法测量比表面积,通过光学和SEM分析孔隙结构。结果表明,与洗涤的生物吸附剂的表面酸度相比,根,茎和叶片上未洗过的生物吸附剂的表面酸度小。通过亚甲基蓝方法测量的根,茎和叶的比表面积似乎是相似的。特定表面积的立体学分析显示了更大的数量。 SEM用于根的孔结构是圆孔,三边和痉挛的形式,而茎孔类似于一块破管,而叶毛孔是珊瑚石状。

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