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Development of Absorbent Using Amylose-Graphite Composite Electrode for Removal of Heavy Metals

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Title: Development of Absorbent Using Amylose-Graphite Composite Electrode for Removal of Heavy Metals
Authors: Li, Shuang Browse this author
Mokhtar, Guizani Browse this author
Ito, Ryusei Browse this author →KAKEN DB
Kawaguchi, Toshikazu Browse this author →KAKEN DB
Keywords: absorbent
heavy metal
amylose
graphite
absorption isotherm
Issue Date: Dec-2021
Publisher: MDPI
Journal Title: Membranes
Volume: 11
Issue: 12
Start Page: 930
Publisher DOI: 10.3390/membranes11120930
Abstract: Amylose of Phragmites Australis captures heavy metals in a box consisting of sugar chains. However, its absorption rate is low in the period of the month scale. Therefore, the electrochemical driving force was used to promote the absorption rate in this research. Amylose was doped with TiO2 porous graphite electrode. The composted absorbent was characterized using XRD(X-ray diffraction), SEM (Scanning Electrode Microscopy), Raman spectroscopy, and electrochemical methods. The affinity and maximum absorption amount were calculated using the isotherm method. In this study, Pb2+, Cu2+, Cd2+, and Cr6+ were chosen to demonstrate because these heavy metals are significant pollutants in Japan's surface water. It was found that the maximum absorption was Cu2+ (56.82-mg/L) > Pb2+ (55.89-mg/L) > Cr6+ (53.97-mg/L) > Cd2+ (52.83.68-mg/L) at -0.5 V vs. Ag/AgCl. This is approximately the same order as the hydration radius of heavy metals. In other words, the absorption amounts were determined by the size of heavy metal ions. Subsequently, the mixed heavy metal standard solution was tested; the maximum absorption amount was 21.46 +/- 10.03 mg/L. It was inferred that the electrochemical driving force could be shown as the ion size effect in the mixed solution. Despite there being no support for this hypothesis at this time, this study succeeded in showing that the electrochemical driving force can improve the ability of the absorbent.
Type: article
URI: http://hdl.handle.net/2115/84065
Appears in Collections:環境科学院・地球環境科学研究院 (Graduate School of Environmental Science / Faculty of Environmental Earth Science) > 雑誌発表論文等 (Peer-reviewed Journal Articles, etc)

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