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論文

Schiff based ligand containing nano-composite adsorbent for optical copper(II) ions removal from aqueous solutions

Awual, M. R.; Eldesoky, G. E.*; 矢板 毅; Naushad, M.*; 塩飽 秀啓; Alothman, Z. A.*; 鈴木 伸一

Chemical Engineering Journal, 279, p.639 - 647, 2015/11

 被引用回数:251 パーセンタイル:99.3(Engineering, Environmental)

A novel Schiff base ligand based nano-composite adsorbent (NCA) was prepared for the detection and removal of copper (Cu(II)) ions in wastewater samples. Upon the addition of Cu(II) ions to NCA at optimum conditions, the clear color was visible to the naked-eye in the detection system. This NCA exhibited an obvious color change from yellowish to dark green in the presence of Cu(II) ions in aqueous solution. The NCA could detect the Cu(II) ions over other foreign ions with high sensitivity and selectivity. For adsorption behaviour, influences several factors such as solution pH, contact time, concentration for Cu(II) ion adsorption was investigated by batch experiment in detail. The results showed that neutral solution pH was suitable to get optimum Cu(II) ions adsorption.

論文

Ultimate selenium(IV) monitoring and removal from water using a new class of organic ligand based composite adsorbent

Awual, M. R.; 矢板 毅; 鈴木 伸一; 塩飽 秀啓

Journal of Hazardous Materials, 291, p.111 - 119, 2015/06

 被引用回数:250 パーセンタイル:98.99(Engineering, Environmental)

This work reports the selenium (Se(IV)) detection and removal from water by ligand functionalized organic-inorganic based novel composite adsorbent. The adsorbent exhibited distinct color change in the presence of various concentrations of Se(IV). This was characterized by UV-vis spectroscopy, and the color change was observed by naked-eye observation. The data fitted well to the Langmuir isotherm model, and the maximum Se(IV) sorption capacity was 111.12 mg/g. The presence of diverse competing ions did not affect the Se(IV) sorption capacity, and the adsorbent had almost no sorption capacity for these coexisting ions, which suggests the high selectivity to Se(IV) ions.

論文

A Novel facial composite adsorbent for enhanced copper(II) detection and removal from wastewater

Awual, M. R.

Chemical Engineering Journal, 266, p.368 - 375, 2015/04

 被引用回数:642 パーセンタイル:99.94(Engineering, Environmental)

The soft donor atoms containing organic ligand was prepared and then successfully immobilized onto the ordered nanomaterials to form facial adsorbent for copper(II) ions removal from water. The soft donor atoms of this ligand are actively working to make a stable complex formation with Cu(II) at a neutral pH region. It is also noted that the organic ligand was acted as receptors and able to transfer chemical information into analytical signals by charge transfer transudation during the detection operation.

論文

Investigation of ligand immobilized nano-composite adsorbent for efficient cerium(III) detection and recovery

Awual, M. R.; Hasan, M. M.*; Shahat, A.*; Naushad, M.*; 塩飽 秀啓; 矢板 毅

Chemical Engineering Journal, 265, p.210 - 218, 2015/04

 被引用回数:261 パーセンタイル:99.36(Engineering, Environmental)

In this study, the organic ligand of 4-dodecyl-6-((4-(hexyloxy)phenyl)diazenyl) benzene-1,3-diol (DPDB) and mesoporous silica have been used to prepare the nano-composite adsorbent. The nano-composite adsorbent was fabricated by indirect immobilization of DPDB onto the mesoporous silica. The experimental data clarified that the Ce(III) was detected and adsorbed by the adsorbent at pH 2.50. The limit of detection for Ce(III) ions by the adsorbent was 0.12 microgram/L and the sorption capacity was 150.37 mg/g at optimum conditions. The proposed adsorbent allowed the sensitive, selective, easy to use, cost-effective, high efficiency, fast kinetics and stable capturing of Ce(III) ions even in the presence of diverse competing ions.

論文

Colorimetric detection and removal of copper(II) ions from wastewater samples using tailor-made composite adsorbent

Awual, M. R.; Hasan, M. M.*

Sensors and Actuators B; Chemical, 206, p.692 - 700, 2015/01

 被引用回数:223 パーセンタイル:99.69(Chemistry, Analytical)

The nitrogen donor ligand was functionalized with polarable mesoporous silica as composite adsorbent, by a cost-effective and environmentally friendly procedure, for highly selective Cu(II) ions detection and removal from water. The composite adsorbent permitted fast and specific Cu(II) ions capturing via colorimetric naked eye detection based on stable complexation mechanism. The adsorbent was selective toward Cu(II) as shown by a light yellow to green color change. This was characterized by UVvis spectroscopy and the color change was observed for the visual detection of Cu(II) ions. The data also confirmed that the adsorbent is a cost-effective and environmentally friendly procedure for Cu(II) treatment.

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