Javascript must be enabled to continue!
ADSORPTION OF URANIUM SIMULATION WASTE USING BENTONITE:TITANIUM DIOXIDE
View through CrossRef
ADSORPTION OF URANIUM SIMULATION WASTE USING BENTONITE TANIUM DIOXIDE. Bentonite is a clay material of high surface area that have galleries within its structure. Bentonite that is modified with TiO2 will have high adsorption capability. In this study, natural bentonite and bentonite:TiO2 were characterized with FTIR, XRD and BET instruments to determine functional group, basal spacing, and specific surface area. This study also investigates the adsorption of bentonite:TiO2 in various environmental factors, such as pH (pH 1, 3, 5, and 8), contact time (10, 20, 30, 40, 50, 60, 70, 90, and 120 min), and initial uranium concentration (20, 40, 60, 80 ppm), and their influences on adsorption capacity, and determine the kinetics equation and adsorption isotherm. Based on FTIR analysis, a decrease in the band of O-H bond from water molecule was observed, which indicates the presence of TiO2 in bentonite interlayer structure. The XRD characterization of bentonite:TiO2 does not show diffraction peak in 001 plane. This is due to delamination of bentonite interlayer structure. Delamination is caused by the presence of TiO2 in large quantities, thus damaging the bentonite interlayer structure into irregular sheets. Bentonite as sheets will cause the basal spacing to increase and it is anticipated that XRD will find it difficult in detecting the 001 plane at a low 2 theta angle. The surface area of bentonite:TiO2 has increased by 12.04 m2/g. The maximum adsorption capacity of U(VI) took place at pH 5.0 for 70 minutes contact time and uranium concentration of 60 ppm. In this study, the adsorption kinetic and adsorption isotherm are pseudo second-order kinetic and Langmuir isotherm. The kinetic constant and maximum adsorption capacity of bentonite:TiO2 are 0.075 g/mg.min and 5.848 mg/g respectively.Keywords: Bentonite, TiO2, Adsorption, Uranium
National Atomic Energy Agency of Indonesia (BATAN)
Title: ADSORPTION OF URANIUM SIMULATION WASTE USING BENTONITE:TITANIUM DIOXIDE
Description:
ADSORPTION OF URANIUM SIMULATION WASTE USING BENTONITE TANIUM DIOXIDE.
Bentonite is a clay material of high surface area that have galleries within its structure.
Bentonite that is modified with TiO2 will have high adsorption capability.
In this study, natural bentonite and bentonite:TiO2 were characterized with FTIR, XRD and BET instruments to determine functional group, basal spacing, and specific surface area.
This study also investigates the adsorption of bentonite:TiO2 in various environmental factors, such as pH (pH 1, 3, 5, and 8), contact time (10, 20, 30, 40, 50, 60, 70, 90, and 120 min), and initial uranium concentration (20, 40, 60, 80 ppm), and their influences on adsorption capacity, and determine the kinetics equation and adsorption isotherm.
Based on FTIR analysis, a decrease in the band of O-H bond from water molecule was observed, which indicates the presence of TiO2 in bentonite interlayer structure.
The XRD characterization of bentonite:TiO2 does not show diffraction peak in 001 plane.
This is due to delamination of bentonite interlayer structure.
Delamination is caused by the presence of TiO2 in large quantities, thus damaging the bentonite interlayer structure into irregular sheets.
Bentonite as sheets will cause the basal spacing to increase and it is anticipated that XRD will find it difficult in detecting the 001 plane at a low 2 theta angle.
The surface area of bentonite:TiO2 has increased by 12.
04 m2/g.
The maximum adsorption capacity of U(VI) took place at pH 5.
0 for 70 minutes contact time and uranium concentration of 60 ppm.
In this study, the adsorption kinetic and adsorption isotherm are pseudo second-order kinetic and Langmuir isotherm.
The kinetic constant and maximum adsorption capacity of bentonite:TiO2 are 0.
075 g/mg.
min and 5.
848 mg/g respectively.
Keywords: Bentonite, TiO2, Adsorption, Uranium.
Related Results
Potential Of An Andrassy And Mansuli Bentonite As A Drilling Mud Material
Potential Of An Andrassy And Mansuli Bentonite As A Drilling Mud Material
Abstract
This paper presents the results of laboratory treatment works on upgrading the bentonite from two areas of Sabah, Malaysia, namely Andrassy and Mansuli f...
Uranium and Thorium
Uranium and Thorium
Abstract
Uranium is a heavy, radioactive metal, the 92nd element in the periodic table, and a member of the actinide series. Its name and chemical symbol U are de...
Comparative removal of naphthalene by adsorption on different sand/bentonite mixtures
Comparative removal of naphthalene by adsorption on different sand/bentonite mixtures
The purpose of this study was to advance the understanding of naphthalene (polycyclic aromatic hydrocarbon) adsorption on sand/bentonite mixtures in the context of their use in the...
Improving efficiency of dye-sensitized solar cell by modification of titanium dioxide electrode
Improving efficiency of dye-sensitized solar cell by modification of titanium dioxide electrode
Dye-sensitized solar cell (DSSC) was constructed using titanium dioxide as anode electrode layer. titanium dioxide electrode layer was prepared from ultrasonic spray coating of tit...
Adsorption of Uranium onto Delaminated Amino Talc-Like Clay
Adsorption of Uranium onto Delaminated Amino Talc-Like Clay
Uranium-containing waste is generated as a by-product of nuclear power plants, radioisotope production, nuclear fuel fabrication, and mineral processing. A radioactive waste treatm...
CRITICALITY ANALYSIS OF URANIUM STORAGE FACILITY WITH FORMATION RACKS
CRITICALITY ANALYSIS OF URANIUM STORAGE FACILITY WITH FORMATION RACKS
Uranium materials are needed for the uranium fuel production of research reactors and radioisotope. Before the uranium material is used, it is stored in the storage facility. One o...
REDUKSI AKTIVITAS URANIUM DALAM LIMBAH RADIOAKTIF CAIR MENGGUNAKAN PROSES ELEKTROKOAGULASI
REDUKSI AKTIVITAS URANIUM DALAM LIMBAH RADIOAKTIF CAIR MENGGUNAKAN PROSES ELEKTROKOAGULASI
REDUKSI AKTIVITAS URANIUM DALAM LIMBAH RADIOAKTIF CAIR MENGGUNAKAN PROSES ELEKTROKOAGULASI. Limbah yang dihasilkan dari proses pengembangan bahan industri bersifat radioaktif yang ...
Water Trash Collector
Water Trash Collector
In today day to day life, approximately 71% of the Earth's surface is covered by Without affecting significant role that technology plays in our modern world, environmental and wat...

