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G Bagheri - One of the best experts on this subject based on the ideXlab platform.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, G Bagheri, Ali Reza Khanchi, J. M. He
    Abstract:

    Abstract A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 °C. Ion-exchange capacity and distribution coefficients (Kd) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs+, Sr2+, UO22+, Ba2+, Pb2+, Tl+, Zn2+, Rb2+ and Zr4+ ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, Ali Reza Khanchi, G Bagheri
    Abstract:

    A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 degrees C. Ion-exchange capacity and distribution coefficients (K(d)) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs(+), Sr(2+), UO(2)(2+), Ba(2+), Pb(2+), Tl(+), Zn(2+), Rb(2+) and Zr(4+) ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

R Yavari - One of the best experts on this subject based on the ideXlab platform.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, G Bagheri, Ali Reza Khanchi, J. M. He
    Abstract:

    Abstract A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 °C. Ion-exchange capacity and distribution coefficients (Kd) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs+, Sr2+, UO22+, Ba2+, Pb2+, Tl+, Zn2+, Rb2+ and Zr4+ ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, Ali Reza Khanchi, G Bagheri
    Abstract:

    A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 degrees C. Ion-exchange capacity and distribution coefficients (K(d)) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs(+), Sr(2+), UO(2)(2+), Ba(2+), Pb(2+), Tl(+), Zn(2+), Rb(2+) and Zr(4+) ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

J. M. He - One of the best experts on this subject based on the ideXlab platform.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, G Bagheri, Ali Reza Khanchi, J. M. He
    Abstract:

    Abstract A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 °C. Ion-exchange capacity and distribution coefficients (Kd) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs+, Sr2+, UO22+, Ba2+, Pb2+, Tl+, Zn2+, Rb2+ and Zr4+ ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

Ali Reza Khanchi - One of the best experts on this subject based on the ideXlab platform.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, G Bagheri, Ali Reza Khanchi, J. M. He
    Abstract:

    Abstract A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 °C. Ion-exchange capacity and distribution coefficients (Kd) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs+, Sr2+, UO22+, Ba2+, Pb2+, Tl+, Zn2+, Rb2+ and Zr4+ ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, Ali Reza Khanchi, G Bagheri
    Abstract:

    A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 degrees C. Ion-exchange capacity and distribution coefficients (K(d)) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs(+), Sr(2+), UO(2)(2+), Ba(2+), Pb(2+), Tl(+), Zn(2+), Rb(2+) and Zr(4+) ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

S J Ahmadi - One of the best experts on this subject based on the ideXlab platform.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, G Bagheri, Ali Reza Khanchi, J. M. He
    Abstract:

    Abstract A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 °C. Ion-exchange capacity and distribution coefficients (Kd) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs+, Sr2+, UO22+, Ba2+, Pb2+, Tl+, Zn2+, Rb2+ and Zr4+ ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.

  • synthesis characterization and Analytical Application of a new inorganic cation exchanger titanium iv molybdophosphate
    Talanta, 2009
    Co-Authors: R Yavari, S J Ahmadi, Yarong Huang, Ali Reza Khanchi, G Bagheri
    Abstract:

    A novel polyoxometalate-cation exchanger, titanium(IV) molybdophosphate (TMP) has been synthesized under varying conditions. The material was characterized by X-ray diffraction, infrared spectroscopy, inductively coupled plasma and thermogravimetry techniques. Its stability was investigated in water, dilute acids, alkaline solutions, and high temperature up to 750 degrees C. Ion-exchange capacity and distribution coefficients (K(d)) for twenty-nine radionuclides and metal ions have been determined. It was found that the TMP has high affinity for Cs(+), Sr(2+), UO(2)(2+), Ba(2+), Pb(2+), Tl(+), Zn(2+), Rb(2+) and Zr(4+) ions. The results of binary separation of metal ions showed that TMP can be potentially useful for Analytical Applications.