The Experts below are selected from a list of 360 Experts worldwide ranked by ideXlab platform

Hongyu Zhang - One of the best experts on this subject based on the ideXlab platform.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    viXra, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    Group Decision and Negotiation, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information. Differences in semantics as well as the risk preferences of decision-makers are considered in the proposed method. The practicality and effectiveness of the proposed approach are then demonstrated through an illustrative example, in which the proposed method is used to select the optimum green product Design, followed by sensitivity and comparative analyses.

Zhangpeng Tian - One of the best experts on this subject based on the ideXlab platform.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    viXra, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    Group Decision and Negotiation, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information. Differences in semantics as well as the risk preferences of decision-makers are considered in the proposed method. The practicality and effectiveness of the proposed approach are then demonstrated through an illustrative example, in which the proposed method is used to select the optimum green product Design, followed by sensitivity and comparative analyses.

Dihua Wang - One of the best experts on this subject based on the ideXlab platform.

  • production of oxygen gas and liquid metal by electrochemical decomposition of molten iron oxide
    Journal of The Electrochemical Society, 2011
    Co-Authors: Dihua Wang, Andrew J Gmitter, Donald R Sadoway
    Abstract:

    Molten oxide electrolysis (MOE) is the electrolytic decomposition of a metal oxide, most preferably into liquid metal and oxygen gas. The successful deployment of MOE hinges upon the existence of an inert anode capable of sustained oxygen evolution. Herein we report the results of a program of materials Design, Selection, and testing of candidate anode materials and demonstrate the utility of iridium in this application. An electrolysis cell fitted with an iridium anode operating at 0.55 A cm ―2 produced liquid metal and oxygen gas by the decomposition of iron oxide dissolved in a solvent electrolyte of molten MgO―CaO―SiO 2 ―Al 2 O 3 . The erosion rate of iridium was measured to be less than 8 mm y ―1 . The stability of iridium is attributed to a mix of mechanisms including the electrochemical formation and simultaneous thermal decomposition of a surface film of iridium oxide.

  • production of oxygen gas and liquid metal by electrochemical decomposition of molten iron oxide
    Journal of The Electrochemical Society, 2011
    Co-Authors: Dihua Wang, Andrew J Gmitter, Donald R Sadoway
    Abstract:

    Molten oxide electrolysis (MOE) is the electrolytic decomposition of a metal oxide, most preferably into liquid metal and oxygen gas. The successful deployment of MOE hinges upon the existence of an inert anode capable of sustained oxygen evolution. Herein we report the results of a program of materials Design, Selection, and testing of candidate anode materials and demonstrate the utility of iridium in this application. An electrolysis cell fitted with an iridium anode operating at 0.55 A cm ―2 produced liquid metal and oxygen gas by the decomposition of iron oxide dissolved in a solvent electrolyte of molten MgO―CaO―SiO 2 ―Al 2 O 3 . The erosion rate of iridium was measured to be less than 8 mm y ―1 . The stability of iridium is attributed to a mix of mechanisms including the electrochemical formation and simultaneous thermal decomposition of a surface film of iridium oxide.

Jianqiang Wang - One of the best experts on this subject based on the ideXlab platform.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    viXra, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    Group Decision and Negotiation, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information. Differences in semantics as well as the risk preferences of decision-makers are considered in the proposed method. The practicality and effectiveness of the proposed approach are then demonstrated through an illustrative example, in which the proposed method is used to select the optimum green product Design, followed by sensitivity and comparative analyses.

Jing Wang - One of the best experts on this subject based on the ideXlab platform.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    viXra, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information.

  • simplified neutrosophic linguistic multi criteria group decision making approach to green product development
    Group Decision and Negotiation, 2017
    Co-Authors: Zhangpeng Tian, Jing Wang, Jianqiang Wang, Hongyu Zhang
    Abstract:

    For many companies, green product development has become a key strategic consideration due to regulatory requirements and market trends. In this paper, the life cycle assessment technique is used to develop an innovative multi-criteria group decision-making approach that incorporates power aggregation operators and a TOPSIS-based QUALIFLEX method in order to solve green product Design Selection problems using neutrosophic linguistic information. Differences in semantics as well as the risk preferences of decision-makers are considered in the proposed method. The practicality and effectiveness of the proposed approach are then demonstrated through an illustrative example, in which the proposed method is used to select the optimum green product Design, followed by sensitivity and comparative analyses.