The Experts below are selected from a list of 663 Experts worldwide ranked by ideXlab platform

Larsson Henrik - One of the best experts on this subject based on the ideXlab platform.

  • Life cycle assessment of floor care : a comparative study of the Twister™ method and floor care methods using polish and wax
    Sapporo Japan, 2009
    Co-Authors: Lindahl Mattias, Larsson Henrik
    Abstract:

    This study was initiated by the authors in order to evaluate the Twister™ method’s environmental pros and cons in relation to other traditional floor care methods using polish and wax. This has been ascertained through a Life Cycle Assessment which was conducted within the study. The study has been in co-operation with HTC Sweden AB, the developer of the Twister™ method. The results show that the elements of the Twister™ method with the greatest environmental impact are the scrubbing machine that is used and the low energy consumption that the Twister™ method requires. The results also show that the Twister™ method has a significantly lower environmental impact than floor care methods using polish or wax. The parts of the Twister™ pad that have the greatest environmental impact are the Industrial Diamonds and the material that makes up the pad

  • Life cycle assessment of floor care : A comparative study of the Twister™ method and floor care methods using polish and wax
    'Linkoping University Electronic Press', 2009
    Co-Authors: Larsson Henrik, Lindahl Mattias, Svensson Niclas
    Abstract:

    In Today’s society there are a wide variety of floor and floor materials. An extensive range of products and methods are also used to ensure that these floors remain functional. All floor types and products create environmental impact of various kinds and magnitudes. This study was initiated by the authors in order to evaluate the Twister™- method’s environmental pros and cons in relation to other traditional floor care methods. This has been ascertained through a Life Cycle Assessment which was conducted within the study. The study has been in co-operation with HTC Sweden AB, the developer of the Twister™- method. A Life Cycle Assessment helps to identify and quantify the environmental impact of a product or a service, from a holistic perspective, which incorporates extraction of materials, their manufacture, use and waste management. The software application SimaPRo 7.0 has been used in this study, from which the Eco-indicator 99 method has been selected. In the study, the Twister™ method is compared with other floor care methods using polish and wax. The analysis also includes a breakdown of the Twister™ method, as well as a breakdown of the Twister™ pad manufactured by HTC Sweden AB. The results show that the elements of the Twister™ method with the greatest environmental impact are the scrubbing machine that is used and the energy consumption that the Twister™ method requires. The results also show that the Twister™ method has a significantly lower environmental impact than floor care methods using polish or wax. The parts of the Twister™ pad that have the greatest environmental impact are the Industrial Diamonds and the  material that makes up the pad

Lindahl Mattias - One of the best experts on this subject based on the ideXlab platform.

  • Life cycle assessment of floor care : a comparative study of the Twister™ method and floor care methods using polish and wax
    Sapporo Japan, 2009
    Co-Authors: Lindahl Mattias, Larsson Henrik
    Abstract:

    This study was initiated by the authors in order to evaluate the Twister™ method’s environmental pros and cons in relation to other traditional floor care methods using polish and wax. This has been ascertained through a Life Cycle Assessment which was conducted within the study. The study has been in co-operation with HTC Sweden AB, the developer of the Twister™ method. The results show that the elements of the Twister™ method with the greatest environmental impact are the scrubbing machine that is used and the low energy consumption that the Twister™ method requires. The results also show that the Twister™ method has a significantly lower environmental impact than floor care methods using polish or wax. The parts of the Twister™ pad that have the greatest environmental impact are the Industrial Diamonds and the material that makes up the pad

  • Life cycle assessment of floor care : A comparative study of the Twister™ method and floor care methods using polish and wax
    'Linkoping University Electronic Press', 2009
    Co-Authors: Larsson Henrik, Lindahl Mattias, Svensson Niclas
    Abstract:

    In Today’s society there are a wide variety of floor and floor materials. An extensive range of products and methods are also used to ensure that these floors remain functional. All floor types and products create environmental impact of various kinds and magnitudes. This study was initiated by the authors in order to evaluate the Twister™- method’s environmental pros and cons in relation to other traditional floor care methods. This has been ascertained through a Life Cycle Assessment which was conducted within the study. The study has been in co-operation with HTC Sweden AB, the developer of the Twister™- method. A Life Cycle Assessment helps to identify and quantify the environmental impact of a product or a service, from a holistic perspective, which incorporates extraction of materials, their manufacture, use and waste management. The software application SimaPRo 7.0 has been used in this study, from which the Eco-indicator 99 method has been selected. In the study, the Twister™ method is compared with other floor care methods using polish and wax. The analysis also includes a breakdown of the Twister™ method, as well as a breakdown of the Twister™ pad manufactured by HTC Sweden AB. The results show that the elements of the Twister™ method with the greatest environmental impact are the scrubbing machine that is used and the energy consumption that the Twister™ method requires. The results also show that the Twister™ method has a significantly lower environmental impact than floor care methods using polish or wax. The parts of the Twister™ pad that have the greatest environmental impact are the Industrial Diamonds and the  material that makes up the pad

Svensson Niclas - One of the best experts on this subject based on the ideXlab platform.

  • Life cycle assessment of floor care : A comparative study of the Twister™ method and floor care methods using polish and wax
    'Linkoping University Electronic Press', 2009
    Co-Authors: Larsson Henrik, Lindahl Mattias, Svensson Niclas
    Abstract:

    In Today’s society there are a wide variety of floor and floor materials. An extensive range of products and methods are also used to ensure that these floors remain functional. All floor types and products create environmental impact of various kinds and magnitudes. This study was initiated by the authors in order to evaluate the Twister™- method’s environmental pros and cons in relation to other traditional floor care methods. This has been ascertained through a Life Cycle Assessment which was conducted within the study. The study has been in co-operation with HTC Sweden AB, the developer of the Twister™- method. A Life Cycle Assessment helps to identify and quantify the environmental impact of a product or a service, from a holistic perspective, which incorporates extraction of materials, their manufacture, use and waste management. The software application SimaPRo 7.0 has been used in this study, from which the Eco-indicator 99 method has been selected. In the study, the Twister™ method is compared with other floor care methods using polish and wax. The analysis also includes a breakdown of the Twister™ method, as well as a breakdown of the Twister™ pad manufactured by HTC Sweden AB. The results show that the elements of the Twister™ method with the greatest environmental impact are the scrubbing machine that is used and the energy consumption that the Twister™ method requires. The results also show that the Twister™ method has a significantly lower environmental impact than floor care methods using polish or wax. The parts of the Twister™ pad that have the greatest environmental impact are the Industrial Diamonds and the  material that makes up the pad

Guerold S. Bobrovnitchii - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of the process of Industrial diamond synthesis
    2005
    Co-Authors: William Da Silva Vianna, Guerold S. Bobrovnitchii
    Abstract:

    The process o synthesis and sinterization of Industrial Diamonds is performed under high pressure and temperatures (HPHT) up to 8,0 GPa and 1800ºC in high pressure apparatus (HPA) capable of sustaining these values for determined periods of time using special hydraulic clasps. In order to obtain productive and adequate synthetic Diamonds it is necessary to maintain the process parameters (pressure, temperature and time) at a set region of the equation diagram of the carbon phase. One should also consider different variables that involve the system, such as: type of HPA and its refrigeration, type of material of the anvil and deformable capsule, type of construction of reactive cell, materials of reactive cell, density difference of capsule materials, measurement precision, heating manner of reaction cell, alterations in temperature gradients and internal pressure of compression chamber. In order to develop optimized technology of Industrial diamond synthesis, modernization projects with programmable logic controller (PLC) were implemented in a special hydraulic press model D0044 with 2500 tons power. This new system along with the methodology proposal made it possible to improve the efficiency of the chief parameters of the synthesis, as well as obtaining significant data that were of help in this optimization as, for example: approximation value of HPA parts, flux and temperature of refrigeration water, current, tension, heating electric resistance during pressure maintenance. Thanks to the new system and methodology it was possible to increase by 1,19 times the operations productivity of diamond powde

William Da Silva Vianna - One of the best experts on this subject based on the ideXlab platform.

  • Optimization of the process of Industrial diamond synthesis
    2005
    Co-Authors: William Da Silva Vianna, Guerold S. Bobrovnitchii
    Abstract:

    The process o synthesis and sinterization of Industrial Diamonds is performed under high pressure and temperatures (HPHT) up to 8,0 GPa and 1800ºC in high pressure apparatus (HPA) capable of sustaining these values for determined periods of time using special hydraulic clasps. In order to obtain productive and adequate synthetic Diamonds it is necessary to maintain the process parameters (pressure, temperature and time) at a set region of the equation diagram of the carbon phase. One should also consider different variables that involve the system, such as: type of HPA and its refrigeration, type of material of the anvil and deformable capsule, type of construction of reactive cell, materials of reactive cell, density difference of capsule materials, measurement precision, heating manner of reaction cell, alterations in temperature gradients and internal pressure of compression chamber. In order to develop optimized technology of Industrial diamond synthesis, modernization projects with programmable logic controller (PLC) were implemented in a special hydraulic press model D0044 with 2500 tons power. This new system along with the methodology proposal made it possible to improve the efficiency of the chief parameters of the synthesis, as well as obtaining significant data that were of help in this optimization as, for example: approximation value of HPA parts, flux and temperature of refrigeration water, current, tension, heating electric resistance during pressure maintenance. Thanks to the new system and methodology it was possible to increase by 1,19 times the operations productivity of diamond powde