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    Item type:Publication,
    An electricity generator model by the water delivery system of sanitary ware
    (2014-01-01)
    Panthong, S.
    ;
    Poomjan, S.
    ;
    Taengtang, T.
    ;
    Srinuanjan, K.
    In this research is presented electricity production of sanitary ware, which can be covered kinetic energy of water to electric current from water delivery system. A small electric generator will be set on the water delivery system of sanitariums. It consists with a turbine electric generator and a big tank which build in on tank of a sanitarium. Turbine generator is generated small electric currents by a lot of water inside pipe. If this system were set in a large building for example such as department store, etc. the electric currents would be on generating in order to cumulative energy. In which Bangkok has a population about ten millions of people which sanitariums are used about a hundred millions of time per day. The experimental results of this model can be calculated electric currents to compare with systems which were set on large building. © (2014) Trans Tech Publications, Switzerland.
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    Item type:Publication,
    A fabrication of galvanic cell from pineapple peel residue in agricultural industries
    (2014-01-01)
    Pancharoen, A.
    ;
    Poomjan, S.
    ;
    Taengtang, T.
    ;
    Srinuanjan, K.
    In this research, we present a fabrication of an electric generation experimental kit which is comprised of pineapple peel residue from agricultural industries. Juice from squeezing pineapple peel was used as electrolyte of a galvanic cell. Sufficient acidity of the juice could activate electrochemical reaction in the galvanic cell kit using a zinc plate and copper plate as electrodes. During the experiment, adjustable distances between the two electrodes were controlled to obtain maximum output voltage. It has been already known that a galvanic cell with a lower distance between electrodes could provide higher output voltage but both electrodes could not touch each other. Experimental results from controlling distances between the 2 electrodes showed that the galvanic cell kit could provide high output voltage of 1.00 V which was able to apply in electronic devices. © (2014) Trans Tech Publications, Switzerland.