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SEL FOTOVOLTAIK ALIRAN KONTINU DARI SISTEM KI/KI3 DENGAN MEMBRAN KERAMIK SEBAGAI PEMISAH

Diana Vanika , Diana Vanika (2014) SEL FOTOVOLTAIK ALIRAN KONTINU DARI SISTEM KI/KI3 DENGAN MEMBRAN KERAMIK SEBAGAI PEMISAH. SEL FOTOVOLTAIK ALIRAN KONTINU DARI SISTEM KI/KI3 DENGAN MEMBRAN KERAMIK SEBAGAI PEMISAH . (Unpublished)

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Abstract

SEL FOTOVOLTAIK ALIRAN KONTINU DARI SISTEM KI/KI3 DENGAN MEMBRAN KERAMIK SEBAGAI PEMISAH Diana Vanika, Admin Alif, Olly Norita Tetra Laboratorium Elektrokimia/ Fotokimia Jurusan Kimia FMIPA, Universitas Andalas e-mail: dvanika@rocketmail.com Jurusan Kimia FMIPA Unand, Kampus Limau Manis, 25163 Abstract Research of photovoltaic cell flow of continuous from KI/KI3 system with ceramic membrane as a separator has been done. This study aims to investigate the performance of photovoltaic cells to generate electricity as well than see the effect of KI concentration of electrolyte solution and the influence of irradiation time. Current and voltage were measured in two conditions, inside and outside the room (at 10:00 am to 02:00 pm). The results showed that the optimum current and voltage in electrolyte solution of KI concentration 0.125 N at 12.00 am. The value of the parameters of the solar cell output derived from the curve of current versus voltage relationship (IV) is the short circuit current, open circuit voltage, maximum current, maximum voltage, and fill factor in a row for indoors, at 1.2 mA, 85.3 mV, 0.83 mA, 60.7 mV, 0.492, and for the outdoors that is 1.5 mA, 103.4 mV, 0.77 mA, 49.0 mV, 0.243. The maximum power that can be used indoors have a greater value than the outdoors, in the amount of 50.361 mWatt and 37.689 mWatt. Keywords : Photovoltaic Cells , electrolyte solution of KI , ceramic membranes

Item Type: Article
Subjects: Q Science > QD Chemistry
Unit atau Lembaga: Fakultas MIPA > Kimia
Paca Sarjana > Doktor > Fakultas MIPA > Kimia
Fakultas MIPA > Kimia
Depositing User: Putri Sakinah Iput
Date Deposited: 18 Apr 2014 14:53
Last Modified: 18 Apr 2014 14:53
URI: http://repository.unand.ac.id/id/eprint/19953

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