scholarly journals POMPA AIR BERTENAGA ENERGI MATAHARI (SOLAR CELL) UNTUK PENGAIRAN SAWAH

2019 ◽  
Vol 1 (2) ◽  
pp. 046-052
Author(s):  
Abraham L. Rettob ◽  
Richard S. Waremra
Keyword(s):  

Pelaksanaan kegiatan ini bertujuan untuk mendemostrasikan pembuatan pompa air bertenaga energi matahari yang nantinya dapat diaplikasikan oleh masyarakat tani untuk pengairan areal persawahan Kampung Jaya Makmur Distrik Kurik. Untuk membuat pompa air bertenaga energi matahari menggunakan komponen utama seperti panel surya 100 watt peak (wp), inverter 1000 watt, motor penggerak, baterei berkekuatan 70 Ampere hours (Ah), controller, dan bahan besi L untuk pembuatan rangka utama. Perakitan pompa air bertenaga energi matahari dilakukan di bengkel milik masyarakat Kampung Jaya Makmur. Demonstrasi produk pompa air dilakukan di balai kampung menunjukkan bahwa produk dapat bekerja dengan baik sehingga perangkat kampung maupun perwakilan kelompok tani yang hadir sangat antusias untuk mencoba mengaplikasikannya pada areal sawah. Kata Kunci: energi matahari, pompa, sawah, pertanian

2001 ◽  
Vol 5 (8) ◽  
pp. 609-616 ◽  
Author(s):  
Viviane Aranyos ◽  
Johan Hjelm ◽  
Anders Hagfeldt ◽  
Helena Grennberg
Keyword(s):  

1981 ◽  
Vol 42 (C4) ◽  
pp. C4-475-C4-478
Author(s):  
C. R. Wronski ◽  
Y. Goldstein ◽  
S. Kelemen ◽  
B. Abeles ◽  
H. Witzke

2020 ◽  
pp. 114-119

Experimental and theoretical study Porphyrin-grafted ZnO nanowire arrays were investigated for organic/inorganic hybrid solar cell applications. Two types of porphyrin – Tetra (4-carboxyphenyle) TCPP and meso-Tetraphenylporphine (Zinc-TPP)were used to modify the nanowire surfaces. The vertically aligned nanowires with porphyrin modifications were embedded in graphene-enriched poly (3-hexylthiophene) [G-P3HT] for p-n junction nanowire solar cells. Surface grafting of ZnO nanowires was found to improve the solar cell efficiency. There are different effect for the two types of porphyrin as results of Zn existing. Annealing effects on the solar cell performance were investigated by heating the devices up to 225 °C in air. It was found that the cell performance was significantly degraded after annealing. The degradation was attributed to the polymer structural change at high temperature as evidenced by electrochemical impedance spectroscopy measurements.


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