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POMPA AIR BERTENAGA ENERGI MATAHARI (SOLAR CELL) UNTUK PENGAIRAN SAWAH Abraham L. Rettob; Richard S. Waremra
Musamus Journal of Science Education Vol 1 No 2 (2019): Musamus Journal of Science Education (MJOSE)
Publisher : Faculty of Teacher Training and Education, Musamus University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35724/mjose.v1i2.1451

Abstract

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
PEMANFAATAN KOTORAN SAPI SEBAGAI SUMBER ENERGI PENGGANTI BAHAN BAKAR MINYAK Yorinda Buyang; Ivylentine D. Palittin; Richard S. Waremra
DHARMA RAFLESIA Vol 17, No 1 (2019): JUNI (ACCREDITED SINTA 5)
Publisher : Universitas Bengkulu

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33369/dr.v17i1.6873

Abstract

Petroleum scarcity has been a yearly problem facing Indonesian society during the last three decades. The program aimed at helping Indonesian society fulfilling their daily needs of energy by creating biogas as a renewable source of energy. In doing so, we employed a demonstrative method. The research flows are follows: 1) providing all the requirements needed ( 50 Kg of wet cow manure, yeast, pipes, faucets, hose, and gas stove respectively); 2) providing an instruction of the importances of biogas for daily life and the procedures of creating biogas for 50 participants in Amun Kay and Hidup Baru village ; 3) practicing directly of biogas production;  4) asking the participants to practicing for their own. The findings were: 1) producing biogas as a substitute for kerosene as much 4,16 m3(2.6 L kerosene) could be used as  substitute energy of kerosene for cooking for 3-4 days for 4-5 people; 2) producing 15 Kg dry organic fertilizer.