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ANALISIS TEKNOLOGI HIBRID DI SCIENCE TECHNO PARK PROVINSI SUMATERA SELATAN Bizzy, Irwin; Syamsul, Syamsul; Cornely, Epina; Kurniawan, Bayu; Apriyan, Dian
Publikasi Penelitian Terapan dan Kebijakan Vol 3 No 2 (2020): Publikasi Penelitian Terapan dan Kebijakan
Publisher : Badan Penelitian dan Pengembangan Daerah Provinsi Sumatera Selatan

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.46774/pptk.v3i2.338

Abstract

The hybrid technology here is a combination of technology derived from solar energy and biogas from cow dung. Each cow shed has a roof that can be installed with solar cells to generate electricity, and cow dung can be used as a source of biogas energy, which can also be converted into electrical energy. This hybrid technology is one of the new renewable energy potentials in an environmentally friendly future.
Sistem Portable Hybrid On-Grid PV-PLN-Generator Teraplikasi Di Desa Pemulutan Pradana, Wirawan Adi; Sofijan, Armin; Cekdin, Cekmas; Bizzy, Irwin
JURNAL SURYA ENERGY Vol 6, No 2 (2022)
Publisher : UNIVERSITAS MUHAMMADIYAH PALEMBANG

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32502/jse.v6i2.4214

Abstract

Pemulutan village has a location that is separated by a small river, where only one of its locations has access to PLN electricity rom the government. The portable hybrid on grid system PV-PLN-Generator has the ability to combine a power source from PLN with alternative sources of electricity from solar panels and generators, this system was applied in this study by adding a portable system, so that it can be carried and moved easily from opposite locations of river. The ouput power of one solar panel is about 20-25 W, so it takes 6-7 solar panels to be used with load 70 Watt for 12 hours. The results of this research are very helpful for Pemulutan’s village, with the portable hybrid on grid (PHoG) system can help access electricity for lighting, process garden products, and relieve the cost of charging PLN electricity.
Beda Temperatur antara Permukaan Panas dan Dingin Modul TEC Terhadap Temperatur Ruang Kotak Pendingin dengan Arduino Mega 2560 Bizzy, Irwin; Darmawi, Darmawi; Firdaus, Aneka; Apriyan, Dian; Rachman, Fadhil Fuad
Jurnal Rekayasa Mesin Vol 17, No 1 (2022): Volume 17, Nomor 1, April 2022
Publisher : Mechanical Engineering Department - Semarang State Polytechnic

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.32497/jrm.v17i1.2942

Abstract

Penerapan modul TEC terus dikembangkan karena modul ini memiliki keunggulan tersendiri. Keunggulan modul TEC ini antara lain hemat energi dan ramah lingkungan. Keunggulan lain dari modul TEC adalah tahan lama, kompak, ringan, dan mudah pengoperasiannya. Penelitian ini memanfaatkan modul TEC untuk mendinginkan sebuah kotak pendingin. Ukuran kotak pendingin yang digunakan adalah 38 cm x 52 cm x 35 cm. Fluida pendingin yang digunakan adalah udara dan air. Pengambilan data pengujian dilakukan dengan memakai sebuah mikrokontroler Arduino Mega 2560. Hasil penelitian menunjukkan bahwa  temperatur rata-rata kotak pendingin dengan media pendingin udara, air, dan udara-air adalah 23,36 , 24,50 , dan 22,76 .
LIQUID SMOKE PRODUCTION FROM PALM KERNEL SHELL PYROLYSIS: COMPARING COLD AIR AND CONVENTIONAL CONDENSATION METHODS Sipahutar, Riman; Bizzy, Irwin; Hidayati, Baiti
Indonesian Journal of Engineering and Science Vol. 6 No. 2 (2025): Table of Contents
Publisher : Asosiasi Peneliti Sriwijaya

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.51630/ijes.v6i2.186

Abstract

Gas condensation is one of the problems in the liquid smoke production process. Uncondensed gas will have an impact on the liquid smoke produced and air pollution. Here, several methods are applied to determine the percentage level of liquid smoke produced by the gas condensation process. The condensation method uses conventional normal water, gas condensation using cold water, and gas condensation using cold air. The raw materials used are oil palm shells with a size of -4+5 mesh, a pyrolysis temperature of 300-4000C, and a liquid smoke production process for 300 minutes. Based on the test results, gas condensation occurs optimally in the cold air method, with the results of 22% liquid smoke, 64% charcoal, and 14% non-condensed gas. Compared with the condensation of the standard water method, the condensation method of cold air is superior to 36.36% for liquid smoke to minimize air pollution by up to 48%. The results of this study indicate that temperature and fluid effect the effectiveness of the gas condensation process, thereby increasing the yield of liquid smoke and reducing air pollution during the liquid smoke production process.