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Pemanfaatan Kondensat untuk Menghasilkan Motor Gasolin (MOGAS) RON 88 dengan Metode Blending Yuniarti, Yuniarti; Wakimin, Subagjo; Rudiyanto, Rudiyanto
PETROGAS: Journal of Energy and Technology Vol 1, No 1 (2019): March
Publisher : Sekolah Tinggi Teknologi MIGAS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58267/petrogas.v1i1.11

Abstract

Kondensat merupakan hidrokarbon cair yang didapatkan dari sumur gas atau sumur minyak bercampur gas. Angka oktan kondesat berkisar antara 65,0 sampai dengan 75,0. Metode Blending digunakan untuk menghasilkan angka oktan 88.  Blending komponen dilakukan dengan mencampur kondensat dengan HOMC. Untuk memenuhi spesifikasi hasil blending, maka produk dianalisa density, RON, destilasi ASTM dan RVP. Hasil blending komponen didapatkan angka oktan 88,0;Temperatur  70°C untuk destilasi 10% , Temperatur  100,3°C untuk destilasi 50% Vol, dan temperaturnya 144.3°C  untuk destilasi 90% vol.
Optimizing an Octane Number of Motor Gasoline (MOGAS) 91 RON with Blending Methods Huda, Ahmad Mustafid Miftahul; Wakimin, Subagjo; Sarungu, Selvia
INDONESIAN JOURNAL OF APPLIED PHYSICS Vol 7, No 2 (2017): October
Publisher : Department of Physics, Sebelas Maret University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/ijap.v7i2.13002

Abstract

Motor Gasoline (MOGAS) that serves as modifiers thermal energy into mechanical energy with a Research Octane Number (RON) of 91 was produced by mixing (blending) of two components. RON are high is one of MOGAS specifications needed for good engine performance. To obtain a MOGAS with high RON usually needs additional materials, chemical components. In this work we don’t need any additional materials to increasing the RON. In the field of oil and gas blending method is a method that is widely used to acquire new products that are superior and achieve quality standards. The components used in blending these are products with a value of RON 88 and 92. Examination of specific gravity (ASTMD-1298) was conducted to obtain specific gravity (SG) and temperature observations (T), while the ASTMD-86 distillation examination was conducted to determine the components in materials. The results showed that the product specifications in accordance with the existing products on the market. The acquisition of distillate reached 95% with losses of about 3.9%, and the residue of 1.1%.