Main Article Content
Abstract
This research was conducted at the fuel terminal, a storage and distribution facility for Pertamax fuel, with the aim of addressing Pertamax losses due to evaporation in fixed roof tanks. This evaporation leads to the emission of hydrocarbon vapors, which have a negative impact on the environment. One proposed solution was the use of a Vapor Recovery Unit (VRU), which can capture up to 95% of hydrocarbon vapors and convert them back into liquid form. This study employed the calculation methods of breathing loss and working loss to analyze the efficiency of the VRU in controlling losses. The research findings shows that the VRU was effective in reducing emissions and controlling losses, making the implementation of VRU a recommended strategic step to enhance operational efficiency and reduce environmental impact at the fuel terminal. This research is expected to serve for further studies on optimization of VRU usage in the field
Article Details
References
- [1] Kushariyadi and B. Sugito, “Optimasi Distribusi Transportasi Bahan Bakar Minyak (BBM) Jenis Bio Solar di Wilayah Jawa Tengah,” Nusant. Jurnal pendidikan dan konseling., vol. Vol 4, no. 5, pp. 1359–1367, 2022. https://doi.org/10.31004/jpdk.v4i5.6776
- [2] S. Ramdani, T. Mariyanti, and F. Ekonomi Bisnis, “Analisis Pertumbuhan Ekonomi ada Sektor Ekspor Migas dan Non Migas Di Indonesia Tahun 2019-2023,” Jurnal Hukum. dan Ekonomi. Syariah, vol. 1, no. 4, pp. 123–132, 2023. https://doi.org/10.56480/rizquna.v1i4/880.
- [3] S. Fadillah and E. Soesanto, “Analisis Dampak Kegiatan Industri Hulu Migas Terhadap Pembangunan Nasional dalam Aspek Ekonomi Regional Indonesia,” Jurnal Mahasiswa. Kreatif., vol. 1, no. 4, pp. 10–24, 2023. https://doi.org/10.59581/jmk-widyakarya.v1i4.647 .
- [4] S. Rollandiaz and Y. A. Iskandar, “Evaluasi Keterlambatan Pengiriman Produk Bahan Bakar Minyak Menggunakan Lean Six Sigma ( Studi Kasus : Fuel Terminal Bandung Group , Ujung Berung ),” Jurnal Infotech. vol. 10, no. 1.pp 74-83, 2024. https://doi.org/10.31949/infotech.v10i1.8796.
- [5] E. Elandi, E. Siswanto, and A. S. Widodo, “Studi Komparasi Motor Bakar 6 Tak Dengan Siklus Dua Kali Pengapian Menggunakan Bahan Bakar Pertamax dan Etanol,” Jurnal Rekayasa Mesin, vol. 13, no. 2, pp. 373–381, 2022 doi: 10.21776/jrm.v13i2.979.
- [6] B. Sitorus, R. Didit Rahmat Hidayat and O. Prasetya" Pengelolaan Penggunaan Bahan Bakar Minyak yang Efektif pada Transportasi Darat",Jurnal Manajemen Transportasi dan Logistik, vol. 1, no. 2, pp 117-126 Juli 2024. https://media.neliti.com/media/publications/113844-ID-pengelolaan-penggunaan-bahan-bakar-minya.pdf
- [7] P. Busono and S. Pujiarta, “Analisa Kebutuhan Make Up Water Cooling Tower Rsg-Gas Pada Daya 30 Mw Setelah Revitalisasi,”Buletin Pengelolaan Reaktor Nuklir vol. 17, no. 1, pp 38-44. April 2020.http://dx.doi.org/10.17146/bprn.2020.17.1.5770
- [8] P. Karmila and I. Lukman, “Analisis Working Loss Pada Produk Bahan Bakar Minyak Di Pt Pertamina Fuel Terminal Jambi,” Prosiding. Seminar. Nasional. Teknologi Energi dan Mineral, vol. 3, no. 1, pp. 165–174, 2023, doi: 10.53026/sntem.v3i1.1314.
- [9] W. Widiyastuti, “Pengelolaan Perilaku Hemat Energi Berdasarkan Warna Pintar pada Mobil,” Jurnal Pendidikan Matematika.vol. 1, no.1 pp. 101–108, Juni 2019.http://dx.doi.org/10.21043/jpm.v2i1.6345
- [10] H.P. Siallagan “Analisis Kinerja Cooling Tower 8330 CT01 Pada Water Treatment Plant-2 PT Krakatau Steel (Persero). Tbk",” Jurnal Teknik Mesin.vol. 6, no.3 pp. 215-219, Juni 2017. https://media.neliti.com/media/publications/196146-ID-analisis-kinerja-cooling-tower-8330-ct01.pdf
- [11] I. A. Setiorini and A. F. Faputri, “Penyusutan Karena Penguapan (Evaporation Loss) Pada Tanki Jenis Floating Roof Tank,” Jurnal Tenik. Patra Akademika., vol. 12, no. 01, pp. 33–38, 2021, doi: 10.52506/jtpa.v12i01.124.
- [12] F. Sitepu and A. Rangga, “Penanganan Agar Tidak Terjadi Penyusutan Muatan Kerosone Di Kapal Mt. Ambermar,” Jurnal. Transformation of Mandalika, vol. 2, no. 3, pp. 375–387, 2022. https://ojs.cahayamandalika.com/index.php/jtm/article/view/999/873
- [13] Y. Suprianti and A. S. K. Kurniasetyawati, “Regenerasi In-Situ Adsorben Karbon Aktif Tipe Granul dengan Metode Termal,” Jurnal Teknik. Kimia. dan Lingkungan., vol. 3, no. 1, pp. 1–9, 2019, doi: 10.33795/jtkl.v3i1.91.
- [14] A. Rachman and A. Z. Fathoni, “Vapor Recovery Unit Sebagai Pengendali Rugi Penguapan BBM Di Terminal BBM,” Jurnal Teknik. Energi, vol. 3 no. 38, pp. 13–20, 2019. https://adoc.pub/vapor-recovery-unit-sebagai-pengendali-rugi-penguapan-bbm-di.html
- [15] A.A. Persada, O. Venriza and S.W. Bakti " Analisis Losses Berdasarkan Faktor Penguapan pada Distribusi Pertamax" Jurnal Terapan Logistik Migas. vol .1 no. 1 pp-15-19 Desember 2022. https://jtlm.akamigas.ac.id/index.php/jtlmig/article/view/13/5