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Analisa Dan Optimasi Produksi Sumur Migas Di PEP Bekasi Hernowo Widodo; M Samsuri; Samsul Ma’rif
JURNAL BHARA PETRO ENERGI Vol 1 No 2: July 2022
Publisher : Department of Petroleum Engineering

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (416.913 KB) | DOI: 10.31599/bpe.v1i2.1310

Abstract

Abstract Based on the results of the mass balance analysis and a review at PEP, it was concluded that the total feed intake from all wells was BOPD at 770 barrels/day, gas at 12.1882 MMSCFD, and BLPD at 15975.2 barrels/day, the total product produced was 8 ,541226% oil at 1568.760 barrels/day, 8.989134% condensate at 1651.027 barrels/day, 0.056535% gas at 10.3838214 MMSCFD, and 82.4131% water injection at 15136.748 barrels/day . In the Water Injection Plant process it produces sludge of 16286.812 kg or 0.90001% of the processed formation water, the formation of sludge is due to the addition of chemicals in the formation water treatment process. Keywords: Mass balance, crude oil, gas  Abstrak            Berdasarkan hasil analisis neraca massa dan peninjauan di PEP didapatkan  antara lain total feed masuk dari seluruh sumur adalah BOPD sebesar 770 barrel/hari, gas sebesar 12,1882 MMSCFD, dan BLPD sebesar 15975,2 barrel/hari, total produk yang dihasilkan adalah 8,541226% minyak sebesar 1568,760 barrel/hari, 8,989134% condensat sebesar 1651,027 barrel/hari, 0,056535% gas sebesar 10,3838214 MMSCFD, dan 82,4131% air injeksi sebesar 15136,748 barrel/hari. Pada proses Water Injection Plant menghasilkan sludge sebesar 16286,812 kg atau 0,90001 % dari air formasi yang diolah, terbentuknya sludge dikarenakan adanya penambahan bahan kimia pada proses pengolahan air formasi. Kata kunci: Neraca massa, minyak mentah, gas. Reference: Patton. 1981. Oilfield Water System. Campbell Petroleum Series, Norman, OK: John M. Campbell. Faust, S.D.dan O.M. Aly. (1998). Chemistry of Water Treatment. Lewis Publisher. USA. Hendricks, David W. 2006. Water Treatment Unit Process: Physical and Chemical. CRC Press. Florida. Howe, J. K., et al. (2012). Principle of Water Treatment. John Wiley and Sons, Inc. New Jersey. Kemmer, EN. 1979. Water; The Universal Solvent, 2nd ed. Oak Brook, IL: Nalco Chemical Co. Subarnas, Nandang. 2007. Terampil Berkreasi. Jakarta: Grafindo Media Pratama. Manurung, Tambak, dkk. 2012. Efektivitas Biji Kelor (Moringa oleifera) Pada Pengolahan Air Sumur Tercemar Limbah Domestik. Dalam Jurnal Ilmiah Fakultas Teknik LIMIT’s. Vol 8, No.1: 37-41. Sutresna, Nana. 2007. Cerdas Belajar Kimia untuk Kelas XI SMA. Jakarta: Grafindo Media Pratama. Website Official Pertamina, http://www.pertamina.com
Analisa Efisiensi Energi pada Proses Produksi Obat X di Perusahaan YZ M Samsuri; Hernowo Widodo; Ananda Siti Choirunnisa
JURNAL BHARA PETRO ENERGI Vol 1 No 2: July 2022
Publisher : Department of Petroleum Engineering

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (446.933 KB) | DOI: 10.31599/bpe.v1i2.1432

Abstract

ABSTRACT Drugs are chemicals that are produced to reduce pain and prevent the risk of various diseases. In the manufacture of drugs, several stages of the process are needed which are quite long and require calculations from each process to produce products that meet the requirements and minimize errors during the process that can cause company losses. The research was carried out by direct observation during the process as well as collecting data on the mass of materials before and after the process, as well as critical parameters listed from the PPI (Main Processing Procedure) book for 1 batch of drug manufacture which takes more than 24 hours to manufacture. From observations, it is known that the drug manufacturing process has an adiabatic process where the resulting mass balance has the equation mass in = mass out and there is no chemical reaction that takes place. In the drying process, the heat balance can be calculated because this process produces heat which requires a certain amount of energy in the process. The drying machine used is an FBD (Fluidized Bed Dryer) machine which requires a certain amount of power so that the efficiency of this machine can be known to maximize the process. Keywords: Drug, FBD, Mass Balance, Heat Balance, Process ABSTRAK Obat merupakan suatu bahan kimia yang diproduksi untuk mengurangi rasa sakit dan mencegah timbulnya risiko berbagai penyakit. Pada pembuatan obat, diperlukan beberapa tahapan proses yang cukup panjang serta membutuhkan perhitungan dari setiap prosesnya untuk menghasilkan produk yang sesuai persyaratan dan meminimalisir kesalahan saat proses yang dapat menyebabkan kerugian perusahaan. Penelitian dilakukan dengan metode pengamatan langsung saat proses berlangsung serta pengumpulan data massa bahan sebelum dan sesudah proses, juga parameter kritis yang tercantum dari buku PPI (Prosedur Pengolahan Induk) untuk 1 batch pembuatan obat dimana pada pembuatannya membutuhkan waktu lebih dari 24 jam. Dari pengamatan, diketahui bahwa pada proses pembuatan obat memiliki proses adiabatik dimana neraca massa yang dihasilkan memiliki persamaan massa masuk = massa keluar dan tidak adanya reaksi kimia yang berlangsung. Pada proses pengeringan, neraca panas dapat dihitung karena pada proses ini menghasilkan panas yang membutuhkan sejumlah energi pada prosesnya. Mesin pengering yang digunakan adalah mesin FBD (Fluidized Bed Dryer) yang membutuhkan sejumlah daya sehingga dapat diketahui efesiensi mesin ini untuk memaksimalkan proses. Kata Kunci : Obat, FBD, Neraca Massa, Neraca Panas, Proses Reference: Anief M., 2000. Ilmu Meracik Obat Teori dan Praktek,.UGM Press,.Yogyakarta. Anief, M., 1991. Apa Yang Perlu Diketahui Tentang Obat. Gadjah Mada University Press. Yogyakarta. Ansel, H.C., 1989. Pengantar Bentuk Sediaan Farmasi. diterjemahkan oleh Farida Ibrahim, Asmanizar, Iis Aisyah, Edisi keempat, 255-271, 607-608, 700, Jakarta, UI Press. Badan Pengawasan Obat dan Makanan, 2001. Pedoman Cara Pembuatan Obat yang Baik, Jakarta. Holman, J.P., 1994. Perpindahan Kalor. Erlangga. Jakarta Jas, A., 2007. Perihal Resep & Kern, D. Q.1965.Process Heat Transfer. New York: McGraw-Hill Book Company. Hermawan, Lutfi.2020.Laporan Kerja Praktek PT Kalbe Farma.Universitas Muhammadiyah Jakarta.Jakarta Howell John R and Buckius Richard O. 1987. Fundamentals of Engineering Thermodynamics. New York: McGraw-H Indriani, Irma.dkk.2009.Pembuatan Fluidized Bed Dryer Pengeringan Benih Pertaniann Secara Resmi Semi Batch.Universitas Sebelas Maret.Surakarta Perry, R.H and Green, D.W.. 1999. Perry’s Chemical Engineer’s Handbook. 7thed.. Mc Graw-Hill Book Company. New York. Pediatric Dosage Handbook (Including Neonatal Dosing, Drug Administration, & Extemporer Preparation), Lexi-Comp, 2007. Tjay, Tan Hoan dan Rahardja, Kirana, Obat-Obat Penting, Edisi keenam. Elex Media Komputindo, Jakarta. Universitas Sumatera Utara Press, 1-1