Jurnal Rekayasa Proses
Jurnal Rekayasa Proses is an open-access journal published by Chemical Engineering Department, Faculty of Engineering, Universitas Gadjah Mada as scientific journal to accommodate current topics related to chemical and biochemical process exploration and optimization which covers multi scale analysis from micro to macro and full plant size. Specialization topics covered by Jurnal Rekayasa Proses are: 1. Kinetics and Catalysis Includes simulations and experiments in reaction kinetics, catalyst synthesis and characterization, reactor design, process intensification, microreactor, multiphase reactors, multiscale phenomena, transfer phenomena in multiphase reactors. 2. Separation and Purification System Includes phase equilibrium, mass transfer, mixing and segregation, unit operation, distillation, absorption, extraction, membrane separation, adsorption, ion exchange, chromatography, crystallization and precipitation, supercritical fluids, bioprocess product purification. 3. Process System Engineering Includes simulation, analysis, optimization, and process control on chemical/biochemical processes based on mathematical modeling; multiscale modeling strategy (molecular level, phase level, unit level, and inter-unit integration); design of experiment (DoE); current methods on simulation for model parameter determination. 4. Oil, Gas, and Coal Technology Includes chemical engineering application on process optimization to achieve utmost efficiency in energy usage, natural gas purification, fractionation recovery, CO2 capture, coal liquefaction, enhanced oil recovery and current technology to deal with scarcity in fossil fuels and its environmental impacts. 5. Particle Technology Includes application of chemical engineering concepts on particulate system, which covers phenomenological study on nucleation, particle growth, breakage, and aggregation, particle population dynamic model, particulate fluid dynamic in chemical processes, characterization and engineering of particulate system. 6. Mineral Process Engineering Includes application of chemical engineering concepts in mineral ore processing, liberation techniques and purification, pyrometallurgy, hydrometallurgy, and energy efficiency in mineral processing industries. 7. Material and biomaterial Includes application of chemical engineering concepts in material synthesis, characterization, design and scale up of nano material synthesis, multiphase phenomena, material modifications (thin film, porous materials etc), contemporary synthesis techniques (such as chemical vapor deposition, hydrothermal synthesis, colloidal synthesis, nucleation mechanism and growth, nano particle dispersion stability, etc.). 8. Bioresource and Biomass Engineering Includes natural product processing to create higher economic value through purification and conversion techniques (such as natural dye, herbal supplements, dietary fibers, edible oils, etc), energy generation from biomass, life cycle and economic analysis on bioresource utilization. 9. Biochemistry and Bioprocess Engineering Includes biochemical reaction engineering, bioprocess optimization which includes microorganism selection and maintenance, bioprocess application for waste treatment, bioreactor modeling and optimization, downstream processing. 10. Biomedical Engineering Includes enhancement of cellular productions of enzymes, protein engineering, tissue engineering, materials for implants, and new materials to improve drug delivery system. 11. Energy, Water, Environment, and Sustainability Includes energy balances/audits in industries, energy conversion systems, energy storage and distribution system, water quality, water treatment, water quality analysis, green processes, waste minimization, environment remediation, and environment protection efforts (organic fertilizer production and application, biopesticides, etc.).
Articles
17 Documents
Search results for
, issue
"Vol 17 No 2 (2023): Volume 17, Number 2, 2023"
:
17 Documents
clear
Pengendapan nikel sulfat hasil pelindian bijih nikel laterit (limonit) menggunakan metode Solvent Displacement Crystallization (SDC)
Septiawan, Muhammad Ridwan;
Justiadi, Justiadi;
Sari, Dewi Purnama;
Nugroho, Vincentius Sulistyoaji;
Rianto, Muhammad Ikbal
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
|
DOI: 10.22146/jrekpros.83282
Penggunaan nikel sulfat sebagai bahan baku baterai litium akan meningkatkan permintaan nikel di masa depan. Peningkatan permintaan tersebut akan diikuti oleh peningkatan permintaan bijih nikel yang saat ini banyak berasal dari bijih nikel laterit. Khususnya, permintaan bijih nikel laterit kadar rendah (limonit, Ni ≤ 1,5%) yang saat ini belum banyak diolah. Berdasarkan hal tersebut, pada penelitian ini akan dilakukan pengolahan bijih nikel laterit kadar rendah (limonit) secara hidrometalurgi untuk memperoleh padatan nikel sulfat melalui proses pelindian menggunakan asam sulfat dan pengendapan menggunakan metode Solvent Displacement Crystallization (SDC). Tahapan pada penelitian ini meliputi preparasi, pelindian, pengendapan dan karakterisasi. Sampel bijih hasil preparasi dilarutkan dengan menggunakan asam sulfat pada proses pelindian dan dinetralisasi menggunakan CaCO3 untuk memperoleh larutan nikel sulfat yang kemudian diendapkan pada proses pengendapan menggunakan metode SDC. Endapan nikel sulfat selanjutnya dipisahkan dari larutan untuk dikarakterisasi menggunakan XRD, XRF, AAS dan SEM. Hasil penelitian menunjukkan bahwa perbandingan organik air (OA) 1,6:1; pH 2, waktu pengadukan 3 jam dan temperatur 20oC adalah parameter terbaik dengan persen pengendapan nikel yang diperoleh adalah 98,3%.
Heavy hydrocarbon recovery with integration of turboexpander and JT valve from highly CO2-containing natural gas for gas transmission pipeline
Yusupandi, Fauzi;
Widiatmoko, Pramujo;
Sukmana, Ira Febrianty;
Fitri, Hera Rahma;
Eviani, Mitra;
Devianto, Hary
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
|
DOI: 10.22146/jrekpros.82485
Demand of natural gas is predicted to increase since many valuable products can be produced. Water and heavy hydrocarbon content are the key for gas pipeline facility. To meet requirement of natural gas transportation, dehydration unit (DHU) and hydrocarbon dew point control unit (DPCU) are necessary to avoid water and hydrocarbon condensation during transmission. The conventional dehydration technology, TEG contactor, can lower water content from 1,304 mg/m3 to 80.35 mg/m3 where the maximum limit of water content in natural gas is 97 mg/m3 to prevent hydrate formation. DPCU is installed to remove heavy hydrocarbon, especially C5+. Integration of JT valve and turboexpander was employed to obtain the low gas dew point. The hot gas stream that entered the JT valve was observed. The lower hot bypass gas was applied, the lower hydrocarbon dew point and the more condensate flowrate was achieved. The highest power generation can be gained at low hot gas flow ratio which also influenced the exit pressure and temperature of compressor. In pipeline simulation, the pressure and temperature drop occurred at the high hot gas rate. To examine the arrival condition, dew point curves were generated and showed that the limitation of hot gas flow ratio has to be below 0.6 to prevent heavy hydrocarbon condensation in pipeline.
Cold sterilization of coconut water by membrane technology and UV-C
Aliwarga, Lienda;
Joenputri, Fiena;
Chandra, Livia;
Julian, Helen
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
|
DOI: 10.22146/jrekpros.82774
Coconut water contains amino acids, vitamins, antioxidants, and mineral, which are beneficial for human health. However, rapid degradation of coconut water due to the presence of protein, fat, and microbes has led to short shelf life and coconut water’s rancidity. Sterilization of coconut water by heat treatment has been proven to be effective in microorganism elimination, but results in major changes of coconut water’s sensory attributes. In this research, cold sterilization of coconut water was conducted by using ultrafiltration membrane and UV-C to preserve the sensory properties and nutritional components in coconut water. The radiation dose of UV-C and operating pressure of ultrafiltration membrane was varied to obtain the optimum operating condition. The sterilization process by UV-C did not remove fat and protein, which are the rancidity-causing components. In ultrafiltration sterilization, fat and protein can be removed by 74% and 31.37%. Superior microorganism elimination by ultrafiltration was obtained at 99.9999%, compared to that by UV-C at 90%. The ultrafiltration also retained the coconut water’s pH, total soluble solid, and flavor, while improved its clarity. At optimum operating pressure of 0.25 bar, the coconut water’s shelf life of 3 days, according to the Standar Nasional Indonesia (SNI), can be achieved.
Analisis kelayakan finansial dan non finansial untuk pendirian pabrik pakan ikan berbasis maggot
Wanta, Kevin Cleary;
Julianto, Shelvia;
Fynn, Vincentius Felix;
Miryanti, Y.I.P. Arry;
Kumalaputri, Angela Justina;
Santoso, Herry;
Tjuaja, Rudy;
Witono, Judy Retti B.
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
|
DOI: 10.22146/jrekpros.80087
Sektor perikanan di Indonesia tergolong sebagai sektor yang sangat besar, baik dalam hal produksi maupun konsumsinya. Kondisi ini menyebabkan kegiatan budidaya ikan juga akan meningkat seiring dengan kebutuhannya. Salah satu masalah yang dihadapi dalam kegiatan tersebut adalah masalah pakan ikan yang mahal. Untuk itu, pendirian pabrik pakan ikan yang murah dengan produk yang memenuhi standar nutrisi merupakan peluang besar. Studi ini mempelajari tentang evaluasi ekonomi terhadap kelayakan finansial dan non finansial dari pabrik pakan ikan berbasis maggot. Analisis kelayakan finansial yang telah dilakukan menunjukkan bahwa nilai ROI, PBP, NPV, IRR, dan BEP sebesar 20,84%, 5,48 tahun, Rp 307.103.117, 15,36%, dan 32,11%, secara berurutan. Berdasarkan hasil perhitungan tersebut, seluruh parameter kelayakan finansial menunjukkan bahwa pabrik pakan ikan berbasis maggot ini layak untuk didirikan. Tidak hanya itu, pendirian pabrik tersebut juga memberikan pengaruh positif secara non finansial. Aspek lingkungan, teknikal, sosial-ekonomi, dan pasar mendukung kelayakan pendirian pabrik ini. Lebih jauh, pabrik pakan ikan ini juga mendukung usaha untuk mengatasi permasalahan sampah organik. Kegiatan budidaya maggot dengan menggunakan sampah organik ini akan tumbuh karena maggot yang dihasilkan dapat digunakan sebagai bahan baku utama untuk produksi pakan ikan.
Carbon composite of NiO hydrothermal impregnation from sugarcane bagasse and its electrochemical properties
Nasti, Al Nadine De;
Siburian, Kyfti Yolanda;
Sembiring, Abraham Danofan;
Kristianto, Hans;
Susanti, Ratna Frida;
Oktaviano, Haryo Satriya;
Nugroho, Agung
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
|
DOI: 10.22146/jrekpros.88210
Sugarcane bagasse (SB) can synthesize activated carbon (AC) through a two-step calcination process at calcination at 400oC and activation at 800oC. NaOH 0.1 M is used to activate the pre-carbonized sample in the activation step. The AC samples undergo hydrothermal impregnation with nickel oxide (NiO) at 110°C. The X-ray diffraction (XRD) pattern and Energy dispersive X-ray spectroscopy (EDX) confirmed the presence of NiO after this process. Scanning Electron Microscope (SEM) indicates the presence of pore structures in the sample morphology. A three-electrode system with 1 M Na2SO4 as an electrolyte was employed to assess the electrochemical properties. The specific capacitance for activated carbon derived from SB stands at 89.53 F/g at 0.05 A/g current density, while after impregnation with NiO, it increases to 250.53 F/g at the same current density. The results demonstrate the possibility of activated carbon from sugarcane bagasse waste composited with NiO as supercapacitor electrodes.
Jurnal rekayasa proses submission update
Petrus, Himawan Tri Bayu Murti
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
Aiming to be able to provide much better service and scientific publishing media for all related stakeholders, Jurnal Rekayasa Process is excited to bring you some important updates. First, we would like to inform you that we have transitioned to a new submission platform. We will no longer be accepting submissions through the old page https://jurnal.ugm.ac.id/jrekpros. Instead, we encourage all authors and researchers to utilize our new and improved submission platform at https://jurnal.ugm.ac.id/v3/jrekpros. Your cooperation in adhering to this change is highly appreciated, and we believe that this update will contribute to a more efficient submission process for everyone involved. Furthermore, we are pleased to announce a change in our publication schedule. Starting from the year 2024, the Journal Rekayasa Proses will publish three issues a year, specifically in April, August, and December. We trust that this adjustment will facilitate a more comprehensive and timely dissemination of valuable research. We sincerely appreciate your attention to these updates and your continued support. If you have any questions or concerns, feel free to reach out to our editorial team.
Pembaruan informasi pengumpulan Jurnal Rekayasa Proses
Petrus, Himawan Tri Bayu Murti
Jurnal Rekayasa Proses Vol 17 No 2 (2023): Volume 17, Number 2, 2023
Publisher : Jurnal Rekayasa Proses
Show Abstract
|
Download Original
|
Original Source
|
Check in Google Scholar
Dengan tujuan untuk dapat memberikan layanan yang lebih baik dan media publikasi ilmiah yang lebih baik bagi semua pihak terkait, Jurnal Rekayasa Proses dengan senang hati membawa beberapa pembaruan penting untuk Anda. Pertama-tama, kami ingin memberitahu Anda bahwa kami beralih ke platform pengiriman yang baru. Kami tidak akan lagi menerima pengiriman melalui halaman lama https://jurnal.ugm.ac.id/jrekpros. Sebaliknya, kami mendorong semua penulis dan peneliti untuk menggunakan platform pengiriman baru dan ditingkatkan kami di https://jurnal.ugm.ac.id/v3/jrekpros. Kerjasama Anda dalam mengikuti perubahan ini sangat dihargai, dan kami yakin bahwa pembaruan ini akan berkontribusi pada proses pengiriman yang lebih efisien bagi semua pihak yang terlibat. Selain itu, dengan senang hati kami mengumumkan perubahan jadwal publikasi kami. Mulai dari tahun 2024, Jurnal Rekayasa Proses akan menerbitkan tiga edisi setiap tahun, khususnya pada bulan April, Agustus, dan Desember. Kami yakin bahwa penyesuaian ini akan memfasilitasi penyebaran penelitian yang bernilai secara lebih menyeluruh dan tepat waktu. Kami sungguh menghargai perhatian Anda terhadap pembaruan ini dan dukungan berkelanjutan Anda. Jika Anda memiliki pertanyaan atau kekhawatiran, jangan ragu untuk menghubungi tim redaksi kami.