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Conference on Energy Engineering & 7th International Conference ofThermofluids 2015 978-0-7354-1391-7 (ISBN)2016, YogyakartaAIP Publishing LLChttps://aip.scitation.org/doi/abs/10. l 063/1.4949318https://doi .org/ I 0.1063/ l .4949318Scopus
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Alamat Artikel Terindeks di (jika ada)
Conference on Energy Engineering & 7th International Conference of Thermo fluids 20 I 5978-0-7354-1391-7 (ISBN)
2016, YogyakartaAIP Publishing LLChttps://aip.scitation.org/doi/abs/ I 0.1063/1.4949318https://doi.org/ I 0.1063/1.4949318Scopus
Kategori Publikasi Makalah (beri ✓pada kategori yang tepat) B
✓ Prosiding Forum llmiah lnternasionalProsiding Forum llmiah Nasional
Hasil Penilaian Peer Review Nllal Makslmal Prosidlng Nllai Akhir
Komponcn Yang Yang Dinilai lntcrnasional Nasional Dipcroleh
□ □ a. Kelem�kaoan unsur isi prosiding (10%) 3,00 2,75 b. Ruang lingkup dan kedalaman pembahasan 9,00 8,00
(30%)c. Kecukupan dan kemutahiran data/informasi dan 9,00 8,50
metodoloe.i (30%)d. Kelengkapan unsur dan kualitas 9,00 8,00
terbitan/orosidine.(3 0%)Total = (100%) 30.00 27,25
Catatan Penilaian Paper oleh Reviewer : a) Kesesuaian dan kelengkapan unsur isi paper:
Penulisan artikel sesuai dengan "Guide for Author" (Title, Abstract, Introduction, Research Methods, Results andDiscussion, Conclusion, References). Substansi tentang konversi energi, sesuai dengan bidang keahlian pengusul.(nilai: 2,75)
b) Ruang lingkup dan kedalaman pembahasan:Substansi artikel sesuai dengan ruang lingkup seminar/prosiding (energy engineering). Kedalaman pembahasankurang detil, hanya 1 rujukan yang digunakan untuk menganalisis basil. (nilai: 8,40)
c) Kecukupan dan kemutakhiran data/informnsi dnn metodologi:lnformasi yang disajikan menunjukkan adanya kebaruan informasi. Metodologi disampaikan secara jelas danlengkap. Dari 19 referensi yang digunakan 8 buah mcrupakan artikcl jumal yang terbit dalam waktu IO th tcrakhir.(nilai: 8,50).
d) Kelengkapan unsur dan kunlitas terbitnn:Artikel diterbitkan oleh AIP (terindeks scopus, SJR: 0, 180(20 I 5), sebagai basil dari Regional Conference onEnergy Engineering & 7th International Conference of Thermofluids 2015. Ada beberapa kesalahan dalam tatatulis. nilai: 8,25
Semarang, Revi�
Dr. Susilo Adi Widyanto, S.T., M.T. NIP. 197002171994121001 Unit kerja : Departemen Teknik Mesin FT UNDIP
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The development of the super-biodiesel production continuously from Sunanpecan oil through the process of reactive distillation (Conference Paper)
, , , ,
Department of Mechanical Engineering, Faculty of Engineering, Diponegoro University, IndonesiaDepartment of Chemical Engineering, Faculty of Engineering, Diponegoro University, Indonesia
AbstractIn general, a vegetable oil-based biodiesel production commercially operates a batch process with high investmentsand operational costs. Thus, it is necessary to develop super-biodiesel production from sunan pecan oil continuouslythrough the process of reactive distillation. There are four advantages of the reactive distillation process for thebiodiesel production, as follows: (i) it incorporates the process of transesterification reaction, and product separation ofresidual reactants become one stage of the process, so it saves the investment and operation costs, (ii) it reduces theneed for raw materials because the methanol needed corresponds to the stoichiometry, so it also reduces theoperation costs, (iii) the holdup time in the column is relatively short (5±0,5 minutes) compared to the batch process(1-2 hours), so it will reduce the operational production costs, and (iv) it is able to shift the reaction equilibrium,because the products and reactants that do not react are instantly separated (based on Le Chatelier's principles) so theconversion will be increased. However, the very crucial problem is determining the design tools and processconditions in order to maximize the conversion of the transesterification reaction in both phases. Thus, the purpose ofthis research was to design a continuous reactive distillation process by using a recycled condensate to increase theproductivity of the super-biodiesel from sunan pecan oil. The research was carried out in three stages including (i)designing and fabricating the reactive distillation equipment, (ii) testing the tool performance and the optimizationof the biodiesel production, and (iii) biodiesel testing on the diesel engine. These three stages were needed indesigning and scaling-up the process tools and the process operation commercially. The reactive distillation processtools were designed and manufactured with reference to the design system tower by Kitzer, et.al. (2008). Themanufactured reactive distillation consisted of packing distillation columns equipped with a reboiler and condenser,with the prototype made of stainless steel material equipped with sigh glass. The filling column expands the contact ofliquid-vapor phase so that the two reactants between methanol and oil would be converted into methyl ester andglycerol. The initial results of the study indicated that the relatively good condition is reached at the peaktemperature and the base of the column of 62°C and 71°C with NaOH 2% of methanol weight as the catalyst at thefeed ratio of methanol and the sunan pecan oil 4:1. The result of the performance test of the diesel engine indicatedthat the efficiency of the biodiesel fuel was achieved relatively good at 1.7% with 2500 rpm engine speed. © 2016Author(s).
SciVal Topic Prominence
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Author keywordsContinuous pecan oil reactive distillation sunan pecan super biodiesel
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AIP Conference ProceedingsVolume 1737, 3 June 2016, Article number 0600113rd AUN/SEED-NET Regional Conference on Energy Engineering and the 7th InternationalConference on Thermofluids, RCEnE/THERMOFLUID 2015; Yogyakarta; Indonesia; 19 November2015 through 20 November 2015; Code 122232
Yohana, E.a Yulianto, M.E.b Ikhsan, D.b Nanta, A.M.b Puspitasari, R.b
a
b
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Phase equilibria | Purification | Three-phase equilibrium
ISSN: 0094243XISBN: 978-073541391-7Source Type: Conference Proceeding
DOI: 10.1063/1.4949318Document Type: Conference Paper
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Santandera, C.M.G., Rueda, S.M.G., Silvaa, D.L.D., Costa, A.C.D., Filhoa, R.M., Regina, M.Simulation of the reactive distillation process for biodiesel production(2010) 20th European Symposium on Computer Aided Process Engineering-SCAPE20edited by S. Pierucci and G. Buzzi Ferraris
Original language: English Volume Editors: Biwa T.,Kamal S.,Ohgaki H.,Tanimoto J.,NuthongC.,Widyaparaga A.,Ishihara K.N.,Saptoadi H.,SentanuhadyJ.,Deendarlianto,Alauddin Z.A.Z.,Reksowardojo I.,Indarto,TakataY.,Pranoto I.Sponsors:Publisher: American Institute of Physics Inc.
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Kazunori, H., Eiji, K., Hiroshi, T., Koji, T., Daizo, M.Combustion characteristics of diesel engines with waste vegetable oil methyl ester(2001) The Fifth Symposium on Diagnostics and Modeling of Combustion in Internal Combustion EnginesNagoya, 14 July
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An improved algorithm of image
processing technique for film
thickness measurement in a horizontal
stratified gas-liquid two-phase flowHadiyan Yusuf Kuntoro, Akhmad Zidni Hudaya, Okto
Dinaryanto, Akmal Irfan Majid, and Deendarlianto
AIP Conference Proceedings 1737, 040010 (2016);
https://doi.org/10.1063/1.4949298
June 2016
Image processing analysis on the air-
water slug two-phase flow in a
horizontal pipeOkto Dinaryanto, Arif Widyatama, Akmal Irfan Majid,
Deendarlianto, and Indarto
AIP Conference Proceedings 1737, 040011 (2016);
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June 2016
Experimental investigation on the
interfacial characteristics of stratified
air-water two-phase flow in a
horizontal pipeAkhmad Zidni Hudaya, Hadiyan Yusuf Kuntoro, Okto
Dinaryanto, Deendarlianto, and Indarto
AIP Conference Proceedings 1737, 040012 (2016);
https://doi.org/10.1063/1.4949300
June 2016
Development of liquid-liquid
cylindrical cyclone (LLCC) separator for
oil-water separationIrfan Aditya Dharma, Fuad Arffan, Anggi Riyo Prambudi,
Adhika Widyaparaga, Indro Pranoto, and Khasani
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June 2016
Experimental study on the void
fraction of air-water two-phase flow in
a horizontal circular minichannelSudarja, Indarto, Deendarlianto, and Aqli Haq
AIP Conference Proceedings 1737, 040014 (2016);
https://doi.org/10.1063/1.4949302
June 2016
Characteristics of the air-water
counter current two-phase flow in a
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1/30 scale of pressurized water reactor
(PWR): Interfacial behavior and CCFL
dataApip Badarudin, Indarto, Deendarlianto, and Andriyanto
Setyawan
AIP Conference Proceedings 1737, 040015 (2016);
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PHASE CHANGE AND HEAT AND MASSTRANSFER
June 2016
Fouling resistance prediction using
artificial neural network nonlinear
auto-regressive with exogenous input
model based on operating conditions
and fluid properties correlationsTotok R. Biyanto
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AIP Conference Proceedings 1737, 050001 (2016);
https://doi.org/10.1063/1.4949304
June 2016
Experimental investigation on the
phenomena around the onset nucleate
boiling during the impacting of a
droplet on the hot surfaceWindy H. Mitrakusuma, Deendarlianto, Samsul Kamal,
Indarto, and M. Nuriyadi
AIP Conference Proceedings 1737, 050002 (2016);
https://doi.org/10.1063/1.4949305
June 2016
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Numerical study of effect parameter
fluid flow nanofluid Al O -water on
heat transfer in corrugated tubeAnwar Ilmar Ramadhan, Ery Diniardi, and Erwin
Dermawan
AIP Conference Proceedings 1737, 050003 (2016);
https://doi.org/10.1063/1.4949306
June 2016
Thermal performance of evacuated
tube heat pipe solar collectorNandy Putra, M. R. Kristian, R. David, K. Haliansyah, and
Bambang Ariantara
AIP Conference Proceedings 1737, 050004 (2016);
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2 3
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RENEWABLE ENERGY AND BIOFUELS
June 2016
Wave energy resource assessment
based on satellite observations around
IndonesiaAgustinus Ribal, and Stefan Zieger
AIP Conference Proceedings 1737, 060001 (2016);
https://doi.org/10.1063/1.4949308
June 2016
Experimental study of heat transfer
enhancement in solar air heater with
different angle of attack of V-down
continuous ribsTri Istanto, Dominicus Danardono, Indri Yaningsih, and
Agung Tri Wijayanta
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AIP Conference Proceedings 1737, 060002 (2016);
https://doi.org/10.1063/1.4949309
June 2016
Effect of fermentation conditions on
biohydrogen production from cassava
starch by anaerobic mixed culturesHai M. Tien, Kien A. Le, An T. Tran, and Phung K. Le
AIP Conference Proceedings 1737, 060003 (2016);
https://doi.org/10.1063/1.4949310
June 2016
Extraction fatty acid as a source to
produce biofuel in microalgae
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Chlorella sp. and Spirulina sp. using
supercritical carbon dioxideDo Chiem Tai, Dam Thi Thanh Hai, Nguyen Hanh Vinh,
and Le Thi Kim Phung
AIP Conference Proceedings 1737, 060004 (2016);
https://doi.org/10.1063/1.4949311
June 2016
Effect of cooled EGR on performance
and exhaust gas emissions in EFI spark
ignition engine fueled by gasoline and
wet methanol blendsHeru Rohadi, Syaiful, and Myung-Whan Bae
AIP Conference Proceedings 1737, 060005 (2016);
https://doi.org/10.1063/1.4949312
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June 2016
Effective conversion of biomass tar
into fuel gases in a microwave reactorSamsudin Anis, and Z. A. Zainal
AIP Conference Proceedings 1737, 060006 (2016);
https://doi.org/10.1063/1.4949313
June 2016
Zoning of the territory of Russia by the
effectiveness of low-potential heat of
the ground and atmospheric air for
heating buildingsG. P. Vasilyev, M. V. Kolesova, V. F. Gornov, and I. A.
Yurchenko
AIP Conference Proceedings 1737, 060007 (2016);
https://doi.org/10.1063/1.4949314
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June 2016
Catalytic cracking of the top phase
fraction of bio-oil into upgraded liquid
oilSunarno, Rochmadi, Panut Mulyono, and Arief Budiman
AIP Conference Proceedings 1737, 060008 (2016);
https://doi.org/10.1063/1.4949315
June 2016
Catalytic decomposition of tar derived
from wood waste pyrolysis using
Indonesian low grade iron ore as
catalystDoni Rahmat Wicakso, Sutijan, Rochmadi, and Arief
Budiman
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AIP Conference Proceedings 1737, 060009 (2016);
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June 2016
Quality evaluation of onion bulbs
during low temperature dryingM. Djaeni, N. Asiah, Y. P. Wibowo, and D. A. A. Yusron
AIP Conference Proceedings 1737, 060010 (2016);
https://doi.org/10.1063/1.4949317
June 2016
The development of the super-
biodiesel production continuously
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from Sunan pecan oil through the
process of reactive distillationEflita Yohana, Moh. Endy Yulianto, Diyono Ikhsan, Aditya
Marga Nanta, and Ristiyanti Puspitasari
AIP Conference Proceedings 1737, 060011 (2016);
https://doi.org/10.1063/1.4949318
June 2016
Catalytic and electrochemical
behaviour of solid oxide fuel cell
operated with simulated-biogas
mixturesT. Dang-Long, T. Quang-Tuyen, and Y. Shiratori
AIP Conference Proceedings 1737, 060012 (2016);
https://doi.org/10.1063/1.4949319
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June 2016
The optimization process of biodiesel
production using multiple feedstock
(CPO and Jatropha) with assistance of
ultrasound at 40 kHzBerkah Fajar, Wilis, and Widayat
AIP Conference Proceedings 1737, 060013 (2016);
https://doi.org/10.1063/1.4949320
June 2016
The effect of stirring in the
hydrothermal process to convert the
mixed municipal solid waste into
uniform solid fuelP. Prawisudha, G. F. Mu’min, K. Yoshikawa, and A. D.
Pasek
AIP Conference Proceedings 1737, 060014 (2016);
https://doi.org/10.1063/1.4949321
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June 2016
Hydrothermal liquefaction of palm oil
empty fruit bunch (EFB) into bio-oil in
different organic solventsRakhman Sarwono, Eka Dian Pusfitasari, and
Muhammad Ghozali
AIP Conference Proceedings 1737, 060015 (2016);
https://doi.org/10.1063/1.4949322
June 2016
The performance & flow visualization
studies of three-dimensional (3-D)
wind turbine blade modelsSutrisno, Prajitno, Purnomo, and Setyawan B. W.
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AIP Conference Proceedings 1737, 060016 (2016);
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The development of the super-biodiesel production continuouslyfrom Sunan pecan oil through theprocess of reactive distillationAIP Conference Proceedings 1737, 060011 (2016); https://doi.org/10.1063/1.4949318
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ABSTRACT
In general, a vegetable oil-based biodiesel production commercially
operates a batch process with high investments and operational costs.
Thus, it is necessary to develop super-biodiesel production from sunan
pecan oil continuously through the process of reactive distillation. There
are four advantages of the reactive distillation process for the biodiesel
production, as follows: (i) it incorporates the process of
transesterification reaction, and product separation of residual
reactants become one stage of the process, so it saves the investment
and operation costs, (ii) it reduces the need for raw materials because
the methanol needed corresponds to the stoichiometry, so it also
reduces the operation costs, (iii) the holdup time in the column is
relatively short (5±0,5 minutes) compared to the batch process (1-2
hours), so it will reduce the operational production costs, and (iv) it is
able to shift the reaction equilibrium, because the products and
Lecturer of Department of Mechanical Engineering, Faculty of Engineering, Diponegoro
University, Indonesia
Lecturer of Department of Chemical Engineering, Faculty of Engineering, Diponegoro
University, Indonesia
Student of Department of Chemical Engineering, Faculty of Engineering, Diponegoro
University, Indonesia
E-mail: [email protected]
Eflita Yohana , Moh. Endy Yulianto , Diyono Ikhsan , Aditya Marga Nanta , and Ristiyanti
Puspitasari
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26/6/2019 Optical arc sensor using energy harvesting power source: AIP Conference Proceedings: Vol 1737, No 1
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Optical arc sensor using energyharvesting power sourceAIP Conference Proceedings 1737, 030001 (2016); https://doi.org/10.1063/1.4949281
Dept. of Information and Telecommunication Engineering Incheon National University Incheon
22012, Republic of Korea
Kyoo Nam Choi and Hee Hyuk Rho
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26/6/2019 The development and testing of a novel cross axis wind turbine: AIP Conference Proceedings: Vol 1737, No 1
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The development and testing of anovel cross axis wind turbineAIP Conference Proceedings 1737, 030003 (2016); https://doi.org/10.1063/1.4949283
Department of Mechanical Engineering, Faculty of Engineering, University of Malaya, 50603
Kuala Lumpur, Malaysia
Faculty of Engineering, Universiti Malaysia Sabah, Jln. UMS, 88400 Kota Kinabalu, Sabah,
Malaysia
Department of Mechanical and Electro-Mechanical Engineering, National Ilan University, Ilan
260, Taiwan
Corresponding author: [email protected]
W. T. Chong , W. K. Muzammil , M. Gwani , K. H. Wong , A. Fazlizan , C. T. Wang , and S. C.
Poh
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26/6/2019 Committee
rcenethermofluid2015.ugm.ac.id/about-conference/committee/ 2/5
International Scienti�c CommitteeProf. Keiichi N. Ishihara (Kyoto University, Japan)
Prof. Hideaki Ohgaki (Kyoto University, Japan)
Prof Jun Tanimoto (Kyushu University, Japan)
Prof. Yasuyuki Takata (Kyushu University, Japan)
Prof. Tetsushi Biwa (Tohoku University, Japan)
Dr. Chaiwat Nuthong (King Mongkut’s Institute of Technology Ladkrabang
Thailand)
Prof. Dr. Zainal Alimuddin b. Zainal Alauddin (Universiti Sains Malaysia)
Prof. Iman Reksowardojo (Institut Teknologi Bandung, Indonesia)
AUN/SEED-NET Field Management Members for
EnergyDr. Chaiwat Nuthong (King Mongkut’s Institute of Technology Ladkrabang)
Prof. Dr. Zainal Alimuddin b. Zainal Alauddin (Universiti Sains Malaysia)
Prof. Iman Reksowardojo (Institut Teknologi Bandung, Indonesia)
Organizing CommitteeGeneral Chair
Prof. Jamasri (Universitas Gadjah Mada)
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General Co-Chairs
Prof. Harwin Saptoadi (Universitas Gadjah Mada)
Prof. M. Noer Ilman (Universitas Gadjah Mada)
Chairs
Dr. Muslim Mahardika (Universitas Gadjah Mada)
Dr. Adhika Widyaparaga (Universitas Gadjah Mada)
Dr. I Gusti Bagus Budi Dharma (Universitas Gadjah Mada)
Dr. Kusmono (Universitas Gadjah Mada)
Indro Pranoto, M.Eng. (Universitas Gadjah Mada)
Technical Program Committee
Prof. Harwin Saptoadi (Universitas Gadjah Mada)
Dr. Deendarlianto (Universitas Gadjah Mada)
Dr. Jayan Sentanuhady (Universitas Gadjah Mada)
Dr. Chaiwat Nuthong (King Mongkut’s Institute of Technology Ladkrabang)
Prof. Dr. Zainal Alimuddin b. Zainal Alauddin (Universiti Sains Malaysia)
Prof. Iman Reksowardojo (Institut Teknologi Bandung, Indonesia)
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Dr. Adhika Widyaparaga (Universitas Gadjah Mada)
Indro Pranoto, M.Eng. (Universitas Gadjah Mada)
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26/6/2019 Keynote Speaker
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Keynote Speaker
Prof. Samsul Kamal
(Department of Mechanical and Industrial Engineering, Gadjah Mada University, In)
Prof. Keiichi Ishihara
(Graduate School of Energy Science, Kyoto University)
Japan
Indonesia
26/6/2019 Keynote Speaker
rcenethermofluid2015.ugm.ac.id/about-conference/keynote-speaker/ 3/5
Prof. Hideaki Ohgaki
(Institute of Advanced Energy, Kyoto University)
Prof. Jun Tanimoto
(Department of Energy and Environmental Engineering, Kyushu University)
Prof. Yasuyuki Takata
(International Institute on Carbon-Neutral Energy Research, KyushuUniversity)
Japan
Japan
Japan
26/6/2019 Keynote Speaker
rcenethermofluid2015.ugm.ac.id/about-conference/keynote-speaker/ 4/5
Prof. Tetsushi Biwa
(Department of Mechanical Systems and Design, Tohoku University)
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Japan
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