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Journal : Journal of Mechanical Engineering Science and Technology

Design and Implementation of MOAT (Moth Attractor Technology): Glue-Tube-Light System with RTC (Real Time Clock) Module Wicaksana, Yusuf Aji; Prasetyo, Dani; Syachofina, Himmatul Ulya Alfartri; Oktaviani, Eka Larasati; Wulandari, Retno
Journal of Mechanical Engineering Science and Technology (JMEST) Vol 2, No 2 (2018)
Publisher : Universitas Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (40.356 KB) | DOI: 10.17977/um016v2i22018p057

Abstract

Massive reduction of onion in Kabupaten Probolinggo was caused by Spodoptera exigua attacks. Since 2012, the significant reduction of onion production was up to 19%. One of the farmers group facing the reduction is Sumber Makmur III with total of reduction is up to 61.69%. The culture technique has done by farmers using conventional lamp and net which have many weaknesses from its implementation. Based on this problem, innovative technology MOAT (Moth Attractor Technology) has created as portable moth attractor. It is the innovative solution using lamp, box and glue completed by RTC (Real Time Clock) and having special glue to intensify the effectiveness and efficiency in exterminating the moths. Following methods have done are (1) literature study and observation, (2) designing product, (3) production, (4) device trials, (5) product’s socialization and implementation, and also (6) monitoring and evaluation. The result is MOAT which can effectively attract up to 770 months in a week. It can help the farmers reduce the damage of onion and increase the production up to 11.07 quintal in 180 m2 area. Furthermore, it can also increase the income of onion farmers.
Performance Enhancement of Shell and Tube Heat Exchanger on Parallel Flow with Single Segmental Baffle Permanasari, Avita Ayu; Puspitasari, Poppy; Sukarni, Sukarni; Wulandari, Retno
Journal of Mechanical Engineering Science and Technology (JMEST) Vol 4, No 1 (2020)
Publisher : Universitas Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.17977/um016v4i12020p043

Abstract

The shell and tube heat exchanger was a tool to exchange the heat energy between fluids with different temperatures that occurred through direct or indirect contact. The energy exchange in fluids could be occurred with the same phase (liquid to liquid or gas to gas) or two fluids with different phase. To date, the process of heat transfer in the industrial field was crucial in machine work. Therefore, there were studies directed to optimize and develop the function and thermal performance of a heat exchanger by adding Baffles to the side of the shell. Vortex flow that occurs with the addition of baffles will make the area of fluid contact in the shell with the tube wall larger, so the heat transfer between the two fluids will increase. This study aimed to obtain the efficiency of the heat exchanger and its effectiveness when put on parallel flow. The heat exchanger had the dimensions of 54.6 x 10-3 m in outer diameter and 22.4 x 10-3 m in inner diameter with a tube thickness of 3 mm. The variations on water flow from both fluids were 0.5, 1, 1.5, 2 l/min for hot water and 1, 2, 3, 4 l/min for cold water to obtain the effectiveness of heat exchanger on parallel flow. This research heated the hot fluid in electric heating and used water as the cold fluid. The results showed that heat exchanger with single segmental baffle was more efficient in reducing heat in hot water than heat exchanger without bafe. The flow of fluid affected the average temperature difference; the higher the flow of fluid created a more significant temperature difference. The use of single segmental baffle affected the average temperature difference that was higher than without the baffle. The use of single segmental baffle also influenced the heat transfer greater than without baffle because of the longer distance travelled by the fluid on single segmental baffle with the same flow. Thus, the heat transfer process that occurred was more significant by using a single segmental baffle.
Pyrolysis Kinetics of Spirulina platensis and Non-condensable Gas Product Distribution in a Fixed-Bed Reactor Aminullah, Ahmad Yusril; Sukarni, Sukarni; Wulandari, Retno; Shahbaz, Muhammad
Journal of Mechanical Engineering Science and Technology (JMEST) Vol 8, No 1 (2024)
Publisher : Universitas Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.17977/um016v8i12024p151

Abstract

Energy is a fundamental factor for civilization development and sustainability. However, energy sources are dominated by non-renewable fractions, such as fossil fuels. Renewable biomass is projected to be a future fuel source. Spirulina platensis (SP) has numerous advantages compared to other biomass, and it is considered 3rd generation biomass that does not interfere with food and land usage and has a relatively low main decomposition temperature at 325.7℃. Thermogravimetric analysis (TGA) was conducted to observe SP kinetics parameters, especially activation energy. Kissinger-Akahira-Sunose (KAS), Ozawa-Flynn-Wall (OFW), and Starink iso-conversional methods reveal that SP has an activation energy of 152.33, 154.56, and 152.78 kJ/mol, respectively. The coefficient correlation (R2) of OFW is the highest compared to its counterpart at 0.9918. Non-condensable gas (H2, CH4, and CO2) product distribution is characterized using a fixed-bed pyrolysis reactor. The average concentrations of H2, CH4, and CO2 are 3775.2, 83792.19, and 23592.58 ppm, in that order. H2 production is linked with carbohydrates and protein decomposition. CH4 yield heavily depends on protein degradation, followed by carbohydrates and lipids. CO2 yield mainly originated from carbohydrate cracking. The optimum SP pyrolysis temperature is 310—370℃ based on its non-condensable gas yield, TGA result, OFW kinetics method, and thermodynamics parameter, where it has relatively low activation energy (139.29 kJ/mol) accompanied by a significant increase of non-condensable-gas-production.
Simulation of the Performance of Kevlar Impregnated Shear Thickening Fluid Ballistic Test Results (STF) Ballistic Test Results Prasetya, Riduwan; Andoko, Andoko; Suprayitno, Suprayitno; Wulandari, Retno; Trihutomo, Prihanto; Mishima, Kenji; Janas, Dawid
Journal of Mechanical Engineering Science and Technology (JMEST) Vol 8, No 1 (2024)
Publisher : Universitas Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.17977/um016v8i12024p054

Abstract

This study explores the enhancement of Kevlar fabric’s ballistic performance through impregnation with Shear Thickening Fluid (STF) for potential application in soft body armor. The experimental approach often fails to elucidate mechanical phenomena critical for the development of lightweight and high-strength body armor designs. To address this limitation, the finite element method, specifically using ANSYS/LS-DYNA R.13, was employed for a comprehensive analysis. The simulation aimed to evaluate the impact of STF on Kevlar fabric by assessing projectile velocity, force exerted by the projectile onto the fabric, displacement, stress distribution, and fabric failure mechanisms. Kevlar yarn was modeled as a shell element formed into fabric with a sine wave profile, investigating two types of STF: SiO2-PEG200 (S0) and SiO2-PEG200-B4C (S1), differing in maximum viscosities. The addition of STF resulted in increased coefficients of friction on Kevlar, with the highest values observed for the SiO2-PEG200-B4C impregnated fabric (  =0.87 and =0.82). The incorporation of the second STF type (S1) significantly reduced the projectile’s velocity from an initial 200 m/s to 153.2 m/s upon impact. Additionally, the force on the S1 fabric surged to 121,556 N, a threefold increase compared to neat Kevlar. STF's influence was further evidenced by enhanced fabric displacement and more uniform stress distribution upon ballistic impact. The fabric's thickening upon failure indicated STF's ability to enlarge the deformation area, facilitating uniform distribution of ballistic kinetic energy across the impact zone. Notably, the fabric impregnated with the second type of STF, featuring boron carbide (S1), demonstrated superior ballistic performance. This study concludes that STF-impregnated Kevlar fabric, particularly the SiO2-PEG200-B4C variant, not only surpasses the ballistic performance of neat Kevlar but also meets the criteria for NIJ Level IIIA standards, highlighting its potential as a highly effective material for advanced soft body armor designs.
Characteristics of Liquid Products from Spirulina platensis Pyrolysis under Microwave Irradiation with Activated Carbon Additive Romaz, Mohammad Mirza Yuniar; Sukarni, Sukarni; Wulandari, Retno
Journal of Mechanical Engineering Science and Technology (JMEST) Vol 8, No 2 (2024)
Publisher : Universitas Negeri Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.17977/um016v8i22024p503

Abstract

Global energy consumption has surged due to the population's rapid growth, leading to a switch to using renewable and clean energy. Among various strategies for developing renewable and clean energy, biomass pyrolysis emerged as attractive, and microwave irradiation pyrolysis is a prominent technique. This research aims to determine the ideal parameters for microwave-assisted pyrolysis of Spirulina platensis (SP) microalgae in order to produce high-value liquid products with the addition of activated carbon (AC) additives. Liquid bio-oil products were characterized concerning their calorific value, chemical bonds, and thermal stability. This research also investigates product distribution as a function of AC loading. Using 900W output power of microwave and 550 °C pyrolysis temperature, the pyrolysis process was shortened by 36.5% at 15% of AC loading. At 20% AC loading, the pyrolysis duration was shortened by 33%. This study demonstrated that the highest liquid and minimum solid residue were obtained at 20% AC loading. The heating value of liquid bio-oil with no AC additives was 35.419 MJ/kg, while at a 10% AC additive was 37.464 MJ/kg. The highest heating value was found at a 15% AC additive, which was 39.345 MJ/kg; meanwhile, at a 20% AC additive, it was 36.097 MJ/kg. These findings conclusively showed that the liquid bio-oil's quality was significantly improved by the addition of activated carbon (AC), establishing it as an attractive option for the microwave-assisted pyrolysis (MAP) process that produces advanced renewable fuels.
Co-Authors -, Yasmini A Halim Abdul Ghofir Abdul Kahar Adelia, Masayu Adilla , Zahrani Crisna Adistiani, Adistiani Adji, Koenta Adriansyah, Walid Afandi, Benny Afifa, Fika Rizki Afifah, Muanda Afriadi, Musbar Agus Dwi Cahya Agus Naryoso S.Sos, M.Si, Agus Naryoso Agustini, Annisa’A Agustriani, Jenny Aini, Indriya Nur Aisy, Nurjihan Rohadatul Aisyah Larasati Akbar, Rayyan Taufik Amanah, Cantika Wira Amelia, R.A Aminullah, Ahmad Yusril Anak Agung Gede Sugianthara Andi Nikhlani Andini, Evita Tri Andoko Andoko, Andoko Anggini, Indah Tri Anggraini, Ade Merly Anggraini, Ayudia Anisa, Feny Anisa, Izzatil Annur, Shohifah Anwar Made Aprillia, Elisa Aprisunadi, Aprisunadi Apriyani, Tantri Apriyanti, Liana Ardhiyanto, Firmansah Dwi Arido Laksono Arista Apriani, Arista Arly, Raden Ibnu arrahman, ikhsan nazar Arum, Sekar Ganda Ning Tyas ary yunanto Aryanti Aryanti As Shaggy, Muh. Alfhianto Asgar Taiyeb Asmaul Alfiah, Indah Ati Retna Sari Aulia Putri, Rizka Aulia Putri, Yuni Auliya Izza, Rizki Avita Ayu Permanasari AYU LESTARI Ayu, Pitaloka Dharma Ayu, Restu Azhar, Eky Fadhildansyah Azhar, Ilmannafi'a Azizah Azizah Azzahra, Isni Bahar, Herwina Balqista, Azah Nadya Buana, Kalpika Cahya Budi Prasetyo Budiansyah, Dadan Bunrith, Seng Burhannudin Ichsan Candria, Mytha Choirun’nisa, Febra Mayora Cintya Nurika Irma D.S, Indah Prihatiningtyas Damayanti, Erliana Rahma Damayanti, Ken Ima Dani Irawan Dani Prasetyo, Dani Danijubal, Muhammad Vikar Daru Asih Dedy Miswar Delfina, Zarah Deny Eka W Desharyanto, Aditya Putra Desy Widyastutik Dewi Pratiwi Dewi Wahyuni Dewi, Lilis Komala Dhini Suryandari, Dhini Diana, Zafira Dikpride Despa Distrianada, Ridho Ikbar Diyah Candra Anita, Diyah Candra Dwi Ristanti, Adenia Dwi Wulandari Dwipa Handayani Edy Haryono Eka Handriani Eka Widyastuti, Deny eko heryadi, eko Elda, Septia Wahyu Emilia Emilia Enggal Permana, Wahyu Eram Tunggul Pawenang Ernawati Ernawati ESNI, MARIA TRIMURNI Euis Salbiah Eva Safaah, Eva Evania Yafie Evi Damayanti, Evi Fadel Muhammad, Fadel Fahira, Jihan Fahmi Fahmi Fahrani, Annisa Widya Fahrunnisa, Nilam Falah, Moh. Imam Fajrul Fara, Yetty Dwi Farida, Inul Lestari Farida, Izzatul Fatmawati, Aida Fatya, Inas Safira Febriana, Dike Firdausia, Najwa Diah Fitriyani, Nurzalifa Francy Risvansuna Fivintari, Francy Risvansuna Gafar, Abd. Galuh Ratmana Hanum Ghina Sabrina, Haura Ghofur, Asep Rahmat Gina, Fathana Gunarhadi Gunarhadi, Gunarhadi Gustina, Sisi Gusya, Irsyad M.I Hairul Huda Hammam Rofiqi Agustapraja Harmonisyah, Nadela Hayati, Zalmi Hayatul Cholsy Heni Pujiastuti Herry Widyastono, Herry HIDAYAT, MOCH CHARIS Hidayat, Muhamad Taufiq Hidayat, Muhamad Taufiq Hidayatullah, Rahmat Syarif Hikmah Ifayanti Holipah, Holipah Hudaeri Hudayani, Desanti Riski Husain Umar I Nengah Korja I Wayan Wiarta Ida Nuryana, Ida Imansari, Putri Fitrika Indah Prihatiningtyas Indahsari, Lilin Nur Irawati, Lusi Irfan Rizki, Muhammad Irma Kurniawati Irmasari Irmasari Irmawan, Ari Ismandela, Afriyane Isnayanti, Tri Rahayu Istighfaroh, Maulina Iswan Iswan IZZAH, NURUL Janas, Dawid Jhoni Warmansyah Juairia, Juairia Junila Puteri, Mawaddah Kaloka, Rintulebda A. Karmila Putri, Nia Kartika Megawati Karunia, Karunia Khoirunnisa, Farina Kiky, Wahyu Kristyanto, Risky Kurniati, Fika Kusdianto, Heru Kustiawan, Wawan Kusuma Ningrum, Eni Kusuma, Hanarita Naffi Kusumawati, Nurmalia Anggun Larasati, Woro Endah Lasmini Lasmini, Lasmini Leni Kurniawati Lilik Andaryuni Lukman Fauzi M Samsuri, M M. Anas Thohir Maharani, Esi Maharani, Melani Firdha Malinda, Wini Maragathavalli, S. Mardiana Mardiana Maren, Raretha Ma’ruf, Mohamad Mefia, Yolanda Arta Mei Lina Fitri Kumalasari Meilanda, Loly Meiyansari, Monika Meliana Sari, Meliana Merici, Cresensia Anggela Merliya, Merliya Mia Audina, Mia Miftahul Hakim Miranti, Windi Mishima, Kenji Mj Rizqon Hasani, Mj Rizqon Mohammad Kanzunnudin, Mohammad Monicha, Widuri Much. Fuad Saifuddin Muhammad Rivai Muinah Fadhilah, Muinah Mukminatus Zuhriyah Mulyanti, Relly Mulyati Mulyati Musana, Rendika Hasanil MUSLIMIN Muslimin Muslimin Mutiatari, Dhita Prasisca N. Nurjanah Nabila, Dinda Fatma Nana Kariada Trimartuti Navarro, Ariela Rose Nawindah, Nawindah Nilasari, Siwi Prickyana Ningsih, Jumaroh Ristian Ningsih, Vivi Seftya Nismawati Nordin, Ahmad Rizal Roslan Novaliyosi Novi Marlena Novitasari, Dini Nugrahaini, Farida Nugroho, Hendrato Setiabudi Nur Siyam Nur'aini, Aisyah Nur, Ahmad Moh. Nuraini Asriati Nurannisa, Fitri Revita Nurhasanah Nurhasanah Nuria, Nadila Suci Nurjanah, Silpa Nurlita, Mita Nurul, Rif’atun Octi, Dea Wambi Oktaria, Sri Wahyuni Oktaviani, AuthNur Rizky Oktaviani, Eka Larasati Pingky, Lisa Prasetya, Riduwan Prasetyoningsih, Aris Prastiwi, Chintamy Rizky Pratama, Rifka Pratiwi, Silfi Pratiwi, Veronica Unun Priani, Gisca Wahyu Prihanto Trihutomo Prihatin, Eka Priyatna, Eddy Nana Pujaningsih Pujaningsih Pujiharto Pujiharto Purniab, Carlis Purwanti Pratiwi Purbosari Puspitasari, Etika Dyah Puteri, Adinda N. J. Putra, Erlambang Yogaswara Gusti Putri, Finda Tri Septiana Putri, Roissa Nathania Putri, Widya Qolillah, Siti Rahajeng Putriningrum Rahayu, Desti Sri Rahayuningsih, Endang Rahma Sari, Rahma Rahma, Dinda Iftiqa Rahmah, Annisa Ajeng Tri Rahmalina, Reny Rahmawati Rahmawati, Rahmawati Rahmini, Latifa Ramadhani, Karina Ramadhania, Vika Shalsa Ramadhanty, Nora Ramdhani, Ambar Putri Ramona Lisab, Hellya Regina, Putri Remma, Ellanda Putri Restu Yuningsih Reyes, Juan Carlos Riana, Afief Clara Riduan Riduan, Riduan Ridwan, Ridwan Rienendra Sari, Desni Rifai, Muhamad Rinanta Sari, Dian Rinta, Anggi Sirka Rio Johan Putra Riska, Fatia Anta Risky Ayu Kristanti Riyan Erwin Hidayat Riza, Fahru Rizki, Kurnia Romaz, Mohammad Mirza Yuniar Rozaki , Zuhud Rozaki, Zuhud Rr. Poppy Puspitasari Rr. Sri Ratna Rahayu Rukmi Rukmi Rusfa, Fama Manawa Salwa s, Sulham safira, Adila putri Safna, Aisyah Saiful Anwar Saiful Bahri Saiful Ridlo Salsabila, Alsti Kalica Salsabila, Putri Salsabila, Salsabila Samsul Arif Sandyriel Tandilolo Santiani Santiani Sapitri, Amanda Puspa Sari, Fuji Punjung Sari, Lia Dian Sari, Nisa Permata Sari, Sinta Nopita Satria, Muhammad Rangga SEDATI, LUSIA Selly Anggraini Selvia, Eriska Septiani, Vesi Tri Septianingrum, Dila Seran, M.YGG Setiyowati, Supami Wahyu Shahbaz, Muhammad Sholekhah, Maratus Sihar Tambun Silvia Silvia Simarangkair, B.D.A.S. Sinaga, Jovita Siti Aisyah Siti Aminah Siti Halimah Siti Lestari Solly Aryza Somba, Saron Melisa Sonia, Gina Sopia, Sopia Sri Rahayu Wilujeng Sri Utaminingsih Stevani, Joyce Suhono Suhono Suhono, Suhono Sukarni Sukarni Sukartiningsih Sukartiningsih Sukmawati Sukmawati Sulaimiah Sulis, Pretty Ananda Sulistiyowati, Tutut Indah Sundi, Venni Herli Suprayitno Suprayitno Suprianti, Martina Merliana Suri, Alfiana Suryani, Cahyaningrum A. Suryani, Cahyaningrum Arie Suryani, Dea Suryaningsih, Sukarni Susana Susana Susanti, Fajar Susilowati, Amin Suwarto Suwarto Suyanti, Tri Syachofina, Himmatul Ulya Alfartri Syah, Fikri Firman Syamsul, Muh Arif Taufikurahman Tb Ai Munandar, Tb Ai Tito, Fitara A. Tomas, Tuti Yanti Tresia Umarianti Tri Sunaryo Trian, Novi Trisia, Enda Triwinanti, Arum Triyana, Ni Komang Tuzahra, Rahma Ul’Aufa, Rangga Umar Al Faruq A Hasyim Wahyuningsih, Dyah Lely WAHYUNINGSIH, NOVA Wardah Wardah Warneri . Wathon, Nurul Wicaksana, Yusuf Aji Widiawati Widiawati, Widiawati Widodo, Hernowo Widodo, Lianasari Widyastutik, Desy Wijaya, Oki Wijayanti Wijayanti Wijayanti Wira Amanah4, Cantika Wiwi Isnaeni Wulandari, Adinda Wulandari, Yuwinda YANTI, MARTINA FAJAR Yeasy Agustina Sari Yessy Maretta, Megayana Yolanda, Aini yuda pratama Yuliana, Ema Yulisa, Sindi Yulyanti, Yulyanti Yuniarti, Rizkia Yusran Yusran Yusran Yusuf Alam Romadhon Yuwinsi, Dela Zahidah, Ummi Zakariyah, Akhmad Zakia, Alya Zakiya, Firyal Kamilatuz Zidan, Zacky Zulfa, Nabila Qothrunnada Zunaidah, Farida Nurlaila