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Universitas Gadjah Mada Center of Excellence for Microalgae Biorefinery
Universitas Gadjah Mada
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    • Prof. Ir. Arief Budiman, D.Eng.
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  • Jurnal Internasional

Jurnal Internasional

  • Publikasi
  • 15 Desember 2020, 15.20
  • By : nugrohodewayanto
  1. Afililla, Z., Suwanti, L. T., Puspitasari, H., Suyono, E. A., Budiman, A., Koerniawan, M. D., and Siregar, U. J. (2020). Inability of polysaccharides of Spirulina platensis to protect hepatocyte cells line on Toxoplasma gondii infection in vitro. Journal of Global Pharma Technology, 12(1), 654–659. Available online at www.jgpt.co.in
  2. Ardi, A., Safitri, A., Nuhamunada, M., Budiman, A., Ilmi, M., Gozan, M., Syahrin, A. A., Pradana, Y. S., and Suyono, E. A. (2020). The effect of vancomycin on the growth and microbial dynamics of microalgae-bacteria consortium isolated from Glagah Beach, Yogyakarta. Ecology, Environment and Conservation, 26, S1–S7. Available online at http://www.envirobiotechjournals.com
  3. Hadiyanto, H., Aini, A. P., Widayat, W., Kusmiyati, K., Budiman, A., and Rosyadi, A. (2020). Multi-feedstock biodiesel production from esterification of Calophyllum inophyllum oil, castor oil, palm oil, and waste cooking oil. International Journal of Renewable Energy Development, 9(1), 119–123. https://doi.org/10.14710/ijred.9.1.119-123
  4. Heriyanto, H., Muraza, O., Nasser, G.A., Sanhoob, M.A., Bakare,I.A., Budhijanto, Rochmadi, and Budiman, A. (2020). Development of New Kinetic Models for Methanol to Hydrocarbons over a Ca-ZSM-5 Catalyst. Energy and Fuels, 34 (5), 6245-6260. https://doi.org/10.1021/acs.energyfuels.9b04327
  5. Jamilatun, S., Budhijanto, Rochmadi, Yuliestyan, A., Aziz, M., Hayashi, J. ichiro, and Budiman, A. (2020). Catalytic pyrolysis of spirulina platensis residue (SPR): Thermochemical behavior and kinetics. International Journal of Technology, 11(3), 522–531. https://doi.org/10.14716/ijtech.v11i3.2967
  6. Jamilatun, S., Elisthatiana, Y., Aini, S. N., Mufandi, I., and Budiman, A. (2020). Effect of Temperature on Yield Product and Characteristics of Bio-oil From Pyrolysis of Spirulina platensis Residue. Elkawnie, 6(1), 96. https://doi.org/10.22373/ekw.v6i1.6323
  7. Jamilatun, S., Mufandi, I., Evitasari, R. T., and Budiman, A. (2020). Effects of temperature and catalysts on the yield of bio-oil during the pyrolysis of Spirulina platensis residue. International Journal of Renewable Energy Research, 10(2), 678–686. Available online at https://www.ijrer.org
  8. Pradana, Y. S., Dewi, R. N., Di Livia, K., Arisa, F., Rochmadi, Cahyono, R. B., and Budiman, A. (2020). Advancing biodiesel production from microalgae Spirulina sp. By a simultaneous extraction-transesterification process using palm oil as a co-solvent of methanol. Open Chemistry, 18(1), 833–842. https://doi.org/10.1515/chem-2020-0133
  9. Prasakti, L., Pratama, S. H., Fauzi, A., Pradana, Y. S., Rochmadi, and Budiman, A. (2020). Exergy analysis of conventional and hydrothermal liquefaction-esterification processes of microalgae for biodiesel production. Open Chemistry, 18(1), 874–881. https://doi.org/10.1515/chem-2020-0132
  10. Prihandoko, D., Budiman, A., Fandeli, C., and Setyono, P. (2020). A New Paradigm for Solid Waste Management in Integrated Waste Management Site Piyungan Yogyakarta, Indonesia. Applied Mechanics and Materials, 898, 51–57. https://doi.org/10.4028/www.scientific.net/amm.898.51
  11. Purnama, A., Wijaya, K., Tahir, I., Suyono, E. A., and Budiman, A. (2020). Optimizations of microwave-assisted extraction and transesterification of bio-crude oil from spirulina (Arthrospira platensis). Korean Journal of Chemical Engineering, 37(3), 466–474. https://doi.org/10.1007/s11814-019-0444-2
  12. Sakti La Ore, M., Wijaya, K., Trisunaryanti, W., Saputri, W. D., Heraldy, E., Yuwana, N. W., Hariani, P. L., Budiman, A., and Sudiono, S. (2020). The synthesis of SO4/ZrO2and Zr/CaO catalysts via hydrothermal treatment and their application for conversion of low-grade coconut oil into biodiesel. Journal of Environmental Chemical Engineering, 8(5), 104205. https://doi.org/10.1016/j.jece.2020.104205
  13. Sawitri, D. R., Mulyono, P., Rochmadi, Hisyam, A., and Budiman, A. (2020). Kinetic investigation for in-situ epoxidation of unsaturated fatty acid based on the Pseudo-steady-state-hypothesis (PSSH). Journal of Oleo Science, 69(10), 1297–1305. https://doi.org/10.5650/jos.ess20034
  14. Setyawan, M., Mulyono, P., Sutijan, Pradana, Y. S., Prasakti, L., and Budiman, A. (2020). Effect of devices and driving pressures on energy requirements and mass transfer coefficient on microalgae lipid extraction assisted by hydrodynamic cavitation. International Journal of Renewable Energy Development, 9(3), 467–473. https://doi.org/10.14710/ijred.2020.26773
  15. Zakiyah, U., Mulyanto, Suwanti, L. T., Koerniawan, M. D., Suyono, E. A., Budiman, A., and Siregar, U. J. (2020). Diversity and distribution of microalgae in coastal areas of East Java, Indonesia. Biodiversitas, 21(3), 1149–1159. https://doi.org/10.13057/biodiv/d210340

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