ACTIVITY AND SELECTIVITY OF Mo-Co/USY CATALYST ON THE HYDRODEOXYGENATION (HDO) REACTION OF ANISOLE

Authors

  • Khoirina Dwi Nugrahaningtyas Universitas Sebelas Maret
  • Yuniawan Hidayat Universitas Sebelas Maret
  • Prima Susan Prayekti Universitas Sebelas Maret

DOI:

https://doi.org/10.21831/jps.v20i1.5609

Keywords:

Catalyst activit, hydrodeoxygenation, hydrodeoxygenation reaction of anisole, Mo-Co/USY catalyst

Abstract

This research was conducted to study the effect of the catalyst Mo-Co/USY againts product distribution and product conversion, and the effect of addition Co metals towards selectivity-products benzene on the anisole HDO. The anisole HDO was prepared by fl ow reactor. The products were analyzed by GC-MS. The main products of the anisole HDO i.e benzene and toluene. The activity with Mo-Co/USY catalyst higher than USY and termal. Mo-Co/USY B catalyst has highest selectivity-products benzene (15%).

References

Annisa, G. 2012. Hidrodeoksigenasi Bio-Oil Menggunakan Katalis CoMo/C untuk Optimasi Produksi Alkana dan Alkohol. Skripsi. Universitas Indonesia.

Arifi n, S. 2009. Uji katalis Pt/γ-Al2O3 untuk reaksi HDO THF. Skripsi. FMIPA Universitas Sebelas Maret.

Gates, R.P.H. 1979. An Introduction to Chemisorpsi and Catalyst by Metals. Oxford: Clarendon Press.

Kubicka, D., Ludek, K. 2010. Deoxygenation of Vegetable Oils over Sulfi ded Ni, Mo and NiMo Catalysts. Applied Catalysis A: General, hlm. 199-208.

Nugrahaningtyas, K.D., Trisunaryanti W., Triyono, Nuryono, Widjonarko, D.M., Yusnani, A., dan Mulyani. 2009. Preparasi dan Karakterisasi Katalis Logam Tak Tersulfi dasi: Ni/USY dan NiMo/USY, Indonesian Journal of Chemistry, vol 9, hlm. 177-183.

Putera, S. 2008. Adsorpsi Logam Nikel dan Analisis Kristalinitas H-Faujasit dari Abu Layang Batubara, FMIPA, Universitas Lambung Mangkurat.

Romero, Y., Richard, F., dan Brunet, S. 2010. Hydrodeoxygenation of 2-Ethylphenol as a Model Compound of Bio-crude over Sulfi ded Mo Based Catalysts: Promoting Effect and Reaction Mechanism. Applied Catalysis B: Environmental, Vol 98, hlm. 213–223.

Shah, Y.T., and Cronauner, D.C. 1979. Oxygen, Nitrogen, and Sulfur Removal Reaction in Donor Solvent Coal Liquifaction. Catalyst Review, Vol 2, hlm. 209-301.

Utomo, M.P. 2008. Deaktivasi Katalis pada Konversi Pentanol Menjadi Pentana dengan Katalis Pt/Zeolit. Proseding Seminar Nasional Kimia, FMIPA Universitas Negeri Yogyakarta.

Viljava, T.R. 2001. From Biomass to Fuels: Hydrotreating of Oxygen Containing Feeds on A CoMo/É£-Al2O3HDS Catalyst. Catalyst Today, Vol 60, hlm. 11-48.

Wang, W., Yunquan, Y., Hean, L., Tao, H., Wenying, L. 2010. Characterization and Hydrodeoxygenation Propertiesof Co Promoted Ni–Mo–B Amorphous Catalysts: Infl uence of Co Content. Catalyst Communication, Vol 101, hlm. 105-115.

Wang, W., Yunquan, Y., Hean, L., Tao, H., Wenying, L. 2011. Preparation and Hydrodeoxygenation Properties of Co– Mo–O–B Amorphous Catalyst. Catalyst Communication, Vol 12, hlm. 436-420.

Downloads

Published

2015-03-01

How to Cite

[1]
Nugrahaningtyas, K.D. et al. 2015. ACTIVITY AND SELECTIVITY OF Mo-Co/USY CATALYST ON THE HYDRODEOXYGENATION (HDO) REACTION OF ANISOLE. Jurnal Penelitian Saintek. 20, 1 (Mar. 2015). DOI:https://doi.org/10.21831/jps.v20i1.5609.

Issue

Section

Articles