Abstract

The CaO heterogeneous catalysts can be prepared by CaCO3 calcination process, with one source of CaCO3 being a crab shell from seafood waste. The preparation of the heterogeneous catalyst was successfully carried out by modification with KOH using a wet impregnation method at 800oC for 5 hours. The purpose of this research is to determine the physical and chemical characteristics of heterogeneous catalyst of K2O-modified crab shell and to examine the heterogeneous catalyst of K2O-modified shells in converting rubber seed oil into biodiesel. The results showed that the lowest basic alkalinity possessed without modified catalyst (1.0428 mmol g-1) and the highest alkali possessed potassium-modified catalyst (1.8314 mmol g-1). Characterization of specific surface area of ??crab shells without and with modified K2O were relatively the same. The surface morphology of the catalyst without and K2O modified was uniform. The catalyst examination results for conversion of rubber seed oil (Hevea brasiliensis) to biodiesel, the optimum catalyst concentration of 3% and the molar ratio of oil:methanol of 1:9 capable converting to biodiesel with the yield of 91.05%. The content of biodiesel were stearic methyl ester, linoleic methyl ester, linolenic methyl ester, and palmitic methyl ester.

Highlights

  • The CaO heterogeneous catalysts can be prepared by CaCO3 calcination process, with one source of CaCO3 being a crab shell from seafood waste

  • The results showed that the lowest basic alkalinity possessed without modified catalyst (1.0428 mmol g-1) and the highest alkali possessed potassium-modified catalyst (1.8314 mmol g-1)

  • N. 2006, Optimization of alkalicatalyzed Tranesterification of Pongamia pinnata oil for production of biodiesel

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Summary

Alat Peralatan yang adalah Fourier Transform

Infrared (FTIR), Suface Area Analyzer (SAA), Gas Chromatography-Mass Spectrometer (GCMS), Scanning Electron Microscope (SEM) dan Energy Disversive X-ray Spektroskopi (EDS), labu leher dua, statif dan klem, karet sumbat, pengaduk magnetik dan hotplate, water bath, furnace, termometer, neraca analitik, ayakan, buret, peralatan gelas, oven, blender, mortar, corong pisah, cawan porselen, desikator, pipet tetes, seperangkat alat sokhletasi, piknometer, viskometer, kondensor refluks.

Cara Kerja Preparasi dan Modifikasi Cangkang Kepiting
Uji aktivitas katalis Reaksi Esterifikasi
Reaksi Transesterifikasi
Jenis Katalis
Metil stearat Metil linoleat Metil linolenat Metil palmitat
Karet dan Sifat Fisiko Kimia Minyak
Full Text
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