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Pemindahan Teknologi MPOB

Pemindahan Teknologi MPOB

(MPOB Transfer of Technology)

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Senarai Teknologi 2010

TT No. 442: Ganosken for Early Detection of Ganoderma Infection in Oil Palm

Diagnosis of Ganoderma infection in oil palm is based on the presence of basidiomata of the pathogen on the stem base or frond bases or roots. To conduct various studies on Ganoderma in oil palm, a Ganoderma selective medium (GSM) was developed. The medium was used to isolate the pathogen from any part of the … Read more

TS No. 92: Determination of Phosphorus Content in Biodiesel Using Inductively Coupled Plasma Optical Emission Spectrometer (ICP OES)

A weighed test portion of the sample is diluted in xylene. The solution is introduced in aerosol form into an argon plasma of the ICP OES spectrometer (Figure 1). The phosphorus content is calculated with reference to a set of calibration solution prepared. The wavelengths used are 213.6 nm and 178.3 nm. Main Research: Yung … Read more

TS No. 91: Determination of Sodium, Potassium, Calcium and Magnesium Contents in Biodiesel Using Inductively Coupled Plasma Optical Emission Spectrometer (ICP OES)

The sample is diluted with kerosene using a 1:1 weight ratio. The resulting solution is directly injected into the plasma of the ICP OES spectrometer (Figure 1), and the content of Na, K, Ca and Mg is calculated with reference to a set of calibration solutions prepared. The wavelengths for the analysis of Na, K, … Read more

TS No. 90: Determination of Potassium Content in Biodiesel Using Atomic Absorption Spectroscopy (AAS)

The biodiesel sample is diluted with a xylene solution. The potassium contentof the sample is directly determine by flame atomic absorption spectoromery (Figure 1) at a wavelength of 766.5 nm with reference to a set of calibration solutions prepared from a potassium organolmetallic salt dissolved in a mixture of xylene and stabilizer. Main Research: Yung … Read more

TS No. 89: Determination of Sodium Content in Biodiesel Using Atomic Absorption Spectroscopy (AAS)

The biodiesel sample is diluted with xylene solution. The sodium content in the sample is directly determine by flame atomic absorption spectrometry (Figure 1) at the sample wavelength of 589 nm with reference to a set of calibration solutions prepared from a sodium organolmetallic salt dissolved in a mixture of xylene and stock oil. Main … Read more

TS No. 88: Determination of Biodiesel Content in Diesel Fuel Using Mid Infrared Spectroscopy

Method 1: CaF2 Cell Beer’s Law The sample which has been diluted with cyclohexane is introduced into CaF2 (Figure 1) cell and the mid infraned absorption spectrum is recorded. The absorrbance of the typical absorption band for esters at about 1745 cm-1 is measured. The biodiesel content is then calculated with a calibration function produced … Read more

TS No. 87: Determination of Sulphur Content in Biodiesel and Diesel Fuel Using the Ultraviolet Flourescence Method

A sample is placed in a sample boat. The boat is then inserted into a high temperature combustion tube where the sulphur is oxidized to sulphur dioxide (SO2) in an oxygen-rich atmosphere. The sample combustion gases are next exposed to ultraviolet (UV) light. The SO2 absorbs the energy from the UV light and is converted … Read more

TS No. 86: Determination of Methanol Content in Biodiesel by Gas Chromatograph Headspace (GC-HS)

The sample is heated at 80C in a hermetically sealed vial to allow desorption of the contained methanol into the gas phase. When equilibrium is reached, a defined part of the gas phase is injected into a gas chromatograph (Figure 1), and methanol is detected with a flame ionization detecor. The amount of methanol is … Read more

TS No. 85: Determination of Fuel Filter Blocking Potential of Biodiesel by the Cold Soak Filtration Test (CSFT)

A 300 ml sample of biodiesel is stored at 4.4C for 16 hr, amn dthen allowed to warn up to 20C-22C. The sample is then vacuum-filtered through a single 0.7 um glass fibre filter at a cotrolled vacuum pressure of 21 to 25 in. of Hg below atmospheric pressure (Figure 1). The time for the … Read more

TS No. 84: Determination of 16 Polycyclic Aromatic Hydrocarbons (PAHs) in Oil Matrix using Donoracceptor Complex Chromatography (DACC) Method

PAHs are environmental and food-borne contaminants. Edible oils and fats may be contaminated by environmental pollutants and during the processing steps of crude oils prior to refining. The presence of PAHs in facts and oils is a health concern due to the carcinogenicity of the PAHs. Different levels of PAHs have been observed in crude … Read more

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