Testing Service / Test Matrix
Explore the national catalogue of product categories and test matrices offered by registered institutes, together with their testing parameters and relevant instruments.
Product Catalogue
Registered product categories / test names and their details
| # | Institute Name | Testing Service / Test Matrix | Sub Category | Testing Parameters | Description | Relevant Instruments |
|---|---|---|---|---|---|---|
| 461 | Rajarata University of Sri Lanka | Gas Analysers | Infrared Gas Analysis Systems | CO2, H20, Photosynthesis, Respiration, Transpiration, Stomatal Conductance, Leaf Temperature, Soil Respiration, Insect Respiration | These equipment are used for leaf gas exchange & chlorophyll fluorescence measurement. | LiCOR BioScience Portable Photosynthesis Systems, CID BioScience Handheld Photosynthesis Systems, PP Systems CI-340 Handheld Photosynthesis System |
| 462 | Rajarata University of Sri Lanka | Real Time PCR Machine | Rotor Gene Q 5 plex | Up to 6 separate channels (365–680 nm excitation, 460–750 nm detection), Fixed optical path, separate high-power excitation LEDs and emission filters per channel, Highly sensitive photomultiplier (PMT) detector with gain setting (sensitivity control), Dynamic range: 10 orders of magnitude (assay dependent), PCR Tubes 0.2 ml: 0.2 ml x 36 wells, 15–50 µl recommended reaction volume, individual tubes with caps | Quantitative, real-time PCR is a precision science that places high demands on the instrument, chemistry, and software. Highthermal and optical uniformity, short equilibration times, and fast ramping rates are critical for precise and rapid quantitativeanalysis. Sensitivity, speed, and specificity are also highly dependent on the performance of the DNA polymerase andreaction components. | |
| 463 | Coconut Research Institute of Sri Lanka | Fat Content | Coconut related products, other Food & Feed ,Pharmaceuticals, Sewage water, Mineral oils, Lubricants and Soils. | Determine crude fat or other components soluble in organic solvents | fat extraction system is specially optimized to determine crude fat or other components soluble in organic solvents according to the universally known Solvent extraction method, including both Randall and Twisselmann methods. | Fat Extractor |
| 464 | Rajarata University of Sri Lanka | In-vitro characterisation of pharmaceuticals and toxins | drig discovery, pharmacology, physiology, toxinology | contractile force of skeletal muscles, contractile force of smooth muscles in blood vessles and organs | ||
| 465 | Coconut Research Institute of Sri Lanka | Dietary fiber | Coconut related food products and other Food and Beverage with Fibre | Determination of dietary fiber in Coconut products, other food and agricultural products | The analytical procedure for the determination of dietary fiber involves a series of digestions of the sample by thermostable enzymes using the enzymatic digester GDE, which operates in accordance with the official AOAC method for the determination of total dietary fiber. | Enzymatic Digestion Unit and Filtration Unit |
| 466 | Rajarata University of Sri Lanka | Fluorescent Microscope | Microscopy, Conventional, Light | Fluorescent label proteins, Color Separation Filters | The motorized operations of the BX-RFAA motorized reflected fluorescence illuminator used with thissystem can be controlled from the BX-UCB control box and U-HSTR2 hand switch (the illuminator canalso be interlocked with other motorized equipment using the BX2 software for PC).Motorized operations: · Turret switching of mirror units· Insertion/removal of the shutter· Activation of motorized revolving nosepiece connector | Confocal microscopy |
| 467 | Rajarata University of Sri Lanka | Surface Analysis | Any solid object | Partial Size, Elemental Composition | Use for the examination and analysis of micro- and nanoparticle imaging characterization of solid objects. Typically can magnify images around 300,000 times (up to 10 nm). | Scanning electron microscope (SEM) |
| 468 | Coconut Research Institute of Sri Lanka | Protein content | Coconut related food products , other Food and Beverage with Protein, Soils, fertilizers and Waste waters | Estimate the protein content in sample | internationally recognized method for estimating the protein content in foods, soils, waste waters, fertilizers and other materials. | Kjeldhal Distillation Unit |
| 469 | Rajarata University of Sri Lanka | Liquid Nitrogen | Liquid Nitrogen | About 20 L of liquid nitrogen can be produced at a time | Liquid Nitrogen Plant | |
| 470 | Coconut Research Institute of Sri Lanka | Fiber Content | Coconut related food products and other Food and Beverage with Fibre | Determination of crude fiber in feed, food and other agricultural products | Fiber Analyzers suitable for raw fiber extraction, conventionally known as an indigestible residue. | Fiber Analyzer |
| 471 | Rajarata University of Sri Lanka | Gases, volatiles and organic molecules | Food, feed, pollutants, aromatic compounds | composition and concentration of gases/volatiles | Separation and detection of gaseous chemical compounds qualitatively and quantitatively | Gas Chromatography |
| 472 | Rajarata University of Sri Lanka | Product Texture | Food, Cosmetics, Pharmaceuticals, Materials and Packaging | Hardness, adhesiveness, springiness, gumminess, cohesiveness, chewiness, Penetration depth | Texture Analyzer | |
| 473 | Rajarata University of Sri Lanka | Trace & Heavy metal | Water, Soil, Sludge, Plant, Milk, Fertilizer | Concentration of Trace & Heavy metals | A trace-level, elemental analysis technique that uses the emission spectra of a sample to identify, and quantify the elements present. Simultaneous, sequential analysis of multiple elements and high number of measurable elements is possible. | Inductively couple Plasma Optical emission spectrometer |
| 474 | Coconut Research Institute of Sri Lanka | Elements in solution | Food and beverage, Water, Pharmaceuticals | Concentration of Individual elements in ppm and ppb level | Atomic absorption spectrometry (AAS) is used primarily to determine the concentrations of individual elements in solution. As such, AAS is used in food and beverage, water, clinical research, and pharmaceutical analysis. It is also used in mining operations to determine, metal concentration. | ICP-OES |
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