Innovation in Biotechnology
Our Research and Developmental laboratory is recognized by the Department of Scientific and Industrial Research (DSIR). We have an allotted area of 2500 sq.ft just for research and development of new products and formulations. This laboratory is well equipped with Multiple HPLC’s with UV and PDA detector, UV-Vis Spectrophotometer, Atomic Absorption Spectrophotometer model with Graphite Furnace (GFA) & Hydride Vapor Generator (HVG), Gas Chromatography with dual column (Capillary and Packed) and FID detector, Calorimeter, Analytical Microbalances, Bulk Density Apparatus, Digital Karl Fischer Apparatus, Digital Viscometer, Digital Refractometer and Fume Hood etc.
Our inhouse Microbiology section is also well equipped with three testing areas having Biosafety Cabinets and Laminar Air Flow, separate Autoclave for media sterilization and disposal, BOD incubators with different temp range. Laboratory is also equipped with other necessary instruments like digital microscope, centrifuge, shaking incubator, digital water bath, steam pot and colony counter etc.
We have a cell and tissue culture laboratory, where we perform invitro studies to evaluate toxicity and the therapeutic potential of our extracts. The lab is well equipped with class 2 Biosafety cabinets, CO2 incubators, Automated cell counter, High performance cold centrifuge, Inverted microscope etc.
The laboratories are manned by highly qualified and experienced staff. These facilities are supported by Quality Control department and independent Quality Assurance department to monitor all the processes are as per GMP and GLP.
Technology We Follow
Our Research and Developmental Laboratory is recognized by Department of Scientific and Industrial Research (DSIR). We have an allotted area of 2500 sq.ft just for research and development of new products and formulations. This laboratory is well equipped with Multiple HPLC with UV and PDA Detector, UV-Vis Spectrophotometer, Atomic Absorption Spectrophotometer model with Graphite Furnace (GFA) & Hydride Vapor Generator (HVG), Gas Chromatography with dual column (Capillary and Packed) and FID detector, Calorimeter, Analytical Microbalances, Bulk Density Apparatus, Digital Karl Fischer Apparatus, Digital Viscometer, Digital Refractometer and Fume Hood etc.
Our inhouse Microbiology section is also well equipped with three testing areas having Biosafety Cabinets and Laminar Air Flow, separate Autoclave for media sterilization and discard, BOD incubators with different temp range. Laboratory is also equipped with other necessary instruments like digital microscope, centrifuge, shaking incubator, digital water bath, steam pot and colony counter etc.
The Laboratory is manned by highly qualified Analysts with experience in Product Analysis. These facilities are supported by Quality Control Department and independent Quality Assurance Department to monitor all the process is as per GMP and GLP.

LABORATORY
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R&D LAB
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FARMS
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Best Products
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Clear Water for Irrigation
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Eco Product
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Why Choose Us?
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Excellent Service
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Quality And Reliability
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Clean Working
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Expert Farmer
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Gas Chromatography
GC is a common type of chromatography used in analytical chemistry for separating and analyzing compounds that can be vaporized without decomposition.
Typical uses of GC include testing the purity of a particular substance, or separating the different components of a mixture (the relative amounts of such components can also be determined).
GC also helps in identifying a compound.
In gas chromatography, the mobile phase (or “moving phase”) is a carrier gas, usually an inert gas such as helium or an unreactive gas such as nitrogen.
The stationary phase is a microscopic layer of liquid or polymer on an inert solid support, inside a piece of glass or metal tubing called a column.
The gaseous compounds being analyzed interact with the walls of the column, which is coated with a stationary phase. This causes each compound to elute at a different time, known as the retention time of the compound. The comparison of retention times is what gives GC its analytical usefulness.
HPLC
High-performance liquid chromatography/ High-pressure liquid chromatography
It is used to separate the components in a mixture, to identify each component, and to quantify each component.
It relies on pumps to pass a pressurized liquid solvent containing the sample mixture through a column filled with a solid adsorbent material.
Each component in the sample interacts slightly differently with the adsorbent material, causing different flow rates for the different components and leading to the separation of the components as they flow out the column.
Chromatography can be described as a mass transfer process involving adsorption. HPLC relies on pumps to pass a pressurized liquid and a sample mixture through a column filled with a sorbent, leading to the separation of the sample components.
Typical uses of GC include testing the purity of a particular substance, or separating the different components of a mixture (the relative amounts of such components can also be determined).
GC also helps in identifying a compound.
In gas chromatography, the mobile phase (or “moving phase”) is a carrier gas, usually an inert gas such as helium or an unreactive gas such as nitrogen.
The stationary phase is a microscopic layer of liquid or polymer on an inert solid support, inside a piece of glass or metal tubing called a column.
The gaseous compounds being analyzed interact with the walls of the column, which is coated with a stationary phase. This causes each compound to elute at a different time, known as the retention time of the compound. The comparison of retention times is what gives GC its analytical usefulness.
Atomic Absorption Spectroscopy
Atomic absorption spectroscopy (AAS) is a spectroanalytical procedure for the quantitative determination of chemical elements using the absorption of optical radiation (light) by free atoms in the gaseous state.
In analytical chemistry the technique is used for determining the concentration of a particular element (the analyte) in a sample to be analyzed.
AAS can be used to determine over 70 different elements in solution or directly in solid samples used in pharmacology, biophysics and toxicology research.
Atomic absorption spectrometry has many uses in different areas of chemistry such as: Pharmaceuticals: In some pharmaceutical manufacturing processes, minute quantities of a catalyst that remain in the final drug product.
Water analysis: Analyzing water for its metal content.
Typical uses of GC include testing the purity of a particular substance, or separating the different components of a mixture (the relative amounts of such components can also be determined).
GC also helps in identifying a compound.
In gas chromatography, the mobile phase (or “moving phase”) is a carrier gas, usually an inert gas such as helium or an unreactive gas such as nitrogen.
The stationary phase is a microscopic layer of liquid or polymer on an inert solid support, inside a piece of glass or metal tubing called a column.
The gaseous compounds being analyzed interact with the walls of the column, which is coated with a stationary phase. This causes each compound to elute at a different time, known as the retention time of the compound. The comparison of retention times is what gives GC its analytical usefulness.
Ultraviolet-Visible Spectroscopy
The absorption or reflectance in the visible range directly affects the perceived color of the chemicals involved.
UV/Vis spectroscopy is routinely used in analytical chemistry for the quantitative determination of different analytes, such as highly conjugated organic compounds, and biological macromolecules
Typical uses of GC include testing the purity of a particular substance, or separating the different components of a mixture (the relative amounts of such components can also be determined).
GC also helps in identifying a compound.
In gas chromatography, the mobile phase (or “moving phase”) is a carrier gas, usually an inert gas such as helium or an unreactive gas such as nitrogen.
The stationary phase is a microscopic layer of liquid or polymer on an inert solid support, inside a piece of glass or metal tubing called a column.
The gaseous compounds being analyzed interact with the walls of the column, which is coated with a stationary phase. This causes each compound to elute at a different time, known as the retention time of the compound. The comparison of retention times is what gives GC its analytical usefulness.











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Awards Won
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Professional Engineering
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Pricing & Plans
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