Wednesday, August 3, 2011

Why is there a requirement for the water laboratory


!±8± Why is there a requirement for the water laboratory

Even for the most simple and routine tasks such as purging and washing laboratory glassware, is the use of water laboratory is a must. The purity of the water issues, especially if it is to be used in sensitive applications. This is due to the possibility of contamination and other possible reactions that can affect the outcome of an investigation and laboratory testing, and eliminate the results unreliable. Therefore, even the smaller and smaller decrease of contamination is an importantConcern in the laboratory.

Directly from the tap water contains microorganisms, endotoxins, salts and other forms of pollution that can swallow an experiment. Water contaminants are mainly particulate matter, that by passing the water through a sieve with a pore size that can be filtered is less than the contaminants. Another form of contamination is dissolved non-ionized gases and solids, organic chemicals, artificial, natural organic compounds, and includeOxygen, which is exposed to water, resulting in environmental pollution.

The last form of contamination, dissolved solids and ionized gas, which is usually exposed to the water for the stone and earth minerals such as limestone, also known as calcium carbonate, sodium chloride and other soluble chemicals naturally occurring or of humanity come from known contamination of water supplies.

There are three types of water used in the laboratory, the main class, usuallyLaboratory Quality and ultrapure water. Pure water is the primary function of basic laboratory research was used as washing windows and water in an autoclave. General laboratory use water from washing equipment, laboratory glassware and other reagents for mixing and dilution. Pure water is a standardized content of pure water, which are used to meet the needs of any laboratory expectations.

Laboratory Water must be free of contaminants. Most forms of contamination, particularly of ionized gas,contribute to the pH, alkalinity, conductivity and water hardness. Since the pure water required in each location of the laboratory system in research and clinical applications, a number of technologies have been developed to establish systems of laboratory water purification.

The most common form of water treatment, filtration, which has five classifications. Particle filtration filter includes everything from coarse sand to other filter materials with pore size of more thanIn 1000. Microfiltration else has as sub-micron water filter with filter media, the pores in the range of 1 to 0.05 microns, known to filter certain types of bacteria.

Ultrafiltration to remove essentially the use of a membrane filter or molecular sieve, the elements, fumed over 0,003 microns, including viruses, endotoxins, D-nose and nose-to-R. Nanofiltration and reverse osmosis are typically used to separate the water from someIons.

Another technology used to decontaminate the water is carbon filters adsoption activated charcoal, substance used to trap the organic compounds and chlorine. The use of UV radiation at specific wavelengths sterilizes microorganisms and reduces the amount of organic compounds present in the water.

Distillation is the oldest technology for water purification, with the process of heating water to its boiling point and condensing and collecting waterSteam. Finally, include the process of deionization or ion exchange process for the adoption of water through resin beds, which have an affinity for the salts dissolved in water and ionized.

Water is generally of high purity laboratory water. In general, the greater the degree of purity of the water, the water used in cleaning procedures. Modern laboratories usually combines the technologies mentioned above, with the exception of distillation.


Why is there a requirement for the water laboratory

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