In a growing number of industrial activities, much attention is being focused on the total nitrogen content. Levels of nitrogenous compounds are crucial for well-balanced industrial processes. Organic nitrogen contains natural materials such as peptides, nucleic acids, proteins, urea, and numerous synthetic organic materials. And the excess amount of nitrate can contribute into the illness known as methemoglobinemia in infants. Hence, detection of total nitrogen with high accuracy is necessary. The total nitrogen analyzer can be design with different working principle methods such as kjeldahl method, chemiluminescence detection (CLD), and solid state chemodetector (CHD). Currently CLD method is widely accepted owing to its benefits over kjeldahl method. The classical kjeldahl method have disadvantage that it only determines organic nitrogen bound in the trinegative state and this method cannot detects the other nitrogen forms such as nitrite and nitrate. The total nitrogen can be measured by injecting sample into the high temperature furnace where it is catalytically combusted at some temperature. Oxidative pyrolysis causes the chemically bound nitrogen to be converted to nitric oxide, which is measured by the principle method CLD. The total nitrogen can be measured in a range from low ppb levels to high ppm levels with high accuracy. The approximate range of nitrogen detection is 0 to 4000mg/L. This type of analyzer offers wide range sensing and high reliability. Thus, the total nitrogen analyzer have major applications in industrial waste and environmental analysis, specification testing of refined products, high salt concentrations, quality testing of chemicals, discharge control, custody transfer of petrochemicals.
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Total nitrogen analyzer provides highly sensitive detectors which results in broad dynamic working range that can achieves outstanding results with small sample sizes and maximum flexibility with respect to applications. These analyzer come up with robust design and overheating prevention feature that can result in low maintenance of the analyzer which directly reduces the operational costs of it. These are some key factors which are driving the growth of total nitrogen analyzer market. However, some nitrogen analyzer are working on principle of kjeldahl digestion method which only measures nitrogen bound to organic components and ammonium in the sample. Other nitrogen forms, such as nitrite and nitrate, cannot be detected through this method. To overcome this issue, chemiluminescence detection method can be used.
The total nitrogen analyzer market can be segmented based on detection range, analyzer type, application, and region. Based on detection range, the total nitrogen analyzer market can be classified into 0~20 mg/L, 20~200 mg/L, 200-2000 mg/L and above 2000 mg/L. Based on analyzer type, the market can be divided into protable total nitrogen analyzers and benchtop total nitrogen analyzers. In terms of application, the market can be segregated into chemical & petrochemical, commercial petro testing labs, food & beverages, surface water & waste water and others. In terms of geography, the global total nitrogen analyzer market can be divided into North America, Europe, South America, Middle East & Africa, and Asia Pacific.
The total nitrogen analyzer market is highly fragmented with various start-ups proliferating in the market. The key players operating in the market are Shimadzu Corporation (Shimadzu Scientific Instruments), Skalar Analytical B.V., Thermo Fisher Scientific Inc., Surplus Solutions, Mettler-Toledo International Inc., Analytik Jena AG, Hach, C.I. Analytics, COSA Xentaur, TSHR International, LAR Process Analysers AG, Labcompare, Anatek Labs, Inc., Metrohm India Limited, Aquas Inc. and so on.
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