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chemical analysis laboratory Applications

  • Laboratory Analysis for Pharmaceutical Industry

    We are the home of the Next Generation Impactor™ (NGI™), a cascade impactor for testing Metered-Dose Inhalers, Dry-Powder Inhalers and other inhalable drug products. We also offer labor-saving, productivity-enhancing tools for recovering drug samples collected by a cascade impactor. We offer mensuration services for both the NGI and the Andersen Cascade Impactor and the full range of accessories for inhaler testing.

    By MSP Corporation based in Shoreview, MINNESOTA (USA).

  • Laboratory Solutions for the chemical industry

    Under pressure to do more with less budget? Your lab is not alone. Across the globe, analytical labs are being asked to provide better analysis and faster reporting in an increasingly budget-conscious business environment. ATL`s LIMS is just the tool your lab needs to accomplish the impossible - produce quality, accurate analysis while keeping the corporate bean-counters happy.

    By Accelerated Technology Laboratories, Inc. based in West End, NORTH CAROLINA (USA).

  • Radioactivity analysis for laboratories

    TrisKem International produces and commercialises chemical products and the associated accessories for radiation protection and monitoring of radioactivity levels in the environment.

    By TrisKem International SAS based in Bruz, FRANCE.

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    Laboratory instruments solutions for pharmaceutical industry

    Pharmaceutical analysis guarantees drug safety by providing information on the identity, content, quality, purity, and stability of pharmaceutical products using analytical chemistry. Metrohm offers you a broad range of instruments and applications for quality control and for monitoring and improving drug manufacturing. With myriads of pharmacopeia-compliant analysis methods, we are your qualified partner for all chemical-pharmaceutical analysis issues and analytical method validations. In accordance with international pharmacopeias and various guidelines, Metrohm offers you analysis for active pharmaceutical ingredients (APIs), excipients, impurities, pharmaceutical solutions as well as pharmaceutical starting materials, and finished pharmaceutical products (FPPs). Additionally, we provide numerous wet chemical methods for atline and online process control as well as inline monitoring methods for assuring cost-effective manufacturing processes that satisfy all regulatory demands.

    By Metrohm AG based in Herisau, SWITZERLAND.

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    Gas analysis & monitoring systems for semiconductor

    The Cleanroom is a combined laboratory chemical, mechanical and / or electronic whose main characteristic is the presence of very pure air, that is a very low content of fine dust in suspension. In the process of semiconductor production, the airborne particles (micro-powder) go to irreparably damage the micro-photoetched that form the chip, creating an electronic circuit defective, and then discarded. This process has forced the improvement of industrial production environments, removing particles from the air, for two purposes: to increase the efficiency of production, increasing the yield of quality, and requirement of the manufacturer (of course based on the demand of the market) in shrink increasing the area of etching of semiconductors (just think of the USB storage media in a few years, went from 16 MB to 16 GB without changing the external dimensions).

    By ETG Risorse e Tecnologia S.r.l. based in Montiglio, ITALY.

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    Laboratory instruments solutions for petrochemical and biofuel

    Crude oil is a highly complex mixture of hydrocarbons. Through desalting, distillation, and conversion, it is transformed into fractions of higher-quality hydrocarbons such as paraffins, aromatics, naphthenes, and olefins. Different ratios of these so-called PIANO compounds are blended to yield different fuel and lubricant types. Increasingly, fossil fuels are blended with biofuels. Both blending and refining processes are demanding and require precise and reliable analysis. Regardless whether you deal with fossil or biogenic products, we are your specialist when it comes to analyzing them in accordance with international standards.

    By Metrohm AG based in Herisau, SWITZERLAND.

  • Air monitoring for laboratories

    Many of the air quality analyses can be performed with standard laboratory consumables, such as traditional filter papers. However, some analyses require materials with specific features, for example filters with low metal levels.

    Common air monitoring applications include:

    • Air quality testing of ambient environment and emissions. Includes particulate monitoring methods such as PM2.5 and PM10, and chemical analysis such as heavy metals determination.
    • Asbestos sampling and analysis

    By GE Healthcare UK Limited based in Little Chalfont, UNITED KINGDOM.

  • Water monitoring for laboratories

    Chemical purity of water is assessed for a wide variety of different chemicals depending on the type of water and applicable local legislation. 

    Chemical analysis of water can include testing for nitrogen compounds, dissolved heavy metals, and total and dissolved organic carbon.

    Common water monitoring applications include:

    • Determination of suspended solids in waterusing for example glass fiber filters.
    • Chemical analyses of for example heavy metals, dissolved organic carbons (DOC), and ions.
    • Microbiological analyses using membrane based microfiltration methods

    By GE Healthcare UK Limited based in Little Chalfont, UNITED KINGDOM.

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    Laboratory instruments solutions for surface finishing industry

    The coating and finishing of surfaces using electroplating techniques is a highly sophisticated process. Be it the finishing of metal parts or the coating of printed circuit boards, the quality required in the intermediate and end products is only achieved if the composition of the process baths is right. At the same time, rising costs of raw materials and energy make it absolutely essential to drive production as efficiently as possible. As a leading manufacturer of instruments for chemical analysis we know about the challenges of coating and finishing of surfaces using electroplating techniques. We offer you state-of-the-art instrumentation to control and optimize the quality of your coating processes − both in the laboratory and in the process environment.

    By Metrohm AG based in Herisau, SWITZERLAND.

  • TOC Correlation to BOD or COD

    Challenge: Biochemical Oxygen Demand (BOD) and Chemical Oxygen Demand (COD) are traditional parameters analyzed in the laboratory to determine organic matter in water and wastewater. Wastewater facility operators need to have constant data to monitor their discharges and optimize treatment processes (biological treatment, chemical dosing, etc). The requirements of BOD and COD analysis prevent them from being implemented as control parameters, however. The BOD five-day analysis time requirement does not allow an operator to use the data for process optimization and. although COD requires less time than the BOD, its analysis includes the use of hazardous chemicals and has no constant analysis capability.

    By GE Analytical Instruments based in Boulder, COLORADO (USA).

  • Crucibles Application in the X Ray analysis

    Platinum has a wide application in laboratories of experimental analysis. Materials as crucibles, casting dishes, dishes, covers and others obtained a wide market because of the high resistence to the heating ( high melting point) and to the attack of chemical products.

    By Oregon Labware based in Sao Paulo, BRAZIL.

  • Independent particle characterization services for pharmaceutical industries

    Supporting drug development with pharmaceutical testing is some of the most exciting work we do. As a premier cGMP contract service laboratory, PTL partners with pharmaceutical scientists to identify key physical characteristics of pharmaceutical APIs and excipients ranging from powders, solids and liquids. With over a decade of experience testing a vast array of pharmaceutical products, PTL’s analytical staff uses custom-designed test methods for particle size, particle shape, surface area, pore volume, pore size, thermal analysis, powder flowability and zeta potential analyses.

    By Particle Technology Labs based in Downers Grove, ILLINOIS (USA).

  • Integrated real-time gas analysis solution for R & D industry

    Universities and research institutes, including federal agencies and laboratories, regularly call upon CIC Photonics to custom design and fabricate gas cells and FTIR gas analyzers for innovative research studies. Their research spans a range from the synthesis of new chemicals to spectroscopy of the universe. Hence, their requirements often demand the complete utilization of the company’s staffing skills in physical chemistry, chemical engineering, optics, mechanical engineering, and electronic engineering, as well as computer programming.

    By CIC Photonics, Inc. based in Albuquerque, NEW MEXICO (USA).

  • Measurement solution for VOC emissions monitoring

    Protea has used our VOC gas analysers in many projects requiring the monitoring of complex mixes of VOCs. In the chemical and pharmaceutical industry, VOC abatement plants such as scrubbers and carbon-bed systems are typical installations where the use of Protea analysers and our VOC analysis expertise have proved valuable to plant operators. They prove a very powerful and flexible tool in both process gas measurements and VOC emissions monitoring. In the laboratory, Protea can deliver instruments with all the chemometric software and support to enable users to measure hundreds of gases.

    By Protea Limited based in Middlewich, UNITED KINGDOM.

  • Environmental Monitoring

    Environmental monitoring is becoming more important every day in local, national and international policies, showing the environmental awareness demanded by society.

    This fact gives rise to an increase in the amount of legislation that obliges companies to law enforcement. Thus, the necessity of making more pollutants controls means high analysis expenses to the companies, which need to subcontract this service.

    Although applications in this area advance, there is still a clear demand to get new portable and versatile analysis systems for many different application fields such as pollution in environmental or waste waters, monitoring nutrients in agricultural or horticultural water as well as general process control in chemistry industry. Because of the number of enviromental analysis required, there is a need for screening and monitoring measurements of these compounds at contaminated areas.

    Traditional monitoring techniques are typically based on laboratory analysis of field-collected samples that require considerable effort and expense, and the sample may change before analysis. Moreover, the equipment currently available is too large and expensive and it cannot be made portable.Alternatively, microfluidic and electrochemical sensor technologies can contribute to the development of new portable monitoring systems, complementing standard analytical methods for different environmental monitoring applications.In this way, the decentralization and integration of all those typical analyses is the paramount importance in order to reduce cost, simplify the analytical process and make more accessible these technologies to end-users. The development of portable, robust, and accurate Lab-on-a-Chip systems to monitor priority compounds such as contaminants, explosives, chemical warfare agents, inorganic and organic ions is a demand of modern society. Portability allows analyses to be carried out outside of the laboratory, minimizing the risk of contaminating the sample and leading to a faster response time at a lower cost.

    Thus, MicruX solutions and technologies open the gate to develop portable and esay-handly Lab-on-a-Chip devices in order to improve pollutants in-situ analysis in a very economic and efficient way.

    By MicruX Technologies based in Oviedo, SPAIN.

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