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bacterial contamination Applications

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    Microbiological solutions for the industrial industry

    The MiL routinely performs rapid microbial identifications, confirmations, and tracks contaminant sources of all pathogenic, indicator and spoilage organisms using the latest technologies such as GC FAME, Biolog®, Ribotyping, and 16S rRNA base pair sequencing. Our computerized identification databases have over 3,500 microorganisms profiled and include all pathogenic bacterial strain subspecies, yeast and molds, and actinomycetes.

    By Microbe Inotech Laboratories, Inc based in St. Louis, MISSOURI (USA).

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    Microbiological solutions for the food safety & nutrition industry

    Our labs are USDA recognized and are under government grants to conduct food microbiological research. Approved test methodologies include carefully selected FDA, USDA, BAM, USP and AOAC official methods. For more information about food safety methods, check out these Food Safety Guides. The MiL routinely performs rapid microbial identifications, confirmations, and tracks contaminant sources of all pathogenic, indicator and spoilage organisms using the latest technologies such as GC FAME, Biolog®, Ribotyping...

    By Microbe Inotech Laboratories, Inc based in St. Louis, MISSOURI (USA).

  • EcoTex laundry systems for Hospitals

    Hospital laundries process thousands of pounds of contaminated laundry every day. On the average, this equates to some 3.2 million pounds a year of linens, gowns, bed clothing, pads, mops, and washing cloths. Not only is soil removal a concern, so is disinfection. But with an EcoTex System, hospitals can remove soils while achieving a 99.999% bacterial kill. Cold water washing eradicates C.diff, Aspergillus Niger, and MRSA, while eliminating up to 90 percent of the hot water you’re now using. The EcoTex system is...

    By ClearWater Tech LLC based in San Luis Obispo, CALIFORNIA (USA).

  • Real-time In-situ Effluent Monitoring

    The UviLux BOD Indicator enables in-situ, real-time, reporting of BOD within both natural water systems and water processing plants. The monitor detects fluorescent proteins that are inherent within sewage and slurry and provides an output in BOD equivalent units. The principle behind the measurement is the excitation of Tryptophan-like fluorescence within UV wavelength band, which has been shown to correlate with both BOD and bacterial contamination. With complete flexibility of deployment methodology, the...

    By Chelsea Technologies Group based in West Molesey, UNITED KINGDOM.

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