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biomass monitoring Applications

  • Biomass Plant Emissions Monitoring (CEMS)

    ProcalĀ“s analysers are used extensively in reporting and control applications in modern Biomass plants. The flexible and reliable instruments form the heart of the systems, enabling CO, NO2, NO, SO2, H2O, CO2, O2, dust and velocity to be measured.

    By Procal - Parker Hannifin Corp based in Peterborough, UNITED KINGDOM.

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    Measurement of methane, methanol and ethanol for the biomass monitoring for biofuels.

    The Series 8900 provides direct measurement of methane, methanol, and ethanol for the biofuel industry. The Series 8900 GC employs a flame ionization detector (FID). The methane, methanol, and ethanol in the gas sample are physically separated using proprietary GC columns. A dual-column configuration with timed backflush to vent is used to strip off moisture and heavier gases. At sample injection, a fixed volume of sample is carried through the pre-cut column. The backflush is timed so that primarily the MME and other similar compounds continue on to the analytical column. Contaminants are then backflushed to vent. Methane, methanol, and ethanol are separated from potentially interfering components on the analytical column and elute to the detector for analysis.

    By AMETEK MOCON - Baseline based in Lyons, COLORADO (USA).

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    Oxygen monitoring from aerobic and anaerobic for biomass activity tests

    Pulse-Flow respirometers can be used to assess biomass activity for aerobic and anaerobic reactions. In aerobic tests, cultures are combined with nutrients, trace minerals, and an organic substrate – such as acetic acid or ethanol. The maximum oxygen uptake rate reflects the amount of active biomass in the test culture.

    By Respirometer Systems and Applications, LLC based in Springdale, ARKANSAS (USA).

  • Cooling & Drinkingwater: ATP monitoring of biomass growth in waters

    Monitoring Biomass in (Cooling Tower) Waters through ATP monitoring

    The TOXcontrol can be used for ATP monitoring. Currently our company is doing research for further developments for this application on the TOXcontrol.

    Monitoring the microbial population of cooling towers is necessary in order to maintain the proper operation of the system. Conventional methods for monitoring microbial populations work by culturing microorganisms, a time-consuming procedure that requires days or even weeks of incubation before the results are known. Biofouling can be well-advanced before treatment begins. In addition, it is believed that this technique does not detect the full range of microbial life present in cooling systems.

    By microLAN B.V. based in Waalwijk, NETHERLANDS.

  • Algae Monitoring

    Monitor your Algae Quickly and Easily with FlowCam®. Different applications require the extraction of different types of biomass from the algae stock, such as lipids, oils, pigments, and proteins. Depending on the application, different species of algae are found that optimize the yield of the specific biomass desired. Once the desired feedstock is found, high capacity production methods are used to produce harvestable amounts of algae stock for the application. These may be monocultures or mixes of several different species.

    By Fluid Imaging Technologies, Inc. based in Scarborough, MAINE (USA).

  • Monitoring of Harmful Algae Blooms

    At frst it seems impossible: how can a sensor on board of a satellite circling the earth at an altitude of some 700 kilometers not only identify the total biomass of algae in the water, but also identify species of algae. This is related to what remote sensing specialists call the refectance spectrum of the water. The spectrum is a specifc fngerprint that is created by measuring the refection of water using extremely sensitive sensors, either onboard of a satellite or inside our equipment on the ground. We use a variety of algorithms to translate refectance spectra into concentrations of specifc compounds and phytoplankton species

    By BlueLeg Monitor BV based in JG Sneek, NETHERLANDS.

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    Continuous emissions monitoring in waste incineration plants

    Waste-to-energy through incineration of waste is an effective way of producing electricity and heat, at the same time getting rid of the possibly hazardous or unrecyclable waste. The waste can be incinerated at specific WtE plants or at plants with permission for co-incineration of waste at biomass boilers or cement kilns. The waste incineration plants are, however, governed by strict emissions regulations.

    By Gasmet Technologies Oy based in Helsinki, FINLAND.

  • Wireless industrial I/O applications for wastewater industries

    Banner Engineering`s SureCross product line offers reliable wireless industrial I/O monitoring and control solutions for most applications, including these example wireless applications for wastewater, landfills, and biomass processes.

    By Banner Engineering Corp. based in Minneapolis, MINNESOTA (USA).

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