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waste monitor Applications

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    Monitoring of waste for mercury

    By Lumex Instruments Group based in Mission, BRITISH COLUMBIA (CANADA).

  • Gas monitoring and dust monitoring

    EM-5 series Continuous Emission Monitoring System (CEMS) Counting tail gas emission and realtime concentration NOX SO2 O2 Temperature pressure flow dust

    By HANGZHOU ZETIAN TECHNOLOGY CO., LTD based in Hangzhou, CHINA.

  • Sewer Meter -

    Sewer Meters monitor sewage level and flow within the sewers. Benefits gained by sewer monitoring include: (1) Detection of overflow conditions before overflow occurs thereby preventing hazardous environmental events. (2) Detection of blocked sewer pipes, allowing quick and focused maintenance thereby reducing maintenance costs. (3)Detection of over-used and under-used pipes for long term municipal planning. (4) Monitoring of sewage flow in sensitive sites such as flow to the river or sea. (5) Estimation of sewage flow for costing purposes and especially for pricing the use of public infrastructure by industrial plants. The sewer meter solution consists of two main components: (1) The fielded component includes GaugerGSM, an ultrasonic non-contact level sensor integrated with GSM cellular transmitter. The fielded component also includes accessories such as external battery pack. (2) A web-based monitoring application for presenting data from all sewer sites.

    By Solid Applied Technologies Ltd. (SolidAT) based in Ashkelon, ISRAEL.

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    Emissions monitoring for waste incineration

    Process control and emission monitoring in a waste to energy plant is a challenge. A large number of gaseous components need to be measured with high accuracy. Almost 100% uptime is required and the monitoring system needs to be easy to maintain and fast to calibrate.

    By Opsis AB based in Furulund, SWEDEN.

  • Spectrophotometry for toxic waste industry

    By Buck Scientific Inc based in East Norwalk, CONNECTICUT (USA).

  • Continuous emission monitoring for municipal waste incineration

    Local authorities incinerate domestic waste and other kinds of waste that typically include plastics, batteries and a diversity of unknown compounds. These may all produce acidic and other toxic emissions. Therefore, efficient flue-gas cleaning systems are needed to prevent their release into the environment.

    By Enviro Technology Services Ltd based in Stroud, UNITED KINGDOM.

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    Cooling Tower, algae and biofilm control

    “Efficiently lowers algae, biofilm formation, bacterial counts and chemical consumption.” When temperatures are high, for example in cooling towers, a matrix of different microorganisms such as bacteria, fungi, EPS and algae can grow very rapidly. The disadvantages of biofilm formation in cooling towers can be enormous. Therefore water used in cooling towers needs frequent treatment and chemical shocks to keep levels of micro-organisms to a minimum.

    By LG Sonic based in Zoetermeer, 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.

  • Applications Testing PAHs in Soil

    Sitelab's UVF-3100D analyzer is used to test soils for polycyclic aromatic hydrocarbons. PAHs are abundant in coal tars, coal ash, creosote and fuel oils.

    By Sitelab Corporation based in West Newbury, MASSACHUSETTS (USA).

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    Machine condition monitoring for marine

    Overview

    Machine condition monitoring based on oil analysis has become an important, if not mandatory, maintenance practice by the marine industry. An effective oil analysis program will keep important assets such as engines, gearboxes, hydraulic systems, turbines, compressors, generators and any other oil-wetted machinery in operation by reducing unexpected failures and costly unscheduled down time.

    By Spectro Scientific based in Chelmsford, MASSACHUSETTS (USA).

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    Monitoring of mercury in waste water

    By Lumex Instruments Group based in Mission, BRITISH COLUMBIA (CANADA).

  • Remote level monitoring

    Leachate level control is a primary function in landfills. Although different types of pumps are used, all pumps need to be installed with a totalizing counter mounted at the top of the well head to monitor the pump cycles and to calculate the total volume of leachate removed from the well. Instead of manually monitoring the leachate level and collecting the pump count data, use FlexPower™ Counter Nodes to wirelessly send data from the pumps back to a central control location to save time and eliminate errors.

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

  • Remote temperature monitoring

    To abide local regulations, and ensure efficient and effective composting, the temperatures of the windrows must be measured and logged constantly. With accurate temperature measurements, you can determine the optimum time to turn the windrows for quicker compost production. Time consuming and error prone manual data collection is eliminated using a SureCross FlexPower Node equipped with three thermocouples to automatically monitor the temperature at three depths within a compost windrow. Temperature sensor readings are wirelessly transmitted back to the Gateway or host system for data collection, analysis, and logging. Because the temperatures are measured and recorded continuously, the composting rows can be turned as soon as the temperature reaches the ideal point. Continuously monitoring the temperature will also provide an early warning to potential fire hazards by notifying personnel when temperatures exceed recommended ranges, thereby preserving the product.

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

  • Incineration Industry Emissions Monitoring & Analysis

    Monitoring of emissions from incinerators is a demanding application for Continuous Emission Monitoring Systems. The emissions produced are highly corrosive, some of the gases are soluble and, because the waste being burnt is constantly changing, the resulting stack gas temperature varies widely.

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

  • Gas monitoring for landfills

    The Kurz Insertion Mass Flow Meter products provide extremely reliable and accurate measurements with a number of features specifi cally tailored for landfi ll gas monitoring applications.

    By Kurz Instruments, Inc. based in Monterey, CALIFORNIA (USA).

  • 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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    Portable and fixed gas analysers for landfill perimeter monitoring

    Controlling potentially explosive and asphyxiate gases from escaping off site is important for meeting Health and Safety standards and protecting the local environment.

    By Geotechnical Instruments (UK) Ltd based in Leamington Spa, UNITED KINGDOM.

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    Monitoring solutions for the flow monitoring areas

    Many large combustion plants are now required to monitor mass emissions of major pollutants and to do so requires an accurate measurement of stack gas velocity. The VCEM 5100 is certified to EN 15267 part 3 QAL 1 for all industrial processes including waste incineration. It has several key advantages, firstly the sensors optics are not in contact with the hot and dusty environment, the VCEM 5100 can monitor gases at temperatures exceeding 10000C and the analyser requires minimal maintenance. The VCEM 5100 can be used in extremely dust environments such as SCR’s when dust loadings exceed 10g/m3. The VCEM 5100 is in full compliance with EN/ISO 16911 part 2.

    By Codel International Ltd based in Bakewell, UNITED KINGDOM.

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