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hazardous waste industry Applications

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    Hazardous waste treatment solutions for metal industry

    Sludge by-products from the metalworking industry have a high potential for recycling. Prolonged grinding processes can generate large amounts of highly valuable, alloy-rich sludge; consisting of metal powder and cooling lubricants. Inside our VacuDry system, the thermal separation of the liquids (hydrocarbons, eventually water) and solids (metal powder) takes place in an oxygen free atmosphere. This absence of oxygen ultimately eliminates material degradation by oxidation, and self-ignition or explosion risks. Operation under a low vacuum ensures the possibility to recover the cooling lubricants for later reuse. After the thermal treatment, for appropriate handling in the melting process, the metal powder is pressed into briquettes. With the econ VacuDry technology, 100% recycling of all ingredients is possible.

    By econ industries GmbH based in Starnberg, GERMANY.

  • Stack Testing for Medical Waste Industry

    INFECTIOUS WASTE INDUSTRY: Provided annual testing for metals, particulate, HCl, dioxins/furans, and typical continuous emission monitoring constituents.

    By AirSource Technologies, Inc. based in Shawnee, KANSAS (USA).

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    Hazardous waste treatment solutions for oil and gas industry

    There are a wide amount of applications for our VacuDry® process within the oil and gas industry. A large variety of wastes and by-products that are generated in the oil & gas production chain can be treated effectively and sustainably. In past decades, numerous thermal desorption processes have been implemented worldwide, using a variety of heating chamber designs to separate hydrocarbons from the mineral solids. Such standard TDUs work under atmospheric pressure which can lead to safety risks, high energy consumption, larger emissions and limited flexibility regarding altering feed materials. Due to its unique design, the complications outlined above are avoided throughout the VacuDry® process. When it comes to treating standard oily wastes, mercury-containing waste streams, NORM, and especially for the recovery of highly valuable drilling fluids from drill cuttings; our vacuum thermal desorption process (i.e. vacuum distillation) is economically unbeatable.

    By econ industries GmbH based in Starnberg, GERMANY.

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    Hazardous waste treatment solutions for chlorine industry

    The mercury cell process is a formerly widely-used production technique for the production of chlorine and caustic soda. The liquid metal, mercury, acts as cathode (negative pole) in this process. In the past, the loss of mercury during the process (to air, soil and water) led to serious health and environmental problems. Therefore, most European chlorine producers have decided to phase out the mercury cell process by 2020. Nevertheless, even today, almost 6000 tons of mercury is used per year for chlorine production in Europe alone. As a result of this, yearly waste outputs contain around 1200 tons of mercury, which are stored on-site or sent off for disposal.

    By econ industries GmbH based in Starnberg, GERMANY.

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    Applications and Air Pollutants Removed in Hazardous, Solid and Liquid Waste Treatment Operations

    Venturi scrubbers with FORCE FLUX Condensation technology and Wet Electrostatic Precipitators for industrial, municipal, sewage sludge and pathological waste incinerators to remove micron, submicron particulate, heavy metals and acid gases. Special quencher/scrubber systems for dioxin removal. HCL scrubbing from PVC plastic waste burning. Fine particulate, acid gases and NOx removal on munitions destruction. Cleanup of all pollutants from liquid waste incinerators and other high temperature destruction processes. Acid and particulate emissions from electronic board and metals recovery operations.

    By Bionomic Industries Inc. based in Mahwah, NEW JERSEY (USA).

  • Stack Testing for VOC Recovery Afterburner Installation

    HAZARDOUS WASTE HANDLING INDUSTRY: Conducted on-site GC speciation of VOC constituents by Method 18 collecting samples continuously around-the-clock in large vacuum canisters in order to demonstrate compliance control of a VOC recovery/afterburner installation

    By AirSource Technologies, Inc. based in Shawnee, KANSAS (USA).

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    Waste recovery for construction industry

    Construction waste consists of unwanted material produced directly or incidentally by the construction industry. This includes materials that may contain lead, asbestos or other hazardous materials. There is increasing pressure on the construction industry to dispose of this hazardous material in an environmentally responsible manner. Tetronics can help alleviate this pressure by providing waste recovery plants to deal with all types of hazardous wastes generated from a construction projects lifespan: from land remediation through to the treatment of APCs from incineration as well as the treatment of asbestos.

    By Tetronics (International) Limited based in Swindon, UNITED KINGDOM.

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    Waste recovery for metal manufacturing

    There are several challenges faced by the metal manufacturing industry. Firstly, there is a drive to recover as much metal credit as possible before disposal of by-products as wastes. Secondly, there is a requirement to minimise waste generation or alternatively minimise the costs of managing the disposal of any hazardous waste material generated during the manufacturing process. Finally, keeping the company competitive by generating value or by reducing costs in the manufacturing process. Any solutions that can overcome these challenges must be considered. Tetronics can assist with a range of metal manufacturing waste challenges, including:

    By Tetronics (International) Limited based in Swindon, UNITED KINGDOM.

  • X-ray fluorescence XRF analysis for environmental protection and waste management

    To meet the requirements of new regulations and to protect the environment effectively, industries need techniques that enable the analysis of elements at lowest concentration levels. Bruker X-ray fluorescence (XRF) analysis is the most suitable analytical technique for handling different kinds of materials. Bruker’s XRF, ICP-MS, GC, TOF-MS, FT-IR, CBRNE products and applications help you to monitor contaminated land efficiently and quickly, to determine hazardous elements in the air and water, as well as to classify waste material and to specify products for recycling and disposal. Whether solids, sludge, filters, liquids or powders: there is a fast and simple sample preparation technique for every material type.

    By Bruker Corporation based in Billerica, MASSACHUSETTS (USA).

  • Landfill lining

    GCLs have become the gold standard clay component of composite lining systems used in industrial, hazardous and municipal solid waste landfills. Used alone or in combination with a geomembrane in a composite cover system, GCLs provide significantly lower permeability, improved ease of installation, an increased amount of usable space. In many cases GCLs are more cost-effective than traditional compacted clay liners. GCLs are also not subject to deterioration from differential settlement and freeze-thaw cycles, which can damage traditional compacted clay liners. Important design considerations for GCLs in landfill caps include confining pressure, and potential for ion exchange and desiccation.

    By CETCO based in Hoffman Estates, ILLINOIS (USA).

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    Industrial air pollution control for the chemical and petrochemical industry

    CTP systems can be found in every leading production company: thanks to the experience and the expertise developed in partnership with our customers for processes with inconsistent waste gas volumes; varying concentrations of organic components; gases contaminated with aerosols. CTP has installed systems for waste gas streams ranging from 1,000 to 200,000 Nm³/h. CTP supplies this industry with mainly catalytic systems, regenerative thermal oxidisers (RTO) and adsorbers. As the flue gases in this industry are often explosive mixtures, CTP systems have to be completed with special safety conduits and filters to help reduce hazards during continued operation.

  • Industrial shredders for CIW/MSW/BW/HW industry

    CIW : Common Industrial Waste, MSW : Municipal Solid Waste, BW : Bulky Waste, HW : Hazardous Waste. All the dies of valorization/recycling of the CIW/HW start with a primary step of shredding. Since shredder 50-02 to the 12-02, according to the type of waste to be shredded, flow and required granulometry, Préciméca offers the machine adapted to your needs. Possibility of turn-key installation (handling, shredder, clasifier, magnetic seperation, etc.) or supply of single shredder, consult us!

    By PRECIMECA Environnement based in Toulouse, FRANCE.

  • 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.

  • Energy and Fuels from Wood Wastes and Biomass

    Wood wastes include woods from forestry, railways – sleepers, telecoms – telephone poles, timber manufacturing processes and the construction industry. Many of these types of wood tend to be contaminated with chemicals and other materials. This contamination can make the waste wood difficult to use in traditional biomass to energy processes and potentially hazardous to the environment. Our Gasplasma® energy from waste technology is able to transform efficiently the organic biomass into a pure, hydrogen-rich synthesis gas and safely destroys any harmful or hazardous inorganic chemicals. All inorganic materials are made inert and vitrified into an environmentally benign product called Plasmarok® which can be sold as an aggregate for construction, generating a revenue stream.

    By Advanced Plasma Power (APP) based in Swindon, UNITED KINGDOM.

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    Industrial air pollution control for the automotive and vehicle engineering

    Increased mobility and the soaring worldwide demand for cars have opened up questions regarding sustainability and environmental protection. Hazardous exhaust gases are emitted not only when driving vehicles, but also during their production. The waste gas volumes in the automotive industry reach up to 200,000 Nm³/h.

  • High-calcium lime slurry for environmental reclamation industry

    Lime slurry can be easily applied to rough terrain with a fine spray, minimizing waste and dust migration while providing a much safer, cost effective alternative. Flue gas treatment for industrial facilities and hazardous waste incinerators.

    By Sudbury Lime Ltd. based in Copper Cliff,, ONTARIO (CANADA).

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