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hazardous waste generator Applications

  • Hazardous and Special Wastes

    Gasplasma® uses a DC Plasma Converter to crack impurities from the raw syngas. The intense heat and strong UV light produced by the Plasma Arc neutralises hazardous wastes, such as sludge and oils, creosote and other preservatives and chemicals. Gasplasma® transforms the organic parts of the waste into a hydrogen-rich syngas that is used to generate clean, renewable power and renewable heat. The second stage Plasma Converter makes hazardous elements inert and all the inorganic materials are vitrified into an environmentally benign product called Plasmarok®.

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

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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.

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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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    Medical and Bio-hazard Waste Treatment Technology with zero emissions

    The OZONATOR technology is the new NG-3000 model capable of processing up to 400 kg (880 lbs.) of waste every twenty minutes (1200 kg per hour) and can operate on a continuous basis 24 hours per day – 7 days per week with about one hour per week for service and cleaning. The waste is shredded with up to 90% reduction in volume and treated with a high concentration of ozone (sterilized) and then compacted into a stainless steel transport bin for disposal at landfill as general waste (daily cover) or the treated waste can be used as fuel in a WTE (waste-to-energy) facility. (CV 36.4 MJ/kg)

    By OZONATOR Industries Limited based in Regina, SASKATCHEWAN (CANADA).

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    Waste recovery for mining wastes

    Mining waste typically arises from the limitation of the installed technologies of an operation, e.g. where fines cannot be tolerated. They are associated with mine workings and often contain valuable and/or hazardous materials. The hazardous content, which are often the valuable fractions within this waste are typically metals. Spread of metal toxicants in association with tailings particles, through a combination of wind dispersion or if washed into the soil or rivers, can have a highly damaging effect on the environment. Crucially, as time moves on, the mine tailing of one generation become the resource of the next.

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

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    Recycling equipments for electronic waste recycling (WEEE)

    The content of WEEE (electrical and electronic waste) gives recyclers various initiatives for recycling. It contains hazardous substances, such as lead, mercury or certain flame retardants, as well as precious metals like gold and silver. In 2012 approx. 64,900.000 ton electronic goods where produced and 49.000.000 ton electrical and electronic waste (WEEE) was generated. As the amount of sold electronic goods rise, the amount of WEEE rises. It is vital that this waste is taken care of properly.

    By Eldan Recycling A/S based in Faaborg, DENMARK.

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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.

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    Waste recovery for energy & utilities

    In order to stay competitive and to be seen as being environmentally responsible, energy and utility companies are always looking for alternative routes to generate power. One method of doing this is by leveraging waste to energy incineration plants linked to the processing municipal solid waste. During this incineration process, APC residues, which are a mixture of fly ash, organic pollutants (including dioxins and furans), are generated and are classified as hazardous waste and have a detrimental environmental impact. This fly ash is subject to Air Pollution Control as it is contaminated with extremely high concentrations of heavy metals and toxic compounds like dioxins, linked to cancer and other health problems. Tetronics offers valuable waste recovery plants that can eliminate the hazardous element within the fly ash while generating an inert building aggregate with the remaining material.

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

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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.

  • 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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    SSI builds shredding systems for alternative fuels processing

    SSI has been designing and manufacturing size reduction systems to prepare solid wastes for thermal treatment or conversion to alternative fuel. SSI has supplied hundreds of systems worldwide for generating energy from many different waste materials—from industrial, municipal, and hazardous wastes to tires, mill waste, wood and other organic materials.

    By SSI Shredding Systems, Inc. based in Wilsonville, OREGON (USA).

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    Measurement of methane and non-methane hydrocarbons for environmental air quality.

    The Model 8900 Methane/Non-Methane Analyzer provides direct measurement of Methane and Non-Methane Hydrocarbons. This instrument is utilized in ambient air monitoring networks around metropolitan areas, fence-line monitoring at industrial plants and hazardous waste sites, and in the production of high purity industrial gases. Methane is a naturally occurring gas generated from the decomposition of biological materials and industrial activity. Since Methane is not considered a pollutant it is the Non-Methane hydrocarbons that are of primary concern.

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

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    Industrial Solution for gasification & synthetic gas

    Gasification and synthetic gas production from various waste products are becoming increasingly important energy recovery technologies. Often, the synthetic gas contains various hazardous contaminants including H2S, HCl and other acids, heavy metals, and tars. The gas requires cleaning before it is introduced in the engine or boiler. Most of these processes generate significant concentration of tars. The tars can vary from very low molecular weight to large and complex chains.

    By Macrotek Inc. based in Markham, ONTARIO (CANADA).

  • Continuous Metals Stack Monitor (CEMs)

    Cooper Environmental's Xact® 640 has the unique ability to generate high time resolution metals measurement in stacks. This unique capability has the potential to qualify as a substitution for the combination of a Hg/ PM CEMs application as well as the potential for a pollution control system feedback loop that could result in the reduction of pollution control consumables. Our systems have been site certified for compliance measurements at hazardous waste incinerator and secondary lead smelter sites.

    By Cooper Environmental based in Beaverton, OREGON (USA).

  • Water treatment research for refining and petrochemicals industry

    Refining processes like distillation use high quality steam that must be generated from ultrapure water. Advanced wastewater treatment technologies will help the industry meet tough regulations concerning hazardous waste products from process operations. As the industry expands into water-scarce areas in India, China and the Middle East, marginal sources can help meet the demand for water. Desalination and reuse technologies will secure a reliable source of water and help the industry manage its water impact. Water technology suppliers have the opportunity to tap into a market worth $768 billion.

    By Global Water Intelligence (GWI) based in Oxford, UNITED KINGDOM.

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