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waste biogas Applications

  • Biogas to Elecricity

    The range of supply of biogas to electricity solutions is from 10 kW to 1 MW. All the components of the solution are provided with matching capacities. It comprises the biogas digester system of the desired capacity, gas storage, biogas cleaning system to get rid of H2S from the gas, and the biogas genset. In the digester system, one may have a pre-digester or a feed mixing chamber or both. On the post-digester side, liquid from the slurry is separated and is recycled for feed preparation. It reduces the overall fresh water demand of the scheme. The digester itself may be temperature controlled and the input for the same could be given from heat recovery of the genset or from a solar heating system or from any other heat source as the case may be.

    By Kirloskar Integrated Technologies Limited based in Kothrud, INDIA.

  • Biogas for Cooking

    This solution comprises a Biogas Digester of desired capacity working with specific substrate as input. It may or may not have H2S scrubbing system, depending on the quantity of H2S in the biogas and the requirement by the customer for cleaning it. As the heating value of biogas is almost half that of cooking LPG, specially designed biogas burners are provided to improve cooking speed. Depending on the demand by the customer, a blower to increase gas pressure may be employed.

    By Kirloskar Integrated Technologies Limited based in Kothrud, INDIA.

  • Biogas measurement for the waste to energy industry

    In a recent project and the subject of this paper, Kurz engineers conducted a study that lead to a unique, new design that allows thermal flow meters to perform accurately within a wet digester gas environment. The testing environment applies to landfill and digester applications.

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

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    Biogas recovery for waste to energy industries

    HydroThane BSP technology is the best method for H2S removal combining deep H2S removal, a very high reliability and availability, and low lifecycle costs. The clean biogas can be used to produce electricity or to replace natural gas in a boiler.

    By HydroThane STP BV based in KC `s Hertogenbosch, NETHERLANDS.

  • Biogas to Compressed Bio-methane

    For the sake of demonstration of the concept, a compressed Bio-methane solution can be supplied for as low as 5 m3 methane per hour. However, considering the cost of the plant, it becomes economically viable only above 6,000 m3 biogas per day capacity, which translates to approximately 2,400 kg bio-methane per day.

    By Kirloskar Integrated Technologies Limited based in Kothrud, INDIA.

  • Anaerobic Digester for Biogas Plant

    Glass fused to steel tank is made by a special process, called vitreous enamel coating ,which is an advanced technology for anti-corrosion purpose of steel plate. Tanks are coated both inside and outside with enamel .Today, glass fused to steel tank is widely used in wastewater treatment projects as aerobic and anaerobic reactors of UASB,EGSB,SBR,BAF,USR,CSTR, and equalization tank, clarifier, and sludge holding tank. It has proven its superior resistance to thermal and chemical when facing water with extremes in pH and temperature.

    By Center Enamel Co,.Ltd based in Guangzhou, CHINA.

  • biogas generating from organic waste

    Glass fused steel tanks are used various digesters and reactors in biogas plants. * superior performance in corrosion resistance and against rust *factory fabrication tank . No painting or spray on erection site . * minimal maintenance cost * No need crane or other large equipment during erection * not subjected to severe weather and environment. * can be designed to future expansion, dismantle or re-movement. * free service for technical drawings * turn key service from proposal to tank commissioning .

    By Shijiazhuang Zhengzhong Technology INC. based in Shijiazhuang City, CHINA.

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    Sensor for Biogas

    Anaerobic Digestion plants produce various gas components from a source material (or feedstock) that can be composed either solely or as a mixture of slurries, purpose-grown crops, food and organic waste material. The composition of the gas produced varies depending upon the feedstock and the Anaerobic digestion process itself. As a consequence, it is normal to measure various components of the resultant gas produced to evaluate the efficiency of the Anaerobic Digestion process. Furthermore, due to the flammable nature of Methane (CH4), and the risk of asphyxiation, most plants feature ambient air monitoring to protect personnel from any unplanned accumulation of leaked gas. CH4 is the gas component fuel, which is the intended end product of the anaerobic digestion process. In biogas plants, the concentration of CH4 in a working plant varies between 50%-75%, which is well above the Upper Explosive Limit (UEL).

    By Edinburgh Instruments Ltd based in Livingston, UNITED KINGDOM.

  • Energy from biogas and natural gas for the waste to energy industry

    You are a farmer/entrepreneur and would like to make money from generating electricity and heat? Then you have come to the right place. Within just a few years Dreyer & Bosse Kraftwerke GmbH have advanced to become one of the leading manufacturers of combined heat and power stations on biogas basis - we have available a complete product portfolio for energy applications of biogases or biomethane.

    By Dreyer & Bosse Kraftwerke GmbH based in Gorleben, GERMANY.

  • Biogas Treatment & Utilization

    ADI Systems offers treatment of biogas for H2S removal using both biological and chemical-based scrubber technologies. ADI Systems can provide biogas utilization packages in the following applications: Internal Combustion Engines Gen-sets Microturbines Fuel Cells Boiler and Steam Generating Systems Sludge Dryers Contact ADI Systems to learn how we can help your facility reclaim energy from waste.

    By ADI Systems based in Fredericton, NEW BRUNSWICK (CANADA).

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    Solutions for the waste sector

    There is an increasing global awareness that the waste problem needs to be solved in a sustainable way. New waste separation techniques are being implemented, and R&D programs focus on much more than waste-technology alone. The importance of biomass is recognized as a potential high-energy source for electricity and biogas. DMT’s ambitious approach is based on the principles of circular economy and cradle to cradle: waste products are in fact very valuable. We constantly investigate new ways in which to approach ‘waste’ from a different perspective, how to best use or reuse certain products, and where to create new markets and demands.

    By DMT Global Environmental Solutions BV based in Joure (NL), NETHERLANDS.

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    Dosing pumps for anaerobic disgestion and biogas industry

    Biogas is a natural gas also known as biofuel or biomass and is produced by breaking down organic material such as household waste, manure and crops grown specifically for biofuel with temperature-sensitive microbes and capturing the by-products.

    By Verderflex Peristaltic Pumps - part of the Verder Group based in Castleford, UNITED KINGDOM.

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    Gas analysis & monitoring system for biogas analysis

    “Biogas” means a mixture of various types of gas (mostly methane) produced by bacterial fermentation in anaerobic conditions(absence of oxygen) of organic residues from waste, decaying plant, carcasses in putrescence. The analyzers of biogas by Infrared cells carry out the continuous analysis of CH4, O2, CO2, H2S and NH3. The whole process sees the decomposition of organic material by some types of bacteria, producing carbon dioxide, molecular hydrogen and methane(methane conversion of organic compounds).

    By ETG Risorse e Tecnologia based in Montiglio, ITALY.

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    Methane and Carbon Dioxide Sensing for Biogas Applications

    Application: Anaerobic Digestion plants produce various gas components from a source material (or feedstock) that can be composed either solely or as a mixture of slurries, purpose-grown crops, food and organic waste material. The composition of the gas produced varies depending upon the feedstock and the Anaerobic digestion process itself. As a consequence, it is normal to measure various components of the resultant gas produced to evaluate the efficiency of the Anaerobic Digestion process. Furthermore, due to the flammable nature of Methane, and the risk of asphyxiation, most plants feature ambient air monitoring to protect personnel from any unplanned accumulation of leaked gas.

    By Edinburgh Instruments Ltd based in Livingston, UNITED KINGDOM.

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    Reliable Shredding Technology for Organic Waste

    Our shredders process biological and biogenic waste to generate an optimal substrate for further utilisation in your biogas plant or in your disposal business. The application area ranges from green or garden waste to food waste and expired goods including packaging to slaughterhouse waste. Non-homogeneous or organic waste in pieces including packaging must be shredded to prepare it optimally for fermentation. Our low-speed S-series shredders are ideally suited for this application. These two-shaft shredders ensure reliable processing and guarantee a pumpable fermentation substrate. Thanks to the special equipment, efficient cutting unit and sturdy machine construction, these shredders are very reliable and have a long service life!

    By UNTHA Shredding Technology based in Kuchl, AUSTRIA.

  • Evaporators technology for waste & recycling industry

    The leachate produced by the waste in the landfill is an extremely pollutant effluent that requires high effective treatment processes to comply with the very strict limits for discharging operations. EVALED evaporators are a technological solution which allow to exploit the biogas cogeneration for the full or partial power supply of the plant within the limits of the environmental regulations and to reduce the relevant costs for thermal energy and leachate disposal.

    By EVALED - Veolia Water Technologies based in Zoppola (PN), ITALY.

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    Organic waste shredding with Mercodor shredding systems

    The organic waste shredding of food waste and other organic wastes are used to prepare an environmentally friendly energy, for example in biogas plants. In addition to the production of electricity or heat through biowaste serve shredded organic waste / food and the production of biodiesel. The organic waste shredding is used wherever a longer storage of bio-waste is really necessary, such as on cruise ships.

    By MERCODOR GmbH Sondermaschinenbau KG based in Frankfurt am Main, GERMANY.

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    Waste to Energy

    We can treat the air streams from waste management plants, MBT (Mechanical Biological Treatment) reception and composting areas, Waste Water Treatment Plants (WWTP), Refuse Derived Fuel (RDF) Plants, gasification of waste, syngas, torrefaction, gas engines and biogas upgrading. In waste management plants and WWTP, we remove the odors that may be causing a nuisance to neighbors, with bioreactors using Biomass to degrade odorous components and where odors are particularly intractable or VOC emissions higher, thermal oxidizers to meet prescribed emission limits and odor levels. In RDF Plants, Syngas, Gasification, Gas Engine and Biogas Upgrading applications, we employ thermal oxidizers, particulate removal and DeNOX systems, for the control of VOC, NOx, CO and particulates to prescribed emission limits.

    By Babcock & Wilcox MEGTEC based in De Pere, WISCONSIN (USA).

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    Shredding and crushing systems for Food waste and handling of garbage and food waste

    Organic waste can become a problem anywhere where the disposal of waste occurs over a longer period. This challenge arises for example in the shipping industry. With Mercodor waste food shredders valuable space is saved and food protected from contamination. The processed food leftovers serve as the raw material for biodiesel production or are used for the production of green energy in the form of electricity and heat from biogas plants.

    By MERCODOR GmbH Sondermaschinenbau KG based in Frankfurt am Main, GERMANY.

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    Solutions for the energy sector

    New waste separation techniques are being implemented, and R&D programs focus on much more than waste-technology alone. The importance of biomass is recognized as a potential high-energy source for electricity and biogas. DMT’s ambitious approach is based on the principles of circular economy and cradle to cradle: waste products are in fact very valuable. We constantly investigate new ways in which to approach ‘waste’ from a different perspective.

    By DMT Global Environmental Solutions BV based in Joure (NL), NETHERLANDS.

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