The result is a series of high quality products with specifications that are applicable for use in the gasification process. Features that come as standard include: robustness, durability of construction, dependable performance, minimum maintenance requirements and, most importantly, safety. SOLUTIONS FOR THE COAL GASIFICATION INDUSTRY
Nov 17, 2009 · The memorandum of understanding would result in a joint venture company, in which GE and Shenhua would execute a strategic vision for expanding to improve cost and performance of commercial scale gasification and integrated gasification combined cycle (IGCC) solutions.
Iron Ladle. The iron ladle is a critical vessel for transporting molten metal, typically carried by overhead cranes as it moves between process steps in steelmaking shops. Iron ladle failure can pose a serious risk to employees, equipment and processes. Iron ladles from Saint-Gobain Performance Ceramics & Refractories deliver a robust
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haiqi Gasification – A potentially versatile and low-emissions solution to the gasification of a wide range of feed types such as MSW and industrial wastes, biomass, and coal and coal residues. Aerojet Rocketdyne Gasifier – An interesting developmental application of coal gasification, utilizing technology developed and experience gained from rocket propulsion engines.
High temperatures and pressures, corrosive and erosive as well as dust or by-products laden syngas compositions have to be handled by the process equipment. The combination of well-established and innovative reactor and syngas cooler technologies is leading to the most up to date and economic process solutions.
HIGH-PERFORMANCE REFRACTORIES Technical solutions - Gasification Production of syngas (CO + H 2 ) from hydrocarbons For ammonia, methanol production, synfuels, energy High process temperature (Tmax 1600°C) Various feedstock: Natural gas Oil Coal Petcoke Biomass Municipal waste Heavy oil Energy Flame haiqi torch Low CO 2 emissions
Aug 08, 2019 · haiqi gasification offers an opportunity to address the intractable problems facing our waste handling industry, it is a proven solution for all waste. This is a proven technology used in other domains and parts of the world since the early 2000s.
auto gasification solution Cost-Effective Cost Analysis Model for Syngas Production Cost Evaluation Apr 02, 2014 · Energy and Power 2014, 4(2): 35-40 DOI: 10.5923/j.ep.20140402.02 Cost Analysis Model for Syngas Production Cost Evaluation Using the Graphical User Interface
The gasification process is dependent on certain operating parameters including gasification temperature, flow rates, oxidizing agents, feed type, properties, and design of the gasifier (Kumar et al. 2009). Gasifiers are classified based on the types of bed and flow, while the gasifier beds are either a fixed-bed or a fluidized bed (Bernocco 2013).
Nov 13, 2015 · The BESI solution has the capacity to process 10 tons of waste per day, while generating enough energy to power the system itself, and also yield 300 kilowatts of net output, thanks to the high performance and efficiency of the gasification core and components of the integrated system.
Condition Monitoring of Gasifiers. Gasifiers are used for gasification processes where carbon-containing materials like coal or oil are converted into synthesis gas. The process in the inner runs at temperatures of up to 1600°C and at high pressures. To withstand these extreme conditions, the reactor vessel is coated with a fireproof lining.
Apr 15, 2020 · In gasification, waste like wood, paper or cardboard is mixed with steam and air/oxygen at high temperature and is converted to syngas consisting mainly of carbon monoxide and hydrogen. This gas can then be consumed directly as an energy source to generate power and hot water/steam through the CHP process [ 9 , 10 ].
Gaseous Hydrocarbons: Natural Gas, ROG via SMR. World-class, high-efficiency steam methane reforming or partial oxidation plants providing syngas and/or hydrogen from a modest 1000 scf/d to a large-scale 100MM scf/d for de-sulfuring and upgrading fuels or providing hydrogen for fuel-cell vehicles. Learn More.
By converting natural gas into highly reactive synthesis gas mainly composed of carbon monoxide (CO) and hydrogen (H 2) by means of reforming technology, this synthesis gas can be used as a feed source to produce not only various kinds of chemical products but also environment-friendly, oil-alternative fuels, such as methanol, dimethyl ether (DME), and GTL diesel oil.