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  • About Axens

    Axens is a group providing a complete range of solutions for the conversion of oil and biomass to cleaner fuels, the production and purification of major petrochemical intermediates as well as all of natural gas' treatment and conversion options. The offer includes technologies, equipment, furnaces, modular units, catalysts, adsorbents and related services. Axens is ideally positioned to cover the entire value chain, from feasibility study to unit start-up and follow-up throughout ...

  • Advanced sulfur analysis with HDXRF

    The Petra series complies with ASTM D4294 and ISO 8754 for sulfur analysis in various hydrocarbon matrices. Petra 4294™ delivers precise sulfur analysis with limits of detection (LOD) as low as 2.6 ppm. Petra MAX™ delivers a sulfur LOD as low as 5.7 ppm with rapid monitoring of critical elements like Ni, V, and Fe at sub-ppm levels. The Petra Series Autosampler is an add-on feature and can be added to an existing analyzer.

  • Are you ready for MARPOL?

    As the International Maritime Organization (IMO) has decided to implement the MARPOL Annex VI, all ships must globally reduce their emissions of sulfur by 86% before 2020. This fact is bound to have a huge impact on the shipping as well as the refinery industry. But exactly what will happen? What options are there? What are the opportunities? Who will seize them? And how?   The MARPOL directive presents great opportunities for refineries. Whether you want to produce MARPOL ...

  • Avoid unnecessary costs by understanding process problems before taking action

    When a piece of process equipment starts experiencing problems and producing off-spec product, every engineer’s reaction is to make a change to “fix” the problem and get it back on-spec. yet, many plants lack adequate instrumentation to completely diagnose the cause of the poor performance. Without a more complete understanding of the root cause of the problem, “corrective action” could have little effect or make the problem worse. Gathering supplemental ...

  • Axens catalysts and adsorbents

    Decades of scientific achievement in catalyst and adsorbent research, product development, engineering expertise, process licensing technologies, manufacturing capability, and industrial feedback form the basis of the most advanced and reliable catalysts and adsorbents available anywhere to serve the refining, petrochemical, chemicals, gas, alternative fuels and water industries.   Our products, which constitute the most complete portfolio on the market, are grouped according ...

  • Axens overview

    Axens is a group providing a complete range of solutions for the conversion of oil and biomass to cleaner fuels, the production and purification of major petrochemical intermediates as well as all of natural gas' treatment and conversion options. The offer includes technologies, equipment, furnaces, modular units, catalysts, adsorbents and related services. Axens is ideally positioned to cover the entire value chain, from feasibility study to unit start-up and follow-up ...

  • BELCO® clean air technologies

    Belco Technologies Corporation (BELCO®), part of DuPont’s Clean Technologies portfolio, is an industry leader in the supply of air pollution control systems to the oil refining, sulfur recovery, sulfuric acid, utility, chemical, pulp & paper, marine and other industries. Since 1969, BELCO® has designed and supplied air pollution control systems for clients all over the world. Headquartered in Parsippany, New Jersey (USA), BELCO® has been recognized by refiners ...

  • Blasch Ferrules

    Thermal Management System (TMS) – a pre-fired tubesheet protection system that allows for the extensive use of fiber insulation in conjunction with the Blasch Ferrules and provides much greater insulating value than castable alone, in a greatly compressed area, saving space, and refractory. Improved performance – Large expanses of castable refractory undergo tremendous thermal and mechanical stresses as they heat up and cool down and that generates cracking in the ...

  • BLASCH HexWall™

    For sulfur recovery, sulfuric acid plant sulfur burners and spent recovery furnaces. BLASCH HexWall™ is a versatile, mechanically stable system consisting of a series of stackable six-sided blocks incorporating alternating tabs and slots on each side that are designed to ensure the blocks are positively locked together at installation. BLASCH HexWall™ is offered in a highly creep resistant mullite bonded composition designed to resist deformation under load.

  • BLASCH precision ceramics

    BlaschVECTORWALL™ Mixing System - OPTIMIZE YOUR PROCESS USING OUR ADVANCED MIXING SYSTEM – This system utilizes the same blocks as the proven checkerwall system, but incorporates a series of add-on flow vectoring shapes designed to direct gas flow at the exit of the checkerwall into any of a series of flow patterns to include single, double, and multiple vortices, preferential flow directions, or converging or diverging flows. Computational fluid dynamics support is ...

  • BLASCH VectorWall™

    Mixing systems for sulfur recovery, sulfur burning, or sulfuric acid plant reaction furnaces. BLASCH VectorWall™ Reaction Furnace Mixing System is a versatile, mechanically stable system consisting of a series of stackable six-sided blocks incorporating alternating tabs and slots on each side that are designed to ensure the blocks are positively locked together at installation. BLASCH VectorWall™is offered in a highly creep resistant mullite bonded composition designed ...

  • Celebrating a century of innovation in the oil & gas industry

    UOP celebrates its 100th year in business in 2014, and in many ways our history is analogous to the development of the world’s oil and gas industry. We have accomplished many great things during the last century. For that, we owe a tremendous debt of gratitude to our customers, who helped us develop and commercialize our technologies. When our company was founded, there were fewer than 2 billion people in the world, and travel was dominated by horses and steam engines. ...

  • CHM mixing valve for hot gases

    CHM valves are designed to mix hot gas of a furnace with cold gas down to a defined temperature. A refractory lining makes the valve suitable for applications where high temperatures may occur. Applications: - Refining, desulphurization - for all applications where gases have to be mixed to a defined temperature Sizes:                   DN 100 - DN 4000 bzw. 4“ - 160“ Pressure ...

  • Claus Tail Gas Treating – BSR® MDEA Process

    Applications: Refineries and gas plants around the world are challenged by new emission regulations, a stronger push to increase sulphur removal and the processing of higher sulphur crudes. The addition of a Beavon Sulfur removal - Methyldiethanolamine (BSR®-MDEA) Tail Gas Treatment Unit (TGTU) to existing or new Claus plants enables compliance with the strictest emission regulations.   Description: Claus tail gas is heated to a temperature that will permit the desired ...

  • Comparing physical solvents for acid gas removal

    Physical solvents such as DEPG, NMP, Methanol, and Propylene Carbonate are often used to treat sour gas. These physical solvents differ from chemical solvents such as ethanolamines and hot potassium carbonate in a number of ways. The regeneration of chemical solvents is achieved by the application of heat whereas physical solvents can often be stripped of impurities by simply reducing the pressure. Physical solvents tend to be favored over chemical solvents when the concentration ...

  • DuraSOx™

    Highly attrition-resistant SOx reduction additive without performance compromise. DuraSOx SOx reduction additive is the culmination of intensive development work focusing on obtaining the most attrition-resistant Sox additive on the market without any performance compromises. It follows in the footsteps of Albemarle’s longest marketed SOx additive, KDSOx®, in that both take advantage of Albemarle’s patented hydrotalcite technology. SOx reduction additives are ...

  • Dynawave® reverse jet scrubber

    How a reverse jet wet gas scrubber works. The DynaWave® Reverse Jet Scrubber is an open duct in which scrubbing liquid is injected, through a non-restrictive reverse jet nozzle, counter current to the dirty inlet gas. Liquid collides with down-coming gas to create the “Froth Zone,” a region of extreme turbulence with a high rate of mass transfer. The clean, water saturated gas continues through the scrubber vessel to mist removal devices. the liquid reverses ...

  • ERTC 2019 Newspaper

    Arkema achieved its 6000th sulphiding job in September 2019 -- Sabin  Metal Corp. announces capacity expansion project -- Renewables: four  options for greater market share and profitability -- Introducing FUSION  – the best of both worlds -- Implementing advanced technologies for  crude to chemicals projects -- Case study: How Shell is navigating the  energy transition -- The future is now -- Celebrating women in the  downstream industry -- ...

  • Flue Gas Reformer Tunnel System: StaBlox™

    The Blasch StaBlox flue gas reformer tunnel system is a versatile, mechanically stable system consisting of a series of stackable, customizable, interlocking blocks and highly engineered, mortar-free expansion joints. The StaBlox system allows for an extremely fast, easy installation as compared to conventional brick and mortar designs, with a much higher level of reliability. Lightweight, structurally stable roof assemblies are much more resistant to the effects of high temperature ...

  • Gas processing

    ProMax® is a powerful and versatile process simulation package that is used worldwide to design and optimize gas processing, refining and chemical facilities. Totally integrated with Microsoft Visio®, Excel® and Word®, ProMax is the best simulation tool for designing gas plants and predicting performance under varying process conditions. Discover why engineers around the world depend on ProMax! • Model any NGL, LNG, LPG recovery and fractionation process • ...

  • Gas treating (refinery / natural gas) ADIP process

    Applications: The ADIP process is a regenerative process developed to selectively reduce H2S in gas to very low concentrations in the presence of CO2. The ADIP process uses an aqueous solution of diisopropanol amine (DIPA) or the aqueous solution of methyldiethanol amine (MDEA). MDEA is used for those applications in which high selectivity for H2S is required. Depending on operating conditions 20-60% of the CO2 is co-absorbed if DIPA is used as the ADIP solvent, while this can ...

  • Gasoline desulfurization for Tier 3 Compliance

    Starting in January 2020, gasoline sold in the United States must contain no more than 10 ppm sulfur. This short, easy-to-read book gives a high-level overview of the regulatory, technical, economic, and strategic implications of this "Tier 3" requirement.  Readers will get a quick, thorough understanding of the Tier 3 issue which, according to the author, will have much more impact on the gasoline market than has been anticipated. You can buy the book HERE

  • HexWall™/ Vectorwall™ case study

    Furnace baffles – a long history of problems. Sulphuric acid plant furnace baffles historically are labor intensive, expensive to install, require long shut downs for refractory cure times, are susceptible to cracking, and have a poor reputation for collapsing due to their inherent mechanical instability. This archaic product has been the industry norm for over 100 years. No more… An innovative response MECS, Inc. (MECS) has collaborated with Blasch Precision ...

  • High octane C₅/C₆ cuts via isomerization Processes

    C5/C6 isomerization is a must-have for refiners who want to maximize the profitability of their gasoline pool. This process can be adapted to various configurations and allows improving C5/C6 naphtha cut octane numbers up to 92 without constraints on olefins and sulfur. Axens is licensing a complete set of isomerization configurations in order to support refiners to resolve the evolving gasoline pool equation. COMMERCIAL EXPERIENCE With a powerful R&D support at both lab ...

  • High sulphur recovery at low cost with SmartSulf™

    Process Principle: Thermal stage: acid gases are burnt with air to produce sulphur at high temperature thanks to Claus reaction. COS and CS2 hydrolysis: COS and CS2 from the process gases are hydrolyzed at high temperature in the first zone of the SmartSulf™ reactor operating in hot mode. Claus Reaction: Claus reaction occurs in the second zone of the hot mode SmartSulf™ reactor, where heat of reaction is continuously removed by thermoplates internals, thus increasing ...

  • How much time can you save by switching to Sindie 2622 Gen3?

    Sindie 2622 is renowned for its precision, accuracy, and ease of use. However, one drawback to the ASTM D2622method is the requirement for duplicate determinations of samples ≤100 ppm. This equates to 20 minutes of measurement time on the traditional Sindie 2622 Gen2 [(300s background + 300s sulfur) * 2determinations = 1,200s 20 minutes total time per sample]. Sindie 2622 Gen 3 now offers a time saving solution to this problem, withthe option to reduce the back ground measurement ...

  • indie 2622: 2622 & 7039 sulfur analysis as low as 0.15 ppm

    Sindie® 2622 Gen 3 complies with ASTM D2622, D7039 and ISO 20884 methods, enabling complete flexibility in sulfur analysis. With no compromises in detection, performance and reliability, Sindie 2622 is the ideal sulfur analytical solution from ultra-low sulfur diesel and gasoline to heavy fuel oil and crudes.

  • IsoTherming® hydroprocessing technology

    DuPont Sustainable Solutions offers IsoTherming® hydroprocessing technology, a commercially proven breakthrough process which provides refiners a significantly more economical means to produce today’s ultra low sulfur transportation fuels. DuPont acquired the technology in August 2007. In conventional hydroprocessing technology, the reactions occur in the liquid phase. A large volume of hydrogen rich recycle gas is combined with the reactor feed to ensure that the ...

  • KDSOx™

    Cost-effective SOx reduction solution for full-combustion FCC units. Reducing SOx emissions has become increasingly challenging in many parts of the world. Depending on the location, SOx emission limits are defined at the refinery level as bubble limits; at the individual emissions source; or, in some cases, by the concentrations in the atmosphere in the vicinity. In light of these challenges, many refineries have successfully used SOx additives for reducing overall sulfur ...

  • Liquid hydrocarbon treating (LPG/PP/BB) - ADIP process

    Applications: Besides its use as a regenerative process for the reduction of H2S to very low levels in gases, the ADIP process is also used to selectively reduce H2S and COS to very low levels in liquid hydrocarbons, such as propane-propylene (PP), butanebutene (BB), LPG and NGLs. The process is based on regenerative absorption with an amine solvent in contact with the acidic feed. Removal of CO2 is also possible. H2S removal from LPG or NGLs down to 20 ppmwt or lower, and COS ...

  • Look what the cat dragged in

    In most US refineries, the fluid catalytic cracker (also known as The Cat) is the main unit for converting heavy oils into gasoline and diesel. It produces gasoline (also known as cat gasoline), which is the largest single component of the US gasoline pool. Cat gasoline contains up to 2500 ppm sulphur and must be desulphurised before blending into finished gasoline to meet the new Tier 3 gasoline specification of 10 ppm. This desulphurisation job is done in Cat gasoline desulphurisers. ...

  • Low sulfur additive

    Low Sulfur Additive (LSA) targets gasoline volume expansion while reducing sulfur compounds in gasoline without octane loss. The reduction of sulfur in FCC gasoline is a requirement in low sulfur gasoline markets because 90 percent of gasoline sulfur is derived from FCC gasoline. The combination of feed hydrotreating, FCC catalysts and additives, post-treating or cut-point adjustment is utilized by refiners to meet low sulfur specifications. LSA can be a cost effective contributor ...

  • MECS® HexPro™ Ferrules

    For waste heat boilers and heat exchangers in sulphuric acid plants. Precast, precision ceramic ferrules for severe temperature and heat-cycling conditions. Fast, Simple installation. MECS® HexPro™ Ferrules are pre-engineered for each installation and come properly sized, accurately molded, and completely wrapped with all required ber insulation. Installation is as simple as taking them out of the box and slipping them into the boiler tubes. No castable refractory is ...

  • MECS® HexWall™ Baffles

    For sulfuric acid plant sulfur burners and spent Acid recovery furnaces. Interlocking hexagonal ceramic blocks for fast installation and superior structural stability. MECS® HexWall™ is a versatile, mechanically stable system consisting of a series of stackable six-sided blocks incorporating alternating tabs and slots on each side that are designed to ensure the blocks are positively locked together at installation. MECS® HexWall™ is oered in a highly creep ...

  • MECS® SolvR™ technology for regenerative SO2 recovery.

    An energy efficient so absorption process with nearly zero SO2 emmissions. MECS® SolvR™ Technology employs an absorption solvent that is readily available, environmentally friendly and lower in cost than solvents used in other SO2 absorption processes. The technology can be integrated into new sulphuric acid plant designs to achieve ultra low SO emissions and high energy recovery. The SO2 recovered can either be liquefied, converted into sulphuric acid or converted ...

  • MECS® Sulfox™ process

    The SULFOX™ process is based on the thermal and catalytic conversion of sulphur-bearing compounds into sulphuric acid. Depending on the feed gas conditions, customised plant types are offered. For low concentrations, the feed gas is preheated to the required catalyst inlet temperature by the glass tube heat exchanger of the condensation column and an additional gas preheater from the heat recovery system. An additional direct fired preheater is used for start-up and very ...

  • MECS® sulfuric acid and environmental technologies

    Is the leading provider of proprietary process technology, speciality products and technical services to the global sulfuric acid industry. MECS® has provided best-in-class sulfuric acid plant processes, clean technologies, and specialty products to a wide distribution of industries for over 80 years. Our proprietary solutions are engineered to perform and built to last. MECS® is the global leader in sulfuric acid plant design and technology licensing for the phosphate ...

  • MECS®–Thermo Z™ welded plate heat exchangers

    Plant engineers in the know choose MECS®–THERMO Z™ for maximum waste heat recovery and the best delivered value. MECS®–ThermoZ™ is a highly efficient heat exchanger suitable for many industrial processes where gas temperatures may be up to 1500°F (816°C). It is inherently compact in size and weight which makes installation andfield set up much simpler than conventional heat exchangers. Since MECS®–ThermoZ™ has no moving ...

  • Moving gamma scanning forward – quantitative analysis of tray capacity

    Improving process operating margins can include maximising production of higher value products and/or minimising production costs. Process plants depend heavily on fractionation towers to produce products meeting customer specifications. Tower gamma scanning is well established in the process industries as a qualitative tool to help troubleshoot fractionation towers. Using new measurement detector technology and innovative analysis of gamma scanning data Tracerco is now able to ...

  • High-Performance Tail-Gas Treating

    Discover the benefits of applying the latest technology in modern, low-temperature Shell Claus offgas treating (SCOT™) units. See how next-generation, low-temperature SCOT catalysts can help extend cycle life, lower energy costs and ensure regulatory compliance, even with the most difficult feeds and conditions. In this webinar you will: • Learn why modern tail-gas treating units are being designed without an inline burner, and the impact this has on inlet temperatures ...

  • Intelligently predict and manage sour water corrosion in refinery applications

    One of the primary concerns in refinery operations, especially when processing sour crudes, is management and mitigation of NH4HS (Sour Water) corrosion in hydrocrackers, hydrotreaters, FCC and other unit circuits. Honeywell's Predict-SW software, a byproduct of more than 15 years of intense Joint Industry Project (JIP) research, provides an easy to use framework to quantify NH4HS corrosion as a function of key process parameters across the refinery value chain for commonly used ...

  • Understanding the financial impact of a collapsed flue gas tunnel in your SMR

    The overall influence of tunnels on the flue gas flow in a steam methane reformer has been modeled and documented, and the concept that running a reformer without tunnels can decrease overall efficiency is well understood in the industry. The study detailed in this webinar focuses on the effects of operating a reformer after removing just a single tunnel, leaving the rest in place. The resultant flue gas flow field is analyzed by looking at temperature profiles, residence time ...

  • From hydrogen production to sulphur recovery - let ceramics pave the way

    Learn how to boost the reliability and performance of your hydrogen production and sulphur recovery plants through the deployment of Blasch’s proven ceramic systems. Benefits include: • Higher plant reliability and much longer run-lengths • 60 -90% faster installation times • Capacity increase • Annual energy savings of several hundred thousand dollars for SRUs • Lower emissions   Flue gas tunnels in Steam Methane Reformers warp and fail causing non ...

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