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Haldor Topsoe joins ambitious hydrogen and sustainable fuel project in Denmark

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Topsoe will contribute with know-how about technologies that convert captured CO 2 into sustainable methanol and jet fuel using hydrogen from electrolysis of water. Apart from a triple-digit million investment from the companies within the project, the partners have applied for substantial funding from Innovation Fund Denmark.

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First conversion of a slow-speed marine diesel engine to operate on ethane as a fuel

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ABS has confirmed the successful conversion of a slow-speed marine diesel engine to operate on ethane as a fuel. GI dual fuel (HFO/LNG) burning engine, which has now been converted to a dual fuel (HFO/Ethane) 6S50ME-C-GIE engine. —Paul Flaherty, Director of Fleet and Technical operations at Navigator Gas. Earlier post.).

Mariner 218
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Danish team electrifies steam-methane reforming for greener approach to hydrogen production

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Researchers from the Technical University of Denmark and Haldor Topsoe, with colleagues from the Danish Technological Institute and Sintex have developed a “ disruptive approach to a fundamental process ” by integrating an electrically heated catalytic structure directly into a steam-methane–reforming (SMR) reactor for hydrogen production.

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New nickel-gallium catalyst could lead to low-cost, clean production of methanol; small-scale, low-pressure devices

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Scientists from Stanford University, SLAC National Accelerator Laboratory and the Technical University of Denmark have identified a new nickel-gallium catalyst that converts hydrogen and carbon dioxide into methanol at ambient pressure and with fewer side-products than the conventional catalyst.

Low Cost 257
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Eastern Pacific Shipping, OCI & MAN partner to develop methanol & ammonia as marine fuels; retrofits and newbuilds

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Converting our existing conventional fleet to burn methanol creates a unique opportunity to continue lowering our carbon footprint significantly and rapidly. In the meantime, developing ammonia-fueled conversion and newbuilding projects will help develop more mature zero-carbon solutions in the longer-term.

Mariner 243
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Vattenfall and Aalborg University Partner with SCF Technologies on Near Supercritical Bio-oil Process

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CatLiq converts biomass and organic wastes in water at near or supercritical conditions (280-350 °C and 180-250 bar). The high reactivity of water results in high conversion rates of organic matter and a high throughput. In 2008, SCF ran a series of tests of CatLiq using aqueous feed streams at the pilot plant in Herlev, Denmark.

Oil 218
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EU Awards €1.6M Contract to Novozymes to Support Development of Cellulosic Ethanol from Sugarcane Bagasse

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The European Commission is supporting a Novozymes project to convert sugarcane by-products into bioethanol with a €1.6 In connection with this project ( earlier post ), Novozymes is establishing a research unit in Curitiba, Brazil, supported by research colleagues in both the US and Denmark. Every ton of sugarcane results in 0.3

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