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ORNL team develops carbon-nanotube-based superlubricity coating

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Scientists at the Department of Energy’s Oak Ridge National Laboratory have developed a coating composed of carbon nanotubes that imparts superlubricity to sliding parts. With an oil lubricant, the coefficient of friction falls to about 0.1. The carbon nanotubes are destroyed in the rubbing but become a new thing. Kumara et al.

Carbon 417
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Study finds carbon emissions benefits of reduction in oil demand depend on size of drop and global oil market structure

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New research led by Mohammad Masnadi, assistant professor of chemical and petroleum engineering at the University of Pittsburgh Swanson School of Engineering, offers a closer look at the relationship between decreasing demand for oil and a resilient, varied oil market—and the carbon footprint associated with both.

Oil 305
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Equinor Energy & Mitsubishi Heavy to collaborate on low-carbon technology to reduce carbon footprint of oil & gas operations

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Norway-based energy company Equinor Energy and Mitsubishi Heavy Industries (MHI) signed a Memorandum of Understanding (MoU) for a low-carbon technology collaboration. The non-exclusive cooperation agreement will see both companies develop and use technology to reduce the carbon footprint of oil & gas operations.

Carbon 191
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Greenergy opts for Haldor Topsoe’s HydroFlex technology to produce low-carbon fuels from waste tires

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Greenergy will invest in Front End Engineering Design (FEED) of a project to produce low-carbon transportation fuels from waste tires. In the first phase, the planned facility will process up to 300 tons of shredded tires each day to produce low-carbon, low-sulfur drop-in fuels that can be blended into diesel and gasoline.

Waste 397
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Occidental to acquire direct air capture technology company Carbon Engineering for $1.1B

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Occidental announced that a wholly owned subsidiary— 1PointFive —has entered into a definitive purchase agreement to acquire all the outstanding equity of Carbon Engineering Ltd. (CE) Occidental has been working with Carbon Engineering on direct air capture (DAC) deployment since 2019. Earlier post.) Earlier post.)

Carbon 150
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ExxonMobil, FuelCell Energy expand agreement to optimize carbonate fuel cell technology for large-scale carbon capture

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signed a new, two-year expanded joint-development agreement to further enhance carbonate fuel cell technology for the purpose of capturing carbon dioxide from industrial facilities. ExxonMobil is exploring options to conduct a pilot test of next-generation fuel cell carbon capture solution at one of its operating sites.

Carbon 360
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Review of co-processing of biocrudes in oil refineries

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Liquid intermediates from pyrolysis and hydrothermal liquefaction (HTL) can be co-processed in an oil refinery along with conventional crude oil. After pyrolysis, the vapors are condensed to give a dark brown fast pyrolysis bio-oil (FPBO). In fast pyrolysis, biomass is quickly heated to around 500 °C in the absence of oxygen.

Oil 448