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公开(公告)号:US20240357979A1
公开(公告)日:2024-10-31
申请号:US18643186
申请日:2024-04-23
Applicant: NUSEED GLOBAL INNOVATION LTD.
Inventor: Steven Fabijanski , Michael Lindenbaum , Mejda Benali
CPC classification number: A01G22/00 , A23K10/30 , B01D53/62 , B01D53/84 , C05F3/00 , C10L1/02 , B01D2257/504 , C10L2200/0484
Abstract: The present invention relates to agricultural practices for maximizing carbon sequestration, enhanced productivity, sustainable farming and minimizing greenhouse gas emissions. In one embodiment, there is provided a method comprising: planting a Brassica carinata variety as a second crop in rotation with a first crop or to replace fallow; implementing land management practices to reduce the use of fossil fuel inputs and to maximize the capture of atmospheric carbon by the plant material of Brassica carinata; harvesting of the Brassica carinata variety to obtain the grain; and returning about 70% to about 90% of all plant material from the Brassica carinata variety aside from the grain to the soil. As a result, the overall greenhouse gas emissions associated with agriculture are reduced. In some embodiments, the method further comprises producing grain for use in the production of a plant-based feedstock for producing low carbon intensity fuels; for adding carbon in soil; and/or acquiring a carbon credit.
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公开(公告)号:US12129441B2
公开(公告)日:2024-10-29
申请号:US17803538
申请日:2022-08-16
Applicant: Platinum Fuels, LLC
Inventor: Robert Schuetzle , Dennis Schuetzle
CPC classification number: C10L1/08 , C01B3/34 , C10G2/30 , C10G3/00 , C10J3/82 , C10K3/006 , C10L1/02 , C10L1/04 , C01B2203/0216 , C01B2203/0233 , C01B2203/0244 , C01B2203/04 , C01B2203/048 , C01B2203/0485 , C01B2203/061 , C01B2203/062 , C10L2200/0492 , C10L2290/04 , C10L2290/24 , C10L2290/42 , Y02E10/00 , Y02E10/20 , Y02E50/00 , Y02E50/10 , Y02E50/30 , Y02E60/00 , Y02E70/00 , Y02P20/145 , Y02P30/00 , Y02P30/20
Abstract: The present invention provides a blended fuel and methods for producing the blended fuel, wherein a low carbon fuel derived from a renewable resource such as biomass, is blended with a traditional, petroleum derived fuel. A blended fuel which includes greater than 10% by volume of low carbon fuel has an overall improved lifecycle greenhouse gas content of about 5% or more compared to the petroleum derived fuel. Also, blending of the low carbon fuel to the traditional, petroleum fuel improves various engine performance characteristics of the traditional fuel.
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公开(公告)号:US20240352369A1
公开(公告)日:2024-10-24
申请号:US18640532
申请日:2024-04-19
Applicant: Bruso LLC
Inventor: Bruce Lee Bruso
IPC: C10L5/44 , C05F5/00 , C05G5/27 , C08H8/00 , C08L23/06 , C08L23/12 , C08L97/02 , C10L1/02 , C10L5/04 , C10L5/36 , C10L5/46 , D21C11/00
CPC classification number: C10L5/442 , C05F5/004 , C05G5/27 , C08H8/00 , C08L23/06 , C08L23/12 , C08L97/02 , C10L1/02 , C10L5/04 , C10L5/363 , C10L5/46 , D21C11/0007 , C08L2207/062 , C08L2207/20 , C10L2200/0476
Abstract: Methods and systems disclosed herein can treat biomass compositions to produce valuable products, reduce emissions, and decarbonize biomass. The biomass compositions can be raw biomass (e.g., green, woody-plant derived) or waste biomass (e.g., industrial waste, pulp and paper processes, construction materials). The biomass compositions can be mixed with a reagent to form a mixture. The reagent can include ammonia. The mixture can be reacted to separate one or more components from the biomass and form a treated biomass composition. The one or more components can include lignin, polylactic acid, carbon oxides, methane, minerals, volatiles, or semi-volatiles. The treated biomass can be dried and processed into heating pellets that have higher calorific value and fewer emissions than conventional heating chips. The separated components can be used to produce valuable products, such as wood composites, bioplastics, fertilizer, fuels, lignin anodes for batteries, additives, glues, resins, and bio-based carbon fiber.
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公开(公告)号:US20240352362A1
公开(公告)日:2024-10-24
申请号:US18290903
申请日:2022-07-27
Applicant: Alliance for Sustainable Energy, LLC
Inventor: Derek Richard VARDON
IPC: C10L1/02 , C07C5/10 , C07C29/145
CPC classification number: C10L1/02 , C07C5/10 , C07C29/145
Abstract: Treating pyrolysis oil to yield a liquid fuel or liquid fuel precursor includes combining the pyrolysis oil with one or more co-solvents to yield a mixture, and hydrotreating the mixture to yield the liquid fuel or liquid fuel precursor. The co-solvent can include one or more alcohols. The liquid fuel can be a transportation fuel, such as gasoline, diesel fuel, jet fuel, or marine fuel. The liquid fuel precursor can be a transportation fuel precursor, such as a gasoline precursor, a diesel fuel precursor, a jet fuel precursor, or a marine fuel precursor.
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公开(公告)号:US20240255144A1
公开(公告)日:2024-08-01
申请号:US18566459
申请日:2022-06-15
Applicant: ALFA LAVAL CORPORATE AB
Inventor: Torben MØRCH SØRENSEN , Søren MØLGAARD , Lars Bo ANDERSEN
CPC classification number: F23K5/18 , B01D45/02 , B63H21/38 , B63J99/00 , F23C1/08 , F23G7/065 , F23K5/10 , B63J2099/003 , C10L1/02
Abstract: An arrangement and a method for handling purged alcohol-based fuel originating from an alcohol fuel system configured to fuel an alcohol fueled engine, the arrangement comprising: a boiler system comprising a burner and a fuel inlet configured to selectively supply a fuel and thereby selectively sustain a primary flame in the burner for production of heat and/or steam in the boiler system, a purge connection configured to receive a purge mixture purged from the alcohol fuel system using an inert gas, the purge mixture comprising a mixture of the inert gas and purged alcohol-based fuel, and a vapor-liquid separator.
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公开(公告)号:US11959033B2
公开(公告)日:2024-04-16
申请号:US15778789
申请日:2016-11-28
Applicant: SHELL OIL COMPANY
Inventor: Richard John Price , Caroline Nicola Orlebar , Marcello Stefano Rigutto , Richard Hugh Clark , Jasprit Kaur Chahal
IPC: C10L1/02
CPC classification number: C10L1/02 , C10L1/023 , C10G2400/02 , C10L2270/023
Abstract: A liquid fuel composition for a spark ignition internal combustion engine comprising (a) gasoline blending components, (b) Fischer-Tropsch derived naphtha at a level of up to 50% v/v and (c) oxygenated hydrocarbon at a level less than 50% v/v. While the low octane number of Fischer-Tropsch derived naphtha would normally severely restrict its blendability in gasoline to low levels, it has now been found that Fischer-Tropsch derived naphtha can be included in, for example, ethanol-containing gasoline fuel compositions, in surprisingly and significantly high blend ratios of Fischer-Tropsch derived naphtha to ethanol.
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公开(公告)号:US20240110210A1
公开(公告)日:2024-04-04
申请号:US18378133
申请日:2023-10-09
Applicant: Genifuel Corporation
Inventor: James R. Oyler
IPC: C12P7/649 , C10G3/00 , C10G45/00 , C10L1/02 , C10L1/08 , C11B1/02 , C11B3/00 , C11C3/04 , C12M1/00 , C12P7/06 , C12P7/62 , C12P7/64 , C12P7/6409
CPC classification number: C12P7/649 , C10G3/00 , C10G3/50 , C10G45/00 , C10L1/02 , C10L1/026 , C10L1/08 , C11B1/025 , C11B3/003 , C11C3/04 , C12M21/02 , C12M21/12 , C12M23/58 , C12M43/02 , C12M47/06 , C12P7/065 , C12P7/62 , C12P7/64 , C12P7/6409 , C10G2300/1014 , C10L2200/0476 , C10L2270/026 , C10L2290/26 , C10L2290/544 , Y02E50/10 , Y02P20/10 , Y02P30/20
Abstract: A process for production of biofuels from algae can include cultivating an oil-producing algae by promoting sequential photoautotrophic and heterotrophic growth. The method can further include producing oil by heterotrophic growth of algae wherein the heterotrophic algae growth is achieved by introducing a sugar feed to the oil-producing algae. An algal oil can be extracted from the oil-producing algae, and can be converted to form biodiesel.
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公开(公告)号:US11944955B2
公开(公告)日:2024-04-02
申请号:US17850070
申请日:2022-06-27
Applicant: Petróleo Brasileiro S.A.—Petrobras
Inventor: Cristina Pontes Bittencourt Quitete , Vitor Loureiro Ximenes , Marcio De Figueiredo Portilho
CPC classification number: B01J21/066 , B01J37/0205 , B01J37/03 , B01J37/04 , B01J37/08 , B01J37/20 , C10L1/02 , B01J2523/3712 , B01J2523/47 , B01J2523/48 , B01J2523/62 , C10L2200/0476 , C10L2270/026 , C10L2290/02 , C10L2290/141
Abstract: The present invention concerns a catalyst and pre-treatment process for acidic charges consisting of sulfated zirconia and cerium for the production of biofuels, characterized in that the catalyst has greater activity and resistance to deactivation with acidic charges.
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公开(公告)号:US20240093106A1
公开(公告)日:2024-03-21
申请号:US18445536
申请日:2023-09-28
Applicant: Platinum Fuels, LLC
Inventor: Robert SCHUETZLE , Dennis SCHUETZLE
CPC classification number: C10L1/08 , C01B3/34 , C10G2/30 , C10G3/00 , C10J3/82 , C10K3/006 , C10L1/02 , C10L1/04 , C01B2203/0216 , C01B2203/0233 , C01B2203/0244 , C01B2203/04 , C01B2203/048 , C01B2203/0485 , C01B2203/061 , C01B2203/062 , C10L2200/0492 , C10L2290/04 , C10L2290/24 , C10L2290/42 , Y02E10/00 , Y02E10/20 , Y02E50/00 , Y02E50/10 , Y02E50/30 , Y02E60/00 , Y02E70/00 , Y02P20/145 , Y02P30/00 , Y02P30/20
Abstract: The present invention provides a blended fuel and methods for producing the blended fuel, wherein a low carbon fuel derived from a renewable resource such as biomass, is blended with a traditional, petroleum derived fuel. A blended fuel which includes greater than 10% by volume of low carbon fuel has an overall improved lifecycle greenhouse gas content of about 5% or more compared to the petroleum derived fuel. Also, blending of the low carbon fuel to the traditional, petroleum fuel improves various engine performance characteristics of the traditional fuel.
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公开(公告)号:US20240042414A1
公开(公告)日:2024-02-08
申请号:US18381856
申请日:2023-10-19
Applicant: Licella Pty Ltd , Licella Fibre Fuels Pty Ltd , Ignite Resources Pty Ltd
Inventor: Robert Downie , Leonard James Humphreys , Thomas Maschmeyer , William Rowlands
CPC classification number: B01J20/20 , C10L1/02 , B01J8/00 , C10G1/02 , C10G1/04 , C10G1/083 , B01J19/002 , Y02E50/10 , B01J2219/00247 , C10L2200/0469 , C10L2290/06
Abstract: The present invention relates generally to the generation of bio-products from organic matter feedstocks. More specifically, the present invention relates to improved methods for the hydrothermal/thermochemical conversion of lignocellulosic and/or fossilized organic feedstocks into biofuels (e.g. bio-oils) and/or chemical products (e.g. platform chemicals).
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