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Refuelling the Humber Refinery

Refuelling the Humber Refinery
为亨伯炼油厂加油
批准号:
96873
负责人:
金额:
$64.93万
依托单位:
依托单位国家:
英国
项目类别:
Feasibility Studies
财政年份:
2021
资助国家:
英国
项目状态:
已结题
起止时间:
2021 至 --

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中文摘要
翻译
“为亨伯炼油厂加油”将为菲利普斯66的工业火焰加热器的深度脱碳铺平道路,同时展示氢对工业燃料转换的重要性,作为英国净零未来的一部分。亨伯地区作为英国最大的工业集群(12.4 MTCO 2/年)具有重要的战略意义。该地区的脱碳对于实现英国2050年净零排放目标至关重要,同时保留英国的工业资产基础。在该地区,菲利普斯66亨伯炼油厂是一个世界级的资产,为1000多人提供就业机会,每年为地区经济贡献1亿英镑。该可行性研究将探讨炼油厂工业火焰加热器的燃料转换,用可再生和低碳氢气取代炼油厂燃料气。该项目支持菲利普斯66的长期“未来炼油厂”愿景,该愿景涉及炼油厂的深度脱碳和英国电动汽车电池供应链的发展。菲利普斯66参与工业战略挑战基金的第一阶段,确定了一组无法通过燃烧后碳捕集实际脱碳的工业火焰加热器,由于其分散的位置和可变的容量。相反,燃料转换为氢气(可再生和低碳)是必要的,以脱碳这些加热器的潜力,以减少高达400千吨二氧化碳/年的现场排放。菲利普斯66将探索以下内容:* 在燃料转换前后,加热器内热量和气体扩散的建模 * 在供应商设施进行燃烧器测试,以证明氢气燃烧能力并确定对火焰模式和排放的影响 * 提供氢气供应管道和相关设备转换所需的初步设计和成本估算,* 证明区域氢气供应项目亨伯零和千兆堆的大量氢气需求,这些项目预计将创建Imperial氢气枢纽。这将增加他们的商业案例和整个2020年代部署路线图的确定性 * 扩大氢燃料加热器的证据基础这些活动将证明该技术的商业和技术可行性。
英文摘要
"Refuelling the Humber Refinery" will pave the way to deep decarbonisation of Phillips 66's industrial fired heaters, while demonstrating the importance of hydrogen for industrial fuel switching as part of the UK's Net Zero future.The Humber Region is strategically important as the UK's largest industrial cluster by emissions (12.4MTCO2/yr). Decarbonisation of this region is crucial for achieving the UK's Net Zero 2050 target while retaining the UK's industrial asset base. Within the region, the Phillips 66 Humber Refinery is a world-class asset, providing jobs to more than a thousand people and contributing £100M per year to the regional economy.This Feasibility Study will explore fuel switching in the refinery's industrial fired heaters, displacing refinery fuel gas with both renewable and low-carbon hydrogen. This project supports Phillips 66's long-term "Refinery of the Future" vision which involves deep decarbonisation of the refinery and development of a UK electric vehicle battery supply chain.Phillips 66's involvement in Phase 1 of the Industrial Strategy Challenge Fund identified a group of industrial fired heaters that cannot be practically decarbonised with post-combustion carbon capture, due to their dispersed locations and variable capacities. Instead, fuel switching to hydrogen (renewable and low-carbon) is needed to decarbonise these heaters with the potential to reduce onsite emissions by up to 400kTCO2/yr.Phillips 66 will explore the following:* Modelling of the heat and gas dispersion within the heaters, both before and after fuel switching* Burner testing at the vendor facilities to prove hydrogen firing capability and determine the impact on flame pattern and emissions* Provide preliminary design and cost estimates for the hydrogen supply pipework and associated equipment conversion needed, plus business case evaluation* Demonstrate a large-hydrogen demand to the regional hydrogen supply projects, Humber Zero and Gigastack, that are expected to create the Immingham Hydrogen Hub. This will increase the certainty of their business cases and deployment roadmaps throughout the 2020s* Expand the evidence base for refuelling fired heaters with a high fraction of hydrogenThese activities will prove both the commercial and technical viability of the technology.
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