據(jù)能源之聲網(wǎng)站8月5日?qǐng)?bào)道 一份新報(bào)告稱,英國(guó)大陸架(UKCS)在幫助各政府在未來幾十年實(shí)現(xiàn)凈零排放目標(biāo)方面發(fā)揮著重要作用。
石油和天然氣管理局(OGA)表示,將石油和天然氣生產(chǎn)與可再生能源、碳捕獲與儲(chǔ)存(
CCS)和氫能結(jié)合起來,可以占到2050年所需減排量的30%。
該監(jiān)管機(jī)構(gòu)還表示,海上風(fēng)、浪和潮汐項(xiàng)目可能為英國(guó)凈零排放目標(biāo)再貢獻(xiàn)30%。
這意味著,在陸上基礎(chǔ)設(shè)施投資的支持下,UKCS的活動(dòng)可能有助于實(shí)現(xiàn)五分之三的國(guó)家脫碳需求。
英國(guó)和蘇格蘭政府建立了一個(gè)具有法律約束力的目標(biāo),分別在2050年和2045年前將排放量削減到零排放。
在其報(bào)告中,OGA概述了推動(dòng)英國(guó)大陸架脫碳的下一步措施,從加快開創(chuàng)性項(xiàng)目的進(jìn)展到改善數(shù)據(jù)可用性、質(zhì)量和訪問。
OGA首席執(zhí)行官安迪•塞繆爾表示,這份報(bào)告表明,英國(guó)大陸架是一種“關(guān)鍵的能源資源”。
他說:“一體化有可能產(chǎn)生深刻而有意義的影響,對(duì)該國(guó)總體凈零目標(biāo)的貢獻(xiàn)可能達(dá)到30%,主要是通過碳捕獲與儲(chǔ)存以及氫能。”
王磊 摘譯自 能源之聲
原文如下:
UKCS activities can deliver 60% of country’s decarbonisation targets
The UK continental shelf (UKCS) has a “significant role” to play in helping governments achieve their net zero targets in the coming decades, a new report said.
Integrating oil and gas production with renewable energy, carbon capture and storage (CCS) and hydrogen could account for 30% of the emissions reductions needed by 2050, the Oil and Gas Authority (OGA) said.
The regulator also said offshore wind, wave and tidal projects could contribute a further 30% towards the UK’s net zero target.
It means UKCS activities, supported by investments in onshore infrastructure, could help deliver three-fifths of national decarbonisation requirements.
The UK and Scottish governments have a legally binding targets to cut emissions to net zero by 2050 and 2045, respectively.
In its report, the OGA outlined its next steps for driving decarbonisation on the UKCS, ranging from accelerating progress on “pioneering projects” to improving “data availability, quality and access”
OGA chief executive Andy Samuel said the report demonstrated that the UKCS is a “critical energy resource”.
He said: “Integration has the potential to make a deep and meaningful impact, with a possible 30% contribution towards the country’s overall net zero target, primarily through CCS, and through CCS plus hydrogen.
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