Faster decarbonization of heavy industries in low-carbon power grids: using process flexibility for handling grid congestions†

IF 51.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Sverre Stefanussen Foslie, Brage Rugstad Knudsen, Sigurd Bjarghov and Magnus Korpås
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Abstract

Industrial decarbonization requires substantial electricity and grid infrastructure. Policies are developed and significant funds are being directed to decarbonize electricity generation and incentivize investments in renewable energy. Expansion of the transmission grid, however, is lagging. Even though grid capacity limits may be critical only for a few hours annually, industries ready to make large energy-intensive decarbonization investments may be refused grid connection due to security-of-supply requirements. We demonstrate that industrial flexibility can alleviate grid congestions and increase grid reliability. In low CO2-intensity power grids, this can increase the pace of decarbonization of heavy industries via electrification. By aligning industrial processes with grid load, peak demand can be reduced, facilitating faster sector decarbonization. Our study presents a bottom-up model of the demand-side flexibility of energy intensive processes in heavy industries (chemicals, cement and metals). Applying this to a Norwegian industry region, combined with power flow analysis, the flexibility reduces strain on transmission grids during peak demand, reducing grid overload hours by 90%. Activating industrial flexibility incurs significant operational costs, primarily determined by the most stringent processes. We estimate a unit cost of 111–210 € per MWh for flexibility of the industry sectors considered, comparable to other grid reinforcement alternatives but with significantly reduced time for realization. In the investigated transmission grid, 339 MW of new electrification measures can be accommodated, allowing for decarbonization measures representing 16% of the annual CO2-emissions of the industries. Our findings emphasize the importance of encouraging more flexible processes in heavy industries to accelerate decarbonization by electrification in low-carbon power grids.

Abstract Image

在低碳电网中加快重工业的脱碳进程:利用工艺灵活性处理电网拥塞。
工业去碳化需要大量的电力和电网基础设施。为实现发电的去碳化和激励可再生能源投资,已经制定了相关政策,并投入了大量资金。然而,输电网的扩展却滞后了。尽管电网容量限制每年可能只有几个小时至关重要,但准备进行大型能源密集型去碳化投资的行业可能会因供电安全要求而拒绝与电网连接。我们证明,工业灵活性可以缓解电网拥塞,提高电网可靠性。在二氧化碳密度较低的电网中,这可以通过电气化加快重工业去碳化的步伐。通过使工业流程与电网负荷相匹配,可以降低峰值需求,从而加快行业去碳化的步伐。我们的研究提出了一个重工业(化工、水泥和金属)能源密集型流程需求方灵活性的自下而上模型。将该模型应用于挪威的一个工业区,并结合电力流分析,该灵活性降低了高峰需求期间对输电网的压力,将电网过载时间减少了 90%。启动工业灵活性会产生大量运营成本,主要由最严格的流程决定。我们估计,在所考虑的工业部门中,灵活性的单位成本为 111-210 欧元/兆瓦时,与其他电网强化替代方案相当,但实现时间大大缩短。在所调查的输电网中,可容纳 339 兆瓦的新电气化措施,从而实现占工业二氧化碳年排放量 16% 的脱碳措施。我们的研究结果强调了鼓励重工业采用更灵活工艺的重要性,从而通过低排放电网中的电气化措施加速脱碳。
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来源期刊
Chemical Reviews
Chemical Reviews 化学-化学综合
CiteScore
106.00
自引率
1.10%
发文量
278
审稿时长
4.3 months
期刊介绍: Chemical Reviews is a highly regarded and highest-ranked journal covering the general topic of chemistry. Its mission is to provide comprehensive, authoritative, critical, and readable reviews of important recent research in organic, inorganic, physical, analytical, theoretical, and biological chemistry. Since 1985, Chemical Reviews has also published periodic thematic issues that focus on a single theme or direction of emerging research.
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