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Schneider Electric(TM) Sustainability Research Institute, Towards New Energy Systems and Process Electrification: Optimizing Renewable Energy Integration and Grid Costs for Electrified Ammonia Production

Schneider Electric(TM) Sustainability Research Institute, Towards New Energy Systems and Process Electrification: Optimizing Renewable Energy Integration and Grid Costs for Electrified Ammonia Production

Schneider Electric(TM)可持续性研究所,致力于新能母基体系和过程电气化:优化可再生能源整合和电化氨生产的电网成本。
Accesswire ·  07/03 10:15

Driving the Transition to Sustainable Ammonia Production through Advanced Techno-Economic Analysis

通过先进的技术经济分析推动可持续氨生产的转型

NORTHAMPTON, MA / ACCESSWIRE / July 3, 2024 / Schneider Electric
Download the Schneider Electric Sustainability Research Institute report

马萨诸塞州北安普敦 / ACCESSWIRE / 2024年7月3日 / Schneider Electric
下载Schneider Electric可持续性研究所报告

By Thomas Kwan

作者:Thomas Kwan

By integrating and optimizing new energy systems, ammonia production costs can be significantly reduced, even with high variability in grid energy costs and the intermittent nature of renewable energy.

通过整合和优化新能源系统,即使在格网能源成本高度可变和可再生能源间歇性的情况下,氨生产成本也可以显著降低。

Driving the Transition to Sustainable Ammonia Production through Advanced Techno-Economic Analysis

通过先进的技术经济分析推动可持续氨生产的转型

The global energy transition and the urgent need to decarbonize the chemicals industry have brought renewed focus on the potential of electrified ammonia production (e-ammonia) as a pathway to sustainable, low-carbon ammonia.

全球能源转型和快速去碳化化工行业,使得电气化氨制造(e-ammonia)成为可持续、低碳氨的途径备受关注。

This study is a comprehensive techno-economic analysis, based on a novel modeling approach and extensive sensitivity analysis.

本研究是基于新颖的建模方法和广泛的敏感性分析进行的全面技术经济分析。

Our research has significant implications for the agriculture and chemical sectors, suggesting that integrating onsite renewable energy and smart control systems can enhance the efficiency and cost-effectiveness of ammonia production, providing a promising avenue for cost savings in chemical production.

我们的研究对农业和化学行业有着重要的意义,建议将场内可再生能源和智能控制系统融合,以提高氨生产的效率和成本效益,为化工生产的成本节约提供了有前途的途径。

Our findings

我们的发现

This study combines systems approach, the integration of digital and electrification technologies, and the comprehensive optimization of the entire production process to achieve the lowest possible costs and highest efficiency. Furthermore, it extensively modeled different cost structures from the grid.

该研究通过系统方法、数字化和电气化技术的整合以及整个生产过程的全面优化来实现成本最低和效率最高。此外,它从网格不同的成本结构广泛建模。

  • Integration of Renewable Energy and Advanced Process Controls
    The study demonstrates that integrating renewable energy sources and advanced process controls can significantly reduce ammonia production costs from electrified processes (e-ammonia).

  • Reliability through Process Electrification and Digital Technologies
    Smart and flexible production systems that can adapt to grid pricing fluctuations and weather variations (e.g., solar PV and wind energy) can be an advantage. Proper optimization through electrification and digital technologies unlocks these benefits.

  • The importance of hydrogen storage
    Hydrogen storage (a.k.a. hydrogen buffering) is essential in e-ammonia production and cost optimization. It can be used as a seasonal or highly cyclic buffer depending on the energy mix and costs, adapting to system conditions (when smartly managed/controlled, see point 2 above).

  • Significant reduction of emissions
    Emissions from e-ammonia production are dependent on the grid's emission factor; however, increased reliance on on-site renewables significantly reduces the associated emissions for producing e-ammonia. When produced with 100% renewable energy, the process is virtually free of emissions.

  • 可再生能源和先进工艺控制的整合
    该研究表明,整合可再生能源和先进的工艺控制可以显著降低电气化工艺(e-ammonia)的氨生产成本。

  • 通过电气化和数字技术实现可靠性
    可以适应网格定价波动和天气变化(例如,太阳能光伏和风能)的智能灵活生产系统可以是优势。通过电气化和数字技术的适当优化可以释放这些好处。

  • 储氢的重要性
    在e-ammonia生产和成本优化中,储氢(即氢缓冲)是必不可少的。它可以根据不同的能源组合和成本用作季节性或高度周期性的缓冲,可以根据系统条件进行调整(当明智地管理/控制时,请参见第2点)。

  • 显著降低排放
    e-ammonia生产的排放取决于电网的排放因子;然而,对场内可再生能源的依赖度越来越高,生产e-ammonia的相关排放量就会显著降低。当使用100%可再生能源生产时,该过程几乎不排放任何物质。

To access the rest of the findings and the full report, click here.

要访问其他发现和完整报告,请单击此处。

Courtesy Schneider Electric
施耐德电气礼让

View additional multimedia and more ESG storytelling from Schneider Electric on 3blmedia.com.

在3blmedia.com上查看来自施耐德电气的其他多媒体资源和更多ESG故事。

Contact Info:
Spokesperson: Schneider Electric

联系信息:
发言人:施耐德电气

SOURCE: Schneider Electric

来源:施耐德电气。


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