相关实验视频
Updated: Jul 18, 2025

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Ammonia Synthesis at Low Pressure
Published on: August 23, 2017
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优化可再生氨生产,实现可持续化肥供应链转型
Matthew J Palys1, Prodromos Daoutidis1
1Department of Chemical Engineering and Materials Science, University of Minnesota Twin Cities College of Science and Engineering, Minneapolis, MN 55455, United States of America.
ChemSusChem
|August 22, 2023
概括
当地可再生氨生产为传统方法提供了一个可持续的替代方案. 到2032年,明尼苏达州的全面过渡可以将碳强度降低99%,同时稳定成本.
科学领域:
- 农业化学 农业化学
- 化学工程是化学工程的重要组成部分.
- 能源系统 能源系统
背景情况:
- 合成肥生产是排放的主要来源.
- 传统的氨生产依赖于化石燃料,导致价格波动和高运输成本.
- 可再生氨提供了一种潜在的解决方案来缓解这些问题.
研究的目的:
- 为可再生氨生产开发供应链转型模型.
- 优化新可再生氨设施的设计,运行和时间.
- 评估过渡到可再生氨的经济竞争力和环境效益.
主要方法:
- 开发了一种供应链过渡模型,以优化设施设计,运营和安装时间.
- 该模型考虑了每小时的操作,生产规模,位置和运输物流.
- 为明尼苏达州的氨供应链进行了一项案例研究.
主要成果:
- 到2032年在明尼苏达州完全过渡到州内可再生氨生产是最优的.
- 这种转型受到美国联邦清洁生产信贷的激励.
- 碳强度降低了99%,供应成本稳定低于每公475美元.
- 新的可再生能源设施较小,利用风能和太阳能,并动态运行,以最大限度地减少存储需求.
结论:
- 当地可再生氨生产是一个经济可行的和对环境有益的战略.
- 通过政府的激励措施,如清洁生产信贷,可以加速过渡.
- 较小的可再生能源设施的动态运行减少了对广泛的存储基础设施的依赖.
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