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分散式氮肥生产环境成本的内化

Internalisation of environmental costs of decentralised nitrogen fertilisers production.

作者信息

Osorio-Tejada Jose Luis, Rebrov Evgeny, Hessel Volker

机构信息

School of Engineering, University of Warwick, Coventry, CV4 7AL UK.

Faculty of Environmental Sciences, Universidad Tecnológica de Pereira, Pereira, Colombia.

出版信息

Int J Life Cycle Assess. 2023 Jun 9;28(11):1-14. doi: 10.1007/s11367-023-02187-5.

Abstract

PURPOSE

Ammonia (NH) production is an energy-intensive process that is concentrated in a few countries at large-scale plants, mainly using the Haber-Bosch (HB) process. Local plants next to farmers can reduce environmental impacts, as well as reduce storage, shortage risks, and price volatility of fertilisers. Since local NH production is not cost-effective, we analyse how internalisation of environmental impacts into economic analyses could help to promote novel technologies for NH synthesis when supplied with renewable energy.

METHODS

Mini-HB plants working at high pressure and temperature, as well as novel alternatives based on plasma reactors working at ambient conditions and using electricity from renewable sources, have been recently proposed for decentralised NH production. To evaluate the environmental performances of these alternative and traditional NH pathways, a life cycle assessment was performed to quantify the reduced emissions in each production process and the impacts of by-product utilisation, such as steam, oxygen, or carbon black. Different scales of storage and transportation, fuelled by traditional energy sources, were modelled to quantify the impacts of the simplified NH supply chains. A review of monetary valuation coefficients was performed to internalise the life cycle environmental impacts into the techno-economic analyses of NH production in Australia.

RESULTS AND DISCUSSION

Most of the estimated environmental costs were due to the carbon emissions of conventional plants and thermal plasma plants because of the use of fossil-based electricity. However, the high external costs associated with the photochemical oxidant formation and particulate matter affected the thermal plasma and non-thermal plasma (NTP) plants, costing in total 9,500 and 4,200 $/t NH respectively, due to the impacts of solar panels manufacturing. In contrast, electrolyser-HB plants obtained rates of 114 $/t NH because of the high energy efficiency and oxygen sales. In the future scenario for NTP-based plants, this alternative could also be competitive with rates of 222 $/t NH. Additionally, the estimated total external costs for the conventional NH industry in Australia amounted to about US$5 billion per year.

CONCLUSIONS

Electrolyser-HB plants could be cost-effective in the short term due to the energy efficiency of HB processes. However, the HB process has reached its efficiency limits, while the NTP process still has room for improvement, as well as its production costs are lower at smaller scales. In addition, if monetised environmental costs are analysed for a whole industry, public administrations could be prompted to invest the expected savings in the promotion of these novel technologies.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11367-023-02187-5.

摘要

目的

氨(NH₃)生产是一个能源密集型过程,集中在少数几个国家的大型工厂,主要采用哈伯-博施法(HB法)。靠近农民的本地工厂可以减少环境影响,同时降低化肥的储存、短缺风险和价格波动。由于本地氨生产不具有成本效益,我们分析了将环境影响纳入经济分析如何有助于推广在供应可再生能源时用于氨合成的新技术。

方法

最近有人提出了在高压和高温下运行的小型HB工厂,以及基于在环境条件下运行并使用可再生能源电力的等离子体反应器的新型替代方案,用于分散式氨生产。为了评估这些替代和传统氨生产途径的环境性能,进行了生命周期评估,以量化每个生产过程中减少的排放以及副产物利用(如蒸汽、氧气或炭黑)的影响。对由传统能源驱动的不同规模的储存和运输进行了建模,以量化简化氨供应链的影响。对货币估值系数进行了综述,以将生命周期环境影响纳入澳大利亚氨生产的技术经济分析。

结果与讨论

大部分估计的环境成本归因于传统工厂和热等离子体工厂的碳排放,这是由于使用了基于化石的电力。然而,与光化学氧化剂形成和颗粒物相关的高外部成本影响了热等离子体和非热等离子体(NTP)工厂,由于太阳能电池板制造的影响,分别导致每吨氨的成本总计为9500美元和4200美元。相比之下,电解槽-HB工厂由于能源效率高和氧气销售,每吨氨的成本为114美元。在基于NTP的工厂的未来情景中,这种替代方案每吨氨的成本为222美元时也可能具有竞争力。此外,澳大利亚传统氨行业估计的年度总外部成本约为50亿美元。

结论

由于HB工艺的能源效率,电解槽-HB工厂在短期内可能具有成本效益。然而,HB工艺已达到其效率极限,而NTP工艺仍有改进空间,并且其在较小规模下的生产成本较低。此外,如果对整个行业分析货币化的环境成本,公共管理部门可能会被促使将预期的节省资金投资于推广这些新技术。

补充信息

在线版本包含可在10.1007/s11367-023-02187-5获取的补充材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9e0/10622375/cb542f367d27/11367_2023_2187_Fig1_HTML.jpg

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