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首页> 外文期刊>Applied Energy >Agricultural greenhouse CO_2 utilization in anaerobic-digestion-based biomethane production plants: A techno-economic and environmental assessment and comparison with CO_2 geological storage
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Agricultural greenhouse CO_2 utilization in anaerobic-digestion-based biomethane production plants: A techno-economic and environmental assessment and comparison with CO_2 geological storage

机译:基于厌氧消化的生物甲烷生产工厂中农业温室CO_2的利用:技术经济和环境评估以及与CO_2地质封存的比较

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摘要

Anaerobic digestion plants enable the production of power, heat and fuel. Biogas can be upgraded to biomethane fulfilling grid injection requirements by separating CH4 from CO2. By- product CO2 could be geologically stored or utilized as a feedstock to produce valuable goods, enabling in both cases negative climate change impact fuel production. CO2 utilization could as well improve plant economics, as a consequence of the profits related to the commercialization of the final products whilst allowing further emission reductions.In this paper, a techno-economic assessment of the use of the CO2 by-product in CO2-enriched agricultural greenhouses for tomato production is discussed. The results of the research show that, depending on the operating mode and the design approach, the use of a greenhouse enables the recovery of 14-67% of the byproduct CO2 when the internal CO2 concentration is kept at 1000 ppm. In addition, it is estimated that the associated heat and power demand ranges from 0.097 to 0.138 kWh(th)/kg of used CO2 and 0.04-0.05 kW(e)/kg of used CO2, respectively. Revenues related to the tomato production are partially offset by the greenhouse capital investment and operating costs; however, a net profit between 16 and 19 p/kg of used CO2 was calculated, leading to a net profit of 1.3-1.6 p/kWh of injected biomethane. These results show that CO2 utilization is technically feasible and economically more convenient than CO2 storage. While both geological storage and CO2 utilization would allow negative climate change impact fuel production, the net greenhouse emission savings for the utilization configuration were found to be strongly dependent on the assumptions regarding fuel substitution for the produced biomethane.
机译:厌氧消化厂可以生产电力,热量和燃料。通过将CH4与CO2分离,可以将沼气升级为满足网格注入要求的生物甲烷。副产品CO2可以在地质上存储或用作生产有价值的货物的原料,在两种情况下都可以使不利的气候变化影响燃料生产。由于最终产品的商业化带来的利润,同时又可以进一步减少排放,因此二氧化碳的利用还可以改善工厂的经济效益。本文对二氧化碳中的二氧化碳副产物的使用进行了技术经济评估。讨论了用于番茄生产的浓缩农业大棚。研究结果表明,根据内部工作模式和设计方法,使用温室可以使内部CO2浓度保持在1000 ppm时回收14-67%的副产物CO2。此外,据估计,相关的热量和功率需求分别在0.097至0.138 kWh(kg)/ kg的二手二氧化碳和0.04-0.05 kW(e)/ kg的二手二氧化碳的范围内。与番茄生产有关的收入被温室资本投资和运营成本所部分抵消;但是,计算出的废二氧化碳净利润为16至19 p / kg,导致注入的生物甲烷的净利润为1.3-1.6 p / kWh。这些结果表明,CO 2利用比CO 2储存在技术上可行并且在经济上更加方便。虽然地质封存和CO2的利用都将对气候变化产生不利影响,但燃料的利用却发现,利用配置的温室气体净减排量在很大程度上取决于有关燃料替代生产的生物甲烷的假设。

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