首页> 外文期刊>Journal of Environmental Management >Economic leverage affords post-combustion capture of 43% of carbon emissions: Supersonic separators for methanol hydrate inhibitor recovery from raw natural gas and CO_2 drying
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Economic leverage affords post-combustion capture of 43% of carbon emissions: Supersonic separators for methanol hydrate inhibitor recovery from raw natural gas and CO_2 drying

机译:经济杠杆作用可燃烧后捕获碳排放量的43%:超音速分离器,用于从原始天然气和CO_2干燥中回收甲醇水合物抑制剂

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Offshore oil/gas productions are power intensive and CO2 emitters from gas-fired power generation. This work investigates supersonic separator as a strategy for affording post-combustion capture backed up by cost reductions. Conventional offshore gas processing usually loses thermodynamic hydrate inhibitor methanol in processing and exported gas. This work analyses a supersonic separator variant gas processing simultaneously reducing methanol losses. Such process dramatically improves gas-plant profitability via cost-reduction of methanol make-up and power-consumption, simultaneously increasing revenues from liquefied-petroleum-gas by-product. This economic leverage affords post-combustion carbon capture, including subsequent CO2 dehydration and compression for exportation of high-pressure liquid CO2. This corresponds to abate 43% of CO2 emissions boosting revenues via enhanced oil recovery. Moreover, CO2 is dehydrated via another supersonic separator operating with minimum head-loss, minimizing compression costs. Despite its much higher investment, the new process with carbon capture presents higher net value (865.63 MMUSD) than the conventional processing without carbon capture (829.31 MMUSD), being economically feasible and more environmentally adequate with cleaner natural gas production and successful CO2 management. The new process is superior in several scenarios and particularly favored by oil prices above 55 USD/bbl. Rising oil price from 40 to 100 USD/bbl, the new process net value rises 29%, whereas the conventional counterpart rises only 7.5%. In addition, as a plausible future scenario, CO2 taxation favors the new process, which always has superior economic performance, even without CO2 taxation. In summary, implementing supersonic separators in offshore natural gas processing aiming at anti-hydrate recovery and CO2 dehydration for enhanced oil recovery creates economic leverage sustaining Carbon Capture & Storage without loss of competitiveness. This result, backed up by rigorous thermodynamic simulations and economic-environmental assessments, configure an original achievement to the literature.
机译:海上石油/天然气生产是能源密集型的,并且是天然气发电产生的二氧化碳排放者。这项工作研究了超声分离器,作为一种通过降低成本来支持燃烧后捕集的策略。传统的海上天然气加工通常会在加工和出口天然气中损失热力学水合物抑制剂甲醇。这项工作分析了超声分离器的各种气体处理工艺,同时减少了甲醇损失。这种工艺通过降低甲醇的构成和能耗来显着提高天然气厂的盈利能力,同时增加了液化石油气副产品的收入。这种经济杠杆作用提供了燃烧后的碳捕集,包括随后的CO2脱水和压缩,以输出高压液态CO2。这相当于减少了43%的二氧化碳排放,通过提高采油量来增加收入。此外,CO2通过另一个超声波分离器脱水,以最小的压头损失运行,从而将压缩成本降至最低。尽管投入了很多资金,但采用碳捕集的新工艺的净值(865.63 MMUSD)比没有进行碳捕集的传统工艺的净值更高(829.31 MMUSD),经济上可行,并且在环境更清洁的前提下,天然气生产更清洁,二氧化碳管理更成功。新工艺在几种情况下均具有优势,尤其受到油价高于55美元/桶的青睐。将石油价格从40美元/桶提高到100美元/桶时,新流程的净值仅增长29%,而常规流程的净值仅增长7.5%。此外,作为一种可能的未来方案,二氧化碳税有利于新流程,即使没有二氧化碳税,新流程也始终具有出色的经济表现。总而言之,在海上天然气加工过程中采用超声波分离器,旨在进行反水合物回收和二氧化碳脱水以提高采油率,从而创造了维持碳捕集与封存而不丧失竞争力的经济杠杆。该结果得到严格的热力学模拟和经济环境评估的支持,构成了文献的原始成果。

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