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Integrating an oxygen enriched waste to energy plant with cryogenic engines and Air Separation Unit: Technical, economic and environmental analysis

机译:通过低温发动机和空气分离装置将富氧废物整合到能源工厂:技术,经济和环境分析

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One of the main benefits of using oxygen enriched combustion in Waste-to-Energy plants is the reduction of losses at the stack due to the reduced flue gas production. At the same time, the electricity required by the Air Separation Unit to generate the oxygen, leads to a penalty in energy efficiency that puts at stake its economic feasibility. In order to overcome that criticality, an opportunity is offered by the possibility to exploit one of the main by-products of the Air Separation Units (i.e. liquid nitrogen) by means of a high efficiency open Rankine cycle expander, namely the Dearman Engine (i.e. cryogenic engine). The proposed research investigates the feasibility of an integrated system - Waste-to-Energy plant, Air Separation Unit and Dearman Engine - in terms of technical, economic and environmental performance indices such as power output, economic savings, incremental income and pollutant emissions reduction. The results show that, under opportune conditions (i.e. liquid nitrogen utilization factor and diesel price higher than 83% and 1.08 USD/kg, respectively) the penalty in energy efficiency coming from the integration between the Waste-to-Energy plant and the Air Separation Unit can be compensated, both economically, with a pay-back time inferior to 10 years, and environmentally (saving 23 kton/year of CO2), by means of the valorisation of the liquid nitrogen through the Dearman Engine.
机译:在垃圾发电站中使用富氧燃烧的主要好处之一是减少了烟道气产量的减少,从而减少了烟囱的损失。同时,空分装置产生氧气所需的电力导致能源效率的损失,这危及其经济可行性。为了克服这一关键性,通过高效的兰金循环膨胀机,即迪尔曼发动机(Dearman Engine,即Dearman Engine),利用空分装置的主要副产品之一(即液氮)提供了机会。低温发动机)。拟议的研究从功率输出,经济节省,增加的收入和减少的污染物等技术,经济和环境绩效指标出发,研究了集成系统(废物转化为能源的工厂,空气分离装置和Dearman发动机)的可行性。结果表明,在适当的条件下(即液氮利用率和柴油价格分别高于83%和1.08 USD / kg),废物转化为能源的工厂与空分的整合会降低能源效率通过使用迪尔曼发动机对液氮进行增值,可以在经济上,低于10年的投资回收期以及在环境方面(每年节省23吨二氧化碳)补偿设备。

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