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通过Aspen plus™建模,在与奥托循环内燃机集成的中试装置中进行垃圾衍生燃料(RDF)生产和气化:热力学和经济可行性。

Refuse Derived Fuel (RDF) production and gasification in a pilot plant integrated with an Otto cycle ICE through Aspen plus™ modelling: Thermodynamic and economic viability.

作者信息

Násner Albany Milena Lozano, Lora Electo Eduardo Silva, Palacio José Carlos Escobar, Rocha Mateus Henrique, Restrepo Julian Camilo, Venturini Osvaldo José, Ratner Albert

机构信息

Department of Mechanical Engineering, The St. Thomas University Tunja, St. 19 #11-64, Tunja, Boyacá, Colombia.

NEST - Excellence Group in Thermal Power and Distributed Generation, Institute of Mechanical Engineering, Federal University of Itajubá, Av. BPS 1303, Itajubá, Minas Gerais State CEP: 37500-903, Brazil.

出版信息

Waste Manag. 2017 Nov;69:187-201. doi: 10.1016/j.wasman.2017.08.006. Epub 2017 Aug 7.

Abstract

This work deals with the development of a Refuse Derived Fuel (RDF) gasification pilot plant using air as a gasification agent. A downdraft fixed bed reactor is integrated with an Otto cycle Internal Combustion Engine (ICE). Modelling was carried out using the Aspen Plus™ software to predict the ideal operational conditions for maximum efficiency. Thermodynamics package used in the simulation comprised the Non-Random Two-Liquid (NRTL) model and the Hayden-O'Connell (HOC) equation of state. As expected, the results indicated that the Equivalence Ratio (ER) has a direct influence over the gasification temperature and the composition of the Raw Produced Gas (RPG), and effects of ER over the Lower Heating Value (LHV) and Cold Gasification Efficiency (CGE) of the RPG are also discussed. A maximum CGE efficiency of 57-60% was reached for ER values between 0.25 and 0.3, also an average reactor temperature values in the range of 680-700°C, with a peak LHV of 5.8MJ/Nm. RPG was burned in an ICE, reaching an electrical power of 50kW. The economic assessment of the pilot plant implementation was also performed, showing the project is feasible, with power above 120kW with an initial investment of approximately US$ 300,000.

摘要

这项工作涉及以空气作为气化剂开发一种垃圾衍生燃料(RDF)气化中试装置。一台下行式固定床反应器与一台奥托循环内燃机(ICE)集成在一起。使用Aspen Plus™软件进行建模,以预测实现最高效率的理想运行条件。模拟中使用的热力学包包括非随机双液体(NRTL)模型和海登 - 奥康奈尔(HOC)状态方程。正如预期的那样,结果表明当量比(ER)对气化温度和粗制产气(RPG)的组成有直接影响,并且还讨论了ER对RPG的低位热值(LHV)和冷煤气化效率(CGE)的影响。当ER值在0.25至0.3之间时,CGE效率最高可达57 - 60%,同时平均反应器温度在680 - 700°C范围内,LHV峰值为5.8MJ/Nm。RPG在内燃机中燃烧,发电功率达到50kW。还对中试装置实施进行了经济评估,结果表明该项目可行,初始投资约30万美元,功率超过120kW。

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