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Technical evaluations of carbon capture options for power generation from coal and biomass based on integrated gasification combined cycle scheme

整体气化联合循环 合成气 联合循环 碳捕获和储存(时间表) 废物管理 洁净煤技术 工艺工程 木材气体发生器 按来源划分的电力成本 发电 烟气 环境科学 工程类 涡轮机 功率(物理) 化学 机械工程 气候变化 有机化学 物理 生物 量子力学 生态学
作者
Călin-Cristian Cormoş,Anamaria Padurean,Paul Șerban Agachi
出处
期刊:Energy Procedia [Elsevier]
卷期号:4: 1861-1868 被引量:14
标识
DOI:10.1016/j.egypro.2011.02.064
摘要

Integrated Gasification Combined Cycle (IGCC) is a technology for power generation in which the feedstock is partially oxidized with oxygen and steam to produce syngas. In a conventional IGCC design without carbon capture, the syngas is purified for dust and hydrogen sulphide removal and then sent to a Combined Cycle Gas Turbine (CCGT) for power production. The hot GT flue gases are sent to Heat Recovery Steam Generator (HRSG) for steam generation. Additional power is produces by expanding the steam generated in a steam turbine. Carbon capture and storage (CCS) technologies are expected to play a significant role in the coming decades for reducing the greenhouse gas emissions. Integrated Gasification Combined Cycle is one of the power generation technologies having the highest potential to capture carbon dioxide with the low penalties in term of plant energy efficiency and cost. The modification of the IGCC design for carbon capture can be done in various plant concepts considering the carbon capture method to be used (e.g. pre- and post-combustion capture, syngas chemical looping etc.). This paper investigates various carbon capture methods suitable to be applied for an IGCC plant for power generation. The coal blended with biomass (sawdust) based IGCC case study investigated in the paper produces around 400–500 MW net electricity with more than 90% carbon capture rate. An important focus of the paper is concentrated on overall energy efficiency optimization of the IGCC plant concepts with various carbon capture options by better heat and power integration of the main plant sub-systems (e.g. steam integration between gasification island, syngas conditioning line and the steam cycle, influence of heat and power demand for Acid Gas Removal unit etc.). A particular attention of the paper is focused on the quality specification for the captured carbon dioxide stream considering various capture options but also the storage options (enhanced oil recovery, storage in depleted oil and gas fields, saline aquifers etc.).
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