

RTI暖氣凈化技術(shù)的可行性分析Preliminary Feasibility Analysis of RTI Warm Gas Cleanup (WGCU) Technology
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與Nexant公司(Nexant)簽訂合同,對其技術(shù)經(jīng)濟進(jìn)行高級評估 一體化氣化聯(lián)合循環(huán)(IGCC)的暖氣凈化技術(shù) 應用。下一步是開(kāi)發(fā)概念性的IGCC工廠(chǎng)設計,利用其可行性 WGCU對高溫H2S脫除效果可以與傳統方法進(jìn)行比較。 酸性氣體去除技術(shù)600MWe IGCC概念設計 以Selexol AGR為參比植物,選用伊利諾伊州6號煤中的兩種煤。 源自DOE NETL的能源系統研究質(zhì)量指南文檔。這個(gè) IGCC工廠(chǎng)位于美國中西部,緊鄰 密西西比河,在那里大型設備很容易被駁到現場(chǎng)。圖1.1顯示了 參考IGCC裝置(參考IGCC)的總體框圖(BFD)顯示 各主要加工廠(chǎng)的互連。WGCU的相應BFD 基于IGCC的工廠(chǎng)(WGCU IGCC)如圖1.2所示。 參考IGCC de的總體性能比較
contracted Nexant, Inc. (Nexant) to perform a high-level techno-economic assessment of their warm gas cleanup (WGCU) technology for integrated gasification combined cycle (IGCC) applications. Nexant was to develop conceptual IGCC plant designs with which the feasibility of WGCU for high temperature H2S removal can be evaluated in comparison with a conventional acid gas removal (AGR) technology. A state-of-the-art 600 MWe IGCC conceptual plant design based on Selexol AGR was chosen as the reference plant, using two different Illinois No. 6 coal feeds from the DOE NETL’s Quality Guidelines for Energy System Studies document. The IGCC facility is to be a greenfield plant located in the Midwest United States, next to the Mississippi River, where large equipment can be easily barged to site. Figure 1.1 shows an overall block flow diagram (BFD) of the reference IGCC plant (Reference IGCC) showing the inter-connectivity of the various major processing plants. The corresponding BFD of the WGCU based IGCC plant (WGCU IGCC) is shown in Figures 1.2. The overall performance comparisons of the Reference IGCC de
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上一條:非常規的化石燃料經(jīng)濟和環(huán)境權衡Unconventional Fossil-Based Fuels Economic and Environmental Trade-Offs
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