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ASME 2010 4th International Conference on Energy Sustainability, Volume 2 | 2010

A System-Level Simulation Model of Poly-Generation Plant Based on Gasification Technology With Methanol and Power Generation

Po-Chuang Chen; Hsiu-Mei Chiu; Yau-Pin Chyou; Chiou-Shia Yu

This study presents a system-level simulation model with the commercial chemical process simulator, Pro/II® V8.1.1, for poly-generation applications, based on gasification technology. The feedstock is coal and the products are electricity and methanol. There are five major blocks in the simulated polygeneration plant, i.e. air separation unit (ASU), gasification unit, gas clean-up unit, combined cycle, and methanol synthetic unit. The first four blocks can be combined for electricity generation, i.e. integrated gasification combined cycle (IGCC). The study performs two analyses of basic case and polygeneration. The basic case is the benchmark case which is verified with the reference data from United States Environment Protection Agency. The poly-generation case is based on the basic case model, and to simulate a feasible case with actual parameters in Taiwan. The simulated outcome shows that the power output is 262.35 MW and the methanol production is 1,768.8 ton per day. The gross and net efficiency (HHV) of the integrated gasification poly-generation case are 52.75% and 46.42%, respectively. The latter is higher than the counterpart of traditional IGCC plants by over 4% points. In conclusion, integrated gasification poly-generation process provides an alternative choice to reduce the dependence on fossil fuels, especially crude oil, in Taiwan.Copyright


World Academy of Science, Engineering and Technology, International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering | 2010

Processes Simulation Study of Coal to Methanol Based on Gasification Technology

Po-Chuang Chen; Hsiu-Mei Chiu; Yau-Pin Chyou; Chiou-Shia Yu


Archive | 2009

DYNAMICALLY ADAPTIVE TROMMEL SCREEN SYSTEM

Shu-San Hsiau; Hsuan-Yi Lee; Yau-Pin Chyou; Jiri Smid; Yi-Shun Chen; Po-Chuang Chen; Chin-Ching Tzeng; Chia-Jen Hsu


Fuel | 2017

Thermodynamic aspects of gasification derived syngas desulfurization, removal of hydrogen halides and regeneration of spent sorbents based on La2O3/La2O2CO3 and cerium oxides

Karel Svoboda; Jindřich Leitner; Jaromír Havlica; Miloslav Hartman; Michael Pohořelý; Jiří Brynda; Michal Šyc; Yau-Pin Chyou; Po-Chuang Chen


Asia-Pacific Journal of Chemical Engineering | 2012

Process simulation study of coal gasification-based multi-product plant with electricity and chemical products

Po-Chuang Chen; Chiou-Shia Yu; Hsiu-Mei Chiu; Yau-Pin Chyou; Hsi-Jen Chen


Archive | 2010

MOVING GRANULAR BED WITH GAS GUIDING SYSTEM

Shu-San Hsiau; Yau-Pin Chyou; Chia-Jen Hsu; Yi-Shun Chen; Po-Chuang Chen


Archive | 2015

METHOD FOR CONTROLLING CIRCULATION RATE OF SOLIDS IN AN INTERCONNECTED FLUIDIZED BED

Yau-Pin Chyou; Po-Chuang Chen; Hung-Te Hsu; Keng-tung Wu


Archive | 2015

Membrane reactor with divergent-flow channel

Yau-Pin Chyou; Yu-shao Lin; Po-Chuang Chen; Wen-jenn Sheu; Yen-cho Chen; Chien-chon Chen


Archive | 2013

Hybrid heating apparatus applicable to the moving granular bed filter

Yau-Pin Chyou; Yi-Shun Chen; Shu-Che Li; Po-Chuang Chen


Archive | 2012

GAS DISTRIBUTOR FOR GRANULAR MOVING-BED FILTER

Yau-Pin Chyou; Jiri Smid; Po-Chuang Chen; Yi-Shun Chen; Shu-Che Li; Shu-San Hsiau

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Chiou-Shia Yu

National Central University

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Jiri Smid

Atomic Energy Council

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