首页> 外文期刊>International journal of green energy >PERFORMANCE ANALYSIS OF A NEW BIOMASS-BASED POLYGENERATION SYSTEM FOR POWER AND METHANOL
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PERFORMANCE ANALYSIS OF A NEW BIOMASS-BASED POLYGENERATION SYSTEM FOR POWER AND METHANOL

机译:新型基于生物质的动力和甲醇联产系统的性能分析

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摘要

A new kind of biomass-based polygeneration system for the production of power and methanol is proposed in this paper. The most attractive feature of this proposed system is the elimination of shift process and the adoption of the partial recycling of unreacted synthesis gas (syngas). In this study, the thermodynamic performance of the system is examined and is then compared to those of two biomass-based reference individual systems, including the individual biomass to methanol system with the shift process (B-MS) and the biomass integrated gasification combined cycle (BIGCC). The influence of the recycling ratio of unreacted syngas (R_u), which determines the exergy ratio of the chemical product to power (γ), is also investigated. This paper further discusses a synergetic viewpoint of chemical conversion and energy utilization, with and without shift reaction and different treatments of unreacted syngas. Results show that the new polygeneration system can reduce energy consumption by as much as 10% compared with the reference individual systems. Moreover, the proposed polygeneration system is expected to realize the synergetic combination of chemical conversion and efficient utilization of bio-energy; hence, offering a possibility of developing new technologies for biomass-based systems.
机译:提出了一种新型的基于生物质的热电联产系统。该拟议系统最吸引人的特点是消除了转移过程,并采用了部分循环未反应的合成气(合成气)。在这项研究中,检查了系统的热力学性能,然后将其与两个基于生物质的参比单个系统的热力学性能进行了比较,其中包括具有转换过程(B-MS)和生物质集成气化联合循环的单个生物质制甲醇系统(BIGCC)。还研究了未反应合成气再循环率(R_u)的影响,该影响决定了化学产物与动力的火用率(γ)。本文进一步讨论了化学转化和能量利用的协同观点,有或没有转移反应以及未反应合成气的不同处理。结果表明,与参考单个系统相比,新的多联产系统可以将能耗降低多达10%。此外,拟议的多联产系统有望实现化学转化与生物能源有效利用的协同结合。因此,为基于生物质的系统开发新技术提供了可能性。

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