Energy and carbon emission savings potential of chemical plant by implementing cogeneration technologies

I. Shabbir, M. Mirzaeian
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Abstract

In this paper, feasibility analysis to implement different cogeneration systems using agricultural waste (rice husk) along with natural gas as an alternative source of energy for energy saving and cost optimization in a chemical plant is carried out. The authors believe that such feasibility studies by employing rice husk and natural gas in a cycle to improve the energy efficiency and carbon emission savings of chemical plant are limited and therefore this research is timely not only because of the current interest in high-performance cogeneration options but also from the scientific research point of view. The cogeneration technologies implemented are a gas turbine, steam turbine and combined cycle and are evaluated from the energetic and economic point of view to propose a best suitable technology. These technologies are evaluated on the basis of energy utilization factor, simple pay-back period and Annualized life cycle cost (ALCC). The results show that all studied cogeneration options running on thermal match mode have fully satisfied the thermal demand of a chemical plant and in most cases, 70% electric demand, where combined cycle has the highest energy utilization factor and the least Annualized life cycle cost with the lowest payback period.
实施热电联产技术的化工厂节能和碳排放潜力
本文对某化工厂利用农业废弃物(稻壳)和天然气作为替代能源,实现不同热电联产系统节能和成本优化的可行性进行了分析。作者认为,利用稻壳和天然气在一个循环中提高化工厂的能源效率和碳排放节约的可行性研究是有限的,因此这项研究是及时的,不仅因为目前对高性能热电联产方案的兴趣,而且从科学研究的角度来看。实施的热电联产技术为燃气轮机、蒸汽轮机和联合循环,并从能源和经济的角度进行了评估,提出了最适合的技术。根据能源利用系数、简单回收期和年化生命周期成本(ALCC)对这些技术进行了评价。结果表明,在热匹配模式下,所研究的热电联产方案均能完全满足某化工厂的热需求和70%的电力需求,其中联合循环具有最高的能量利用系数、最小的年化生命周期成本和最短的投资回收期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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