Comparative Study of Thermal Waste Recovery Systems Deployed in Three Different Chemical Units

IF 1 4区 工程技术 Q4 CHEMISTRY, MULTIDISCIPLINARY
A. Mushtaq, Rizwan Qamar, A. Ullah, Zaeem Uddin Ali, Syed Muhammad Tarique, Ayesha Muzaffar, Fatima Jahangir, Tahira Firdous, Aeliya Fatima
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引用次数: 0

Abstract

Waste thermal energy is enough amount of energy that is rejected to the atmosphere in the form of flue gases, streams of air, and liquid rejected from industries. It arises from the equipment, less efficient processes, and limitations due to the laws of thermodynamics on operations. It is obvious that it is not possible to regenerate all waste energy but most of the time some waste heat can be used to achieve useful purposes. Waste heat recovery is the most important key to carry out most of the research areas. The major areas of research and it is necessary to make the process more energy-efficient in chemical industries. To save energy Heat Exchanger Network’s synthesis (HEN) is essential. They are designed to reach energy targets. HEN design is the thermal integration between cold and hot utilities by pinch analysis at minimum temperature difference. HENs are important for utility saving because it helps in recovering heat from hot streams to others which reduces the utility consumption and requirement. The heat exchangers design with simplified models for different industries using pinch technology by which most thermal recovery is obtained and then some HEN network is required for a particular targeted area. In this research improvements in energy recovery systems and HENs, synthesis helps in capital savings and pollutant emission can also be reduced.
三种不同化工装置热废物回收系统的比较研究
废热能是指以烟道气、气流和工业排出的液体的形式排入大气的足够的能量。它源于设备,效率较低的过程,以及热力学定律对操作的限制。很明显,不可能再生所有的废能,但大多数时候,一些废热可以用来达到有用的目的。余热回收是开展大多数研究领域最重要的关键。研究的主要领域和有必要使这一过程在化学工业中更加节能。为了节约能源,换热器网络的综合是必不可少的。它们是为了达到能源目标而设计的。HEN设计是在最小温差下通过捏点分析实现冷热公用事业之间的热集成。母鸡是重要的公用事业节约,因为它有助于回收热量从热流到其他减少公用事业的消耗和需求。针对不同行业的热交换器,采用夹紧技术进行简化模型设计,利用夹紧技术获得最大的热回收,然后在特定的目标区域需要一些HEN网络。在本研究中,能源回收系统和母鸡的改进,合成有助于节省资金和污染物排放也可以减少。
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来源期刊
CiteScore
2.80
自引率
22.20%
发文量
0
审稿时长
6-12 weeks
期刊介绍: The aim of the Iranian Journal of Chemistry and Chemical Engineering is to foster the growth of educational, scientific and Industrial Research activities among chemists and chemical engineers and to provide a medium for mutual communication and relations between Iranian academia and the industry on the one hand, and the world the scientific community on the other.
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