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Study on the thermal pyrolysis of medical waste (plastic syringe) for the production of useful liquid fuels

机译:用于生产有用液体燃料的医疗废物(塑料注射器)的热解研究

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摘要

Energy crisis have led to a vast research on various alternative sources of energy in order to cope up with the growth in standard of living of all human beings across the world. And Waste disposal poses a problem which is increasingly difficult to ignore. While the increasing volumes of generated waste are a problem, the types of waste being generated further complicate the challenge of disposal. Waste-to-energy is an obvious replacement for medical waste incinerators whose numbers are likely to decline due to more stringent emission standards. The high plastic content of medical waste is looked at as a potential feedstock for a novel pyrolytic reactor. Hence, various technologies and processes are evolved to utilize the waste resource efficiently. Pyrolysis is one of the latest technologies which have the potential to provide valuable liquid and gaseous fuels from these medical waste sources. In this work, thermal pyrolysis of plastic medical waste (plastic syringes) will be performed in a semi batch reactor at a temperature of 450°C for the production of pyrolytic oil. The physical properties analysis of liquid product is in comparable range with physical properties of commercial transportation fuels
机译:能源危机导致人们对各种替代能源进行了广泛的研究,以应对世界各地人类生活水平的提高。并且废物处置提出了越来越难以忽视的问题。尽管产生的废物量不断增加是一个问题,但产生的废物类型进一步加剧了处置的挑战。废物转化为能源的明显替代方法是医疗废物焚化炉,由于排放标准更加严格,垃圾焚化炉的数量可能会下降。医疗废物的高塑料含量被认为是新型热解反应器的潜在原料。因此,发展了各种技术和方法以有效地利用废物资源。热解是最新技术之一,有潜力从这些医疗废物源中提供有价值的液体和气体燃料。在这项工作中,将在450℃的半间歇反应器中对塑料医疗废物(塑料注射器)进行热解,以生产热解油。液体产品的物理性能分析与商业运输燃料的物理性能相当

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    Dash Abhishek;

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  • 年度 2012
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