利用棕榈油和塑料废弃物等废原料共热解生产生物燃料

Muhammad Dimas Aditia, Amalia Harmin, R. Syntia, Nasruddin A. Abdullah
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引用次数: 0

摘要

石油、天然气和煤炭是不可再生的化石能源。不可再生化石燃料的有限性促使世界各国开发利用可再生能源的技术。其中一种可再生能源是生物燃料,包括生物乙醇和生物柴油。目前,共热解法在垃圾处理中得到了广泛的发展。共热解方法旨在从原料混合物中提取能量含量。不同比例的原料混合物会显著影响最终产品。获取原料的特性、各配比原料的温度分布图的差异,以及获得最佳产率是共热解过程的目标。根据加热过程的数据,发现将TKKS(30%)和PS(70%)的混合物在500℃下加热1小时可以获得优异的产品,产品收率为68%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biofuel Production Through Co-Pyrolysis Process By Utilizing Waste Raw Materials Of Palm Oil and Plastic Waste
Oil, natural gas, and coal are non-renewable fossil energy sources. The limited availability of non-renewable fossil fuels has prompted countries worldwide to develop technologies that harness energy from renewable sources. One of these renewable energy sources is biofuel, which includes bioethanol and biodiesel. Currently, the Co-Pyrolysis method has been widely developed for waste processing. The Co-Pyrolysis method aims to extract energy content from a mixture of raw materials. The varying percentage of raw material mixtures can significantly influence the resulting products. Obtaining the characteristics of raw materials, the differences in temperature distribution graphs for each percentage of the raw material mixture, and achieving optimum product yield are the objectives of the Co-Pyrolysis process. Based on the data from the heating process, it has been found that an excellent product can be obtained from heating a mixture of TKKS (30%) and PS (70%) at 500 °C for 1 hour, resulting in a product yield of 68%.
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