纳米羟基磷灰石化学合成的关键途径测定

J. M. Riesco-Ávila, David Alejandro Rodríguez-Valderrama, Diana Marcela Pardo-Cely, Francisco Elizalde- Blancas
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引用次数: 0

摘要

在不同的塑料回收方法中,热解为克服机械回收的局限性提供了可能,机械回收需要大量清洁、分离和均匀的塑料废物,以确保最终产品的质量。热解是在无氧条件下通过热降解对塑料材料进行化学分解。塑料废物被引入一个房间,在那里它受到高温,产生的气体被冷凝,以获得馏分烃。本文介绍了聚丙烯、高密度聚乙烯和低密度聚乙烯混合塑料废料的热解结果。在第一阶段,塑料废物在440-450°C的温度下进行快速热解过程,获得重碳氢化合物的混合物。随后,这些碳氢化合物经过蒸馏过程,首先在180°C的温度下,得到与汽油性质相似的碳氢化合物,然后在360°C的温度下,得到与柴油性质相似的碳氢化合物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determinación de la ruta crítica para la síntesis Química de hidroxiapatita nanométrica
Of the different methods for recycling plastic, pyrolysis offers the possibility to overcome the limitations of mechanical recycling, which requires large amounts of clean, separate and homogeneous plastic waste to ensure the quality of the final product. Pyrolysis is the chemical decomposition of plastic materials by thermal degradation in the absence of oxygen. The plastic waste is introduced into a chamber, where it is subjected to high temperatures, and the gases generated are condensed in order to obtain a distillate hydrocarbon. This paper presents the results obtained from the pyrolysis of plastic waste mixtures of polypropylene, high density polyethylene, and low density polyethylene. In a first stage, the plastic waste is subjected to a rapid pyrolysis process at temperatures of 440-450 °C, obtaining a mixture of heavy hydrocarbons. Subsequently, these hydrocarbons are subjected to a distillation process, first at a temperature of 180 °C, where a hydrocarbon with properties similar to those of gasoline is obtained, and then at a temperature of 360 °C, yielding a hydrocarbon with properties similar to those of diesel.
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