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Preliminary thermal evaluation of disposable babies diaper viewing energy recycling

机译:一次性婴儿尿布观察能源回收的初步热评价

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Human population growth, high consumption and unsustainable management of products and services are exceeding the sustainable use of natural resources. The use of disposable diapers, not only baby but also geriatric ones, reaches a high value, increasing considerably the urban solid residue generation. Currently, all this urban solid residue goes to landfills, taking up to 400 years to decompose, as most of its components are derived from oil. Its use as energy source, as it is already done with the cane bagasse, would bring great benefits, such as power generation and waste reduction. The objectives of this work were to identify the composition of each layer of a disposable diaper for babies and estimate the potential energy through combustion, employing the thermal analytical techniques TG/DTG/DTA, aiming at the reduction in the waste disposed in landfills, contributing in this way to an effective solid waste residue management. The layer 1 presented an endothermic peak at 165 degrees C, suggesting the presence of polypropylene, and layer 2 presented an endothermic peak at 130 degrees C, possibly consistent presence of polyethylene according to the manufacturer's information and infrared analyses. Through the DTA curves of layers 4, 5 and sodium polyacrylate (PSA), it is observed that the fusion temperatures of the polymer are around 425 degrees C indicating the presence of PSA in both layers. The disposable diaper combustion releases approximately 12 kJg(-1), lower than the heat released from sugarcane that is around 17 kJg(-1); if used to obtain energy would help the removal of the diaper from the environment by reducing space occupied by that residue in landfills, contributing to environmental sustainability.
机译:人口增长,高消耗的产品和服务不可持续的管理都超过了可持续利用自然资源。使用一次性尿布,不仅是孩子,但也是老年的人的,达到一个高值,显着增加了城市固体残渣的产生。目前,所有这些城市固体残渣产生的垃圾,占用400年才能分解,因为其大部分部件都来源于石油。它作为能源使用,因为它已经与甘蔗渣做,会带来很大的好处,如发电和减少浪费。这个工作的目的是通过燃烧识别用于婴儿的一次性尿布的每一层的组成和估计潜在的能量,采用热分析技术TG / DTG / DTA,针对设置在垃圾填埋场中的废弃物的减少,有助于以这种方式有效的固体废渣管理。层1在165℃下呈现一个吸热峰,表明聚丙烯的存在,和层2根据制造商的信息及红外线分析在130℃下,聚乙烯的可能存在一致呈现的吸热峰。通过层4,5和聚丙烯酸钠(PSA)的DTA曲线,可以观察到,该聚合物的熔化温度是周围425℃的指示PSA的两层中的存在。一次性尿布燃烧释放约12 KJG(-1),低于从甘蔗释放的热量也就是约17 KJG(-1);如果用来获取能量将通过减少由残留在垃圾填埋场占用的空间,有利于环境的可持续发展帮助去除环境的尿布。

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