Development of a Laboratory-Scale Steam Boiler for Polyurethane (Foam) Waste Recycling Machine

A. B. Ajayi, H. Mustapha, A. Popoola, Tosin Emmanuel Folarin, Samuel Olabode Afolabi
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Abstract

In this paper, a laboratory-scale (small) Steam Boiler was designed and developed for a small-scale polyurethane recycling machine. A small-sized polyurethane machine was developed for the recycling of polyurethane foams to reduce wastes in the polyurethane production industries and also to reuse old discarded foams after their useful lives. It has been observed from studies carried out in many foam manufacturing industries that the polyurethane foam wastes generated from various plant operations are enormous. Also, polyurethane (foam) products are everywhere in our homes, industries and automobiles and are always discarded after their useful lives. These wastes need to be recycled always in other for them not to get back into our ecosystems thereby polluting our environment because polyurethane foams are non-biodegradables and can remain in the environment for a very long time. However, only a few companies with strong financial capabilities are able to embark on this venture because of the high costs of machinery and large quantities of chemicals involved. The high costs of machinery and chemicals also deter cottage industries from participating in the recycling of old and discarded polyurethane foams. Therefore, there is a need to develop small-scale polyurethane foam waste recycling machines to reduce the costs of machinery and chemicals involved in the recycling thereby allowing more participation in the recycling process. The boiler is used to generate high-temperature steam for curing and better bonding of the shredded foams. The heating chamber of the machine consists of the steam boiler, and pressure hose to enable passage of steam from the steam boiler into the molding box. The total volume of the boiler is 2.5 Litres. The outlet steam temperature is 135 0C and 25 psi pressure. The heat rate is 1.52 kJ/s. The recycled foams were able to cure and bonded better with the addition of steam compared to without the steam. The percentage difference in I.F.D, Resilience, Tensile Stress and percent elongation are +0.56, -2.00, +85.45, and +68.39 respectively. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium provided the original work is properly cited.
实验室规模聚氨酯(泡沫)废物回收机蒸汽锅炉的研制
本文针对小型聚氨酯回收机,设计研制了实验室规模的(小型)蒸汽锅炉。研制了一种小型聚氨酯泡沫回收机,以减少聚氨酯生产工业的浪费,并使废弃的旧泡沫在使用寿命后得到再利用。在许多泡沫制造工业中进行的研究表明,各种工厂操作产生的聚氨酯泡沫废料是巨大的。此外,聚氨酯(泡沫)产品在我们的家庭,工业和汽车中无处不在,并且总是在使用寿命后被丢弃。这些废物需要在其他地方回收,以免它们回到我们的生态系统中,从而污染我们的环境,因为聚氨酯泡沫是不可生物降解的,可以在环境中停留很长时间。然而,由于机械成本高和涉及大量化学品,只有少数具有强大财务能力的公司能够开展这项冒险活动。机械和化学品的高成本也阻碍了家庭手工业参与旧的和废弃的聚氨酯泡沫的回收。因此,有必要开发小型聚氨酯泡沫废物回收机,以降低回收所涉及的机械和化学品的成本,从而使更多的人参与回收过程。该锅炉用于产生高温蒸汽,使破碎的泡沫得到更好的固化和粘合。机器的加热室由蒸汽锅炉和压力软管组成,使蒸汽从蒸汽锅炉进入成型箱。锅炉的总容积是2.5升。出口蒸汽温度为135℃,压力为25 psi。热速率为1.52 kJ/s。与没有蒸汽相比,有蒸汽的再生泡沫能够更好地固化和粘合。I.F.D、回弹性、拉伸应力和伸长率的百分比差异分别为+0.56、-2.00、+85.45和+68.39。这是一篇在知识共享署名许可(http://creativecommons.org/licenses/by/4.0/)条款下发布的开放获取文章,该许可允许在任何媒介上不受限制地使用、分发和复制,只要原始作品被适当引用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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