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The use of solar energy for the curing of ferrogeopolymer elements in the semiarid region

机译:太阳能在半干旱地区用于固化铁铝聚合物元素

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Kupang City in Timor Island of Indonesia, as a semiarid area, has abundant solar energy sources. Based on climatology data of Kupang City in 2013-2015, the minimum and maximum average temperatures in Kupang City range from 19.3-34.8oC. Besides, dry seasons last for about 8 months (April-November). This abundance of solar energy is a potential energy resource for the manufacturing of environmentally friendly ferrogeopolymer elements. Based on previous research, the production of geopolymer material can be done optimally with dry curing treatment at 60-80oC for less than 48 hours. Therefore, in this paper, a low-cost, energy efficient oven operated by a solar energy collector was developed. This paper describes a feasibility study of the use of solar energy for curing ferro-geopolymer elements. The ferro-geopolymer elements made were beams with length 600 mm, width 100 mm and height 100 mm. Wire meshes with 6x6mm of opening were used in 5 layers. The solar energy collector system used as an oven was a zinc coated drum which was painted black outwardly and was covered by a glass plate. Using this oven, it was possible to increase the ambient temperature by 1.62 to 2,37 times. Furthermore, this oven can also increase the flexure strength of ferrogeopolymer elements about ± 25.34%. This paper shows good potential use of solar energy in the manufacturing of ferro-geopolymer elements in the semiarid region.
机译:作为半干旱地区,印度尼西亚帝汶岛的古邦市拥有丰富的太阳能资源。根据2013年至2015年古邦市的气候数据,古邦市的最低和​​最高平均气温为19.3-34.8oC。此外,旱季持续约8个月(4月至11月)。丰富的太阳能是制造环保铁基聚合物元素的潜在能源。根据先前的研究,可以在60-80oC的温度下进行少于48小时的干固化处理来最佳地进行地聚合物材料的生产。因此,在本文中,开发了由太阳能收集器操作的低成本,节能烤箱。本文介绍了利用太阳能固化铁-地聚合物元素的可行性研究。制成的铁-地聚合物单元是长600mm,宽100mm和高100mm的梁。在5层中使用开口为6x6mm的丝网。用作烤箱的太阳能收集器系统是镀锌的鼓,该鼓向外涂成黑色,并被玻璃板覆盖。使用该烤箱,可以将环境温度提高1.62倍至2,37倍。此外,该烤箱还可将铁铝聚合物元件的抗弯强度提高约±25.34%。本文显示了在半干旱地区生产铁-地聚合物元素中太阳能的潜在利用潜力。

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