水葫芦纤维作为墙体吸热介质的研究

M. Amin, Sefri Wahyu Fernando Gultom, Fitrisia Krisa Bella, P. Luthan
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引用次数: 2

摘要

水葫芦是一种中等纤维含量的水草植物,茎长约1.75 ~ 2.12 mm,直径约11.15 ~ 11.65 μm。水葫芦含有90%的水,重量从湿时的10公斤减少到干时的1公斤。在干燥条件下,水葫芦的粗蛋白质含量为13.03%,粗纤维含量为20.6%,脂肪含量为1.1%,灰分含量为23.8%,其余为含多糖和矿物质的漩涡。对添加水葫芦改性的吸热产品进行了设计研究。所采用的方法是从干燥水葫芦入手,以获得良好的纤维。然后将水葫芦纤维与水泥和沙子混合制成复合材料,以减少房间的热量。研究的结果是研制出一种能够克服深室温条件下热舒适问题的产品。选择水葫芦是因为水葫芦容易获得,价格便宜,并且可以减少对环境的污染(可生物降解性),因此复合材料可以克服环境问题,而且使用时不危害健康。通过对介质提供40瓦灯泡热源15分钟的测试结果,发现不添加水葫芦纤维的介质1的最终温度为32.5oC,添加100克水葫芦的介质2的最终温度为32.2oC,添加150克水葫芦的介质3的最终温度为31.7oC。由图可知,复合材料在介质3中放出的不能被吸收的热温度仅为0.50℃,在介质2中放出的热温度仅为10C,而在不添加水葫芦纤维的复合材料中放出的热温度约为1.3℃。结果表明,与不添加水葫芦纤维的复合材料相比,添加水葫芦纤维的复合材料吸收热量和释放热量更少,使室内温度降低,是适合使用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Water Hyacinth Fiber ( Eichhornia Crassipes) as Heat Absorbers Media In Wall
Water hyacinth is aquatic weed plant that has medium fiber content with length about 1.75 – 2.12 mm and diameter about 11.15 – 11.65 μm in its stem. Water hyacinth contains 90% of water by weight reduction from 10 Kg when wet to 1 Kg when dry. In dry conditions, water hyacinth contains crude protein 13.03%, crude fiber 20.6%, fat 1.1%, ash 23.8% and the rest is vortex that contains polysaccharides and minerals. Research was done to obtain the design of heat absorbing product that modified with additional of water hyacinth. The method that was uesd begin with drying water hyacinth to obtain good fiber. water hyacinth fibers then mixed with cement and sand which are made as composites in order to reduce the heat of room. The result of the research is make a product that can overcome thermal comfort problems in deep room temperature condition. Water hyacinth was chosen because it is easy to obtain, cheap and can reduce environmental pollution (biodegradability) so that the composite can overcome environment ptoblem and its used doesn’t endanger health. Based on the test result by providing a heat source of 40 Watt bulb lamp to the media for 15 minutes, it was found that the final temperature of the media 1 without additional of water hyacinth fiber was 32.5oC, final temperature of media 2 with additional of 100 gr water hyacinth was 32.2oC, and the final temperature of media 3 with additional 150 gr water hyacinth was 31.7oC. it shows heat temperature that is released and cannot be absorbed by composite in media 3 is only 0.50C, in meida 2 is only 10C while in composite in media 1 without additional of water hyacinth fiber that release heat about 1.3oC. it shows that the product is suitable to use because composite with additional of water hyacinth can absorb heat and release less heat compared to composite without additional water hyacinth fiber so that the room become cooler.
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