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The Determination of Optimum Condition in Water Hyacinth Drying Process by Mixed Adsorption Drying Method and Modified Fly Ash as An Adsorbent

机译:混合吸附干燥法测定水葫芦干法中的最佳条件和改性粉煤灰作为吸附剂

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Water hyacinth is an aquatic weed that has a very fast growth which makes it becomes a problem to the ecosystem. On the other hand, water hyacinth has a high fiber content (up to 20% by weight) which makes it potential to become raw material for composites and textile industries. As an aquatic plant, water hyacinth has a high initial moisture content that reaches more than 90%. Meanwhile the moisture content of fiber as a raw material for composite and textile industry should not be more than 10% to maintain the good quality of the products. Mixed adsorption drying method is one of the innovative method that can replace conventional drying process. Fluidization method which has been commonly used in agricultural and pharmaceutical products drying, can be enhanced by combining it with the adsorption method as performed in this study. In mixed fluidization-adsorption drying method, fly ash as adsorbent and water hyacinth fiber were put together into the fluidization column where the drying air evaporate the moisture content in water hyacinth fiber. In addition, the adsorbent adsorb the moisture content in the drying air to make the moisture content of the drying air remain low. The drying process is performed in various temperature and composition of water hyacinth and adsorbent in order to obtain the optimum drying condition. In addition, the effect of fly ash pellet and fly ash powder to the drying process was also performed. The result shows that the higher temperature and the more amount of adsorbent results in the faster drying rate. Fly ash pellet shows a better adsorption since it has a smaller pore diameter and wider surface area. The optimum temperature obtained from this study is 60°C and the optimum ratio of water hyacinth and fly ash is 50:50.
机译:水风信子是一种水生杂草,具有非常快速的增长,这使得它成为生态系统的问题。另一方面,水葫芦具有高纤维含量(高达20重量%),这使得它可能成为复合材料和纺织工业的原料。作为水生植物,水葫芦具有高初始含水量,达到90%以上。同时,纤维的水分含量作为复合材料和纺织工业的原料不应超过10%以保持产品质量良好。混合吸附干燥方法是可以取代传统干燥过程的创新方法之一。通过将其与本研究中的吸附方法相结合,可以提高流化方法,该方法常用于农业和药品干燥中,可以通过与本研究中进行的吸附方法相结合。在混合流化 - 吸附干燥方法中,将粉煤灰作为吸附剂和水葫芦料纤维一起放入流化柱中,其中干燥空气蒸发水葫芦纤维中的水分含量。另外,吸附剂吸附干燥空气中的水分含量以使干燥空气的水分含量保持低。干燥过程在水葫芦株的各种温度和组合物中进行,以获得最佳干燥条件。此外,还进行了粉煤灰颗粒和飞灰粉末对干燥过程的影响。结果表明,较高的温度和更多的吸附剂导致更快的干燥速率。粉煤灰颗粒显示出更好的吸附,因为它具有较小的孔径和较宽的表面积。从该研究获得的最佳温度为60℃,水合葫芦和粉煤灰的最佳比例为50:50。

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