首页> 外文会议>2018 International Conference and Utility Exhibition on Green Energy for Sustainable Development >Experimental Investigation of a Solar Greenhouse Dryer Using Fiber Plastic Cover to Reduce the Moisture Content of Refuse Derived Fuel in an Indonesian Cement Industry
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Experimental Investigation of a Solar Greenhouse Dryer Using Fiber Plastic Cover to Reduce the Moisture Content of Refuse Derived Fuel in an Indonesian Cement Industry

机译:利用纤维塑料盖降低印度尼西亚水泥行业垃圾衍生燃料水分的太阳能温室干燥机的实验研究

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摘要

Refuse Derived Fuel (RDF) is a potential alternative energy made from municipal solid waste (MSW). RDF could partially substitute coal in industries that use combustion equipment, for example in cement manufacturing industries. The optimal moisture content for solid fuel is around 10-20%. However, RDF that supplied in one of Indonesian cement industries reached moisture content almost 30%. A solar dryer has been built and tested to reduce the moisture content of RDF. Its parts were a greenhouse type tunnel drying unit with fiber plastic cover and electrical axial fans. In this experiment, the effect of three fan modes on the thermal efficiency were also investigated. The modes were operating one fan, two fans, and without fan. The solar dryer had dimensions of 2 m x 1.5 m x 0.8 m (length x width x height). The mass of RDF was 20 kg. The efficiency was calculated using the measured experimental data, i.e. environment temperature, room temperature, air velocity, solar irradiation, and relative humidity. The result revealed that the lowest moisture content produced by the dryer reached to 14.75%. Furthermore, the thermal efficiency could increase up to about 17.07% by using two fans mode.
机译:垃圾衍生燃料(RDF)是一种潜在的替代能源,由城市固体废物(MSW)制成。 RDF可以在使用燃烧设备的行业(例如,水泥制造业)中部分替代煤炭。固体燃料的最佳水分含量约为10-20%。但是,印尼水泥行业之一供应的RDF的含水量几乎达到30%。已经建造并测试了太阳能干燥机以减少RDF的水分含量。它的部件是一个温室式隧道干燥装置,带有纤维塑料盖和电轴流风机。在该实验中,还研究了三种风扇模式对热效率的影响。这些模式分别是运行一个风扇,两个风扇和不带风扇。该太阳能干燥器的尺寸为2m×1.5m×0.8m(长×宽×高)。 RDF的质量为20千克。使用测量的实验数据即环境温度,室温,空气速度,太阳辐射和相对湿度来计算效率。结果表明,干燥机产生的最低水分含量达到14.75%。此外,通过使用两个风扇模式,热效率可以提高到大约17.07%。

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