Choi Nak-Woon, Mori Ippei, Ohama Yoshihiko
Research and Development Center of Samsung Fine Chemicals Co. Ltd., 664-14 Moonji-Dong, Taejeon 305-308, Republic of Korea.
Waste Manag. 2006;26(2):189-94. doi: 10.1016/j.wasman.2005.05.008. Epub 2005 Oct 25.
In this paper, a new effective recycling method for rice husks and waste expanded polystyrene is developed by using a combination of both wastes. A styrene solution of waste expanded polystyrene is used as a binder for rice husks-plastics composites. The composites are prepared with various mix proportions by a hot press molding method, and tested for apparent density, water absorption, expansion in thickness, and dry and wet flexural strengths. From the test results, the apparent density of the composites is increased with increasing binder content and filler-binder ratio. Their flexural strength and wet flexural strengths reach maximums at a binder content of 30.0% and a filler-binder ratio of 1.0. Their water absorption and expansion in thickness are decreased with increasing binder content and filler-binder ratio. Since the composites have a high flexural strength and water resistance, their uses as building materials are expected.
本文通过将稻壳和废弃发泡聚苯乙烯两种废弃物结合,开发出一种新型有效的回收利用方法。废弃发泡聚苯乙烯的苯乙烯溶液用作稻壳-塑料复合材料的粘结剂。通过热压成型法制备了不同混合比例的复合材料,并对其表观密度、吸水率、厚度膨胀以及干湿弯曲强度进行了测试。从测试结果来看,复合材料的表观密度随着粘结剂含量和填料-粘结剂比例的增加而增大。它们的弯曲强度和湿弯曲强度在粘结剂含量为30.0%、填料-粘结剂比例为1.0时达到最大值。它们的吸水率和厚度膨胀随着粘结剂含量和填料-粘结剂比例的增加而降低。由于该复合材料具有较高的弯曲强度和耐水性,有望用作建筑材料。