首页> 外文会议>International Symposium on Eco-Materials Processing and Design(ISEPD-8); 20070111-13; Kitakyushu(JP) >Conversion of Used Glass Bottles to Porous Materials by Using Hydrothermal Technique
【24h】

Conversion of Used Glass Bottles to Porous Materials by Using Hydrothermal Technique

机译:水热技术将用过的玻璃瓶转换为多孔材料

获取原文
获取原文并翻译 | 示例

摘要

Conversion of used glass bottles to porous materials was investigated for recycling of used glasses. The ordinary method to prepare porous materials from glass needs vesicants such as calcium carbonate and silicon carbide that decompose at high temperatures to produce gas, and the gas is trapped in softened glass to form pores. In this study, used glass bottles were converted to porous plates by using hydrothermal technique. First, a glass powder is hydrothermally treated at low temperatures, so that water diffuses into the glass structure. Water is released as vapor to form pores in the softened glass, when the hydrothermally treated glass powder is heated at high temperatures. Thus, this process gives porous materials with a fine structure including closed pores at lower temperature than the ordinary method. The effects of hydrothermal treatment and calcination conditions on bulk density of the resulted porous materials were investigated with a small scale to determine the conditions to get light porous materials. Finally, porous plates (45 × 45 × 3 cm~3 in size) with density of 0.45g/cm~3 were produced by hydrothermal treatment of the glass powder at 180℃ in a large autoclave with inside volume of 2.5 m~3, followed by calcination at 800℃ in a continuous heater with 18 m in length.
机译:研究了将废旧玻璃瓶转换为多孔材料以回收废旧玻璃的方法。由玻璃制备多孔材料的常规方法需要诸如碳酸钙和碳化硅之类的表面活性剂,它们在高温下分解以产生气体,并且该气体被捕集在软化的玻璃中以形成孔。在这项研究中,使用水热技术将用过的玻璃瓶转换成多孔板。首先,将玻璃粉末在低温下进行水热处理,以使水扩散到玻璃结构中。当将经水热处理的玻璃粉末在高温下加热时,水以蒸气形式释放,从而在软化玻璃中形成孔。因此,与常规方法相比,该方法在更低的温度下得到具有包括闭孔的精细结构的多孔材料。研究了水热处理和煅烧条件对所得多孔材料堆积密度的影响,以确定得到轻质多孔材料的条件。最后,通过在内部容积为2.5 m〜3的大型高压釜中对玻璃粉进行180℃的水热处理,制得密度为0.45g / cm〜3的多孔板(尺寸为45×45×3 cm〜3)。然后在长度为18 m的连续加热器中于800℃煅烧。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号