首页> 外文期刊>Fuel >Hydrothermal dewatering of lower rank coals. 3. High-concentration slurries from hydrothermally treated lower rank coals
【24h】

Hydrothermal dewatering of lower rank coals. 3. High-concentration slurries from hydrothermally treated lower rank coals

机译:低等级煤的水热脱水。 3.高浓度水热处理低级煤制浆

获取原文
获取原文并翻译 | 示例
       

摘要

A novel method of producing a product of low intra-particle porosity (< 1 μm pore radius) from highly porous Latrobe Valley raw brown coals uses a combination of hydrothermal and evaporative drying. Low porosity coal was made in three different batch autoclave systems at 320℃ for residence times as low as 10 min. Higher temperatures (up to 350℃) increased porosity slightly but the water vapour pressure and the loss of organic material were significantly increased. Although the low and high porosity products differed dramatically in appearance and hardness, other chemical and spectroscopic properties were similar with the exception of pyrolysis―gas chromatography―mass spectrometry patterns. The relationship between intra-particle porosity and the maximum wt% dry solids concentration of aqueous slurries (for a viscosity of less than 1000 mPa s), φ_(max), established by earlier workers for hydrothermally treated brown coals was found to hold for the new products and was extended to a wider range of porosities and a range of mean particle sizes (mps) (20―100 μm). A range of surfactants (anionic, cationic and neutral), which led to an increase of up to 7% in φ_(max) for a bituminous, Blair Athol coal, increased φ_(max) for products of hydrothermal or the new treatment by only 2―4%. This small increase resulted, however, in the formation of slurries of the low porosity products with φ_(max)'s of up to 64%, similar to those obtained with high rank coals, and considered to be of commercial interest.
机译:一种由高度多孔的Latrobe Valley粗褐煤生产低颗粒内孔隙度(<1μm孔半径)的产品的新方法是将水热干燥和蒸发干燥相结合。低孔隙度煤是在三种不同的高压釜系统中于320℃制备的,停留时间低至10分钟。较高的温度(最高350℃)使孔隙率略有增加,但水蒸气压和有机物的损失显着增加。尽管低孔隙率产品和高孔隙率产品在外观和硬度上有显着差异,但除了热解气相色谱-质谱图模式外,其他化学和光谱性质均相似。发现早期的工人对水热处理的褐煤确定的颗粒内孔隙率与含水浆液的最大干%固体含量(粘度小于1000 mPa s)φ_(max)之间的关系成立。新产品,并扩展到更大的孔隙率范围和平均粒度(mps)(20〜100μm)范围。一系列的表面活性剂(阴离子,阳离子和中性),导致Blair Athol烟煤的φ_(max)最多增加7%,而水热或新处理产品的φ_(max)仅增加2-4%。然而,这种小增加导致形成了φ_(max)高达64%的低孔隙率产品浆液,类似于使用高级煤获得的浆液,并且被认为具有商业价值。

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