首页> 外文期刊>Journal of Hazardous Materials >Experimental investigation into the incineration of wool scouring sludges in a novel rotating fluidised bed
【24h】

Experimental investigation into the incineration of wool scouring sludges in a novel rotating fluidised bed

机译:新型旋转流化床焚烧羊毛精练污泥的实验研究

获取原文
获取原文并翻译 | 示例
       

摘要

The main purpose of this research was to investigate the possibility of incineration of wool scouring sludges in a novel vertical axis rotating fluidised bed (RFB). A small-scale RFB was designed and constructed with an internal diameter (ID) of 200 mm and height of 50 mm to carry out the experiments. In phase one of the experiments, a cold test was conducted to investigate the fluidisation performance of the RFB, which eventually led to the optimisation of the operating parameters, i.e., sand particle size, rotation speed and bed loading (bed thickness) which ensures complete fluidisation and minimum particle elutriation. Sand particle size of 0.5 to 0.6 mm, rotation speed of 200 to 400 rpm and bed loading of 1 kg (equivalent to bed thickness of 27 mm) were found optimal. These information generated were useful for the second phase of the experiments, which was the hot test, in investigating the possibility of incinerating wool scouring sludges in the RFB. Nine wool sludges from different process routes generated from the wool scouring industries were analysed for their compositions. Most of these sludges were highly moist, had high volatile matter and high ash content with low level of fixed carbon. These characteristics made incineration difficult. Hence, the effect of varying the moisture content, rotation speed and sludge feed rate on the incineration of the three selected sludges were studied in the hot test. With 5% support methane, all sludges with a maximum moisture up to 70% as-received could be successfully burned in the RFB at rotating speeds of 200 and 300 rpm. The combustion was found to be intense with a high efficiency due to the good turbulence and mixing in the RFB. The combustion gases produced, i.e., CO, CO_2 and NO_x were reasonably low due to the high combustion intensity and efficiency. To study the dynamics of the bed and freeboard region in the RFB, the velocity flow field was simulated using a computational fluid dynamics (CFD) model to generate information of the flow pattern. The special advantages of swirling flow would benefit the gas combustion in the RFB. The experimental results obtained have suggested that the incineration was successful and the ash particles elutriated were fine due to the good mixing and turbulence in the RFB. This also reflects the RFB as an effective incinerator.
机译:这项研究的主要目的是研究在新型垂直轴旋转流化床(RFB)中焚烧羊毛精练污泥的可能性。设计并构造了一个小尺寸的RFB,其内径(ID)为200毫米,高度为50毫米,以进行实验。在实验的第一阶段,进行了冷试验以研究RFB的流化性能,最终导致操作参数的优化,即砂粒大小,转速和床载量(床厚),以确保完整流化和最小化淘析。发现砂粒粒度为0.5至0.6毫米,转速为200至400 rpm,床负荷为1千克(相当于床厚度为27毫米)是最佳的。产生的这些信息对于第二阶段的实验非常有用,该阶段是热门测试,用于调查RFB中焚烧羊毛精练污泥的可能性。分析了来自羊毛精练行业的九种不同工艺路线的羊毛污泥的成分。这些污泥大多数是高湿的,挥发性高,灰分高,固定碳含量低的污泥。这些特性使焚烧困难。因此,在热试验中研究了改变水分含量,转速和污泥进料速度对三种选定污泥焚化的影响。含5%的甲烷,所有水分最多达70%的污泥都可以在RFB中以200和300 rpm的转速成功燃烧。发现由于RFB中良好的湍流和混合,燃烧以高效率进行激烈。由于高燃烧强度和效率,产生的燃烧气体,即CO,CO_2和NO_x相当低。为了研究RFB中床和干舷区域的动力学特性,使用计算流体动力学(CFD)模型对速度流场进行了仿真,以生成流型信息。旋流的特殊优势将有利于RFB中的气体燃烧。获得的实验结果表明,由于RFB中良好的混合和湍流,因此焚化成功并且灰化的灰分颗粒很好。这也反映了RFB是一种有效的焚化炉。

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