华电技术 ›› 2020, Vol. 42 ›› Issue (10): 13-21.

• 污染物减排 • 上一篇    下一篇

粉末活性炭还原二氧化硫回收硫磺的沉降炉试验研究

  

  1. 1. 山东科技大学 机械电子工程学院,山东 青岛 266590;2. 济南港华燃气有限公司,济南 250014;3. 山东大学 燃煤污染物减排国家工程实验室,济南 25006
  • 出版日期:2020-10-25

Experimental study on SO2 reduction to elemental sulfur with powdered activated carbon in a drop-tube reactor#br#

  1. 1.College of Mechanical and Electronic Engineering,Shandong University of Science and Technology,Qingdao 266590,
    China;2.Ji'nan Towngas Company Limited,Ji'nan 250014,China;3.National Engineering Laboratory for
    Coal-fired Pollutants Emission Reduction,Shandong University,Ji'nan 250061,China
  • Published:2020-10-25

摘要: 针对我国硫磺资源短缺现状及当前脱硫技术无法实现 SO2 资源化利用的问题,提出了以活性炭粉末为还原
剂,气固两相流动下还原 SO2 为单质硫的方法。研究了反应温度、C/SO2 摩尔比及 CO,H2,CO2 和水蒸气体积分数对
反应的影响。研究表明:较高的反应温度和 C/SO2 摩尔比有利于提升活性炭对 SO2 的还原效率和反应速率,且对
COS 生成的促进不大,单质 S 选择性较高;CO 和 H2 的加入均可显著提高 SO2 转化率,但反应过程中生成大量的含 S
副产物,导致单质 S 选择性降低;CO2 对整体反应影响轻微;H2O 的加入影响 Claus 反应平衡,导致 H2S 生成量增加,单
质 S 选择性显著降低。经济性分析表明:工艺主要成本为加热能耗和活性炭反应物耗;每脱除 1 g 的 SO2,可产出硫
磺 0.38 g,消耗活性炭 0.16 g,同时带来 1.7 kJ 的能耗。该研究为流化床碳热还原 SO2 工艺提供了理论支持。

关键词: 活性炭, 还原, 单质硫, SO2, 沉降炉, 流化床, 资源化利用

Abstract: In view of sulfur resources shortage in China and the problem that SO2 recycling cannot be realized by current
desulfurization technology,a method was proposed to reduce SO2 to elemental sulfur by using activated carbon powder as
reducing agent under gas-solid two-phase flow. The effects of reaction temperature,molar ratio of C/SO2,and concentration
of CO,H2,CO2 and water vapor on the reaction were studied. The results show that higher reaction temperature and C/SO2
molar ratio are conducive to improving the reduction efficiency and reaction rate of SO2 by activated carbon,and have little
effect on COS generation and lead to a high selectivity of elemental S. The addition of CO and H2 can significantly improve
the conversion rate of SO2,but a large number of S-containing by-products are generated during the reaction,leading to a
decrease in the selectivity of elemental S. CO2 has little effect on the whole reaction. The addition of H2O affects the Claus
reaction balance,resulting in the increase of H2S production and the significant decrease of the selectivity of elemental S.
The economic analysis indicates that the main cost of the process includes energy consumption for heating and reaction
material consumption of activated carbon. Every 1 g removed SO2 can produces 0.38 g sulfur,and consumes 0.16 g
activated carbon and 1.7 kJ energy. This study provides theoretical support for the carbothermal reduction of SO2 in
fluidized beds.

Key words: activated carbon, reduction, elemental sulfur, sulfur dioxide, drop-tube furnace, fluidized bed, recycling