首页> 外文会议>New, Improved and Existing Technologies: Non-Ferrous Materials Extraction and Processing >EFFECT OF CASO_4 PELLETIZATION CONDITIONS ON PELLET STRENGTH AND REACTIVITY FOR CONVERTING SO_2 TO ELEMENTAL SULFUR BY REACTION CYCLES INVOLVING CASO_4/CAS
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EFFECT OF CASO_4 PELLETIZATION CONDITIONS ON PELLET STRENGTH AND REACTIVITY FOR CONVERTING SO_2 TO ELEMENTAL SULFUR BY REACTION CYCLES INVOLVING CASO_4/CAS

机译:CASO_4造粒条件对涉及CASO_4 / CAS的反应循环将SO_2转化为元素硫的造粒强度和反应性的影响

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A new process for converting sulfur dioxide to elemental sulfur by a cyclic process involving calcium sulfide and calcium sulfate without generating secondary pollutants was developed at the University of Utah. In this process, sulfur dioxide is reacted with calcium sulfide to produce elemental sulfur and calcium sulfate. The latter is reduced by hydrogen to regenerate calcium sulfide. In the present work, the effects of different pelletization conditions for the initial reactant calcium sulfate on the strength and reactivity of the pellets were determined. These conditions include the type, amount, and impregnation method of catalyst, binder amount, and sintering. Experiments were also performed to determine the effects of temperature in the range of 973-1173 K, pellet size, cycle repetition, and water vapor or carbon dioxide content in sulfur dioxide stream on the reaction rates of the cyclic process. Nickel-catalyzed fired pellets produced by the use of molasses or cement as a binder showed good reactivity as well as high compressive strength during the cyclic tests. The binder amount did not significantly affect the reaction rate.
机译:犹他大学开发了一种通过循环过程将二氧化硫转化为元素硫的新方法,该过程涉及硫化钙和硫酸钙而不会产生二次污染物。在此过程中,二氧化硫与硫化钙反应生成元素硫和硫酸钙。后者被氢气还原以再生硫化钙。在目前的工作中,确定了初始反应物硫酸钙的不同造粒条件对粒料强度和反应性的影响。这些条件包括催化剂的类型,量和浸渍方法,粘合剂的量和烧结。还进行了实验,以确定温度范围为973-1173 K,颗粒大小,循环重复以及二氧化硫流中水蒸气或二氧化碳的含量对循环过程反应速率的影响。通过使用糖蜜或水泥作为粘合剂生产的镍催化烧成颗粒在循环测试中显示出良好的反应性以及高抗压强度。粘合剂的量没有显着影响反应速率。

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