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An efficient methodology for utilization of K-feldspar and phosphogypsum with reduced energy consumption and CO2 emissions

机译:一种利用钾长石和磷石膏的有效方法,可降低能耗和二氧化碳排放量

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摘要

The issues of reducing CO2 emissions, sustainably utilizing natural mineral resources, and dealing with industrial waste offer challenges for sustainable development in energy and the environment. We propose an efficient methodology via the co-reaction of K-feldspar and phosphogypsum for the extraction of soluble potassium salts and recovery of SO2 with reduced CO2 emission and energy consumption. The results of characterization and reactivity evaluation indicated that the partial melting of K-feldspar and phosphogypsum in the high-temperature co-reaction significantly facilitated the reduction of phosphogypsum to SO2 and the exchange of K+(K-feldspar) with Ca2+(CaSO4 in phosphogypsum). The reaction parameters were systematical y investigat-ed with the highest sulfur recovery ratio of~60%and K extraction ratio of~87.7%. This novel methodology possesses an energy consumption reduction of~28%and CO2 emission reduction of~55%comparing with the present typical commercial technologies for utilization of K-feldspar and the treatment of phosphogypsum.
机译:减少二氧化碳排放,可持续利用天然矿产资源以及处理工业废物的问题为能源和环境的可持续发展提出了挑战。我们提出了一种通过钾长石与磷石膏的共反应的有效方法,用于可溶性钾盐的提取和SO2的回收,同时减少了CO2的排放和能耗。表征和反应性评估的结果表明,高温共反应中钾长石和磷石膏的部分熔融显着促进了磷石膏向SO2的还原以及磷石膏中Ca +(CaSO4)与K +(K-长石)的交换。 )。系统地研究了反应参数,硫的最高回收率约60%,钾的提取率约87.7%。与目前利用钾长石和处理磷石膏的典型商业技术相比,该新颖的方法具有约28%的能耗降低和约55%的CO2排放降低。

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  • 来源
    《中国化学工程学报(英文版)》 |2016年第11期|1541-1551|共11页
  • 作者单位

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Multi-phases Mass Transfer and Reaction Engineering Laboratory, Col ege of Chemical Engineering, Sichuan University, Chengdu 610065, China;

    Center of CCUS and C02 Mineralization and Utilization, Sichuan University, Chengdu 610065, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:47:48
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