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Assessment of marble waste utilization as an alternative sorbent to limestone for SO2 control

机译:评估大理石废物作为石灰石的替代吸附剂以控制SO2的利用

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摘要

The possibility of marble waste utilization in wet flue gas desulfurization (WFGD) as an alternative to limestone was assessed. Chemical compositions, specific surface areas, grindabilities, dissolution liabilities and SO2 capture capabilities of five different marble wastes were determined and compared with three limestones used in WFGD systems. Chemical compositions of marble wastes were comparable with limestones, including significant CaCO3 and lower fractions of MgCO3. All limestones and marble wastes had low specific surface areas. Marble wastes had lower Bond Work Indices (BWI) than limestones, implying a higher liability to size reduction. Dissolution behavior was sample specific Some marble waste types showed higher or comparable dissolution rates with limestones while some resulted in a relatively slower dissolution. A higher calcite favored the dissolution rate while an increase in dolomite reduced the liability to dissolution. Assessment of the FTIR spectra obtained by evolved gas analysis (EGA) revealed better or comparable SO2 retention with some marble waste types as compared to limestones. The capability of SO2 control was a function of the extent of calcite in the sorbents. In view of these, a significant opportunity was anticipated for the wastes of some marble types as an alternative sorbent inWFGD.
机译:评估了在湿法烟气脱硫(WFGD)中使用大理石废料替代石灰石的可能性。确定了五种不同大理石废料的化学成分,比表面积,可磨性,溶解能力和SO2捕集能力,并将其与WFGD系统中使用的三种石灰石进行了比较。大理石废料的化学成分与石灰石相当,包括大量的CaCO3和较低的MgCO3含量。所有石灰石和大理石废料的比表面积都低。大理石废料的粘结工作指数(BWI)低于石灰石,这意味着对减小粒度的责任更高。溶解行为是特定于样品的,某些大理石废料显示出与石灰石相比更高或可比的溶解速率,而某些则导致相对较慢的溶解。较高的方解石有利于溶出速率,而白云石的增加则降低了溶出度。通过逸出气体分析(EGA)获得的FTIR光谱评估显示,与某些石灰石废料相比,某些大理石废料具有更好或相当的SO2保留率。二氧化硫的控制能力是吸附剂中方解石含量的函数。鉴于这些,预计将某些大理石类型的废物作为WFGD的替代吸附剂的重要机会。

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