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飛灰殘炭對零價汞蒸汽的吸附特征

Elemental Mercury Adsorption by Residual Carbon Separated from Fly Ash

  • 摘要: 研究了飛灰未燃殘炭對零價汞蒸氣的吸附特性.在低汞平衡濃度(<250μg/m3)條件下,殘炭汞吸附能力與商業活性炭差距不顯著,而商業活性炭在高汞濃度端的汞吸附量則明顯升高.殘炭汞吸附特性與其來源相關性較強.殘炭的吸附等溫線類似于Ⅱ型等溫線,而商業活性炭則明顯具有Ⅲ型吸附等溫線特征.靜態吸附實驗結果表明炭質吸附劑表面存在活性點位,從而使其吸附過程得到加強.因為殘炭制造成本相對低廉,所以在煙氣汞污染物脫除方面更具有價格優勢.

     

    Abstract: The adsorption capacity for vapor-phase elemental mercury (Hg0) of residual carbon separated from fly ash was investigated in an attempt for the control of elemental mercury emissions from combustion processes. At low mercury concentrations (<250 μg/m3), the adsorption capacity difference of residual carbon to commercial activated carbon is not significantly, but the mercury sorption capacity of commercial activated carbon increase significantly at high mercury concentrations. The mercury sorption capacity of residual carbon was also found to be source dependent. The isotherms of residual carbon were similar to those classified as Type Ⅱ with distinctness different in concave. But commercial activated carbon was more like those classified as Type Ⅲ. Static experiments reveal that prime sites which enhance the mercury adsorption exist in the surface of carbon. Due to the relatively low production costs, these residual carbons would likely be considerably more cost-effective for the removing of mercury from combustion flue gases than other technologies.

     

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