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- W2361423986 abstract "In order to reveal the mechanism of mercury adsorption by nature mineral sorbents,four silicate sorbents (attapulgite,mordenite,bentonite and vermiculite) were tested in a laboratory-scale fixed-bed reactor system to evaluate their ability of mercury removal from simulated flue gas.The characterization of four sorbents was analyzed using the accelerated surface area porosity and X-ray diffraction (XRD).The inlet and outlet Hg0 concentrations were detected using VM3000 online mercury analyzer (CEMS),and mercury content of samples was also measured using QM201 atomic fluorescence mercury analyzer.The effect of thermal activation and reaction temperature were considered in the tests.Results show that the performance of four sorbents is not enhanced after thermal activation.Appropriately increasing the adsorption temperature improves the mercury removal.It is worth noting that the mechanism of mercury removal is not just a physical adsorption.In the first 30 min,the mercury adsorption rate for bentonite is 1 029 ng/g,which is double of that for attapulgite.Mordenite shows poor absorption capacity,but it displays the ability to oxidize element mercury at 120℃." @default.
- W2361423986 created "2016-06-24" @default.
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- W2361423986 date "2009-01-01" @default.
- W2361423986 modified "2023-09-23" @default.
- W2361423986 title "Experimental Study on Natural Mineral Sorbents to Remove Element Mercury in Flue Gas" @default.
- W2361423986 hasPublicationYear "2009" @default.
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