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Study of the Effect of Adsorption Temperature on Elemental Mercury Removal Performance of Iron-Based Modified Biochar

机译:吸附温度对铁基改性生物炭除汞性能影响的研究

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摘要

An iron-based modified biochar was prepared by the coprecipitation method, including single iron-based modified biochar with FeCl3 and iron-based biochar doped with Cu and Mn from CuSO4 and KMnO4. Combined with the physicochemical properties of sorbents, the effect of flue gas temperature on the mercury adsorption performance of the sorbents was explored within the temperature range of 50-350 degrees C. The adsorption mechanism was further explored by adsorption kinetics, thermodynamics, and temperature-programmed desorption (TPD) analyses. The results showed that the mercury adsorption capacity of unmodified biochar decreased monotonously with temperature, but the adsorption capacities of Fe/BC, FeCu/BC, and FeMn/BC all enhanced first and then weakened, with 200 degrees C being the optimum adsorption temperature. FeCu/BC had the strongest adsorption capacity, while Fe/BC had the worst one. C=O and COOH, metal oxides and ions, lattice oxygen, chemisorbed oxygen, and Cl ions were all active sites for oxidative adsorption of Hg-0, among which Fe2O3 and CuO or CuFe2O4 exerted a synergistic effect. Excessive temperature caused destruction to the porous structure and deactivation of the active centers, leading to the reduction of physisorption and chemisorption. Mercury adsorption on sorbents needs more activated energy due to the enhancement of chemisorption, and the moderate increase of temperature contributed to the adsorption properties of the sorbents. The Hg-0 adsorption on modified biochar was spontaneous and endothermic, and the complexity degree of the adsorption process was promoted. TPD results showed that at 200 degrees C the removal of Hg-0 by modified biochar was mainly strong chemisorption and that HgO was mainly formed.
机译:通过共沉淀法制备了铁基改性生物炭,包括单一的FeCl3铁基改性生物炭和来自CuSO4和KMnO4的铜和锰掺杂的铁基生物炭。结合吸附剂的理化性质,研究了烟气温度对50-350℃温度范围内吸附剂的汞吸附性能的影响。通过吸附动力学,热力学和温度-温度进一步研究了吸附机理。程序解吸(TPD)分析。结果表明,未改性生物炭的汞吸附能力随温度单调下降,但Fe / BC,FeCu / BC和FeMn / BC的吸附能力先升高后减弱,最佳吸附温度为200℃。 FeCu / BC具有最强的吸附能力,而Fe / BC具有最差的吸附能力。 C = O和COOH,金属氧化物和离子,晶格氧,化学吸附的氧和Cl离子都是Hg-0氧化吸附的活性位,其中Fe2O3和CuO或CuFe2O4发挥协同作用。温度过高会导致多孔结构破坏和活性中心失活,从而导致物理吸附和化学吸附降低。由于化学吸附作用的增强,汞在吸附剂上的吸附需要更多的活化能,而温度的适度升高有助于吸附剂的吸附性能。 Hg-0在改性生物炭上的吸附是自发的和吸热的,提高了吸附过程的复杂程度。 TPD结果表明,在200摄氏度下,改性生物炭对Hg-0的去除主要是强化学吸附作用,并且主要形成HgO。

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  • 来源
    《Energy & fuels》 |2019年第11期|11408-11419|共12页
  • 作者单位

    Taiyuan Univ Technol Coll Elect & Power Engn Taiyuan 030024 Shanxi Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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