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首页> 外文期刊>Journal of the air & waste management association >Adsorption of elemental mercury vapors from synthetic exhaust combustion gas onto HGR carbon
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Adsorption of elemental mercury vapors from synthetic exhaust combustion gas onto HGR carbon

机译:合成废气中的汞蒸气吸附到HGR碳上

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摘要

An activated carbon commercially available named HGR, produced by Calgon-Carbon Group, was used to adsorbe metallic mercury. The work is part of a wider research activity by the same group focused on the removal of metallic and divalent mercury from combustion flue gas. With respect to previously published papers, this one is aimed at studying in depth thermodynamic equilibria of metallic mercury adsorption onto a commercial activated carbon. The innoyativeness lies in the wider operative conditions explored (temperature and mercury concentrations) and in the evaluation of kinetic and thermodynamic data for a commercially available adsorbing material. In detail, experimental runs were carried out on a laboratory-scale plant, in which Hg° vapors were supplied in a nitrogen gas stream at different temperature and mercury concentration. The gas phase was flowed through a fixed bed of adsorbent material. Adsorbate loading curves for different Hg° concentrations together with adsorption isotherms were achieved as a function of temperature (120,150,200℃) and Hg° concentrations (1.0-7.0 mg/m~3). Experimental runs demonstrated satisfying results of the adsorption process, while Langmuir parameters were evaluated with gas-solid equilibrium data. Especially, they confirmed that adsorption capacity is a favored process in case of lower temperature and they showed that the adsorption heat was -20 kJ/mol. Furthermore, a numerical integration of differential equations that model the adsorption process was proposed. Scanning electron microscopy (SEM) investigation was an useful tool to investigate about fresh and saturated carbon areas. The comparison between them allowed identification of surface sites where mercury is adsorbed; these spots correspond to carbon areas where sulfur concentration is greater. Implications: Mercury compounds can cause severe harm to human health and to the ecosystem. There are a lot of sources that emit mercury species to the atmosphere; the main ones are exhaust gases from coal combustion and municipal solid waste incineration. Furthermore, certain CO_2 capture processes, particularly oxyfuel combustion in a pulverized fuel coal-fired power station, produce a raw CO_2 product containing several contaminants, mainly water vapor, oxygen, and nitrogen but also mercury, that have to be almost completely removed; otherwise these would represent a strong drawback to the success of the process.
机译:由Calgon-Carbon Group生产的可商购获得的名为HGR的活性炭用于吸附金属汞。该工作是该小组更广泛的研究活动的一部分,该研究小组致力于从燃烧烟气中去除金属和二价汞。关于先前发表的论文,该论文旨在深入研究金属汞吸附在商用活性炭上的热力学平衡。令人讨厌的地方在于所研究的更广泛的操作条件(温度和汞浓度)以及对市售吸附材料的动力学和热力学数据的评估。详细地说,实验是在实验室规模的工厂中进行的,其中在氮气流中以不同的温度和汞浓度供应Hg°蒸气。使气相流过吸附剂材料的固定床。根据温度(120,150,200℃)和汞浓度(1.0-7.0 mg / m〜3),得出了不同汞浓度和等温线的吸附量曲线。实验运行证明了令人满意的吸附过程结果,同时使用气固平衡数据评估了Langmuir参数。特别地,他们证实了在较低温度的情况下吸附能力是有利的过程,并且他们表明吸附热为-20kJ / mol。此外,提出了对吸附过程进行建模的微分方程的数值积分。扫描电子显微镜(SEM)研究是研究新鲜和饱和碳区域的有用工具。它们之间的比较可以确定吸附汞的表面位置;这些斑点对应于硫浓度较高的碳区域。含义:汞化合物可对人类健康和生态系统造成严重损害。有许多来源可以将汞排放到大气中。主要是燃煤和城市固体垃圾焚烧产生的废气。此外,某些CO_2捕集过程,特别是在煤粉火力发电站中的富氧燃烧,产生的CO_2原料产品含有几种污染物,主要是水蒸气,氧气和氮以及汞,这些污染物几乎必须全部清除掉;否则,这将代表该过程成功的一个重大缺点。

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    Department of Civil Engineering, Design, Building and Environment, Second University of Naples, Aversa (CE), Italy;

    Department of Civil Engineering, Design, Building and Environment, Second University of Naples, Aversa (CE), Italy;

    Department of Chemical Engineering, Materials and Industrial Production, University of Naples 'Federico Ⅱ,' Napoli, Italy;

    Department of Industrial and Information Engineering and of Economics, University of L'Aquila, L'Aquila, Italy;

    University of Teramo, Faculty of Bioscience and Agro-Food and Environmental Technology, Via R. Balzarini 1, 64100 Teramo, Italy;

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