Literature DB >> 27031438

Removal and speciation of mercury compounds in flue gas from a waste incinerator.

In-Hee Hwang1, Hiroshi Minoya1, Takayuki Matsuo1, Toshihiko Matsuto1, Yasumasa Tojo1.   

Abstract

The management and control of mercury emissions from waste incinerators have become more significant, because waste incinerators are sinks to treat mercury-containing consumer products. This study investigated the effects of mercury concentrations and waste incineration temperatures on mercury speciation using a lab-scale experimental instrument. The removal characteristics of different mercury species were also investigated using an apparatus to simulate the fabric filter with a thin layer of additives such as Ca(OH)2 and NaHCO3, activated carbon (AC), and fly ash. HgCl2 generation rates peaked at 800°C for initial Hg(0) concentrations of 0.08-3.61 mg/Nm(3) in the presence of 400 ppm HCl. A linear relationship was established between the generation rate of HgCl2 and the logarithmic value of initial mercury concentration. Fly ash proved highly efficient in mercury removal, being equal or superior to AC. On the other hand, Ca(OH)2 and NaHCO3 were shown to have no effects on mercury removal. In the dry-scrubbing process, alkali agent is often sprayed in amounts beyond those stoichiometrically required to aid acidic gas removal. The research suggests, however, that this may hinder mercury removal from the flue gas of solid waste incinerators.

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Keywords:  Fabric filter; flue gas; fly ash; mercury; waste incinerator

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Year:  2016        PMID: 27031438     DOI: 10.1080/09593330.2016.1160958

Source DB:  PubMed          Journal:  Environ Technol        ISSN: 0959-3330            Impact factor:   3.247


  1 in total

1.  Converting Spent Cu/Fe Layered Double Hydroxide into Cr(VI) Reductant and Porous Carbon Material.

Authors:  Minwang Laipan; Haoyang Fu; Runliang Zhu; Luyi Sun; Jianxi Zhu; Hongping He
Journal:  Sci Rep       Date:  2017-08-04       Impact factor: 4.379

  1 in total

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