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  4. Development of low-concentration mercury adsorbents from biohydrogen-generation agricultural residues using sulfur impregnation
 
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Development of low-concentration mercury adsorbents from biohydrogen-generation agricultural residues using sulfur impregnation

Journal
Bioresource Technology
Journal Volume
102
Journal Issue
16
Pages
7470-7477
Date Issued
2011
Author(s)
Hsi, H.-C.
Tsai, C.-Y.
Kuo, T.-H.
Chiang, C.-S.
HSING-CHENG HSI  
DOI
10.1016/j.biortech.2011.05.036
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/462897
URL
https://www.scopus.com/inward/record.uri?eid=2-s2.0-79959615381&doi=10.1016%2fj.biortech.2011.05.036&partnerID=40&md5=a1d867c36e7dc2ad4cd7166d96dde4d9
Abstract
Mercury adsorbents were derived from waste biohydrogen-generation barley husk and rice husk via carbonization, steam activation, and sulfur impregnation at 300-650°C. The samples derived from agricultural residues showed a greater Hg(0) adsorption than that of a coal-based activated carbon, confirming the feasibility of resource recovery of these agricultural residuals for low-concentration gaseous Hg adsorption. Sulfur impregnation reduced both the surface area and pore volume of the samples, with lower temperature causing a greater decrease. Elevating the impregnation temperature increased the organic sulfur contents, suggesting that in addition to elemental sulfur, organic sulfur may also act as active sites to improve Hg(0) adsorption. Oxygen and sulfur functional groups accompanying the microporous structures may account for the enhancing Hg(0) adsorption of the raw and sulfur-treated samples, respectively. The pseudo-second-order model can best describe the chemisorption characteristics, implying that Hg(0) adsorption on the samples was in a bimolecular reaction form.
Type
journal article

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