Regularities in mercury cation sorption by a lignin-based sulfur-containing sorbent

被引:0
|
作者
Aslamova, Vera S. [1 ]
Golovkova, Elena A. [2 ]
Shneygelberger, Evgenia A. [3 ]
Aslamov, Alexander A. [2 ]
机构
[1] Irkutsk State Transport Univ, 15 Chernyshevsky St, Irkutsk 664074, Russia
[2] Angarsk State Tech Univ, 60 Tchaikovsky St, Angarsk 665035, Russia
[3] LLC Siberian Stand Ecol, 115 Krasnokazachya St, Irkutsk 664005, Russia
关键词
sorption; lignin sulfur sorbent; mercury; regression model; REGRESSION-MODELS; IONS; ADSORPTION;
D O I
10.21285/achb.923
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The unfavorable environmental situation in the town of Usolye-Sibirskoye (Irkutsk Oblast, Russia) determines the relevance of investigating and applying a new lignin-based sulfur-containing sorbent for purification of groundwater from mercury compounds. The sorbent was synthesized on the basis of waste products of epichlorohydrin (1,2,3-trichloropropane), sulfur, and lignin. The IR spectrum of the sorbent under study showed the presence of an S-S bond in the region of 445-465 cm(-1) . Intensive absorption of Hg(2+ )ions in the regions of 2800-2950 cm(-1) (valence vibrations of C-H bonds in CH and CH2 groups) and 1460 cm(-1) (deformation vibrations in CH2 group) was observed. Absorption of Hg2+ ions by lignin fragments was accompanied by a change in the vibration band of S-S bonds, which splits into two bands of higher frequencies than the nu S-S band in the original sorbent. The optimum sulfur content, which ensures the maximum sorption activity of the sorbent, was found to be 53.25%. The mercury sorption isotherms at 20 and 60 degrees C are described by parabolic dependencies with determination coefficients of 98.9 and 98.6%, respectively. The kinetic curve at 20 degrees C and 40 degrees C is approximated by a hyperbola and a cubic polynomial with determination coefficients of 97.9 and 96.2%, respectively. The reaction order (first order at 20 degrees C and second order at 40 degrees C) and the reaction rate constant (0.0876 min(-1) at 20 degrees C and 0.00014 min(-1) at 40 degrees C) were determined. At 20 degrees C, the sorption rate of Hg2+ was established to be significantly higher and the sorption time to be faster than those at 40 degrees C. Therefore, mercury sorption by the proposed sorbent should be carried out at 20 degrees C in order to reduce energy consumption.
引用
收藏
页码:275 / 284
页数:10
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