4.7 Article

Different effects of surface heterogeneous atoms of porous and non-porous carbonaceous materials on adsorption of 1,1,2,2-tetrachloroethane in aqueous environment

期刊

CHEMOSPHERE
卷 175, 期 -, 页码 323-331

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2017.02.067

关键词

Activated carbons; Non-porous carbonaceous materials; 1,1,2,2-Tetrachloroethane; Surface heterogeneous atoms; Micropore; Adsorption

资金

  1. National Natural Science Foundation of China [21607025]
  2. National Natural Science Foundation of Fujian Province, China [2016J05094]
  3. Basic Scientific Research Special Project for Research Institutes of Fujian Province [2016R1032-4]
  4. Program for Innovative Research Team in Fujian Normal University, China [IRTL1205]

向作者/读者索取更多资源

The surface heterogeneous atoms of carbonaceous materials (CMs) play an important role in adsorption of organic pollutants. However, little is known about the surface heterogeneous atoms of CMs might generate different effect on adsorption of hydrophobic organic compounds by porous carbonaceous materials activated carbons (ACs) and non-porous carbonaceous materials (NPCMs). In this study, we observed that the surface oxygen and nitrogen atoms could decrease the adsorption affinity of both ACs and NPCMs for 1,1,2,2-tetrachloroethane (TeCA), but the degree of decreasing effects were very different. The increasing content of surface oxygen and nitrogen ([O + N]) caused a sharper decrease in adsorption affinity of ACs (slope of Ig (k(d)/SA) vs [O + N]:-0.098 similar to-0.16) than that of NPCMs (slope of Ig (k(d)/SA) vs [O + N]:-0.025 similar to-0.059) for TeCA. It was due to the water cluster formed by the surface hydrophilic atoms that could block the micropores and generate massive invalid adsorption sites in the micropores of ACs, while the water cluster only occupied the surface adsorption sites of NPCMs. Furthermore, with the increasing concentration of dissolved TeCA, the effect of surface area on adsorption affinity of NPCMs for TeCA kept constant while the effect of [O + N] decreased due to the competitive adsorption between water molecule and TeCA on the surface of NPCMs, meanwhile, both the effects of micropore volume and [O + N] on adsorption affinity of ACs for TeCA were decreased due to the mechanism of micropore volume filling. These findings are valuable for providing a deep insight into the adsorption mechanisms of CMs for TeCA. (C) 2017 Elsevier Ltd. All rights reserved.

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