4.2 Article

Comparative characterization of two natural humic acids in the Pearl River Basin, China and their environmental implications

期刊

JOURNAL OF ENVIRONMENTAL SCIENCES
卷 22, 期 11, 页码 1695-1702

出版社

SCIENCE PRESS
DOI: 10.1016/S1001-0742(09)60308-9

关键词

humic acid; permanent metal load; adsorption; goethite; pyrolusite

资金

  1. United Foundation of National Natural Science Foundation of China
  2. Guangdong Provincial Government [U0633001]
  3. National Natural Science Foundation of China [40930743]
  4. Research Site Leipzig of the Forschungzentrum Dresden Rossendorf, Germany
  5. Deutscher Akademischer Austausch Dienst, Germany

向作者/读者索取更多资源

Two humic acids (HAs) were isolated from contaminated river sediments present under comparative conditions in the Pearl River Basin, China. YFHA (the HA extracted at an open pyrite mining area in Yunfu) exhibited a lower absorption intensity for certain bands in the Fourier transform infrared spectra, a lower E-4/E-6 value (the UV absorbances at 465 nm (E-4) and 665 nm (E-6)), a lower apparent molecular weight, a lower polarity and a lower oxygen functionality in comparison with GZHA (the HA isolated at an urban living area in Guangzhou). All these differences indicated a higher degree of humification of YFHA than GZHA. Overall, the enrichment patterns of permanent heavy metals in the studied HAs were similar to those in corresponding sediments. In particular, YFHA exhibited high enrichment of trace element Tl, a characteristic concomitant from the mining of the pyrite minerals. The adsorption isotherms of two HAs for goethite and pyrolusite, two representative geological materials, conformed to the Langmuir equation. Based on the qualitative relationships between the Langmuir constants of the adsorption isotherms and the chemical characteristics of HAs, the main mechanism of HA adsorption on these materials was suggested to be hydrophobic interaction. This study highlighted the promising use of HA as a peculiar bio-indicator of uncommon trace metal contaminations. The HA adsorption mechanism on representative geological materials further provided a theoretical basis for the study on the unusual metal behavior in complex environmental settings.

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