4.6 Article

Phenanthrene Sorption on Biochar-Amended Soils: Application Rate, Aging, and Physicochemical Properties of Soil

Journal

WATER AIR AND SOIL POLLUTION
Volume 225, Issue 9, Pages -

Publisher

SPRINGER INTERNATIONAL PUBLISHING AG
DOI: 10.1007/s11270-014-2105-8

Keywords

Phenanthrene; Biochar; Sorption; Organic carbon

Funding

  1. international project Soil Infrastructure, Interfaces and Translocation Processes in Inner Space (Soil-it-is) - Danish Research Council for Technology and Production Sciences
  2. North Sea Region Program IVB through the Biochar: climate saving soils project

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Biochar, a by-product resulting from the pyrolysis of biomass, is considered to be an anthropogenic carbonaceous sorbent. Despite a worldwide increase in the application of biochar on agricultural fields to improve crop productivity over the past few decades, there have been few studies on their influences on the sorption of environmental contaminants. In a field-based study at two experimental sites in Denmark, we investigated the effect of birch wood-derived biochar (Skogans kol) on the sorption of phenanthrene in soils with different properties. The soil sorption coefficient, K-d (L kg(-1)), of phenanthrene was measured on sandy loam and loamy sand soils which have received from zero up to 100 t ha(-1) of biochar. Results show that birch wood biochar had a higher K-d compared to soils. Furthermore, the application of birch wood biochar enhanced the sorption of phenanthrene in agricultural soils, and the enhancement effect increased with an increasing biochar application rate. Aging, repeated application, and higher clay content suppressed the biochar enhancement effect on the sorption of phenanthrene. Phenanthrene K-d was found to be strongly and positively correlated with both total and non-complexed organic carbon, while negatively correlated with clay content. The results also revealed that biochar-mineral interactions play an important role in the sorption of phenanthrene in biochar-amended soil.

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