AI Article Synopsis

  • The article investigates how jet-fuel contamination affects topsoil properties, focusing on Dystric Arenosols, Fibric Histosols, and Albic Luvisols.
  • It details a study conducted over one year with varying kerosene loads (1 to 100 g/kg) and examines changes in both physicochemical and biological soil properties.
  • Additionally, it includes sequencing data on 16S ribosomal RNA to analyze microbial community responses in the contaminated soils.

Article Abstract

The soil response to a jet-fuel contamination is uncertain. In this article, original data on the influence of a jet-fuel spillage on the topsoil properties are presented. The data set is obtained during a one-year long pot and field experiments with Dystric Arenosols, Fibric Histosols and Albic Luvisols. Kerosene loads were 1, 5, 10, 25 and 100 g/kg. The data set includes information about temporal changes in kerosene concentration; physicochemical properties, such as рН, moisture, cation exchange capacity, content of soil organic matter, available P and K, exchangeable NH , and water-soluble NO ; and biological properties, such as biological consumption of oxygen, and cellulolytic activity. Also, we provide sequencing data on variable regions of 16S ribosomal RNA of microbial communities from the respective soil samples.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9826931PMC
http://dx.doi.org/10.1016/j.dib.2022.108860DOI Listing

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