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Chemical and Biological Properties of Agricultural Soils Located along Communication Routes

Author

Listed:
  • Elżbieta Zawierucha

    (Department of Nursing, Midwifery and Emergency Medicine, Jan Kochanowski University in Kielce, IX Wieków Kielc 19A, 25-317 Kielce, Poland)

  • Monika Skowrońska

    (Department of Agricultural and Environmental Chemistry, University of Life Sciences, Akademicka 15, 20-950 Lublin, Poland)

  • Marcin Zawierucha

    (Department of Agriculture and Rural Development, The Marshal Office of the Świętokrzyskie Voivodeship, Al. IX Wieków Kielc 3, 25-516 Kielce, Poland)

Abstract

The aim of the study was to assess the quality of agricultural soils, which accumulate additional amounts of heavy metals from fertilization and modify their bioavailability, with the use of interdependencies between their biological and chemical properties conditioned by the distance from communication routes. Our results indicated that heavy metals had an impact on enzyme activity in soils and their accumulation was significantly related to the distance from the edge of the road, location of sampling sites, date of soil sampling, and years of research. It was found that the greatest amounts of zinc, cadmium, lead, and copper were accumulated at a distance of 5–20 m from the edge of the road. The highest enrichment factor and geoaccumulation index values were recorded for Pb, followed by Zn, Cu, and Cd. Principal component analysis and regression models showed that the activities of phosphatase and dehydrogenases seem to be the best bioindicators of contamination of roadside soils used for agricultural purposes. Since their activity is related to soil’s organic carbon content, inputs of organic fertilizers and crop residues should be ensured in the agroecosystems along roadsides.

Suggested Citation

  • Elżbieta Zawierucha & Monika Skowrońska & Marcin Zawierucha, 2022. "Chemical and Biological Properties of Agricultural Soils Located along Communication Routes," Agriculture, MDPI, vol. 12(12), pages 1-11, November.
  • Handle: RePEc:gam:jagris:v:12:y:2022:i:12:p:1990-:d:982444
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    References listed on IDEAS

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    1. Nattanan Krailertrattanachai & Daojarus Ketrot & Worachart Wisawapipat, 2019. "The Distribution of Trace Metals in Roadside Agricultural Soils, Thailand," IJERPH, MDPI, vol. 16(5), pages 1-12, February.
    2. Hyun-Min Hwang & Matthew J. Fiala & Dongjoo Park & Terry L. Wade, 2016. "Review of pollutants in urban road dust and stormwater runoff: part 1. Heavy metals released from vehicles," International Journal of Urban Sciences, Taylor & Francis Journals, vol. 20(3), pages 334-360, September.
    3. Uchenna Okereafor & Mamookho Makhatha & Lukhanyo Mekuto & Nkemdinma Uche-Okereafor & Tendani Sebola & Vuyo Mavumengwana, 2020. "Toxic Metal Implications on Agricultural Soils, Plants, Animals, Aquatic life and Human Health," IJERPH, MDPI, vol. 17(7), pages 1-24, March.
    4. Shuangmei Tong & Hairong Li & Li Wang & Muyesaier Tudi & Linsheng Yang, 2020. "Concentration, Spatial Distribution, Contamination Degree and Human Health Risk Assessment of Heavy Metals in Urban Soils across China between 2003 and 2019—A Systematic Review," IJERPH, MDPI, vol. 17(9), pages 1-22, April.
    5. Meie Wang & Haizhen Zhang, 2018. "Accumulation of Heavy Metals in Roadside Soil in Urban Area and the Related Impacting Factors," IJERPH, MDPI, vol. 15(6), pages 1-11, May.
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