Influence of latitudinal zonality on some chemical properties of urban soils

In this study, the database of properties of urban soils was created to assess the influence of zonal features of natural factors of soils, situated in urban areas. The database contains more than 135 cities located in different natural zones all over the world from the Arctic tundra to equatorial t...

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Main Authors: Martynenko, Irina A., Maksimovich, Alexandra V., Meshalkina, Joulia L., Stoorvogel, Jetse J., Yaroslavtsev, Aleksey M.
Format: Article in Journal/Newspaper
Language:English
Published: Springer 2018
Subjects:
pH
Online Access:https://research.wur.nl/en/publications/influence-of-latitudinal-zonality-on-some-chemical-properties-of-
https://doi.org/10.1007/978-3-319-70557-6_6
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spelling ftunivwagenin:oai:library.wur.nl:wurpubs/540908 2024-02-04T09:58:35+01:00 Influence of latitudinal zonality on some chemical properties of urban soils Martynenko, Irina A. Maksimovich, Alexandra V. Meshalkina, Joulia L. Stoorvogel, Jetse J. Yaroslavtsev, Aleksey M. 2018 application/pdf https://research.wur.nl/en/publications/influence-of-latitudinal-zonality-on-some-chemical-properties-of- https://doi.org/10.1007/978-3-319-70557-6_6 en eng Springer https://edepot.wur.nl/459028 https://research.wur.nl/en/publications/influence-of-latitudinal-zonality-on-some-chemical-properties-of- doi:10.1007/978-3-319-70557-6_6 info:eu-repo/semantics/restrictedAccess Wageningen University & Research Megacities 2050: Environmental Consequences of Urbanization ISBN: 9783319705569 Data base Soil organic carbon Soil-ecological regions Transformation of soil cover pH info:eu-repo/semantics/conferenceObject Article in monograph or in proceedings info:eu-repo/semantics/publishedVersion 2018 ftunivwagenin https://doi.org/10.1007/978-3-319-70557-6_6 2024-01-10T23:17:06Z In this study, the database of properties of urban soils was created to assess the influence of zonal features of natural factors of soils, situated in urban areas. The database contains more than 135 cities located in different natural zones all over the world from the Arctic tundra to equatorial tropics. A comparison based on two features: soil organic carbon (SOC) and water-extracted pH. A number of statistical indicators such as average value, minimum and maximum values, standard deviation, variation, correlation coefficients were calculated for each zone and feature. The analysis of the results showed that the variation in carbon content values in urban soils is significantly higher in comparison with background soils. This fact can be explained by the influence of anthropogenic factor on the processes of organic matter reduction and accumulation in the soil. At the same time the average carbon content in urban soils in most cases is much higher than in natural soil and in general, there is a trend: the difference between SOC in urban and natural soils increases to the north and gradually decreases to the south. However, a comparative analysis of soil-bioclimatic zones neither in climatic nor in facial series there is no trend can be observed. This means that the characteristics of the SOC of urban soils are not zonal and the observed trend can be explained by the intensity of human impact. The comparison of the average values of pH in the urban and natural has not shown any statistically significant difference. However the comparison of maximum values of water-extracted pH for the groups showed a clear pattern in northern hemisphere: increasing of the alkalinity in the humid and semihumid areas from the one side, and acidification in the more southern arid and semi-arid areas from the other side, that may indicate the presence of zonal trend. Article in Journal/Newspaper Arctic Tundra Wageningen UR (University & Research Centre): Digital Library Arctic 41 50
institution Open Polar
collection Wageningen UR (University & Research Centre): Digital Library
op_collection_id ftunivwagenin
language English
topic Data base
Soil organic carbon
Soil-ecological regions
Transformation of soil cover
pH
spellingShingle Data base
Soil organic carbon
Soil-ecological regions
Transformation of soil cover
pH
Martynenko, Irina A.
Maksimovich, Alexandra V.
Meshalkina, Joulia L.
Stoorvogel, Jetse J.
Yaroslavtsev, Aleksey M.
Influence of latitudinal zonality on some chemical properties of urban soils
topic_facet Data base
Soil organic carbon
Soil-ecological regions
Transformation of soil cover
pH
description In this study, the database of properties of urban soils was created to assess the influence of zonal features of natural factors of soils, situated in urban areas. The database contains more than 135 cities located in different natural zones all over the world from the Arctic tundra to equatorial tropics. A comparison based on two features: soil organic carbon (SOC) and water-extracted pH. A number of statistical indicators such as average value, minimum and maximum values, standard deviation, variation, correlation coefficients were calculated for each zone and feature. The analysis of the results showed that the variation in carbon content values in urban soils is significantly higher in comparison with background soils. This fact can be explained by the influence of anthropogenic factor on the processes of organic matter reduction and accumulation in the soil. At the same time the average carbon content in urban soils in most cases is much higher than in natural soil and in general, there is a trend: the difference between SOC in urban and natural soils increases to the north and gradually decreases to the south. However, a comparative analysis of soil-bioclimatic zones neither in climatic nor in facial series there is no trend can be observed. This means that the characteristics of the SOC of urban soils are not zonal and the observed trend can be explained by the intensity of human impact. The comparison of the average values of pH in the urban and natural has not shown any statistically significant difference. However the comparison of maximum values of water-extracted pH for the groups showed a clear pattern in northern hemisphere: increasing of the alkalinity in the humid and semihumid areas from the one side, and acidification in the more southern arid and semi-arid areas from the other side, that may indicate the presence of zonal trend.
format Article in Journal/Newspaper
author Martynenko, Irina A.
Maksimovich, Alexandra V.
Meshalkina, Joulia L.
Stoorvogel, Jetse J.
Yaroslavtsev, Aleksey M.
author_facet Martynenko, Irina A.
Maksimovich, Alexandra V.
Meshalkina, Joulia L.
Stoorvogel, Jetse J.
Yaroslavtsev, Aleksey M.
author_sort Martynenko, Irina A.
title Influence of latitudinal zonality on some chemical properties of urban soils
title_short Influence of latitudinal zonality on some chemical properties of urban soils
title_full Influence of latitudinal zonality on some chemical properties of urban soils
title_fullStr Influence of latitudinal zonality on some chemical properties of urban soils
title_full_unstemmed Influence of latitudinal zonality on some chemical properties of urban soils
title_sort influence of latitudinal zonality on some chemical properties of urban soils
publisher Springer
publishDate 2018
url https://research.wur.nl/en/publications/influence-of-latitudinal-zonality-on-some-chemical-properties-of-
https://doi.org/10.1007/978-3-319-70557-6_6
geographic Arctic
geographic_facet Arctic
genre Arctic
Tundra
genre_facet Arctic
Tundra
op_source Megacities 2050: Environmental Consequences of Urbanization
ISBN: 9783319705569
op_relation https://edepot.wur.nl/459028
https://research.wur.nl/en/publications/influence-of-latitudinal-zonality-on-some-chemical-properties-of-
doi:10.1007/978-3-319-70557-6_6
op_rights info:eu-repo/semantics/restrictedAccess
Wageningen University & Research
op_doi https://doi.org/10.1007/978-3-319-70557-6_6
container_start_page 41
op_container_end_page 50
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