Urban Soils and Road Dust—Civilization Effects and Metal Pollution—A Review

Городские почвы и дорожная пыль — воздействие цивилизации и загрязнение металлами — обзор
Manfred Sager
2020-11-04

metal pollutionplatinum group metalsroad dustsequential leachingurban soils
Urban soils have been changed much by human impacts in terms of structure, composition and use. This review paper gives a general introduction into changes from compaction, mixing, water retention, nutrient inputs, sealing, gardening, and pollution. Because pollutions in particular have caused concerns in the past, metal pollutions and platinum group metal inputs have been treated in more detail. Though it is not possible to cover the entire literature done on this field, it has been tried to give examples from all continents, regarding geochemical background levels. Urban metal soil pollution depends on the age of the settlement, current emissions from traffic and industry, and washout. It seems that in regions of high precipitation, pollutants are swept away to the watershed, leaving the soils less polluted than in Europe. Health hazards, however, are caused by ingestion and inhalation, which are higher in 3rd world countries, and not by concentrations met in urban soils as such; these are not treated within this paper in detail. With respect to pollutants, this paper is focused on metals. Contrary to many reviews of the past, which mix all data into one column, like sampling depth, sieved grain sizes, digestion and determination methods, these have been considered, because this might lead to considerable interpretation changes. Because many datasets are not Gaussian distributed, medians and concentration ranges are given, wherever possible. Urban dust contains about two to three fold the hazardous metal concentrations met in urban soils. Some data about metal mobilities obtained from selective and sequential leaching procedures, are also added. Soil compaction, pollution, sealings and run-offs cause stress situations for green plants growing at roadside locations, which is discussed in the Section 5. Environmental protection measures have led to decrease metal pollutions within the last decade in many places.
1
Comparisons of urban-metal datasets require considering sampling depth, particle-size fraction, digestion, determination methods, and non-Gaussian distributions; medians and ranges are often more appropriate than means.
2
Human activities substantially alter urban soils through compaction, mixing, sealing, changed water retention, nutrient inputs, gardening, and pollution.
3
Roadside plants experience stress from soil compaction, metal pollution, sealing, and runoff, while environmental protection measures have reduced metal pollution in many locations during the last decade.
4
Urban dust contains approximately two to three times higher hazardous-metal concentrations than urban soils.
5
Urban metal pollution varies with settlement age, current traffic and industrial emissions, and pollutant washout; high-precipitation regions may retain less soil pollution than Europe.

Urban soils and road dust

Civilization-induced changes and metal pollution, including platinum group metal inputs, geochemical variability, mobility, and associated environmental stress

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2020-11-04
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Manfred Sager
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