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AuthorHechmi, Sarra
AuthorHamdi, Helmi
AuthorMokni-Tlili, Sonia
AuthorGhorbel, Manel
AuthorKhelil, Mohamed Naceur
AuthorZoghlami, Inès Rahma
AuthorBenzarti, Saoussen
AuthorJellali, Salah
AuthorHassen, Abdennaceur
AuthorJedidi, Naceur
Available date2023-10-11T10:14:39Z
Publication Date2020-07-01
Publication NameJournal of Environmental Quality
Identifierhttp://dx.doi.org/10.1002/jeq2.20093
CitationHechmi, S, Hamdi, H, Mokni-Tlili, S, et al. Impact of urban sewage sludge on soil physico-chemical properties and phytotoxicity as influenced by soil texture and reuse conditions. J. Environ. Qual. 2020; 49: 973–986. https://doi.org/10.1002/jeq2.20093
ISSN00472425
URIhttps://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85086256553&origin=inward
URIhttp://hdl.handle.net/10576/48449
AbstractUrban sewage sludge (USS) is increasingly applied to agricultural soils, but mixed results have been reported because of variations in reuse conditions. Most field trials have been conducted in cropping systems, which conceal intrinsic soil responses to sludge amendments due to the rhizosphere effect and farming practices. Therefore, the current field study highlights long-term changes in bare soil properties in strict relationship with soil texture and USS dose. Two agricultural soils (loamy sand [LS] and sandy [S]) were amended annually with increasing sludge rates up to 120 t ha−1 yr−1 for 5 yr under unvegetated conditions. Outcomes showed a USS dose-dependent variation of all studied parameters in topsoil samples. Soil salinization was the most significant risk related to excessive USS doses. Total dissolved salts (TDS) in saturated paste extracts reached the highest concentrations of 37.2 and 43.1 g L−1 in S soil and LS soil, respectively, treated with 120 t USS ha−1 yr−1. This was also reflected by electrical conductivity of the saturated paste extract (ECe) exceeding 4,000 µS cm−1 in both treatments. As observed for TDS, fertility indicators and bioavailable metals varied with soil texture due to the greater retention capacity of LS soil owing to higher fine fraction content. Soil phytotoxicity was estimated by the seed germination index (GI) calculated for lettuce, alfalfa, oat, and durum wheat. The GI was species dependent, indicating different degrees of sensitivity or tolerance to increasing USS rates. Lettuce germination was significantly affected by changes in soil conditions showing negative correlations with ECe and soluble metals. In contrast, treatment with USS enhanced the GI of wheat, reflecting higher salinity tolerance and a positive effect of sludge on abiotic conditions that control germination in soil. Therefore, the choice of adapted plant species is the key factor for successful cropping trials in sludge-amended soils.
SponsorThis project was supported by a national grant from the Ministry of Higher Education and Scientific Research of Tunisia. The authors thank the Center of Material Science at Borj Cedria Technopark, Tunisia, for inductively coupled plasma analysis.
Languageen
PublisherWiley
Subjectsewage sludge
soil physico-chemical
phytotoxicity
soil texture
TitleImpact of urban sewage sludge on soil physico-chemical properties and phytotoxicity as influenced by soil texture and reuse conditions
TypeReport
Pagination973-986
Issue Number4
Volume Number49
ESSN1537-2537


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