Land Management Effects on Biogeochemical Functioning of Salt-Affected Paddy Soils1
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Cited by (17)
Hematite enhances the immobilization of copper, cadmium and phosphorus in soil amended with hydroxyapatite under flooded conditions
2020, Science of the Total EnvironmentCitation Excerpt :Soil pore water pH decreased with time in the first 14 days across all treatments due to the accumulation of CO2 produced by aerobic respiration and the generation of H2CO3 (Ponnamperuma, 1972). Several studies have reported that the solution pH of acidic or alkaline soils tend to be neutral under flooded conditions (Kögel-Knabner et al., 2010; Quantin et al., 2008). However, we found that soil pore water pH was maintained at low levels and even decreased except in the HA plus hematite treatments.
Changes in physico-chemical, microbial and enzymatic activities during restoration of degraded sodic land: Ecological suitability of mixed forest over monoculture plantation
2012, CatenaCitation Excerpt :Addition of organic matter makes significant changes in the once degraded sodic soil with respect to physico-chemical and biological properties (Singh et al., 2012; Wang et al., 2011). Excess amount of sodium salts often affect the physical and chemical properties of soils (Quantin et al., 2008; Singh et al., 2012), which in turn affect the microbial biomass and enzyme activities (Rietz and Haynes, 2003; Yuan et al., 2007). Soil enzymes and microflora regulate ecosystem functioning and play a key role in nutrient cycling (Singh et al., 2012).
Yield of rice under water and soil salinity risks in farmers' fields in northeast Thailand
2010, Field Crops ResearchBiogeochemistry of paddy soils
2010, Geoderma
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Project supported by the French Ministry of Research under the ACI-FNS “ECCO-PNBC” project “Evaluation du rôle des paramètres environnementaux et des activités bactériennes dans la dynamique du fer et du manganèse dans la rhizosphère des plantes: application aux sols de rizières” and by the French Embassy in Bangkok.