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Titlebook: Effect of Mineral-Organic-Microorganism Interactions on Soil and Freshwater Environments; J. Berthelin,P. M. Huang,F. Andreux Book 1999 Sp

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Laws of Nature: The Empiricist Challengepplication or foliar spray than FeSO4 in correcting iron deficiency in these soils characterized by alkaline pH and high CaCO3 content. Due to costs and irregular supply of the synthetic chelates in the market, crop production was affected. The addition of organic residues to these soils was found t
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Forgiveness and Transitional Experience organic matter (OM), iron and aluminium oxides, colloidal silica or calcium carbonate (Baver et al., 1972). The relative importance of these stabilizing agents depends on their nature and abundance in the soil. Although there is a general agreement on the fundamental role that OM, Fe and Al play in
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Jan-Paul Lüdtke,Michael Fretschner. 1) (Takemoto .., 1978; Takagi, 1993). In our previous paper (Inoue ., 1993), we studied interactions between MA and Fe oxides in relation to the chemistry of Fe nutrition of graminaceous plants grown in Fe-deficient soil conditions.
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https://doi.org/10.1007/978-3-322-83071-5he more abundant and the more various pollutants. Because they can display significant adsorption capacities and thus transport other (non organic) pollutants, they should be carefully analyzed. The oil industry has developed advanced organic geochemical techniques in order to improve knowledge of t
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https://doi.org/10.1007/978-1-4302-2788-5ion”. Flocculation of organic macromolecules is of importance in drinking water production, water recycling and waste water treatment. Metallic cations (alkaline-earth, Cu(II), etc.) act as flocculating ions for the organic matter in suspension in aqueous environments.
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https://doi.org/10.1007/978-1-4842-3243-9gin experiences decay and microbial reworking. During these processes, the labile compounds are quickly mineralized into inorganic nitrogen forms, directly available for the production of new biomass. The more stable compounds and metabolic products accumulate to form the refractory organic pool of
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https://doi.org/10.1007/978-3-642-13008-3ompounds. In Alpine podzolic systems considerable amounts of phenols are released from the acidophilic vegetation cover ., together with other primary and secondary metabolites present in leaves (Vaughan and Malcolm 1985). All year-round, and in particular during the period of senescence, these phen
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