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Effect of Transition Elements on Biochemical Oxygen Demand
of transition elements (iron, manganese) and sulfide ions on the values of chemical (COD) and biochemical oxygen

Labile organic matter intensifies phosphorous mobilization in paddy soils by microbial iron (III) reduction investigated the role of acetate, formate, oxalate, and propionate on Fe(III) reduction, P mobilization, and CO

Labile organic matter intensifies phosphorous mobilization in paddy soils by microbial iron (III) reduction(III) reduction, P mobilization, and CO2 efflux in two paddy soils (i.e. oxisol and ultisol) of varying organic C

The effect of transition metal substitution in the perovskite-type oxides on the physicochemical properties and the catalytic performance in diesel soot oxidation in the reduction temperature. Using the TPD-O2 and STA methods, the lattice oxygen mobility is increasing

THE EVOLUTION OF PEDAGOGICAL MOBILITY AND INNOVATION MOBILE LINGUODIDACTICS (IN THE INFORMATION-EDUCATIONAL ENVIRONMENT OF LEARNING RUSSIAN AS A FOREIGN LANGUAGE)This article is about such concepts as mobility, pedagogical mobility, professional mobility

Concentration dependences of self-diffusion coefficients of water molecules in dilute solutions of saccharides molecules with hydroxyls and oxygen atoms of saccharide molecules; H-bond lifetime τg is three times longer

Absorption and photoreceptor properties of dissolved oxygen molecules under natural conditions. Review of currently available resultsAbsorption and photoreceptor properties of dissolved oxygen molecules under natural conditions

Effect of Oxygen Nonstoichiometry on Electrical Conductivity and Thermopower of Gd0.2Sr0.8FeO3 Ferrite Samples to the temperatures of active removal of oxygen from the sample. As the temperature increases, the semiconductor

Transparent Conducting Amorphous IZO Thin Films: An Approach to Improve the Transparent Electrode QualityIt is common knowledge that using different oxygen contents in the working gas during sputtering

Mechanical respiratory support for COVID-19: lessons from 2020 of acute adaptation mechanisms: increasing heart productivity and oxygen utilization. A step

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