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Journal ArticleDOI

Nitrogen Mineralization Potentials of Soils

George Stanford, +1 more
- 01 May 1972 - 
- Vol. 36, Iss: 3, pp 465-472
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TLDR
In this paper, a 30-week period at 35C, using incubation intervals of 2, 2, 4, 6, 8, and 8 weeks, was used to determine the net mineralization of 39 widely differing soils.
Abstract
Net mineralization of N in 39 widely differing soils was determined over a 30-week period at 35C, using incubation intervals of 2, 2, 4, 4, 4, 6, and 8 weeks. Mineral N was leached from the soils before the first incubation and following each of seven incubations by means of 0.01M CaCl₂ and a minus-N nutrient solution. Soil water contents were adjusted by applying suction (60 cm Hg), and losses of water during incubation under aerobic conditions were negligible. With most soils, cumulative net N mineralized was linearly related to the square root of time, t½. The pH of soils changed very little in the course of 30 weeks' incubation. Because of the generally consistent results, the data were employed in calculating the N mineralization potential, Nₒ, of each soil, based on the hypothesis that rate of N mineralization was proportional to the quantity of N comprising the mineralizable substrate. Values of Nₒ ranged from about 20 to over 300 ppm of air-dry soil. The fraction of total N comprising Nₒ varied widely (5 to 40%) among soils. Mineralization rate constants did not differ significantly among most of the soils. The most reliable estimate of the rate constant, k was .054 ± .009 week⁻¹. The time required to mineralize one-half of Nₒ, t½, was estimated to be 12.8 ± 2.2 weeks. Results suggest that the forms of organic N contributing to Nₒ were similar for most of the soils.

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Journal ArticleDOI

Biodiesel co-product (BCP) decreases soil nitrogen (N) losses to groundwater.

TL;DR: Results indicate that field-scale incorporation of BCP may be an effective method to reduce nitrogen loss from agricultural soils, prevent nitrate pollution of groundwater and augment the soil microbial biomass.
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Soil N Dynamics Related to Soil C and Microbial Changes During Long-Term Incubation

TL;DR: In this article, two former grassland soils, where wheat or corn are currently growing, were studied by kinetic analysis of microbial biomass C and N changes, C and n, in order to interpret ecosystem functioning and improve biogeochemical models.
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Einfluß langjähriger Düngung mit verschiedenen N-Formen auf pH-Wert, Humusfraktionen, biologische Aktivität und Stickstoffdynamik einer Acker-Braunerde

TL;DR: Acker-Braunerde et al. as discussed by the authors investigated the influence of long-term fertilizing with different forms of nitrogen fertilizer on pH, humic fractions, biological activity and dynamics of nitrogen of an arable brown earth.
Journal ArticleDOI

A single measurement to predict potential mineralizable nitrogen

TL;DR: In this article, the potential mineralization potential of soil nitrate nitrogen (NO3-N) has been used as a basis for N fertilizer recommendations in western Canada using laboratory incubation and chemical extraction methods.

Soil potassium dynamics under intensive rice cropping. A case study in the Mekong Delta, Vietnam

M.H. Nguyen
TL;DR: In this article, the authors investigated the effect of water management, K fertilizer application on soil K pools and K uptake, and examined the rate of changes of various K pools in soil by rice, grown under controlled conditions.