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The number of larvae per plant was later reduced to 1. Plant treatments were in a two-way factorial design with competition (presence or absence of the grass Deschampsia caespitosa) and N or P fertilization (top-water application of control, N, P, or N + P fertilizer solutions) as the main treatments.
Fertilizer solutions were applied weekly to each container at 1 L solution per pot.
Motivated by their desire to find local, sustainable fertilizer solutions for African farmers and fueled by J-WAFS seed funding, Allanore, Ciceri, and other members of their research team have created a road map that materials scientists and others can use to develop a new generation of potash-independent fertilizers suitable for African soils.
Now, at a time when the United Nations projects that global population will rise by to 8.5 billion in 2030 — an overall increase of over 1.2 billion people — the need for local, sustainable fertilizer solutions to increase yields is even more urgent.
Interactions between medium type and inorganic fertilizer solutions show that total (shoot and root) DM were significantly reduced at the highest compost concentration (FSC) and the highest nitrogen (N) concentration in the inorganic fertilizer solutions (In-fert-1).
Sub-irrigation with the fertilizer solutions was carried out for 21 days after which the experiment was terminated.
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Plants were fertilized with complete fertilizer solution (20 20 20 NPK + micronutrients) at two weeks after planting and every two weeks thereafter at a rate of 3 g l-1 and 22 ml per pot.
The plants were regularly watered with tap water and fertilized weekly with 10 ml fertilizer solution (10 g Flory Basisdünger, Euflor, München, Germany and 2.2 g NH4NO3 in 1 l tap water).
Fertilize with a half-strength liquid fertilizer solution, prepared using package directions.
The fertilizer solution concentration had no significant effect on water distribution.
The mass of the applied fertilizer for the drip tapes close to the inlet increased with increasing fertilizer solution concentration from C1 to C4, which indicated that higher fertilizer solution concentration can result in lower fertilizer distribution uniformity.
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