PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 15, 2026Adaptive Fodder Production0 citations

Agroenergy assessment of long-term multi-seasoned cereals agroecosystems

View Full Paper
NZN V Zhezmer

Key Points

  • This research aims to assess the energy flows in long-term multi-season cereal agroecosystems and their efficiency.
  • Conducted a field experiment over 28 years with three-cut and seasonal application of fertilizers N180P40K155.
  • Measured dry matter yield and gross energy production in cereal agroecosystems.
  • Analyzed the impact of mowing technology on energy production and soil fertility.
  • Achieved an average dry matter yield of 7.6–9.4 t/ha over 28 years.
  • Total gross energy production ranged from 4.5–5.4 TJ/ha.
  • Renewable natural factors contributed to 86–88% of gross energy production, indicating a high return on costs.

Abstract

This article presents data and discusses the agroenergetic assessment of energy flows in long-term cereal agroecosystems. With three-cut application and seasonal application of N180P40K155, a high dry matter yield (7.6–9.4 t/ha) was obtained on average over 28 years of promising, variable-ripening grass stands. Using a new method for energy assessment of meadow ecosystems, it was established that the total gross energy production over the years of the field experiment amounted to 4.5–5.4 TJ/ha. Most of the gross energy (89–91%) was produced by the aboveground mass of plants. The sod formation process increased the fertility of the meadow soil: its energy capacity in the 28th year of use increased by 80–121 GJ/ha due to the accumulation of humus and total nitrogen. Intensifying the mowing technology enhances the impact of renewable natural factors, which account for 86–88% of the total gross energy production of agroecosystems. This explains the high return (7–8 times) on anthropogenic costs of creating and managing grass stands: 23–24 GJ/ha. The multiple-cut technology used on grass stands with rhizomatous cereal grasses is resource-efficient. It also addresses the issue of preserving and restoring the energy potential of meadow agroecosystems.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

N V Zhezmer (2026) studied this question.

synapsesocial.com/papers/69b606af83145bc643d1cd38https://doi.org/10.33814/afp-2222-5366-2026-1-38-48
Ask AI
Helpful
Bookmark
Share
View Full Paper