Influence of Growing Miscanthus x giganteus on Ecosystem Services of Chernozem

Author:

Vodiak YanaORCID,Tsapko YuriiORCID,Kucher AnatoliiORCID,Krupin VitaliyORCID,Skorokhod Iryna

Abstract

The paper investigates the optimization of ecosystem services of podzolized heavy loamy chernozem (black soil) as a result of the cultivation of the perennial energy culture of Miscanthus x giganteus. The research was conducted on an experimental land plot during 2016–2021. No fertilization was applied to the soil during the experiments, and over the years of research, the growing seasons were accompanied by abnormal droughts, but even under such conditions, the plants of Miscanthus x giganteus gradually increased their yield. At the initial stage of research, in the third year of cultivation, dry biomass of Miscanthus x giganteus was obtained at 14.3 t/ha, in the fourth year–18.6 t/ha, and already in the fifth and sixth years, 21.7 and 24.5 t/ha, respectively. That is, energy-wise, the harvest for the last year was equivalent to 15.9 tons of coal or 12,618 m3 of natural gas. Cultivation of Miscanthus x giganteus on black soil for six years has improved the provision of its ecosystem services, regulation, and ecosystem maintenance services. The possibility of growing perennial energy crops on agricultural soils has been proven by obtaining a significant amount of biomass and a positive phytoremediation effect on the soil by reducing erosion, preserving biodiversity, sequestering carbon, and sustainably improving the ecological situation.

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference48 articles.

1. Electricity Market Report (July 2021). International Energy Agency https://www.iea.org/reports/electricity-market-report-july-2021

2. Impacts of COVID-19 on energy demand and consumption: Challenges, lessons and emerging opportunities

3. The relevance of economic complexity and economic globalization as determinants of energy demand for different stages of development

4. Major Trends in Population Growth Around the World

5. The Long View: How Will the Global Economic order Change by 2050? The World in 2050. PricewaterhouseCoopers https://www.pwc.com/gx/en/world-2050/assets/pwc-the-world-in-2050-full-report-feb-2017.pdf

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