CO2 Is Causing ‘Supercharged’ African Savannah Greening

Greening is being supercharged in the African savannah, new research published in Nature has found, with higher CO2 levels driving a 28 percent increase in plant growth over the last 32 years
More evidence of global greening from carbon dioxide fertilisation has been published in the prestigious publication Nature.
The research involved 70 experiments and three decades of field data from many locations in the savannah of South Africa’s Kruger National Park.
The international scientific team was led by Dr Kimberley Simpson of the University of Sheffield, and the paper was titled ‘Increasing CO2 levels fertilise C4 grass production‘.
Phys.org reported the study as follows: ‘Rising carbon dioxide is supercharging grass growth in African savannas, study finds.’ The latest study challenges the previously held view that the dominant grasses in the savannah (known as ‘C4’) benefit little from rising levels of carbon dioxide.
African savannah covers approximately half of the great continent and sustains a vast habitat for wildlife across tropical and sub-tropical regions. Globally, savannah grassland covers about 20 percent of Earth’s land surface, and contributes nearly one-third of plant productivity.
C4 grasses form a major part of these ecosystems in hot climates; they utilise a more complex form of photosynthesis which allows them to thrive in conditions where hotter and sunnier conditions prevail.
These grasses are able to retain water and capture carbon dioxide more efficiently than other types of plants. C4 grasses include both wild grasses and important crops such as maize and sugarcane.
Given higher levels of carbon dioxide, the C4 plants have been found to increase their growth by capturing more of the gas while limiting water loss through leaf stomata. In the Kruger National Park, it was found that there was a 28 percent increase in plant growth from 1989 to 2021.
After discounting other factors, such as changes to rainfall, temperature and nitrogen, the report concluded that increased carbon dioxide was the main factor in the extra plant growth. It was also noted that there was an increase in the number of herbivores in the park over the period, thus benefitting the wider ecosystem.
As with other recent findings, this study shows that there are some benefits to higher levels of atmospheric carbon dioxide. You would think that evidence of growth of grassland in drier parts of the world would be welcome news for environmentalists.
But of course, the study put a dampener on the positive benefits and discussed a few possible downsides: it noted the risk of increased fuel for wildfires, possible changes to the distribution of foraging animals and that extra grass production may not feed into long-term ‘carbon’ storage.
Simpson commented that:
“More grass does not automatically mean more carbon will be stored. The wider impact depends on where the extra grass ends up. If it is eaten by animals or burned in fires, much of the carbon is quickly released back into the atmosphere.”
And:
“Because savannahs cover such large areas, even modest changes could have major consequences for wildlife, livestock, fire and the global carbon cycle.”
Other recent studies have noted the benefit to plant growth from higher carbon dioxide levels; see: ‘Global Greening Hits New Record as Climate Emergency Fails to Materialise‘, and ‘Vegetation greenness in 2025‘.
Evidence of global greening has been known for many years and reported in an IPCC Special Report on Climate Change and Land (A2.3) in 2019. A paper in Nature Climate Change in 2016 discussed the drivers for global greening, estimating from computer modelling that 70 percent of the change to plant growth was caused by higher levels of carbon dioxide, with an increase of between 25 and 50 percent in global vegetation coverage.
As well as evidence of increased plant growth and wildlife in parts of Africa, the benefits of carbon dioxide fertilisation include higher crop yields to feed a growing world population, now above eight billion people.
Policy makers committed to achieving ‘net zero’ in the UK need to take into account the benefit of higher levels of carbon dioxide for the ecosystem and global food provision. The ‘net zero’ policy is looking increasingly archaic in light of the direction of scientific research and global developments.
Instead of the very costly and futile subsidies, I would suggest that resources need to be directed towards the development of mitigation strategies to protect against natural disasters such as wildfires and flooding.
See more here dailysceptic.org
About the author: Andrew Sibley is a semi-retired chartered meteorologist with an MSc in Environmental Decision-Making and an MPhil in Theology.
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