Your Lawn...and its Global Warming Potential
Posted by Tony Koski, Extension turf specialist
Posted by Tony Koski, Extension turf specialist
There’s nothing like a -15 F night to get a person thinking about global warming, right? Well, that, and the fact that it’s my turn to write for our blog … and there’s not much else exciting to write about in the turf world in early January. I recently read on one of our favorite blogs, the Garden Professors, about a cool experiment that one of the Garden Professors (Jeff Gillman) conducted to demonstrate the potential effect of increasing CO2 levels on plant growth – in which he used perennial ryegrass, a commonly used turf species. When grown in a high CO2 atmosphere, the ryegrass grew measurably faster than under ambient conditions. Fun, interesting, and not unexpected. Also not unexpected were some reader comments suggesting that growing and mowing the faster-growing turf might lead to increased levels of atmospheric CO2 - and possibly contribute to global warming.
You can find hundreds of anti-turf rants on the internet (no proof...but who needs that?) which state that, of course, bluegrass lawns and their maintenance MUST contribute to global warming and will cause the end of civilization as we know it - along with the hundreds of other sources of greenhouse gases, including automobiles, bottled water, burping and farting cows, rice farming...and even owning a dog or cat. But I digress...
You can find hundreds of anti-turf rants on the internet (no proof...but who needs that?) which state that, of course, bluegrass lawns and their maintenance MUST contribute to global warming and will cause the end of civilization as we know it - along with the hundreds of other sources of greenhouse gases, including automobiles, bottled water, burping and farting cows, rice farming...and even owning a dog or cat. But I digress...
Here at Colorado State University, my colleague, Dr. Yaling Qian, and her graduate students have conducted research for years on the carbon sequestration (fancy way of saying “removing carbon dioxide from the atmosphere via photosynthesis and storing it in plant parts that are slow to decompose…like roots, thatch and soil organic matter”) potential of lawns and golf courses.
In a turf system, carbon is sequestered in its roots, thatch, and soil organic matter |
As a lawn matures, it needs less nitrogen to remain healthy because N is stored in (and released from) its soil organic matter. |
I guess the bigger point to consider here is this: all of our landscape plants, by virtue of photosynthesis, remove some carbon from the atmosphere. Whether or not they are individually carbon negative or positive is determined not by just the plant themselves, but what it “costs” in terms of carbon to produce, plant, and maintain that plant. And when it dies, it will eventually decompose and return some of that stored carbon back to the atmosphere. For those of us in the green industry, whether teachers or practitioners, the use of best management practices will make for healthier plants, probably save (someone) money, and perhaps even keep some greenhouse gases in a form which many people find more acceptable – non-gaseous.