Human illness can demonstrably harm the environment

Destructive nets, like these resting in boats on the shore of Lake Victoria, damage the environment by allowing fishermen – some of whom may be too sick to fish in more physically demanding and sustainable ways – to overfish the waters. For decades, scientists have known that unhealthy surroundings induce…

Continue reading

Microalgae could play key role in relieving climate warming

Microalgae could play key role in relieving climate warming

Marine microalgae

Charles Greene/Provided
Marine microalgae races through a “photobioreactor” at Cellana’s Kona Demonstration Facility in Hawaii.

Think better living through marine microalgae, as it may become crucial to mitigate atmospheric greenhouse gases, reduce carbon dioxide emissions from commercial agriculture and steady the global climate, according to Cornell-led research published in the March issue of Earth’s Future, a journal of the American Geophysical Union.

“We must stabilize Earth’s mean global temperature,” said lead author Charles H. Greene, professor of earth and atmospheric sciences. “To attain these targets set by our agreements at the Conference of the Parties (COP21) meetings in Paris, we must reduce carbon dioxide emissions to near zero by mid-century and remove carbon dioxide from the atmosphere in this century’s latter half.”

While some policy analysts and scientists believe that the COP21 agreement climate goals – holding the rise of the mean global temperature to less than 1.5 degrees Celsius – are unachievable, the researchers favor employing microalgae as a key solution.

“We believe these climate goals are attainable, but we must constrain carbon dioxide emissions rapidly and then start removing it from the atmosphere,” said Greene.

Although more solar farms, wind turbines and hydro systems are creating fossil-free electricity, Greene reminds us that aircraft and ships still require liquid fuels. In a green way, biofuels made from marine microalgae could wean industrialized society from carbon-based fossil fuels, according to this new report, “Geoengineering, Marine Microalgae and Climate Stabilization in the 21st Century.”

To make this biofuel, scientists harvest freshly grown microalgae, remove most of the water, then extract lipids for the fuel. The remaining defatted biomass is a protein-rich and highly nutritious byproduct – one that can be added to animal feeds for domesticated farm animals, like chickens and pigs, or aquaculture feeds for salmon and shrimp.

After consuming the algae-supplemented feeds, for example, chickens produce eggs with three times the omega-3 fatty acids.

Terrestrial plant production for biofuels – such as corn, palm and soy, for example – removes millions of acres of land from food production, even as the world grows more populated.

Microalgae grow faster than terrestrial plants, producing an equal amount of bioenergy or food in less than one-tenth the land area. Bioenergy and food production from marine microalgae can have positive impacts on climate and food security, while avoiding many of the negative environmental consequences associated with terrestrial plant-based options, Greene explained.

By replacing marine microalgae production for conventional, land-based agricultural practices, there will be less carbon dioxide emitted, which could achieve climate stabilization goals, he said.

Greene said significant research and development investments will be essential for the next decade to improve bioenergy and food production.

“As this technology ramps up to globally relevant scales during the coming decades, society’s prospects improve for meeting the COP21 climate stabilization targets, while simultaneously achieving energy and food security,” he said.

In addition to Greene, co-authors are Mark E. Huntley, visiting scholar, biological and environmental engineering; Léda N. Gerber, postdoctoral research associate in earth and atmospheric sciences; Ian Archibald, research scientist, Cinglas Ltd., Chester, England;  Joe Granados, University of Hawaii; Deborah L. Sills, Bucknell University; Colin M. Beal, B&D Engineering and Consulting, Lander, Wyoming; and Michael J. Walsh, Bentley University, Waltham, Massachusetts.

This article is written by Blaine Friedlander and was published in the Cornell Chronicle on March 28, 2017.

Cornell inaugurates new seed systems initiative in Nepal

I have been farming for the last 50 years. I have seen production dwindling slowly and steadily, erratic climatic conditions, bad seeds and lack of finance as key issues which have led to the fall of prosperity for farmers,” said Hari Baktha Dhakal from the Chitwan region of Nepal, one of more than 200 farmers who gathered for the inauguration of the Seed Systems for Nepal initiative Jan. 23

Continue reading

Doctoral student named Future Leader in Science

Ann Bybee-Finley, a second-year doctoral student at Cornell studying cropping systems resilience with a focus on Northeastern dairy producers, has been named a 2017 Future Leader in Science by the American Society of Agronomy (ASA), Crop Science Society of America (CSSA) and Soil Science Society of America (SSSA).

Continue reading

Underwater seagrass meadows dial back polluted seawater

Seagrass meadows – bountiful underwater gardens that nestle close to shore and are the most common coastal ecosystem on Earth – can reduce bacterial exposure for corals, other sea creatures and humans, according to new research published in Science Feb. 16. “The seagrass appear to combat bacteria, and this is…

Continue reading

Renewable fuels alone can’t stop climate change

In discussions about climate change, many people seem to think the only real problem is replacing fossil fuels, and once that’s done nothing much really needs to change. “That’s not only false, it’s a really dangerous way of thinking,” said Karen Pinkus, professor of Romance studies and comparative literature in…

Continue reading

Kelly Cameron-Harp ’15: A One Health Perspective in Haiti

Kelly Cameron-Harp, a Cornell Animal Science graduate from the Class of 2015, went on to obtain a Master of Science in One Health from Ross University School of Veterinary Medicine. Dr. Dan Brown’s course, “Feeding the World,” ignited her initial interest in One Health topics. The course touched upon the…

Continue reading

Cornell receives U.K. support to fight global wheat supply threats

Cornell University is to receive $10.5 million in U.K. aid investment from the British people to help an international consortium of plant breeders, pathologists and surveillance experts overcome diseases hindering global food security efforts. The funds for the four-year Delivering Genetic Gain in Wheat (DGGW) project will build on a…

Continue reading