Ilsa Kantola: Sustainable Farming has its Roots in Soil

“From an early age, I was aware of farming going on around me, and the importance of land and soil to everything in our lives.”

Originally from Sacramento, a vibrant city nestled at the top of California’s Central Valley, iSEE Postdoctoral Research Associate Ilsa Kantola grew up surrounded by agriculture both geographically and genetically — Kantola’s grandfathers worked in the industry, and her father has a degree in Agricultural Economics. Living in a bustling metropolis did nothing to hinder Kantola’s bond with nature; on the contrary, she fondly recalls driving down country roads playing a game called “Name that Crop.”

“Which,” Kantola jokes, “can be a very boring game in Illinois.”

iSEE Postdoctoral Research Associate Ilsa Kantola in a Miscanthus field treated with an application of basalt at the Illinois Energy Farm. Photos by Jordan Goebig / iSEE

In her work at the University of Illinois at Urbana-Champaign, Kantola contributes to the industry’s most high-stakes conversation: the search for sustainable farming practices of global proportions.

Kantola has long been passionate about her current field: her bachelor’s degree from California Polytechnic State University is in Environmental Engineering with a Soil Science minor. Soil Science quickly developed into a central interest area — and influenced Kantola’s decision to complete her Ph.D. at Texas A&M in the department of Rangeland Ecology and Management, now Ecosystem Science and Management.

The decision to study soil in Texas was not a difficult one.

“It’s chemistry, it’s biology, it’s agriculture, it’s food, and it’s people,” Kantola says of her passion for the subject. “And it’s all together.”

While in Texas, she studied the methods by which woody plant invasion transforms south Texas grasslands into shrublands, with a focus on the behavior of soil-bound carbon, nitrogen, and phosphorus — her “trio of interests.”

“I worked in rangelands,” Kantola says of her department’s name, “but I did not work with cattle — I worked with the land they had taken cattle out of.”

When Kantola arrived at Illinois to work for the Energy Biosciences Institute (EBI), her focus shifted from Texas grasslands to Midwest croplands. Her team’s BP-funded study sought corn alternatives for the production of bioethanol — a naturally produced fuel supplement — and her objective was to measure the ecological effects of using perennial grasses as a substitute.

Native switchgrass and the Asian hybrid Miscanthus x giganteus grown at the Illinois Energy Farm were posited as promising alternatives because perennials — plants with life cycles longer than one growing season — require less management than annuals such as corn, with potential for similar or greater yields. Additionally, the Miscanthus variety grown at the Energy Farm cannot be consumed by humans or livestock, so bioethanol production would not come at the cost of a viable food source.

Kantola expresses a passion for using focused research to drive big results:

“We start small, digging at the farm. But U of I sites are representative of the larger Midwest, so data we collect can be scaled up to visualize what’s happening on a larger scale.”

Passion for the big picture informs Kantola’s current research at Illinois in partnership with the Leverhulme Centre for Climate Change Mitigation (LC3M). The project, led by iSEE Director Evan H. DeLucia and and Plant Biology and Crop Sciences Associate Professor Carl Bernacchi, aims to combat rising atmospheric carbon dioxide (CO2) levels by imbuing cropland soil with calcium- and magnesium-containing silicate rocks.

The researchers’ process for capturing atmospheric CO2 involves two chemical reactions. First, atmospheric CO2 dissolves in rainwater to create carbonic acid. Then, the acid reacts with calcium and magnesium in the soil to form calcium and magnesium bicarbonate, soluble compounds that leach with soil water, resulting in the relocation of CO2 from the atmosphere to the water cycle.

To enhance this process, Kantola’s team turns to basalt, an igneous rock containing both calcium and magnesium as well as phosphorus and minor nutrients that can benefit soil fertility. Large quantities of finely-ground basalt are spread over twin fields of corn and miscanthus at the Energy Farm and left to react with CO2-laden rainwater.

“We’re trapping atmospheric CO2 in the water cycle so that it can move out through the drainage tiles, into the Mississippi, down to the Gulf, and potentially benefit the oceans. That’s the dream: that we can cure ocean acidification, reduce atmospheric CO2, and benefit our crops at the same time.”

Kantola talks about corn with another University of Illinois Postdoc, Caitlyn Moore.

Because of basalt composition and soil fertility variation across climates and continents — and the potential for plants and soil microbes to change the rates of basalt weathering — LC3M collects data from three ecologically diverse locations. In addition to the temperate Midwest, basalt is similarly applied to a palm oil plantation in Borneo and a sugarcane field at James Cook University in Queensland, Australia.

“The project is getting global,” Kantola explains. “That was always the intention.”

Looking ahead, Kantola is excited by the prospect of data analysis. This might be several years away; Illinois researchers are currently in year two of a five-year basalt application program. Because basalt is slow-weathering, the initial application period is followed by five years of observation, during which annual yield and biofuel production data will be measured against control fields.

The sooner data is available, the sooner Kantola’s team can make informed recommendations to farmers and spark a chain reaction toward sustainable land management that reaches out into the atmosphere, the oceans, and beyond.

Kantola calls the project’s benefits a “double return:” “It’s a way to use land that’s already in production for biofuel to make an impact on the planet’s atmospheric health.”

Ideally, this project provides the scaffolding for a novel way to address one of the world’s most pressing issues while enhancing—rather than disrupting—traditional farming practices.

“We’re interested in disrupting some things that humans do to the Earth,” Kantola clarifies. “But if we can do so in a way that’s beneficial to food production and CO2 reduction, that would be the dream.”

— iSEE Communications Intern Jenna Kurzweil

iSEE Helps Secure $6M+ in New Grants

URBANA, Ill. — The Institute for Sustainability, Energy, and Environment is pleased to announce it has helped attract two grants totaling more than $6 million for University of Illinois and partner researchers this month:

 

$5M DOE Grant for Energy Crops Study

A U of I Crop Scientist will lead a team of researchers on a five-year study of new crops that could contribute to the production of affordable, sustainable sources for market-ready fuels and other valuable products.

University of Illinois Crop Sciences Associate Professor D.K. Lee on the Illinois Energy Farm with the ‘Independence’ switchgrass variety he developed. Credit: Jordan Goebig / iSEE

U of I College of Agricultural, Consumer, and Environmental Sciences (ACES) and Crop Sciences Associate Professor D.K. Lee and his collaborators were awarded $5 million from the U.S. Department of Energy (DOE) for a study titled “Next-Generation Feedstocks for the Emerging Bioeconomy.” Other team members in the study funded by the DOE’s Bioenergy Technologies Office (BETO) are from the U.S. Department of Agriculture’s Agricultural Research Service, Iowa State University, South Dakota State University, Argonne National Laboratory, Idaho National Laboratory, and Antares Group Inc. They will collaborate with industry partners POET-DSM Advanced Biofuels LLC, Enginuity Worldwide LLC, and The Climate Corp.

“To provide sustainable sources of energy for an ever-growing world population, we must build a new energy plan on a bioeconomy platform,” Lee said. “That means, for starters, that we need to know which energy crops will be the most productive and valuable — and best for the environment.

“Members of our team have worked together on past projects, and we will build on our successful history. We will use data from geographically distributed field trials, combined with ecosystem, logistical, and techno-economic analyses, to learn what new varieties of energy crops will best be suited to produce the best fuels and most valuable products.”

The team will assess field-scale yield of advanced switchgrass varieties such as “Independence” — which was developed by Lee — for pre-commercialization. Team members also will examine other warm-season perennial grasses such as switchgrass blends, big bluestem, prairie cordgrass, and Miscanthus.

The Institute for Sustainability, Energy, and Environment (iSEE) was instrumental in helping Lee and his team land the grant. iSEE, which helped put forth the successful proposal, is an administrative partner along with the Carl R. Woese Institute for Genomic Biology (IGB) in the new Center for Advanced Bioenergy and Bioproducts Innovation (CABBI), a DOE Bioenergy Research Center that is studying energy crop trait improvement; automated conversion of biomass into useful, valuable chemicals; and studies on the economic and environmental sustainability of CABBI crops and processes.

“By including CABBI, the national labs, and industry members, along with other partners’ large Midwest energy crop research sites, we can loop our real-world data into today’s bioeconomy industry,” Lee said. “This will help us find the right varieties of grasses — and speed adoption of practices that increase the growth of this new energy supply while reducing cost.

“I’m grateful to (iSEE and CABBI Director) Evan H. DeLucia and the iSEE team for helping us put together a successful proposal. This is a win for Illinois, the College of ACES, and our partners — and I believe a win for what could be a promising future in energy production.”

 

View a News-Gazette video interview with Lee about the grant and the research >>>

View an R&D Magazine article about new DOE research grants, including the project headed by Lee >>>

 

$1M+ from Arizona State University for Grazing Study

In addition, iSEE Visiting Research Scientist Nuria Gomez-Casanovas and DeLucia will receive $1,045,560 from Arizona State University for a study titled “Can Adaptive Multi-Paddock Grazing Management Increase the Net Greenhouse Gas Sink Strength and Water Use Efficiency of Grazed Pastures?”

According to a description of the project, which is part of a collaborative effort to study if a new grazing practice can help sequester carbon in soils:

“Agricultural systems must adapt to increasing demands for food, while facing increasing threats, particularly related with the loss of ecosystem services. To meet this challenge, future food production needs new agricultural management strategies that increase ecosystem services while enhancing food production.

“(Gomez-Casanovas) will investigate how emerging adaptive multi-paddock grazing management (AMP) that has the potential to increase soil carbon sequestration compared to the ‘business as usual’ continuous grazing (CG) affects the delivery of regulating services – greenhouse gas (GHG) regulation and water use efficiency (WUE) – from grazed pastures used for livestock production.

“The outcomes of the proposed research will reduce the uncertainty surrounding GHG emissions and WUE of grazed pastures using current and emerging management techniques. The proposed research will fill major knowledge gaps in how AMP grazing affects ecosystem productivity, net ecosystem GHG exchange (CO2, CH4 and N2O), and WUE of pastures.”

 

— Tony Mancuso, iSEE Communications and Public Affairs Director

Q Mag — New Student Environmental Publication — Releases First Issue

URBANA, Ill. — The Institute for Sustainability, Energy, and Environment (iSEE) is proud to announce publication of the first online issue of Q Magazine, featuring articles by University of Illinois students enrolled in the Undergraduate Certificate in Environmental Writing.

is the first student-written, professionally produced publication of its kind — and is “at the cutting edge of student environmental journalism,” said Gillen Wood, iSEE Associate Director for Education and Outreach. “Students in our Certificate in Environmental Writing (CEW) work with a specific purpose: to turn data into narrative. We expect them to raise vital questions about our environmental future — and to  find answers through engagement with current environmental science, politics, and policy.”

Wind, waves, and high water drive the lead stories in the inaugural edition of Q. English major David Marcus investigates how climate change and rising water are threatening doom for South Florida and other coastal communities, while journalism major Melissa Wagner explores the devastating impact of Hurricane Irma on the Caribbean island paradise of St. Thomas.

Other stories include the life and legacy of Chicago’s Hazel Johnson, known as “The Mother of Environmental Justice”; the history of the iconic bison on the U.S. prairies; the pharmaceutical potential of fungi; an anthropomorphic look at ants; and the environmental costs of clean dishes (our addiction to dish soap …).

“The sustainability of our planet is everyone’s business,” U of I Provost Andreas Cangellaris said. “This new magazine from Illinois stands out as an exemplar of how a university community can come together to learn, debate, share, and communicate how today’s scientific and technological advances leave no room for doubt or excuses about our ability — and our responsibility — to attend to this critical and pressing cause.

“I am very proud of our students and our community leading the way.”

Headed by Wood, the Langan Professorial Scholar of Environmental Humanities, the CEW is an interdisciplinary sustainability program co-sponsored by iSEE, the School for Earth, Society, and Environment (SESE), and the Department of English.

Q Magazine is a vivid example of the fresh leadership in environmental issues provided by the current generation of Illinois students,” SESE Director Bob Rauber said. “Our students are stepping up to the plate, tackling the tough environmental issues facing all of us, while at the same time educating us about our everyday world.

“How many times have I lived through Zack Fishman’s great story about ants in the kitchen? I am afraid that in the future, I will have to let these fascinating critters haul away all my crumbs while I gaze at them with a magnifying glass!”

Q Magazine’s editorial board consists of Wood, SESE Clinical Associate Professor Rob Kanter, a student editor, and the Institute’s communications staff. iSEE will publish two online issues each year, with a glossy print version published annually. Through Q, student writers will learn invaluable communications skills, experience public exposure of their writing, and have polished, professional work to show to potential employers.

Visit the website at q.uofitheme2.iseeprod.web.illinois.edu.

— Tony Mancuso, iSEE Communications and Public Affairs Director

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