Skip to main content
Search Context

NEWS

 

Kevin Sowers wearing PPE in front of water at a contaminated site

Dr. Kevin Sowers (UMBC-IMET) and Dr. Upal Ghosh (UMBC) have already developed a technology that can remove harmful compounds from waterways and sediments. A recent grant from the National Institute of Environmental Health Sciences (NIEHS) will help them improve that technology and expand their impact.

Using a group of specially selected microbes and activated carbon, the team has proven that they can remove polychlorinated biphenyls (PCBs) from sediments through a process called bioremediation. PCBs were banned in 1979 due to their toxicity, yet they remain in sediments and can enter the food chain, threatening both ecological and human health. Sowers and Ghosh founded the venture RemBac Environmental to apply their research to restoring contaminated sites and were named UMBC’s Entrepreneurs of the Year in 2019 for this work.

To evaluate the effectiveness of different materials, Sowers and Ghosh will conduct trial studies of graphite and activated carbon from bituminous coal and coconut shells. Ghosh brings a deep knowledge of materials science that will aid in this evaluation. Sowers brings decades of research on microbes that degrade chlorinated compounds.

With funding from NIEHS, Sowers and Ghosh will continue to improve their technology by answering questions like, “Are there materials that would be more effective for bioremediation? Would different materials be best for certain pollutants or areas?”

two images from field test sites: scientists in PPE add to water as part of the bioremediation process

To expand the applications of this lab work, an ecological modeler joined the team. Dr. Amar Wadhawan, Senior Environmental Engineer with Arcadis, will create models to integrate an improved understanding of materials for bioremediation with information about specific site conditions. This will help scientists and environmental engineers create targeted solutions for project sites.

The overall impact of this new grant will be to improve our fundamental understanding of the interactions of microbes and different surfaces and improve the process for cleaning up sediment and groundwater. Sowers said, “This project will enable development of a platform that combines tailored materials with microbial activity to optimize bioremediation of PCBs in different environments.” With improved technology and modeling, remediation of Superfund sites and other contaminated areas will be easier and more effective, helping to create a healthier planet.

New MIPS Award to Vakharia and Larkin

Feb 12, 2021

With a new grant from the Maryland Industrial Partnerships (MIPS) program, UMBC-IMET Professor Dr. Vikram Vakharia has teamed up with IMET alum Dr. Mary Larkin and her company, Gaskiya Diagnostics, to develop inexpensive tests to diagnose pathogens in aquaculture. “Farmers need to test their ponds and get instant information so that they can quickly take action and mitigate disease,” says Larkin.

Read the full story on UMBC News

 

Dr. Yonathan Zohar to partner with aquaculture giant AquaCon in Maryland

Jul 09, 2020

A new MOU between UMBC, IMET, and AquaCon establishes a collaboration on developing land-based aquaculture in Maryland. AquaCon made this decision after meeting with Dr. Yonathan Zohar and touring the Aquaculture Research Center, seeing all the innovation that will help them as they build up a new aquaculture facility. An article on UMBC News explains this collaboration, as well as the importance of Silfra BioSystems, a company started by Dr. Zohar and Dr. Kevin Sowers, to manage fish waste in aquaculture, and an NSF grant to Dr. Zohar for research on fish reproduction.

“It’s a perfect storm in a good sense, because everything is falling in place now,” says Zohar. “I’ve been working in Maryland for almost 30 years, and we’ve been developing a lot of these technologies. Our mission is research, education, and economic development, and we have been working to create connections between academia and industry to fulfill that mission.”

Read the full story on UMBC News

Read coverage in the Baltimore Sun

Read coverage in the Baltimore Business Journal

Read Coverage in Undercurrent News

Salmon Aquaculture Network Project Underway

Mar 25, 2020

IMET-UMBC Faculty and Director of ARC Dr. Yonathan Zohar is the lead P.I. on the Recirculating Aquaculture Salmon Network (RAS-N). RAS-N, which was awarded a $1.2 million grant, is a national public-private partnership that brings together many partners to build capacity for land-based Atlantic salmon aquaculture in the US. At the end of 2019, the group convened in Wisconsin for their first annual meeting. In February of this year, RAS-N organized a dedicated Salmon RAS session at the Aquaculture America 2020 conference in Honolulu, Hawaii, where several partners and others presented their progress. You can read more about the project and these meetings on the Maryland SeaGrant Blog.

image1

 

 

 

Showing items tagged https-umbc-edu-author-shansen. Show All

UMBC SAS^2 Conference in the Spotlight

UMBC-led aquaculture conference brings together academics, business and government leaders, educators to move the industry forward

Published: Nov 20, 2023

Open, naturally lit atrium with round tables with ocean blue tablecloths filled with people. Screens and podium at the front of the room; someone is presenting.
More than 110 attendees from across sectors participated in the conference, which took place in a beautiful event space at the Institute of Marine and Environmental Technology. (Image by Melissa Penley Cormier, M.F.A. '17)

More than 110 academic researchers, industry pros, government officials and educators met at the Institute of Marine and Environmental Technology (IMET) for the second annual Sustainable Aquaculture Systems Supporting Atlantic Salmon (SAS2) conference in October. The conference’s nine panel discussions (with more than 50 panelists), local field trips and tours, and social events gave stakeholders the opportunity to share progress and address remaining challenges to move the aquaculture industry forward.

Yonathan Zohar, professor of marine biotechnology at UMBC and IMET, leads the SASconsortium, which includes 32 co-investigators, 12 research institutions, and 11 industry partners, from around the U.S. and internationally. 

Salmon is consumed more than any other fish in the U.S., but over 90 percent of it is imported at a value of $3.8 billion annually, Zohar shared in introductory remarks. People across sectors are interested in reducing this trade deficit and improving environmental sustainability of salmon aquaculture by eliminating the carbon footprint associated with transporting salmon from overseas. As a result, domestic salmon aquaculture is experiencing an investment boom, Zohar says. The investment is particularly strong for land-based aquaculture, which Zohar and colleagues are advancing at IMET’s Aquaculture Research Center (ARC). 

“This is a stakeholder-driven program,” Zohar says. “Industry and academia are engaged in genuine brainstorming towards enabling salmon aquaculture in the U.S. to be a success story.”  

University System of Maryland Chancellor Jay Perman shared that the SAS2 team’s efforts, from biotechnology to market strategies to workforce development and education, “are poised to change the face of food scarcity and food production the world over.”

Large group photo in front of the IMET building, IMET fish logo and institute name on building above the groupConference attendees gather in front of the Institute for Marine and Environmental Technology. (Image by Barry Freeman)

Research for the public good

The work at IMET has been critical to move the industry forward worldwide. The SAS2 initiative, awarded $10 million by the U.S. Department of Agriculture in 2021, builds on the Recirculating Aquaculture Salmon Network, also led by Zohar and funded by the National Oceanic and Atmospheric Administration’s National Sea Grant Office.

IMET, and the ARC in particular, are “a showcase of our best ideas, ideas that promise solutions to so many essential challenges—food security, environmental sustainability, economic resilience,” Perman shared. The SAS2 consortium is “research for the public good,” Perman added. “That’s our mission and this project is emblematic of that.”

Session topics at the conference included scientific and engineering challenges like waste remediation, water reuse, and managing the salmon life cycle in captivity. Other sessions discussed market research for salmon produced on land and examples of education programs that increase awareness of aquaculture careers. 

Attendees also traveled to The Conservation Fund Freshwater Institute in West Virginia to see collaborative SAS2 research, visited Baltimore City Schools that incorporate aquaculture into the curriculum, toured the ARC, and heard from graduate students contributing to the research arm of SAS2.

“SAS2 is an amazing accomplishment—the best example of public-private partnership to solve problems for industry,” shares Steve Summerfelt, a conference panelist and the chief science officer at Superior Fresh, which raises land-based salmon and recycles the nutrient-rich wastewater to grow greens. “SAS2 is providing relevant and groundbreaking research with strong tech transfer to help land-based salmon farmers.”

Small group standing amid large water tanks in a large indoor space (the Aquaculture Research Center) with white pipes going everywhereConference attendees took tours of the Aquaculture Research Center, the land-based salmon production facility at IMET led by Yonathan Zohar. (Image by Melissa Penley Cormier, M.F.A. ’17)

Enabling aquaculture innovation

Overall, the conference emphasized aquaculture’s important and growing role in worldwide food production.

Land-based, sustainable production of seafood is critically important technology to meet the rapidly growing need for healthy seafood as a source of protein in diets worldwide,” Russell Hill, director of IMET, said. “A land-based approach has huge advantages for minimizing pollution in the coastal environment and taking pressure off wild fish populations—and all of this can be done through this resilient technology that’s also adaptable in the face of a changing planet.”

By bringing together people from across industries, the event created opportunities that will enable more breakthroughs.

“The lively engagement and productive brainstorming of all relevant sectors led to several innovative ideas and collaborations which will contribute in the short term to making Atlantic salmon farming in the U.S. and globally more environmentally responsible and economically feasible” concluded Zohar. “Everyone left inspired and excited about the opportunities being created by the SAS2 program for innovative and sustainable aquaculture.”  

Tags: CNMSMarineBiotechResearch

Posted: December 1, 2023, 4:54 PM