Two climatetech startups are joining a new program from Greentown Labs and Browning the Green Space. Photo via greentownlabs.com

A new accelerator focused on BIPOC-led energy tech startups named its inaugural cohort, and two Houston-based companies made the cut.

The new program — Advancing Climatetech and Clean Energy Leaders Program, or ACCEL — is an initiative led by Greentown Labs and Browning the Green Space that was originally announced in November. The program was established to provide access to funding, networking connections, resources, and more to BIPOC-led startups working on a climatetech solution.

The program is supported by the Massachusetts Clean Energy Center, or MassCEC, a state economic development agency, and the Boston-based Barr Foundation, a Boston-based foundation. Each of the selected startups will receive a $25,000 grant, incubation at Greentown, mentorship from Greentown and BGS’s networks, and access to a curriculum curated by VentureWell, a nonprofit with deep expertise in the climatetech space.

“We are thrilled and eager to support this exceptional cohort of startup leaders as they tackle some of our world’s biggest climate challenges,” says Kevin T. Taylor, CFO and interim CEO at Greentown Labs, in a news release. “Through partnerships with Browning the Green Space and VentureWell—and with the support from MassCEC and the Barr Foundation—we look forward to offering intentional mentorship, training, and networking opportunities to help these BIPOC-led startups thrive.”

The co-located program will host startups at each of the two Greentown Labs locations in the Houston and Boston areas. The inaugural cohort includes:

  • Active Surfaces, based in Salem, Massachusetts, unlocks dual land-use applications through its ultra-thin-film, flexible solar technology. Its co-founders are Shivam Bhakta and Richard Swartwout.
  • Houston-based DrinKicks is a sneaker-themed consumer-products company that is focused on repurposing food waste and recycled materials into sustainable goods such as shoes, sports equipment, and clothing, all while educating consumers on the power of the circular economy. The company was co-founded by Kristeen Reynolds, Michael Fletcher, and Kristen Lee.
  • EarthBond, headquartered in Cambridge, Massachusetts, leverages group financing and carbon accounting to lower costs and risk in the energy transition of Nigeria's $14B fuel-based, off-grid generator market. Chidalu Onyenso founded the business.
  • Amherst, Massachusetts-based florrent is a bio-based materials and energy storage company providing solutions to address critical bottlenecks to the global decarbonization and electrification of utilities, transportation, and buildings. Its co-founders are Jose LaSalle, Joe Hastry, and Alexander Nichols. florrent is a current Greentown member.
  • frakktal, founded in Houston by Jhana Porter, is a B2B materials company developing bio-based polymer processes for the replacement of fossil-fuel-based feedstocks across industries. The company is a current Greentown member.
  • SpadXTech from Worcester, Massachusetts, is contributing to the reduction of CO2 emissions impacting several industries such as packaging, textiles, transportation, filtration, and construction through the manufacturing of its core and versatile material platform technology. Its co-founders are Lina M. González and Connor Crawford.

“We are inspired by and excited to support the wealth of innovation and fresh perspectives on climate solutions offered by our inaugural ACCEL cohort of startup leaders,” said Kerry Bowie, executive director and president of Browning the Green Space. “Through this partnership with Greentown Labs we are able to build critical support infrastructure for entrepreneurs of color and accelerate the equitable development and distribution of climate solutions across all communities.”

The program will officially kick off at an event on February 23 at Greentown’s Boston location.

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FDA greenlights Houston surgery robotics company's unique technology

headed to clinical trials

A Houston surgical robotics company has gotten a Investigational Device Exemption from the FDA to go forward with human trials.

This news allows EndoQuest Robotics to begin its Prospective Assessment of a Robotic-Assisted Device in Gastrointestinal Medicine (PARADIGM) study, which will be conducted at leading United States health care facilities, including Brigham and Women’s Hospital (Boston), Mayo Clinic (Scottsdale), Cleveland Clinic (Cleveland), AdventHealth (Orlando), and HCA Healthcare (Houston). The study will include surgeries on 50 subjects, who will hopefully begin to enroll in January.

“The foundational thesis is we're trying to make sure that the world's largest medical center is also the world's largest med tech innovation center,” Eduardo Fonseca, interim CEO of EndoQuest Robotics, tells InnovationMap.

His company is well on its way to helping to assure that, through making history of its own. EndoQuest is behind the world's first Flexible Robotic Surgical System, a technology that may one day transform surgery as we know it.

The idea to use these novel robots for surgery came from Dr. Todd Wilson, a surgeon at UTHealth Houston, who spent his medical education, residency, and fellowship at the institution.

“I had really focused in my practice on trying to do everything possible to improve outcomes for patients,” Wilson explains. “And there seemed to be a pretty good correlation that the smaller the incisions or the fewer incisions, the better patients would do.”

The stumbling block? The necessary small incisions are difficult for human surgeons to make with current technology. But UTHealth was part of the solution.

“Right there in the University of Texas was a microsurgical lab where they were focusing on trying to develop robotics, but the application was still a little bit fuzzy,” Wilson says.

Using their innovations to solve Wilson’s problem turned out to be the start of the company now known as EndoQuest Robotics.

The first indication for the system is for colon lesions. But in the future it could be used for practically any minimally invasive surgery (MIS). That means that the robots could help to perform anything from a tonsillectomy to cholecystectomy (gallbladder removal) to non-invasive colorectal procedures, should those lesions prove to be cancerous.

According to Fonseca, last year was the first on record that there were more MIS, including laparoscopic and robotic surgeries, than conventional ones in the U.S. The time is right to forge ahead with the flexible robotic surgical system. Days ago, the EndoQuest team announced that its Investigational Device Exemption (IDE) application for its pivotal colorectal clinical study was approved by the FDA.

“Our end point is a device that can be mass-manufactured and very safe for patients and has a short learning curve, so therefore, we intend to learn a lot during these trials that will inform our ultimate design,” says Fonseca.

He adds that it’s a “brilliant” group of engineers that has set EndQuest apart, including both teams in Houston and in South Korea.

“We can move twice as fast as anyone else,” jokes engineer Jiwon Choi.

Despite the extra brain power provided by the South Korea engineers, Fonseca says that EndoQuest’s beginnings are “as much of a Houston story as you could find.”

Founder bets on Houston to grow innovative corrosion detection technology

HOUSTON INNOVATORS PODCAST EPISODE 265

Despite having success in taking his technology from lab to commercialization, Anwar Sadek made the strategic decision to move his company, Corrolytics, from where it was founded in Ohio to Houston.

"Houston is the energy capital of the world. For the technology we are developing, it is the most strategic move for us to be in this ecosystem and in this city where all the energy companies are, where all the investors in the energy space are — and things are moving really fast in Houston in terms of energy transition and developing the current infrastructure," Sadek, co-founder and CEO of Corrolytics, says on the Houston Innovators Podcast.

And as big as a move as it was, it was worth it, Sadek says.

"It's been only a year that we've been here, but we've made the most developments, the most outreach to clients in this one last year."



The technology Sadek and his team have created is a tool to detect microbial corrosion — a major problem for industrial businesses, especially within the energy sector. Sadek describes the product as being similar to a testing hit a patient would use at home or in a clinic setting to decipher their current ailments.

Users of the Corrolytics test kit can input their pipeline sample in the field and receive results via Corrolytics software platform.

"This technology, most importantly, is noninvasive. It does not have to be installed into any pipelines or assets that the company currently has," Sadek explains. "To actually use it, you don't have to introduce new techniques or new processes in the current operations. It's a stand-alone, portable device."

Corrolytics approach is to help revolutionize and digitize microbial corrosion detection — both to improves efficiency and operational cost for industrial companies, but also to move the needle on a cleaner future for the energy industry.

"We are having an energy transition — that is a given. As we are bringing new energy, there will be growth of infrastructure to them. Every single path for the energy transition, corrosion will play a primary role as well," Sadek says.

Corrolytics hopes to work with new energies from the beginning to used the data they've collected to prevent corrosion in new facilities. However, the company's technology is already making an impact.

"Every year, there is about 1.2 gigaton of carbon footprint a year that is released into the environment that is associated with replacing corroded steel in general industries," Sadek says. "With Corrolytics, (industrial companies) have the ability to extend the life of their current infrastructure."

Sadek says his move to Houston has already paid off, and he cites one of the company's big wins was at the 2024 Houston Innovation Awards, where Corrolytics won two awards.

UH researchers secure $3.3M for AI-powered subsurface sensing system to revolutionize underground power lines

going under

Researchers from the University of Houston — along with a Hawaiian company — have received $3.3 million in funding to explore artificial intelligence-backed subsurface sensing system for safe and efficient underground power line installation.

Houston's power lines are above ground, but studies show underground power is more reliable. Installing underground power lines is costly and disruptive, but the U.S. Department of Energy, in an effort to find a solution, has put $34 million into its new GOPHURRS program, which stands for Grid Overhaul with Proactive, High-speed Undergrounding for Reliability, Resilience, and Security. The funding has been distributed across 12 projects in 11 states.

“Modernizing our nation’s power grid is essential to building a clean energy future that lowers energy costs for working Americans and strengthens our national security,” U.S. Secretary of Energy Jennifer M. Granholm says in a DOE press release.

UH and Hawaii-based Oceanit are behind one of the funded projects, entitled “Artificial Intelligence and Unmanned Aerial Vehicle Real-Time Advanced Look-Ahead Subsurface Sensor.”

The researchers are looking a developing a subsurface sensing system for underground power line installation, potentially using machine learning, electromagnetic resistivity well logging, and drone technology to predict and sense obstacles to installation.

Jiefu Chen, associate professor of electrical and computer engineering at UH, is a key collaborator on the project, focused on electromagnetic antennas installed on UAV and HDD drilling string. He's working with Yueqin Huang, assistant professor of information science technology, who leads the geophysical signal processing and Xuqing Wu, associate professor of computer information systems, responsible for integrating machine learning.

“Advanced subsurface sensing and characterization technologies are essential for the undergrounding of power lines,” says Chen in the release. “This initiative can enhance the grid's resilience against natural hazards such as wildfires and hurricanes.”

“If proven successful, our proposed look-ahead subsurface sensing system could significantly reduce the costs of horizontal directional drilling for installing underground utilities,” Chen continues. “Promoting HDD offers environmental advantages over traditional trenching methods and enhances the power grid’s resilience.”

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This article originally ran on EnergyCapital.