CenterPoint Energy and the Gulf Coast Community Services Association are now accepting applications for the new program. Photo via centerpointenergy.com

In the season of giving, a Houston energy company has played Santa Claus with a special deliver for underserved Houstonians.

CenterPoint Energy announced a $1 million contribution in Houston Mayor Sylvester Turner’s name towards energy bill assistance that assists low-income residents. The donation will go to a local nonprofit organization Gulf Coast Community Services Association, or GCCSA, which will manage and distribute the funds.

“Given Mayor Turner’s selfless commitment and outstanding service to our city for the past eight years, this felt like a fitting way to celebrate him and build upon his legacy of helping others across our communities,” CenterPoint Energy CEO Dave Lesar says in a news release. “Throughout his entire career in elected office, Mayor Turner always recognized the importance of supporting underserved neighborhoods and neighbors, and this contribution in his name will make a positive lasting impact.”

Today, December 4, GCCSA will begin accepting applications for energy assistance for low-income residents or families living in CenterPoint Energy’s service areas. Applicants can apply online.

“It has been an incredible honor to serve our great city for my eight years in office, “Turner says in a news release. “It also has been a privilege to collaborate with corporate leaders like CenterPoint Energy and impactful nonprofits like GCCSA to help the community members who need it most.

“I am deeply grateful for the countless partnerships and initiatives benefiting Houston during my incredible journey as mayor. Together, we were able to do great things.”

Earlier this summer, CenterPoint also donated $100,000 to Galveston residents by way of nonprofit Vision Galveston. The program was designed to reduce energy consumption and cut utility bills through projects like HVAC tune-ups, as well as installation of ceiling insulation, LED light bulbs, solar screens, and low-flow showerheads.

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Houston scientists unveil faster, low-energy method to recycle lithium-ion batteries

Battery breakthrough

Rice University researchers have uncovered a more energy-efficient and faster way to recycle critical minerals from used lithium-ion batteries.

Traditional methods rely on high heat, long processing times and harsh chemicals to recover a small fraction of critical materials from batteries used in everything from smartphones to electric vehicles. However, the team from Rice's Department of Materials Science and Nanoengineering developed a process that uses a water-based solution containing amino chlorides to extract more metals in less time

The team published the findings in a recent edition of the scientific journal Small.

Simon King, a sophomore studying chemical and biomolecular engineering who completed this work as a summer research fellow at the Rice Advanced Materials Institute, served as first author of the study. He worked with corresponding authors Pulickel Ajayan, the Benjamin M. and Mary Greenwood Anderson Professor of Engineering, and Sohini Bhattacharyya, a research scientist in Ajayan’s lab.

By using a hydroxylammonium chloride (HACI) solution, the team achieved roughly 65 percent extraction of key battery metals in just one minute at room temperature, according to the study. The efficiencies grew to roughly 75 percent for several metals under longer processing times.

“We were surprised by just how fast the reaction occurs, especially without the involvement of high temperatures,” King said in a news release. “Within the first minute, we’re already seeing the majority of the metal extraction take place.”

By not requiring high temperatures or long reaction times, Rice predicts the process could have a major impact on cost and the environmental impact of lithium battery recycling. Additionally, the water-based HACI solution makes waste handling easier and lowers certain environmental risks.

In addition to extracting the materials, the team went on to demonstrate that the recovered metals could be recycled and reprocessed into new battery materials.

“A big advantage of this system is that it works under relatively mild conditions,” Ajayan added in the release. “That opens the door to more sustainable and scalable recycling technologies.”

Houston-area plastics company debuts state-of-the-art headquarters

new hq

Ultra-high-performance plastics company Drake Plastics officially opened its new state-of-the-art, 140,000-square-foot manufacturing center and corporate office in Cypress last month.

Dubbed “Drake HQ, ” the new facility was built to align with Harris County’s clean energy goals and features a 1.3-megawatt solar generation plant designed to offset 50 percent of the plant’s power consumption.

The facility is designed as a “factory ranch,” and is intended to blend in with its natural surroundings. With the expanded campus, Drake says it looks to serve existing and new customers in the semiconductor, aerospace, energy and defense industries.

The new headquarters is designed as a "factory ranch" and features a solar generation plant to offset half of its power consumption. Photo via LinkedIn

“We are thrilled to open the doors of our new headquarters in the area where it all began,” Drake Plastics President Steven Quance said in a news release. “We are honored to have reinvested in the community that has supported our growth and success over the past three decades.”

Drake Plastics cut the ribbon on March 26 at the new facility, which also marked the company’s 30th anniversary in the Cypress area. The company launched in 1996 with four employees and has grown to employ more than 100 staff members, according to a LinkedIn post.

Drake Plastics is a globally recognized leader in ultra-high-performance polymer manufacturing and specializes in extrusion, injection molding, precision machining, machine building, engineering and distribution. According to the company, its new Cypress facilty is one of the largest in the world that processes these high-performance polymers.