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President Joe Biden and Secretary of the U.S. Department of Energy Jennifer Granholm will announce on Friday seven regional “hydrogen hubs” which are collectively eligible for up to $7 billion in federal funding, according to senior White House administration officials.

The hydrogen hubs are being funded from money included in the Bipartisan Infrastructure Law, which President Biden signed into law in November of 2021.

Hydrogen is the simplest element and the most abundant on earth, but it seldom exists on its own, so generally has to be split from other atoms (as in the case of water, or H2O). This can be done with an electrolyzer powered by electricity. Hydrogen can also be produced from natural gas in a process called steam methane reforming.

Hydrogen is currently used to make fertilizer and in various industrial processes, particularly in the petrochemical industry. But because hydrogen emits no carbon dioxide when burned for fuel, it is part of the Biden administration’s strategy for reducing greenhouse gases in industries like long-haul trucking, maritime cargo shipping, and airplane travel. Hydrogen is also seen as a potential energy storage vehicle to balance out the intermittency inherent in renewable energy sources, like wind and solar.

That said, hydrogen is only a good tool for reducing CO2 emissions if it can be produced with minimal emissions itself — today, that often does not happen. The new hubs will be focused on that goal.

The seven hydrogen hubs stretch across 16 states and are organized according to geographic regions that have a particular strength when it comes to developing and growing the hydrogen industry in the United States. The hubs are not single facilities, but refer to a collection of linked assets that will work together to develop the domestic hydrogen economy in the United States.

The $7 billion in federal funding will catalyze an estimated $43 billion in private sector investment, according to comments made by senior White House administration officials on a call with reporters on Thursday afternoon.

The federal funding will be dispersed as the regional hubs meet incremental stage-gate milestones, senior White House administrators said. But the manufacturing hubs are all going to spur job creation, a theme Biden has repeatedly advertised as a co-benefit of developing the clean economy.

The seven selectees are as follows:

Appalachian Hydrogen Hub: The Appalachian Hydrogen Hub encompasses parts of West Virginia, Southeast Ohio, and southwest Pennsylvania and will use the large quantities of natural gas in the region. It’s located in the industrial heartland and will provide hydrogen for industrial applications across the United States. It’s also at a transportation crossroads, which will allow the hydrogen to be readily transported.

California Hydrogen Hub: The California Hydrogen Hub spans from Southern California to Northern California and encompasses three ports: Los Angeles, Long Beach and Oakland. Ports are very important because hydrogen is considered a prime candidate for decarbonizing the shipping industry. Also, hydrogen will be key in heavy-duty trucking and trucks transport goods from ports.

Gulf State Hydrogen Hub: The Gulf State Hydrogen Hub will be centered in Houston, Texas, and will cover most of the Gulf Coast and southeast Texas. Texas has large quantities of energy to use in producing hydrogen.

Heartland Hydrogen Hub: The Heartland Hydrogen Hub is hosted in Minnesota and includes a significant presence in North Dakota and South Dakota, and takes advantage of the uses the very inexpensive and abundant wind resources to make clean hydrogen. The hydrogen generated in the Heartland Hydrogen Hub will be at least partly used for agricultural purposes, as hydrogen is a key component in making fertilizer.

Mid-Atlantic Hydrogen Hub: The Mid-Atlantic Hydrogen Hub spans parts of Pennsylvania, Delaware and New Jersey and will take advantage of repurposed infrastructure along the Delaware River.

Midwest Hydrogen Hub: The Midwest Hydrogen Hub is in Illinois, northwestern Indiana and southwestern Michigan and will produce hydrogen from, among other sources, nuclear power. Also, the Midwest Hydrogen Hub is located at a transportation crossroads for the United States, which made it appealing.

Pacific Northwest Hydrogen Hub: The Pacific Northwest Hydrogen Hub encompasses eastern Washington, northeastern Oregon and some parts of Montana and will produce hydrogen for making fertilizer. It will likely connect with the California Hydrogen Hub.

The hydrogen hubs that use natural gas to produce hydrogen will use carbon capture technology, senior administration officials said. The hydrogen hubs that use renewable clean energy will use a combination of new, clean energy sources and some will use existing sources of clean energy at the region.

Also, the hydrogen tax credit included in the Inflation Reduction Act will be a key component to the economic viability of these hubs. The guidance on how that tax credit will be adjudicated is not yet out yet, but is expected by the end of the year.

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Caterpillar is putting MASSIVE 240-ton electric haul truck to work in Vale mine

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Caterpillar is putting MASSIVE 240-ton electric haul truck to work in Vale mine

Mining company Vale is turning to Caterpillar to provide this massive, 240-ton battery-electric haul truck in a bid to slash carbon emissions at its mines by 2030.

Caterpillar and Vale have signed an agreement that will see the Brazilian mining company test severe-duty battery electric mining trucks like the 793 BEV (above), as well as V2G/V2x energy transfer systems and alcohol-powered trucks. The test will help Vale make better equipment choices as it works to achieve its goals of reducing direct and indirect carbon emissions 33% by 2030 and eliminating 100% of its net emissions by 2050.

If that sounds weird, consider that most cars and trucks in Brazil run on either pure ethyl alcohol/ethanol (E100) or “gasohol” (E25).

“We are developing a portfolio of options to decarbonize Vale’s operations, including electrification and the use of alternative fuels in the mines. The most viable solutions will be adopted,” explains Ludmila Nascimento, energy and decarbonization director Vale. “We believe that ethanol has great potential to contribute to the 2030 target because it is a fuel that has already been adopted on a large scale in Brazil, with an established supply network, and which requires an active partnership with manufacturers. We stand together to support them in this goal.”

Vale will test a 240-ton Cat 793 battery-electric haul truck at its operations in Minas Gerais, and put energy transfer solutions to a similar tests at Vale’s operations in Pará over the next two-three years. Caterpillar and Vale have also agreed to a joint study on the viability of a dual-fuel (ethanol/diesel) solution for existing ICE-powered assets.

Vale claims to be the world’s largest producer of iron ore and nickel, and says it’s committed to an investment of between $4 billion to $6 billion to meet its 2030 goal.

Cat 793 electric haul truck

During its debut in 2022, the Cat 793 haul truck was shown on a 4.3-mile test course at the company’s Tucson proving grounds. There, the 240-ton truck was able to achieve a top speed of over 37 mph (60 km/h) fully loaded. Further tests involved the loaded truck climbing a 10% grade for a full kilometer miles at 7.5 mph before unloading and turning around for the descent, using regenerative braking to put energy back into the battery on the way down.

Despite not giving out detailed specs, Caterpillar reps reported that the 793 still had enough charge in its batteries for to complete more testing cycles.

Electrek’s Take

Caterpillar-electric-mining-truck
Cat 793 EV at 2022 launch; via Caterpillar.

Electric equipment and mining to together like peanut butter and jelly. In confined spaces, the carbon emissions and ear-splitting noise of conventional mining equipment can create dangerous circumstances for miners and operators, and that can lead to injury or long-term disability that’s just going to exacerbate a mining operation’s ability to keep people working and minerals coming out of the ground.

By working with companies like Vale to prove that forward-looking electric equipment can do the job as well as well as (if not better than) their internal combustion counterparts, Caterpillar will go a long way towards converting the ICE faithful.

SOURCES | IMAGES: Caterpillar, Construction Equipment, and E&MJ.

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Argonne Nat’l Lab is spending big bucks to study BIG hydrogen vehicles

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Argonne Nat'l Lab is spending big bucks to study BIG hydrogen vehicles

Argonne National Laboratory is building a new research and development facility to independently test large-scale hydrogen fuel cell systems for heavy-duty and off-road applications with funding from the US Department of Energy.

The US Department of Energy (DOE) is hoping Argonne Nat’l Lab’s extensive fuel cell research experience, which dates back to 1996, will give it unique insights as it evaluates new polymer electrolyte membrane (PEM) fuel cell systems ranging from 150 to 600 kilowatts for use in industrial vehicle and stationary power generation applications.

The new Argonne test facility will help prove (or, it should be said, disprove) the validity of hydrogen as a viable fuel for transportation applications including heavy trucks, railroad locomotives, marine vessels, and heavy machines used in the agriculture, construction, and mining industries.

“The facility will serve as a national resource for analysis and testing of heavy-duty fuel cell systems for developers, technology integrators and end-users in heavy-duty transportation applications including [OTR] trucks, railroad locomotives, marine vessels, aircraft and vehicles used in the agriculture, construction and mining industries,” explains Ted Krause, laboratory relationship manager for Argonne’s hydrogen and fuel cell programs. “The testing infrastructure will help advance fuel cell performance and pave the way toward integrating the technology into all of these transportation applications.”

The Hydrogen and Fuel Cell Technologies Office (HFTO) of DOE’s Office of Energy Efficiency and Renewable Energy is dedicating about $4 million to help build the new Argonne facility, which is set to come online next fall.

Electrek’s Take

Medium-sized Hydrogen FC excavator concept; via Komatsu.

It’s going to be hard to convince me that the concentrated push for a technology as inefficient as hydrogen fuel cells has more to do with any real consumer or climate benefit than it does keeping the throngs of people it will take to manufacture, capture, transport, store, house, and effectively dispense hydrogen gainfully employed through the next election cycle.

As such, while case studies like the hydrogen combustion-powered heavy trucks that have been trialed at Anglo American’s Mogalakwena mine since 2021 (at top) and fuel cell-powered concepts like Komatsu’s medium-sized excavator (above) have proven that hydrogen as a fuel can definitely work on a job site level while producing far fewer harmful emissions than diesel, I think swappable batteries like the ones being shown off by Moog Construction and Firstgreen have a far brighter future.

Speaking of Moog, we talked to some of the engineers being their ZQuip modular battery systems on a HEP-isode of The Heavy Equipment Podcast a few months back. I’ve included it, below, in case that’s something you’d like to check out.

SOURCES | IMAGES: ANL, Komatsu, and NPROXX.

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Velocity truck rental adds 47 high-speed truck chargers to California dealer network

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Velocity truck rental adds 47 high-speed truck chargers to California dealer network

Velocity truck rental is doing its part to help commercial fleets electrify by energizing 47 high-powered charging stations at four strategic dealer locations across Southern California. And they’re doing it now.

The new Velocity Truck Rental & Leasing (VTRL) charging network isn’t some far-off goal being announced for PR purposes. The company says its new chargers are already in the ground, and set to be fully online and energized by the end of this month at at VTRL facilities in Rancho Dominguez (17), Fontana (14), the City of Industry (14), and San Diego (2).

45 120 kW Detroit e-Fill chargers make up the bulk of VTRL’s infrastructure project, while two DCFC stations from ChargePoint get them to 47. All of the chargers, however, where chosen specifically to cater to the needs of medium and heavy-duty battery electric work trucks.

The company says it chose the Detroit e-Fill commercial-grade chargers because they’ve already proven themselves in Daimler-heavy fleets with their ability to bring Class 8 Freightliner eCascadias, Class 6 and 7 Freightliner eM2 box trucks, and RIZON Class 4 and 5 cabover trucks, “to 80% state of charge in just 90 minutes or less.”

At Velocity, we are not just reacting to the shift towards electric mobility; we are at the forefront with our customers and actively shaping it. By integrating high-powered, commercial-grade charging solutions along key transit corridors, we are ensuring that our customers have the support they need today. This charging infrastructure investment is a testament to our commitment to helping our customers transition smoothly to electromobility solutions and to prepare for compliance with the Advanced Clean Fleets (ACF) regulations.

David Deon, velocity president

Velocity plans to offer flexible charging options to accommodate the needs of different fleets, including both managed, “charging as a service” subscription plans and self-managed/opportunity charging during daily routes. While trucks are charging, drivers and operators will be able to relax in comfortable break rooms equipped with WIFI, television, snacks, water, and restrooms.

Electrek’s Take

Image via DTNA.

While it feels a bit underwhelming to write about trucking companies simply following the letter of the law in California, the rollout of an all-electric, zero-emission commercial trucking fleet remains something that, I think, should be celebrated.

As such, I’m celebrating it. I hope you are, too.

SOURCE | IMAGES: Global Newswire; Daimler Trucks.

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