The Energy Pioneer
No Result
View All Result
  • Home
  • Clean Tech
    • Electric Vehicles
    • Energy Efficiency
    • Green Hydrogen
    • Smart Grid
    • Battery Storage
  • Green Finance
    • Public Financing
    • Private Financing
    • Carbon Markets
  • Policy
  • Renewable Energy
    • Wind
    • Solar
    • Hydropower
    • Nuclear
    • Hydrogen
    • Fossil Fuels
    • Geothermal
  • Regions
    • Africa
    • Asia
    • Europe
    • North America
    • Latin America
    • West Asia
    • Oceania
  • Features
  • Who We Are
    • About Us
    • EP Network
    • Contact Us
  • Home
  • Clean Tech
    • Electric Vehicles
    • Energy Efficiency
    • Green Hydrogen
    • Smart Grid
    • Battery Storage
  • Green Finance
    • Public Financing
    • Private Financing
    • Carbon Markets
  • Policy
  • Renewable Energy
    • Wind
    • Solar
    • Hydropower
    • Nuclear
    • Hydrogen
    • Fossil Fuels
    • Geothermal
  • Regions
    • Africa
    • Asia
    • Europe
    • North America
    • Latin America
    • West Asia
    • Oceania
  • Features
  • Who We Are
    • About Us
    • EP Network
    • Contact Us
No Result
View All Result
The Energy Pioneer
No Result
View All Result
  • Home
  • Clean Tech
  • Green Finance
  • Policy
  • Renewable Energy
  • Regions
  • Features
  • Who We Are
Home Clean Tech Battery Storage

The Battery Industry Prepares for the Next Phase of Energy Storage Growth

Q&A with Roger Miksad, President and Executive Director of Battery Council International

byFeatured Expert: Roger Miksad
September 29, 2026
Reading Time: 4 mins read

Roger Miksad, President and Executive Director of Battery Council International (BCI), a North American trade association representing battery manufacturers, recyclers, suppliers, and distributors, discusses emerging battery chemistries, energy storage demand, domestic manufacturing, and battery recycling.

RELATED POSTS

Rule 9-6 and the Bay Area’s Shift to Cleaner Water Heating

AI Can Scale Regenerative Agriculture – If Farmers Trust It

ClimateTech Series: How Battery Companies are Scaling Production and Limiting CapEx

Q: What role does BCI expect newly commercialized battery chemistries — such as sodium-ion, flow, and zinc-ion — to play in meeting energy storage demand?

A: The bottom line is that the market for energy storage is growing fast, and both the private and public sectors are looking to the full breadth of battery chemistries to fill the gap. No battery is perfect for every application, and even if one were, the uncertain nature of global supply chains requires diversification to ensure end users can get the batteries they need.

Industrial valve regulated, tubular plate, lead-acid batteries, OPzV type-Photo by Vanya Smythe on Unsplash

BCI is encouraged by developments in advanced lead, flow, sodium, and other emerging battery chemistries as they seek a path to widespread adoption and commercialization. Of course, we believe incumbent technologies – like lithium-ion cells for EV drivetrains or lead batteries for low-voltage applications – will continue to fill an important role for decades to come. But we’re doing everything we can to ensure other emerging chemistries have the support to succeed, drawing on the century of continuous improvement and growth we’ve seen in lead batteries.

That’s why BCI has individual working groups for emerging chemistries such as sodium and flow, and why we host focused events to discuss market developments and opportunities. For instance, we held BCI’s first Flow Batteries North America conference last year, the first dedicated event on the continent for that battery technology. About 200 delegates attended, and we’ll be hosting another event in Phoenix this October to build on that success.

Admittedly, it’s early days for flow batteries and other emerging chemistries. But we’re excited by the potential and will do everything we can to support a vibrant, diverse marketplace for energy storage.

Q: How has demand for long-duration energy storage (LDES) and battery energy storage systems (BESS) for renewable energy projects changed the landscape of battery development and commercialization in the US and beyond?

Buy JNews
ADVERTISEMENT

A: LDES and BESS demand, driven by renewables integration and now AI data-center growth, has reshaped both technology priorities and industry structure. As you know, the American BESS market is projected to grow significantly over the next five years.

The challenge, then, is ensuring supply meets demand. That harkens back to my earlier point about a diversity of energy storage solutions. Production needs to scale up across the board and include both incumbent and emerging battery chemistries.

At BCI, we’ve seen the industry grow much closer to the public sector as a result of this trend. In the US, some 10 trillion dollars in economic output is related to or reliant on batteries, and policymakers understand the risks if we fall short of our energy storage requirements. The US Department of Energy and its National Laboratories have made a concerted effort to support research and innovation through programs like the Consortium for Lead Battery Leadership, which is managed by BCI. We were awarded a grant in 2024 specifically to explore improvements to the cost-effectiveness of lead batteries to help meet the needs of grid-scale storage. This type of consortia-based, public-private partnership research program ensures that American tax dollars and the nation’s preeminent research laboratories bring benefits and advancement to a broad spectrum of industry players. 

The North American battery industry is strong, but the grid-scale storage demands of the future are admittedly daunting. It will take continued public-private partnerships at the federal, state, and local levels to foster the kind of battery development and commercialization needed to reliably meet future demand.

Q: How can battery companies scale domestic manufacturing of new technologies without falling victim to the large capital expenditures (CapEx) of battery manufacturing facilities?

A: In short, building battery production capacity is an expensive, long-term effort that necessarily requires substantial capital. However, BCI fought hard to ensure that federal production credits for battery manufacturers incentivize that investment and accelerate future expansion projects.

Congress approved critical 45X production credits for battery companies in 2022, and I’m pleased to say that Congress and the White House have protected those credits since then. That’s because energy storage manufacturing is a bipartisan concern we must address with urgency. It’s also because this was not a handout, but a credit for every new battery produced.

Building a safe, effective battery manufacturing facility is expensive, and there’s no way around that. But finely calibrated policies like this one can ease the burden for domestic manufacturers – and we hope that, in the near future, Congress will recognize the benefit of the original 45X provisions and consider expanding and extending them to support this long-term effort to scale up battery manufacturing.

Q: How can end-of-life (EoL) and recycling processes for batteries provide the critical materials needed for the energy transition, and what needs to be put in place and what needs to be put in place, policy, best practices, financial incentives, to ensure a high recycling rate?

A: The good news for critical battery materials is that a successful, proven recovery model already exists: the US lead-acid battery recycling network.

BCI just published its latest recycling rate study, showing that lead batteries maintained their impressive 98% recycling rate, recovering more than 174 million batteries and more than 2.2 billion pounds of lead annually. Long-term rates have averaged around 99% since 2000, showing this isn’t a single data point but a sustained commitment to success and circularity.

Lead isn’t the only critical mineral designated by the US Geological Survey, however, and other critical battery minerals still have significant room for improvement in recovery rates. But recycling processes for all battery chemistries can be informed by the success of lead battery recycling – most notably, a system built on industry-led standards and a proven commercial model for material recovery, rather than reliance on regulatory mandates or costly government bureaucracy.

The battery industry fundamentally needs raw materials to do business. It’s also best equipped to understand the supply chain challenges and infrastructure needs required to achieve a similar recovery rate for other battery chemistries. That knowledge, coupled with the right government incentives and partnerships, is the best path to unlocking circularity for all critical battery minerals.

Tags: battery and energy storage systems (BESS)Battery Council InternationalBattery RecyclingBCIlithium ion batterylithium iron phosphatelong-duration energy storage (LDES)Q&ASodium-ion battery
ShareTweetShare
Featured Expert: Roger Miksad

Featured Expert: Roger Miksad

Roger Miksad is President and Executive Director of Battery Council International, a trade association formed in 1924 to advance the North American battery industry. He joined BCI in 2020 and today leads the organization’s efforts to advance battery manufacturing and recycling through technological innovation and sound government policy.

Related Posts

Rule 9-6 and the Bay Area’s Shift to Cleaner Water Heating
Features

Rule 9-6 and the Bay Area’s Shift to Cleaner Water Heating

September 24, 2026
AI Can Scale Regenerative Agriculture – If Farmers Trust It
Features

AI Can Scale Regenerative Agriculture – If Farmers Trust It

September 22, 2026
ClimateTech Series: How Battery Companies are Scaling Production and Limiting CapEx
Battery Storage

ClimateTech Series: How Battery Companies are Scaling Production and Limiting CapEx

September 21, 2026
Climate Targets Need Money
Features

Climate Targets Need Money

September 16, 2026
Billion-Dollar Disasters: What the Data Reveals About Extreme Weather Costs
Features

Billion-Dollar Disasters: What the Data Reveals About Extreme Weather Costs

September 11, 2026
The Five Most Important Moments in Virtual Power Plant History
Smart Grid

The Five Most Important Moments in Virtual Power Plant History

September 10, 2026

Popular Stories

  • AI Can Scale Regenerative Agriculture – If Farmers Trust It

    AI Can Scale Regenerative Agriculture – If Farmers Trust It

    0 shares
    Share 0 Tweet 0
  • The Race to Host AI: Data Centres in Water-Scarce India

    0 shares
    Share 0 Tweet 0
  • Vietnam’s Oil Buffer Faces Pressure as the Iran War Disrupts Global Oil Flows

    0 shares
    Share 0 Tweet 0
  • The Philippines’ Nuclear Gamble

    0 shares
    Share 0 Tweet 0
  • The Sargassum Paradox: Why the Caribbean’s Clean Energy Hope is a Supply Chain Trap

    0 shares
    Share 0 Tweet 0

Actionable Info

From The Energy Pioneer

Where the energy transition connects.

Journalists, investors, companies, and clean energy leaders — all in one network.

Explore EP Network →

The Energy Pioneer

The Energy Pioneer covers the global energy transition — from clean tech and green finance to policy and renewable energy.

Recent Posts

  • The Battery Industry Prepares for the Next Phase of Energy Storage Growth
  • Why China is expanding Coal-to-Chemical and Gas Expansion alongside Renewables
  • Integrated Resource Planning Offers a Strategy to Accelerate Clean Energy

Quick Links

  • Home
  • Clean Tech
  • Renewable Energy
  • Green Finance
  • Policy
  • Regions
  • Features
  • Who We Are

© 2026 The Energy Pioneer | All Rights Reserved. |

From The Energy Pioneer

Meet EP Network.

Enter your email and our team will reach out — or sign up directly.

Please enable JavaScript in your browser to complete this form.
Loading
or sign up directly →
From The Energy Pioneer

You read about the energy transition. EP Network connects you to it.

Leave your email and our team will reach out.

Please enable JavaScript in your browser to complete this form.
Loading
or
Sign up now →
No Result
View All Result
  • Home
  • Clean Tech
    • Electric Vehicles
    • Energy Efficiency
    • Green Hydrogen
    • Smart Grid
    • Battery Storage
  • Green Finance
    • Public Financing
    • Private Financing
    • Carbon Markets
  • Policy
  • Renewable Energy
    • Wind
    • Solar
    • Hydropower
    • Nuclear
    • Hydrogen
    • Fossil Fuels
    • Geothermal
  • Regions
    • Africa
    • Asia
    • Europe
    • North America
    • Latin America
    • West Asia
    • Oceania
  • Features
  • Who We Are
    • About Us
    • EP Network
    • Contact Us

© 2026 The Energy Pioneer | All Rights Reserved. |