Aug 14, 2025 · 46m · catalyst

The case for sodium-ion

Landon Mossberg · 29m spoken Shayle Kann · 9m spoken
0:00 / 0:00

gold bands on the timeline = statements, start to end. Hover to read, click to jump. CC turns on captions

In this episode of Catalyst, host Shayle Kann and Peak Energy CEO Landon Mossberg explore the technical, commercial, and economic potential of sodium-ion batteries, detailing how sodium iron pyrophosphate (NFPP) chemistry and passive system engineering can disrupt lithium-ion's dominance in grid-scale energy storage.

How this conversation actually went

Every chapter scored 0–10 on four independent dynamics. Hover any point for the reasoning behind the score. Shayle holds 22.8% of the talking time here. How this is scored →

Shayle as informed peer 5.4 Guest teaching 5.3 Guest disagreement 1.4 Shayle pushing back 2.8
05100:0015:0030:0045:004:02–8:55 · Shayle as informed peer 6/10 Global Status and Manufacturing Landscape of Sodium-Ion Technology Shayle contextualizes the historical shift from NMC to LFP as a precedent for sodium-ion's energy density trade-offs. Landon explains the current global capacity figures and highlights the difference between layered oxides and NFPP chemistries.8:56–12:53 · Shayle as informed peer 5/10 Sodium-Ion End-Use Applications and Chemistries Shayle presses Landon on why Chinese manufacturers are deploying sodium-ion in scooters despite low energy density. Landon clarifies that high ionic conductivity and cold weather advantages drive smaller mobile applications.12:53–17:20 · Shayle as informed peer 4/10 Commercial Grid Deployments and Chinese Storage Policies Shayle admits not knowing if sodium-ion duration cost scaling matches lithium-ion, allowing Landon to outline the operational similarities between the chemistries. Landon also touches upon Chinese interconnection policies incentivizing non-lithium storage.17:21–21:08 · Shayle as informed peer 5/10 Sodium-Ion Supply Chains and Upstream Raw Materials Shayle inquires about active materials and supply chain geography. Landon details how synthetic sodium bicarbonate and US Trona reserves eliminate the upstream raw material bottlenecks that plague lithium.21:11–27:11 · Shayle as informed peer 5/10 Mid-Roll Sponsor Break: Bloom Energy, Engie, and Energy Hub Following mid-roll sponsor spots, Shayle frames the Capex comparison against incumbent LFP. Landon reframes Peak Energy's posture, insisting they are not dogmatically tied to sodium if better technologies arise.27:12–35:28 · Shayle as informed peer 7/10 Passive Thermal Management and System-Level Cost Parity Shayle pushes back to ensure Landon distinguishes balance of system costs from total installed Capex. Landon details how high-temperature tolerance enables completely passive cooling, eliminating moving parts and auxiliary power loads.35:29–42:23 · Shayle as informed peer 5/10 Total Cost of Ownership, O&M, and Degradation Performance Shayle questions the certainty of cycle life claims on an unproven chemistry. Landon cites internal lab test data showing over 94% state of health after 3,000 cycles at 45°C due to absent graphite exfoliation.42:24–45:55 · Shayle as informed peer 6/10 Domestic US Manufacturing Strategy and Future Technological Innovations Shayle asks about Peak Energy's roadmap for domestic US cell manufacturing. Landon explains their commercial off-take strategy and points toward future design innovations like anode-less architectures.4:02–8:55 · Guest teaching 5/10 Global Status and Manufacturing Landscape of Sodium-Ion Technology Shayle contextualizes the historical shift from NMC to LFP as a precedent for sodium-ion's energy density trade-offs. Landon explains the current global capacity figures and highlights the difference between layered oxides and NFPP chemistries.8:56–12:53 · Guest teaching 6/10 Sodium-Ion End-Use Applications and Chemistries Shayle presses Landon on why Chinese manufacturers are deploying sodium-ion in scooters despite low energy density. Landon clarifies that high ionic conductivity and cold weather advantages drive smaller mobile applications.12:53–17:20 · Guest teaching 5/10 Commercial Grid Deployments and Chinese Storage Policies Shayle admits not knowing if sodium-ion duration cost scaling matches lithium-ion, allowing Landon to outline the operational similarities between the chemistries. Landon also touches upon Chinese interconnection policies incentivizing non-lithium storage.17:21–21:08 · Guest teaching 5/10 Sodium-Ion Supply Chains and Upstream Raw Materials Shayle inquires about active materials and supply chain geography. Landon details how synthetic sodium bicarbonate and US Trona reserves eliminate the upstream raw material bottlenecks that plague lithium.21:11–27:11 · Guest teaching 4/10 Mid-Roll Sponsor Break: Bloom Energy, Engie, and Energy Hub Following mid-roll sponsor spots, Shayle frames the Capex comparison against incumbent LFP. Landon reframes Peak Energy's posture, insisting they are not dogmatically tied to sodium if better technologies arise.27:12–35:28 · Guest teaching 6/10 Passive Thermal Management and System-Level Cost Parity Shayle pushes back to ensure Landon distinguishes balance of system costs from total installed Capex. Landon details how high-temperature tolerance enables completely passive cooling, eliminating moving parts and auxiliary power loads.35:29–42:23 · Guest teaching 7/10 Total Cost of Ownership, O&M, and Degradation Performance Shayle questions the certainty of cycle life claims on an unproven chemistry. Landon cites internal lab test data showing over 94% state of health after 3,000 cycles at 45°C due to absent graphite exfoliation.42:24–45:55 · Guest teaching 4/10 Domestic US Manufacturing Strategy and Future Technological Innovations Shayle asks about Peak Energy's roadmap for domestic US cell manufacturing. Landon explains their commercial off-take strategy and points toward future design innovations like anode-less architectures.4:02–8:55 · Guest disagreement 1/10 Global Status and Manufacturing Landscape of Sodium-Ion Technology Shayle contextualizes the historical shift from NMC to LFP as a precedent for sodium-ion's energy density trade-offs. Landon explains the current global capacity figures and highlights the difference between layered oxides and NFPP chemistries.8:56–12:53 · Guest disagreement 2/10 Sodium-Ion End-Use Applications and Chemistries Shayle presses Landon on why Chinese manufacturers are deploying sodium-ion in scooters despite low energy density. Landon clarifies that high ionic conductivity and cold weather advantages drive smaller mobile applications.12:53–17:20 · Guest disagreement 1/10 Commercial Grid Deployments and Chinese Storage Policies Shayle admits not knowing if sodium-ion duration cost scaling matches lithium-ion, allowing Landon to outline the operational similarities between the chemistries. Landon also touches upon Chinese interconnection policies incentivizing non-lithium storage.17:21–21:08 · Guest disagreement 1/10 Sodium-Ion Supply Chains and Upstream Raw Materials Shayle inquires about active materials and supply chain geography. Landon details how synthetic sodium bicarbonate and US Trona reserves eliminate the upstream raw material bottlenecks that plague lithium.21:11–27:11 · Guest disagreement 2/10 Mid-Roll Sponsor Break: Bloom Energy, Engie, and Energy Hub Following mid-roll sponsor spots, Shayle frames the Capex comparison against incumbent LFP. Landon reframes Peak Energy's posture, insisting they are not dogmatically tied to sodium if better technologies arise.27:12–35:28 · Guest disagreement 2/10 Passive Thermal Management and System-Level Cost Parity Shayle pushes back to ensure Landon distinguishes balance of system costs from total installed Capex. Landon details how high-temperature tolerance enables completely passive cooling, eliminating moving parts and auxiliary power loads.35:29–42:23 · Guest disagreement 1/10 Total Cost of Ownership, O&M, and Degradation Performance Shayle questions the certainty of cycle life claims on an unproven chemistry. Landon cites internal lab test data showing over 94% state of health after 3,000 cycles at 45°C due to absent graphite exfoliation.42:24–45:55 · Guest disagreement 1/10 Domestic US Manufacturing Strategy and Future Technological Innovations Shayle asks about Peak Energy's roadmap for domestic US cell manufacturing. Landon explains their commercial off-take strategy and points toward future design innovations like anode-less architectures.4:02–8:55 · Shayle pushing back 2/10 Global Status and Manufacturing Landscape of Sodium-Ion Technology Shayle contextualizes the historical shift from NMC to LFP as a precedent for sodium-ion's energy density trade-offs. Landon explains the current global capacity figures and highlights the difference between layered oxides and NFPP chemistries.8:56–12:53 · Shayle pushing back 4/10 Sodium-Ion End-Use Applications and Chemistries Shayle presses Landon on why Chinese manufacturers are deploying sodium-ion in scooters despite low energy density. Landon clarifies that high ionic conductivity and cold weather advantages drive smaller mobile applications.12:53–17:20 · Shayle pushing back 2/10 Commercial Grid Deployments and Chinese Storage Policies Shayle admits not knowing if sodium-ion duration cost scaling matches lithium-ion, allowing Landon to outline the operational similarities between the chemistries. Landon also touches upon Chinese interconnection policies incentivizing non-lithium storage.17:21–21:08 · Shayle pushing back 1/10 Sodium-Ion Supply Chains and Upstream Raw Materials Shayle inquires about active materials and supply chain geography. Landon details how synthetic sodium bicarbonate and US Trona reserves eliminate the upstream raw material bottlenecks that plague lithium.21:11–27:11 · Shayle pushing back 3/10 Mid-Roll Sponsor Break: Bloom Energy, Engie, and Energy Hub Following mid-roll sponsor spots, Shayle frames the Capex comparison against incumbent LFP. Landon reframes Peak Energy's posture, insisting they are not dogmatically tied to sodium if better technologies arise.27:12–35:28 · Shayle pushing back 5/10 Passive Thermal Management and System-Level Cost Parity Shayle pushes back to ensure Landon distinguishes balance of system costs from total installed Capex. Landon details how high-temperature tolerance enables completely passive cooling, eliminating moving parts and auxiliary power loads.35:29–42:23 · Shayle pushing back 3/10 Total Cost of Ownership, O&M, and Degradation Performance Shayle questions the certainty of cycle life claims on an unproven chemistry. Landon cites internal lab test data showing over 94% state of health after 3,000 cycles at 45°C due to absent graphite exfoliation.42:24–45:55 · Shayle pushing back 2/10 Domestic US Manufacturing Strategy and Future Technological Innovations Shayle asks about Peak Energy's roadmap for domestic US cell manufacturing. Landon explains their commercial off-take strategy and points toward future design innovations like anode-less architectures.

speaking balance: gold is Shayle, purple is the guest (3 minute bins)

0:00 · Shayle 30.6% · guest 69.4%0:00 · Shayle 30.6% · guest 69.4%3:00 · Shayle 64.5% · guest 35.5%3:00 · Shayle 64.5% · guest 35.5%6:00 · Shayle 21.4% · guest 78.6%6:00 · Shayle 21.4% · guest 78.6%9:00 · Shayle 25.1% · guest 74.9%9:00 · Shayle 25.1% · guest 74.9%12:00 · Shayle 16.8% · guest 83.2%12:00 · Shayle 16.8% · guest 83.2%15:00 · Shayle 38.4% · guest 61.6%15:00 · Shayle 38.4% · guest 61.6%18:00 · Shayle 2.5% · guest 97.5%18:00 · Shayle 2.5% · guest 97.5%21:00 · Shayle 26.4% · guest 73.6%21:00 · Shayle 26.4% · guest 73.6%24:00 · Shayle 27.5% · guest 72.5%24:00 · Shayle 27.5% · guest 72.5%27:00 · Shayle 22.8% · guest 77.2%27:00 · Shayle 22.8% · guest 77.2%30:00 · Shayle 5% · guest 95%30:00 · Shayle 5% · guest 95%33:00 · Shayle 26.4% · guest 73.6%33:00 · Shayle 26.4% · guest 73.6%36:00 · Shayle 8.5% · guest 91.5%36:00 · Shayle 8.5% · guest 91.5%39:00 · Shayle 0% · guest 100%39:00 · Shayle 0% · guest 100%42:00 · Shayle 22.6% · guest 77.4%42:00 · Shayle 22.6% · guest 77.4%45:00 · Shayle 33.7% · guest 66.3%45:00 · Shayle 33.7% · guest 66.3%
Sharpest disagreement ▶ 24:18 Reframing company identity

Landon counters Shayle's premise by rejecting the label of being purely a 'sodium-ion company' in favor of being chemistry-agnostic system integrators.

Hardest push from Shayle ▶ 33:58 Pressing on Capex definition

Shayle interrupts to demand clarification on whether claimed parity applies to total installed Capex or purely balance of system hardware.

Biggest teaching moment ▶ 40:35 Detailed degradation chemistry lecture

Landon educates the host with empirical lab cycling comparisons showing NFPP retaining 94.5% health compared to LFP's 80% at elevated operating temperatures.

Shayle holds their own ▶ 27:07 Explaining energy density BOS penalty

Shayle demonstrates solid domain knowledge by analogizing battery density BOS penalties directly to solar panel efficiency trade-offs.

the scores for every segment, with the reasoning behind each
ChapterTopicShayle as informed peerGuest teachingGuest disagreementShayle pushing backWhy
Global Status and Manufacturing Landscape of Sodium-Ion Technology 6512 Shayle contextualizes the historical shift from NMC to LFP as a precedent for sodium-ion's energy density trade-offs. Landon explains the current global capacity figures and highlights the difference between layered oxides and NFPP chemistries.
Sodium-Ion End-Use Applications and Chemistries 5624 Shayle presses Landon on why Chinese manufacturers are deploying sodium-ion in scooters despite low energy density. Landon clarifies that high ionic conductivity and cold weather advantages drive smaller mobile applications.
Commercial Grid Deployments and Chinese Storage Policies 4512 Shayle admits not knowing if sodium-ion duration cost scaling matches lithium-ion, allowing Landon to outline the operational similarities between the chemistries. Landon also touches upon Chinese interconnection policies incentivizing non-lithium storage.
Sodium-Ion Supply Chains and Upstream Raw Materials 5511 Shayle inquires about active materials and supply chain geography. Landon details how synthetic sodium bicarbonate and US Trona reserves eliminate the upstream raw material bottlenecks that plague lithium.
Mid-Roll Sponsor Break: Bloom Energy, Engie, and Energy Hub 5423 Following mid-roll sponsor spots, Shayle frames the Capex comparison against incumbent LFP. Landon reframes Peak Energy's posture, insisting they are not dogmatically tied to sodium if better technologies arise.
Passive Thermal Management and System-Level Cost Parity 7625 Shayle pushes back to ensure Landon distinguishes balance of system costs from total installed Capex. Landon details how high-temperature tolerance enables completely passive cooling, eliminating moving parts and auxiliary power loads.
Total Cost of Ownership, O&M, and Degradation Performance 5713 Shayle questions the certainty of cycle life claims on an unproven chemistry. Landon cites internal lab test data showing over 94% state of health after 3,000 cycles at 45°C due to absent graphite exfoliation.
Domestic US Manufacturing Strategy and Future Technological Innovations 6412 Shayle asks about Peak Energy's roadmap for domestic US cell manufacturing. Landon explains their commercial off-take strategy and points toward future design innovations like anode-less architectures.

Statements from this episode (18)

Assertion Supported
Mossberg: LFP battery prices have dropped by roughly half in two years
“Two years ago, LFP was twice as, almost twice as expensive as it is today”
Landon Mossberg Aug 14, 2025 ▶ 5:47
Assertion Supported
Mossberg: Global sodium-ion battery capacity is between 30 and 100 GWh
“You'd be pretty safe in saying there's at least 30 gigawatt hours, probably as much as a hundred gigawatt hours of sodium ion capacity worldwide for all different variants”
Landon Mossberg Aug 14, 2025 ▶ 7:07
Assertion Supported
Mossberg: Almost all global sodium-ion battery capacity is in China
“Almost all of it's in China. There's some sort of token projects and stuff elsewhere, but almost all of it's in China.”
Landon Mossberg Aug 14, 2025 ▶ 8:06
Assertion Supported
Mossberg: CATL hybrid vehicle battery packs combine sodium-ion and LFP
“CATL is been very vocal about their hybrid pack technology where they're using, I think it's a layered oxide based sodium ion, but they basically have some portion of a vehicle pack that is sodium for primarily for power and for cold weather performance, and t…”
Landon Mossberg Aug 14, 2025 ▶ 11:49
Prediction Open · timeframe Dec 2030
Chinese sodium-ion prices will undercut LFP by 2030, Mossberg predicts
“From the quotes and what we're hearing from the suppliers, not just cells, but also materials, we see a really low-risk pathway to the crossover point on price with LFP coming somewhere between twenty-twenty-eight and twenty-thirty out of China.”
Landon Mossberg Aug 14, 2025 ▶ 12:15
Assertion Supported
Mossberg: Chinese sodium-ion stationary storage demonstrators are at tens of MWh scale
“You saw the first announcements kind of late last year, early this year with first sort of demonstrator projects, and those are in the, like, tens of megawatt hour scale. and we know there are multiple other in the pipeline.”
Landon Mossberg Aug 14, 2025 ▶ 13:09
Assertion Supported
Chinese policy gives non-lithium storage priority in interconnection queues
“Some of this is driven by some policy in China that, That provided projects that, that do non-lithium storage with some preference in, like, interconnect queue speed and stuff like that, or the equivalent of whatever the interconnect queue is in China. and …”
Landon Mossberg Aug 14, 2025 ▶ 13:23
Assertion Supported
The US holds the world's largest natural trona reserves
“The U S has the world's largest natural, naturally exploitable proven Trona reserves.”
Landon Mossberg Aug 14, 2025 ▶ 19:18
Prediction Not checkable as stated
Waiting 4-5 years cedes sodium-ion economy of scale to China
“So if we wait for, Four or five years to get into this game, we're going to be in a similar place that we are today on LFP, but, ah, today at least, you're not facing such a huge, ah, economy of scale challenge.”
Landon Mossberg Aug 14, 2025 ▶ 20:48
Assertion Not checkable as stated
NFPP sodium-ion cells currently cost $15-$30/kWh more than LFP
“Depending on which LFP you're comparing to, the cells that we're working on are somewhere between 15 to 30 dollars per kilowatt hour more expensive than equivalent LFP on a cost per kilowatt hour basis.”
Landon Mossberg Aug 14, 2025 ▶ 26:09
Prediction Open · timeframe Aug 2028
Mossberg: Sodium-ion cell prices will drop ~$20/kWh over next 2–3 years
“We can see pretty clearly for the next two years, because we have quotes from both from raw material suppliers and from cell suppliers that take the, you know, like the price is falling by about 20 dollars per kilowatt hour over the next two, two-ish years, tw…”
Landon Mossberg Aug 14, 2025 ▶ 26:44
Prediction Not checkable as stated
Mossberg: Sodium-ion cells will remain ~$10/kWh more expensive than LFP in 2028
“I think we'll still be about a 10 dollar per kilowatt hour more expensive if you talk like 20, 28.”
Landon Mossberg Aug 14, 2025 ▶ 27:02
Assertion Supported
Peak Energy deploying world's first passively cooled grid-scale sodium-ion battery
“The first three and a half megawatt hour unit of capacity is going into the grid right now, and in Denver, it's going to be the largest outside of China. All that's exciting, but what I'm really excited about is that it's the first passively completely passive…”
Landon Mossberg Aug 14, 2025 ▶ 32:53
Assertion Not checkable as stated
Peak Energy reaches balance-of-system cost parity with LFP today
“We try to depopulate a lot of the subsystems that drive cost, complexity, and energy density loss here. And what that lets us do is actually get to a balance of system cost Despite a serious energy density penalty that is already today pretty much on par with …”
Landon Mossberg Aug 14, 2025 ▶ 33:37
Assertion Partly supported
Hardware is only one-third of total grid battery project costs
“Today, you know, the cost of the hardware is probably only about a third of the total project cost. O&M, so all operating and maintenance, including Like, degradation maintenance, aux power, RTE losses, that is about another third of the total cost, NPV'd at, …”
Landon Mossberg Aug 14, 2025 ▶ 36:29
Assertion Not checkable as stated
Peak Energy's passive sodium-ion system uses 50x less aux power than LFP
“Just on aux power, we're 50 times, a little bit more than 50 times more efficient. We use 50 times less power than an equivalent LFP system.”
Landon Mossberg Aug 14, 2025 ▶ 37:31
Assertion Not checkable as stated
Peak Energy claims $75/kWh NPV benefit over LFP in hot climates
“If you add all that stuff together, we're at about, in a hot region, like let's take like Miami or Phoenix, we're at about a 75 dollar per kilowatt hour NPV benefit on a TCO basis versus an equivalent LFP system.”
Landon Mossberg Aug 14, 2025 ▶ 38:13
Assertion Not checkable as stated
NFPP retains 94.5% health at 3,000 cycles versus LFP's 80%
“We got two cells, equivalent cells, same size on test in our lab right now. LFP is at about 26,026 hundred cycles, and it's at 80% state of health. NFPP is almost 3000 cycles same cell, and we're at 95 94.5 percent.”
Landon Mossberg Aug 14, 2025 ▶ 40:59
Made with StarZero

Turn any episode into a week of clips.

This entire site, over 200 episodes transcribed, diarized, checked and made playable, runs on the StarZero media pipeline. Drop in your own episode and the podcast clipper finds the moments worth sharing, cuts them, captions them, and reframes them for every feed.