May 25, 2023 · 57m · catalyst

Four ways to store sunlight

Andy Lubershane · 36m spoken Shayle Kann · 16m spoken
0:00 / 0:00

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In this episode of Catalyst, host Shayle Kann and Energy Impact Partners Head of Research Andy Lubershane analyze the challenge of replacing the nation's 47-day fossil energy stockpile, exploring four distinct clean storage pathways: lithium-ion batteries, thermal energy storage, multi-day iron-air batteries, and clean hydrogen.

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 31.7% of the talking time here. How this is scored →

Shayle as informed peer 5.3 Guest teaching 4.1 Guest disagreement 1.1 Shayle pushing back 1.9
05100:0015:0030:0045:000:30–3:35 · Shayle as informed peer 0/10 Promotions for Upcoming Climate Tech Events Promotional announcements, event sponsorships, and introductory voiceover. There is no substantive technical dialogue in this housekeeping segment.3:39–14:18 · Shayle as informed peer 6/10 Shayle Kann Introduces the Four Ways to Store Sunlight Shayle and Andy establish the macro baseline of 47 days of fossil fuel storage versus negligible battery capacity today. Shayle probes whether fossil stockpiles exist by strategic design or market consequence, while Andy contextualizes the primary energy numbers.14:19–27:21 · Shayle as informed peer 7/10 Category 1: Lithium-Ion Batteries and Their Economic Limits The conversation examines lithium-ion battery duration limits and economic cost floors. Shayle interjects with precise industry context regarding total installed turnkey costs versus cell-level costs to clarify Andy's projections.27:25–39:39 · Shayle as informed peer 6/10 Midroll Sponsor Break: Bloom Energy and ENGIE Solutions Following midroll sponsor reads, Andy breaks down thermal energy storage thermodynamics and past operational failures with molten salts. Shayle connects the discussion to portfolio insights around industrial power-to-heat applications.39:39–46:34 · Shayle as informed peer 7/10 Category 3: Multi-Day Iron-Air Batteries and Form Energy Discussing Form Energy's iron-air battery, Andy explains capacity resource valuation and low round-trip efficiency trade-offs. Shayle articulates grid modeling findings on how multi-day storage complements short-duration assets during renewable lulls.46:35–55:38 · Shayle as informed peer 6/10 Category 4: Clean Hydrogen as Strategic Grid Storage Andy walks through the severe power-to-power round-trip efficiency penalties of clean hydrogen while explaining why turbine retrofits and chemical feedstocks create long-term viability. Shayle tests whether gas turbine retrofits justify optimism or skepticism.55:39–57:06 · Shayle as informed peer 5/10 The 'Half' Way: Carbon Capture and Storage on Fossil Fuels A brief closing exchange frames carbon capture on fossil assets as intermillennial stored sunlight competing directly with long-duration storage technologies.0:30–3:35 · Guest teaching 0/10 Promotions for Upcoming Climate Tech Events Promotional announcements, event sponsorships, and introductory voiceover. There is no substantive technical dialogue in this housekeeping segment.3:39–14:18 · Guest teaching 5/10 Shayle Kann Introduces the Four Ways to Store Sunlight Shayle and Andy establish the macro baseline of 47 days of fossil fuel storage versus negligible battery capacity today. Shayle probes whether fossil stockpiles exist by strategic design or market consequence, while Andy contextualizes the primary energy numbers.14:19–27:21 · Guest teaching 5/10 Category 1: Lithium-Ion Batteries and Their Economic Limits The conversation examines lithium-ion battery duration limits and economic cost floors. Shayle interjects with precise industry context regarding total installed turnkey costs versus cell-level costs to clarify Andy's projections.27:25–39:39 · Guest teaching 5/10 Midroll Sponsor Break: Bloom Energy and ENGIE Solutions Following midroll sponsor reads, Andy breaks down thermal energy storage thermodynamics and past operational failures with molten salts. Shayle connects the discussion to portfolio insights around industrial power-to-heat applications.39:39–46:34 · Guest teaching 4/10 Category 3: Multi-Day Iron-Air Batteries and Form Energy Discussing Form Energy's iron-air battery, Andy explains capacity resource valuation and low round-trip efficiency trade-offs. Shayle articulates grid modeling findings on how multi-day storage complements short-duration assets during renewable lulls.46:35–55:38 · Guest teaching 6/10 Category 4: Clean Hydrogen as Strategic Grid Storage Andy walks through the severe power-to-power round-trip efficiency penalties of clean hydrogen while explaining why turbine retrofits and chemical feedstocks create long-term viability. Shayle tests whether gas turbine retrofits justify optimism or skepticism.55:39–57:06 · Guest teaching 4/10 The 'Half' Way: Carbon Capture and Storage on Fossil Fuels A brief closing exchange frames carbon capture on fossil assets as intermillennial stored sunlight competing directly with long-duration storage technologies.0:30–3:35 · Guest disagreement 0/10 Promotions for Upcoming Climate Tech Events Promotional announcements, event sponsorships, and introductory voiceover. There is no substantive technical dialogue in this housekeeping segment.3:39–14:18 · Guest disagreement 2/10 Shayle Kann Introduces the Four Ways to Store Sunlight Shayle and Andy establish the macro baseline of 47 days of fossil fuel storage versus negligible battery capacity today. Shayle probes whether fossil stockpiles exist by strategic design or market consequence, while Andy contextualizes the primary energy numbers.14:19–27:21 · Guest disagreement 1/10 Category 1: Lithium-Ion Batteries and Their Economic Limits The conversation examines lithium-ion battery duration limits and economic cost floors. Shayle interjects with precise industry context regarding total installed turnkey costs versus cell-level costs to clarify Andy's projections.27:25–39:39 · Guest disagreement 1/10 Midroll Sponsor Break: Bloom Energy and ENGIE Solutions Following midroll sponsor reads, Andy breaks down thermal energy storage thermodynamics and past operational failures with molten salts. Shayle connects the discussion to portfolio insights around industrial power-to-heat applications.39:39–46:34 · Guest disagreement 1/10 Category 3: Multi-Day Iron-Air Batteries and Form Energy Discussing Form Energy's iron-air battery, Andy explains capacity resource valuation and low round-trip efficiency trade-offs. Shayle articulates grid modeling findings on how multi-day storage complements short-duration assets during renewable lulls.46:35–55:38 · Guest disagreement 2/10 Category 4: Clean Hydrogen as Strategic Grid Storage Andy walks through the severe power-to-power round-trip efficiency penalties of clean hydrogen while explaining why turbine retrofits and chemical feedstocks create long-term viability. Shayle tests whether gas turbine retrofits justify optimism or skepticism.55:39–57:06 · Guest disagreement 1/10 The 'Half' Way: Carbon Capture and Storage on Fossil Fuels A brief closing exchange frames carbon capture on fossil assets as intermillennial stored sunlight competing directly with long-duration storage technologies.0:30–3:35 · Shayle pushing back 0/10 Promotions for Upcoming Climate Tech Events Promotional announcements, event sponsorships, and introductory voiceover. There is no substantive technical dialogue in this housekeeping segment.3:39–14:18 · Shayle pushing back 2/10 Shayle Kann Introduces the Four Ways to Store Sunlight Shayle and Andy establish the macro baseline of 47 days of fossil fuel storage versus negligible battery capacity today. Shayle probes whether fossil stockpiles exist by strategic design or market consequence, while Andy contextualizes the primary energy numbers.14:19–27:21 · Shayle pushing back 3/10 Category 1: Lithium-Ion Batteries and Their Economic Limits The conversation examines lithium-ion battery duration limits and economic cost floors. Shayle interjects with precise industry context regarding total installed turnkey costs versus cell-level costs to clarify Andy's projections.27:25–39:39 · Shayle pushing back 2/10 Midroll Sponsor Break: Bloom Energy and ENGIE Solutions Following midroll sponsor reads, Andy breaks down thermal energy storage thermodynamics and past operational failures with molten salts. Shayle connects the discussion to portfolio insights around industrial power-to-heat applications.39:39–46:34 · Shayle pushing back 2/10 Category 3: Multi-Day Iron-Air Batteries and Form Energy Discussing Form Energy's iron-air battery, Andy explains capacity resource valuation and low round-trip efficiency trade-offs. Shayle articulates grid modeling findings on how multi-day storage complements short-duration assets during renewable lulls.46:35–55:38 · Shayle pushing back 3/10 Category 4: Clean Hydrogen as Strategic Grid Storage Andy walks through the severe power-to-power round-trip efficiency penalties of clean hydrogen while explaining why turbine retrofits and chemical feedstocks create long-term viability. Shayle tests whether gas turbine retrofits justify optimism or skepticism.55:39–57:06 · Shayle pushing back 1/10 The 'Half' Way: Carbon Capture and Storage on Fossil Fuels A brief closing exchange frames carbon capture on fossil assets as intermillennial stored sunlight competing directly with long-duration storage technologies.

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

0:00 · Shayle 85.8% · guest 14.2%0:00 · Shayle 85.8% · guest 14.2%3:00 · Shayle 86.3% · guest 13.7%3:00 · Shayle 86.3% · guest 13.7%6:00 · Shayle 15% · guest 85%6:00 · Shayle 15% · guest 85%9:00 · Shayle 28.5% · guest 71.5%9:00 · Shayle 28.5% · guest 71.5%12:00 · Shayle 53.4% · guest 46.6%12:00 · Shayle 53.4% · guest 46.6%15:00 · Shayle 8.8% · guest 91.2%15:00 · Shayle 8.8% · guest 91.2%18:00 · Shayle 19.7% · guest 80.3%18:00 · Shayle 19.7% · guest 80.3%21:00 · Shayle 38.5% · guest 61.5%21:00 · Shayle 38.5% · guest 61.5%24:00 · Shayle 30.1% · guest 69.9%24:00 · Shayle 30.1% · guest 69.9%27:00 · Shayle 65.8% · guest 34.2%27:00 · Shayle 65.8% · guest 34.2%30:00 · Shayle 39.9% · guest 60.1%30:00 · Shayle 39.9% · guest 60.1%33:00 · Shayle 13.4% · guest 86.6%33:00 · Shayle 13.4% · guest 86.6%36:00 · Shayle 0% · guest 100%36:00 · Shayle 0% · guest 100%39:00 · Shayle 15.1% · guest 84.9%39:00 · Shayle 15.1% · guest 84.9%42:00 · Shayle 46.2% · guest 53.8%42:00 · Shayle 46.2% · guest 53.8%45:00 · Shayle 30.8% · guest 69.2%45:00 · Shayle 30.8% · guest 69.2%48:00 · Shayle 0% · guest 100%48:00 · Shayle 0% · guest 100%51:00 · Shayle 4.7% · guest 95.3%51:00 · Shayle 4.7% · guest 95.3%54:00 · Shayle 19.5% · guest 80.5%54:00 · Shayle 19.5% · guest 80.5%57:00 · Shayle 91.5% · guest 8.5%57:00 · Shayle 91.5% · guest 8.5%
Sharpest disagreement ▶ 13:00 Andy counters the assumption of low storage needs

Andy pushes back against minimal storage targets, arguing that decarbonized grids will ultimately need strategic reserves much closer to 47 days than a few days.

Hardest push from Shayle ▶ 17:12 Shayle demands clear duration-to-cost explanation

Shayle interrupts Andy to demand a clearer explanation of the non-intuitive link between storage duration requirements and allowable capital cost.

Biggest teaching moment ▶ 6:50 Andy contextualizes primary energy storage reserves

Andy educates listeners and the host on the vast scale of existing fossil stockpiles, breaking down exact figures across natural gas, coal, crude oil, and strategic reserves.

Shayle holds their own ▶ 25:48 Shayle enforces balance-of-system cost rigor

Shayle leverages deep domain expertise to enforce distinction between cell-level metrics and fully installed turnkey EPC costs for stationary storage.

the scores for every segment, with the reasoning behind each
ChapterTopicShayle as informed peerGuest teachingGuest disagreementShayle pushing backWhy
Promotions for Upcoming Climate Tech Events 0000 Promotional announcements, event sponsorships, and introductory voiceover. There is no substantive technical dialogue in this housekeeping segment.
Shayle Kann Introduces the Four Ways to Store Sunlight 6522 Shayle and Andy establish the macro baseline of 47 days of fossil fuel storage versus negligible battery capacity today. Shayle probes whether fossil stockpiles exist by strategic design or market consequence, while Andy contextualizes the primary energy numbers.
Category 1: Lithium-Ion Batteries and Their Economic Limits 7513 The conversation examines lithium-ion battery duration limits and economic cost floors. Shayle interjects with precise industry context regarding total installed turnkey costs versus cell-level costs to clarify Andy's projections.
Midroll Sponsor Break: Bloom Energy and ENGIE Solutions 6512 Following midroll sponsor reads, Andy breaks down thermal energy storage thermodynamics and past operational failures with molten salts. Shayle connects the discussion to portfolio insights around industrial power-to-heat applications.
Category 3: Multi-Day Iron-Air Batteries and Form Energy 7412 Discussing Form Energy's iron-air battery, Andy explains capacity resource valuation and low round-trip efficiency trade-offs. Shayle articulates grid modeling findings on how multi-day storage complements short-duration assets during renewable lulls.
Category 4: Clean Hydrogen as Strategic Grid Storage 6623 Andy walks through the severe power-to-power round-trip efficiency penalties of clean hydrogen while explaining why turbine retrofits and chemical feedstocks create long-term viability. Shayle tests whether gas turbine retrofits justify optimism or skepticism.
The 'Half' Way: Carbon Capture and Storage on Fossil Fuels 5411 A brief closing exchange frames carbon capture on fossil assets as intermillennial stored sunlight competing directly with long-duration storage technologies.

Statements from this episode (12)

Assertion Partly supported
US currently stores roughly 47 days of primary energy supply in fossil fuels
“We currently store by my rough count, about 47 days on average worth of primary energy supply in the country. So that's it's about nine days of natural gas in storage. It's about 13 days in coal stockpiles. About 10 days in, in crude oil storage. And actually …”
Andy Lubershane May 25, 2023 ▶ 6:50
Assertion Partly supported
All 2021 US wind and solar equaled only 5 days of primary energy supply
“All of the wind and solar power generated in twenty-twenty-one, if you were to bottle all of that energy up and store it in sort of the same way that we store fossil fuels, it would be only about five days worth of energy supply.”
Andy Lubershane May 25, 2023 ▶ 10:50
Assertion Supported
US grid has only 9 minutes of pumped hydro and seconds of battery storage
“If you were again to compare that to primary energy supply, we have about nine minutes worth of pumped hydro storage, which means we have probably, I don't know, in the seconds level of battery storage capacity today.”
Andy Lubershane May 25, 2023 ▶ 11:51
Prediction Not checkable as stated
Lubershane: Decarbonized grid storage needs will fall closer to 47 days
“So, you know, between the minutes of energy storage we have today and 47 days, I think we're going to fall probably actually ultimately closer to the 47 days level, ah, than even minutes, hours, or just a few days worth of storage.”
Andy Lubershane May 25, 2023 ▶ 13:35
Assertion Supported
Lubershane: Lithium-ion achieves 80% to 90% AC-to-AC efficiency
“It's actually a remarkably efficient sort of power-to-power energy storage technology. You can get, you know, 80 to 90% AC to AC efficiency levels”
Andy Lubershane May 25, 2023 ▶ 20:28
Assertion Supported
Thermal storage media can store heat at $5/kWh or lower
“The core energy storage components of these materials can be in the ballpark of five dollars per kilowatt hour or lower.”
Andy Lubershane May 25, 2023 ▶ 30:03
Assertion Supported
Lubershane: Lithium-ion fully installed costs are around $300/kWh
“Lithium ion systems, fully installed costs today in the realm of 300 dollars per kilowatt hour. And the cell cost of those systems, which is kind of the closest you can think of as the energy storage, the core energy storage material costs of those systems bei…”
Andy Lubershane May 25, 2023 ▶ 30:12
Insight
Lubershane: Retiring coal plants can be repowered into thermal storage
“All of these coal-fired power plants that are on track to be retired in the next five to 10 years, maybe a little more than that in some cases. And as they're retired, they're sitting there, and they've got, you know, everything you need, basically, to repower…”
Andy Lubershane May 25, 2023 ▶ 37:41
Assertion Supported
Lubershane: Form Energy's 100-hour battery will cost under a tenth of lithium-ion
“Form is on track to achieve a total installed cost. We're not talking about the cost of the materials here, but a total installed cost for a approximately a hundred hour battery system, which is basically a four day battery system that is in the ballpark of a …”
Andy Lubershane May 25, 2023 ▶ 40:59
Prediction Not checkable as stated
Lubershane: The grid will require three distinct storage tranches and technologies
“I think we're going to end up with sort of three tranches of storage in the grid, which are going to be filled by at least three different technology categories. The first is those short duration, you know, peak of the peak applications that lithium ion is, is…”
Andy Lubershane May 25, 2023 ▶ 44:49
Assertion Supported
Lubershane: Hydrogen roundtrip power-to-power efficiency tops out at roughly 35%
“At the end of the day the round trip power to power efficiency for hydrogen, just as a storage medium, is probably gonna be in the range of, like, 20 to, at most, maybe 35%.”
Andy Lubershane May 25, 2023 ▶ 49:36
Opinion
Lubershane: Economically viable CCS will compete directly with grid energy storage
“To the extent CCS becomes, you know, proven and economically viable, I think it serves as a competitive force on, you know, any of these opportunities for grid storage and for energy storage over time, because it, you It's probably the next best alternative.”
Andy Lubershane May 25, 2023 ▶ 56:34
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