Jul 1, 2022 · 46m · catalyst

How to Save a Planet: Spark Tank! How Do We Solve the Energy Storage Problem?

Daniel Ackerman · 13m spoken Alex Blumberg · 10m spoken Shayle Kann · 8m spoken Dr. Leah Stokes · 4m spoken Curtis VanWalleghem · 40s spoken Len Green · 37s spoken Dr. Cristina Prieto · 11s spoken Carter Wall · 0s spoken
0:00 / 0:00

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In a crossover episode structured as a 'Spark Tank' game show, energy experts evaluate three non-battery, long-duration energy storage technologies—pumped hydro, compressed air, and molten salt—to determine the most viable solutions for balancing a fully renewable electric grid.

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 21.2% of the talking time here. How this is scored →

Shayle as informed peer 3.8 Guest teaching 2.2 Guest disagreement 0.5 Shayle pushing back 0.6
05100:0015:0030:0045:000:01–2:11 · Shayle as informed peer 0/10 Shayle Kann Introduces the Spark Tank Crossover Episode Solo host intro by Shayle Kann setting up the crossover episode with How to Save a Planet. As a monologue, all interactive metrics are scored zero.2:14–6:37 · Shayle as informed peer 3/10 Envisioning a Fully Renewable Future Electric Grid Alex Blumberg and producer Daniel Ackerman playfully discuss the grid of the future. Ackerman corrects Blumberg's assumption that batteries alone can solve the entire grid storage challenge.6:39–9:08 · Shayle as informed peer 2/10 Introducing the Spark Tank Game Show Concept Blumberg and Ackerman outline the Spark Tank format and introduce the panel concept, followed by a mid-roll ad read.9:12–12:50 · Shayle as informed peer 3/10 Meeting the Spark Sharks and Allocating Capital The panel of judges (Shayle Kann and Dr. Leah Stokes) are introduced and given ten million fake dollars each to allocate, exchanging light banter about Shark Tank formats.12:51–17:38 · Shayle as informed peer 2/10 Pitch 1: Pumped Hydro at Northfield Mountain Daniel Ackerman presents the field report from Northfield Mountain, explaining the mechanics and scale of pumped hydro storage.17:39–22:44 · Shayle as informed peer 7/10 Judges Evaluate Pumped Hydro Storage and Geography Limits Shayle Kann breaks down the linear scaling cost of lithium-ion batteries compared to pumped hydro, while Dr. Leah Stokes notes severe land and water resource constraints.22:45–25:30 · Shayle as informed peer 2/10 Pitch 2: Hydrostor's Compressed Air Energy Storage Ackerman introduces Hydrostor's compressed air energy storage technology with audio clips from CEO Curtis VanWalleghem.25:31–29:24 · Shayle as informed peer 6/10 Just Transition Potential and Evaluating Compressed Air Storage The judges evaluate compressed air storage; Shayle Kann highlights the fundamental engineering challenge of heat management during air compression.29:25–35:47 · Shayle as informed peer 2/10 Pitch 3: Dr. Cristina Prieto on Molten Salt Storage Ackerman features Dr. Cristina Prieto explaining molten nitrate salt thermal storage, its 500-plus degree operational ceiling, and high efficiency.35:48–38:34 · Shayle as informed peer 8/10 Evaluating Industrial Heat Applications and Thermal Storage Shayle Kann provides deep domain insight into industrial heat applications, citing Rondo Energy and highlighting that industrial heat generates massive emissions currently reliant on fossil boilers.38:41–44:19 · Shayle as informed peer 7/10 Mid-Roll Advertisements: Bloom Energy and Engie The judges allocate their fake investment capital; Shayle splits his between compressed air and molten salt while flagging corrosive safety challenges, and Leah commits all funds to compressed air.0:01–2:11 · Guest teaching 0/10 Shayle Kann Introduces the Spark Tank Crossover Episode Solo host intro by Shayle Kann setting up the crossover episode with How to Save a Planet. As a monologue, all interactive metrics are scored zero.2:14–6:37 · Guest teaching 4/10 Envisioning a Fully Renewable Future Electric Grid Alex Blumberg and producer Daniel Ackerman playfully discuss the grid of the future. Ackerman corrects Blumberg's assumption that batteries alone can solve the entire grid storage challenge.6:39–9:08 · Guest teaching 1/10 Introducing the Spark Tank Game Show Concept Blumberg and Ackerman outline the Spark Tank format and introduce the panel concept, followed by a mid-roll ad read.9:12–12:50 · Guest teaching 2/10 Meeting the Spark Sharks and Allocating Capital The panel of judges (Shayle Kann and Dr. Leah Stokes) are introduced and given ten million fake dollars each to allocate, exchanging light banter about Shark Tank formats.12:51–17:38 · Guest teaching 3/10 Pitch 1: Pumped Hydro at Northfield Mountain Daniel Ackerman presents the field report from Northfield Mountain, explaining the mechanics and scale of pumped hydro storage.17:39–22:44 · Guest teaching 2/10 Judges Evaluate Pumped Hydro Storage and Geography Limits Shayle Kann breaks down the linear scaling cost of lithium-ion batteries compared to pumped hydro, while Dr. Leah Stokes notes severe land and water resource constraints.22:45–25:30 · Guest teaching 3/10 Pitch 2: Hydrostor's Compressed Air Energy Storage Ackerman introduces Hydrostor's compressed air energy storage technology with audio clips from CEO Curtis VanWalleghem.25:31–29:24 · Guest teaching 2/10 Just Transition Potential and Evaluating Compressed Air Storage The judges evaluate compressed air storage; Shayle Kann highlights the fundamental engineering challenge of heat management during air compression.29:25–35:47 · Guest teaching 4/10 Pitch 3: Dr. Cristina Prieto on Molten Salt Storage Ackerman features Dr. Cristina Prieto explaining molten nitrate salt thermal storage, its 500-plus degree operational ceiling, and high efficiency.35:48–38:34 · Guest teaching 1/10 Evaluating Industrial Heat Applications and Thermal Storage Shayle Kann provides deep domain insight into industrial heat applications, citing Rondo Energy and highlighting that industrial heat generates massive emissions currently reliant on fossil boilers.38:41–44:19 · Guest teaching 2/10 Mid-Roll Advertisements: Bloom Energy and Engie The judges allocate their fake investment capital; Shayle splits his between compressed air and molten salt while flagging corrosive safety challenges, and Leah commits all funds to compressed air.0:01–2:11 · Guest disagreement 0/10 Shayle Kann Introduces the Spark Tank Crossover Episode Solo host intro by Shayle Kann setting up the crossover episode with How to Save a Planet. As a monologue, all interactive metrics are scored zero.2:14–6:37 · Guest disagreement 1/10 Envisioning a Fully Renewable Future Electric Grid Alex Blumberg and producer Daniel Ackerman playfully discuss the grid of the future. Ackerman corrects Blumberg's assumption that batteries alone can solve the entire grid storage challenge.6:39–9:08 · Guest disagreement 0/10 Introducing the Spark Tank Game Show Concept Blumberg and Ackerman outline the Spark Tank format and introduce the panel concept, followed by a mid-roll ad read.9:12–12:50 · Guest disagreement 1/10 Meeting the Spark Sharks and Allocating Capital The panel of judges (Shayle Kann and Dr. Leah Stokes) are introduced and given ten million fake dollars each to allocate, exchanging light banter about Shark Tank formats.12:51–17:38 · Guest disagreement 0/10 Pitch 1: Pumped Hydro at Northfield Mountain Daniel Ackerman presents the field report from Northfield Mountain, explaining the mechanics and scale of pumped hydro storage.17:39–22:44 · Guest disagreement 1/10 Judges Evaluate Pumped Hydro Storage and Geography Limits Shayle Kann breaks down the linear scaling cost of lithium-ion batteries compared to pumped hydro, while Dr. Leah Stokes notes severe land and water resource constraints.22:45–25:30 · Guest disagreement 0/10 Pitch 2: Hydrostor's Compressed Air Energy Storage Ackerman introduces Hydrostor's compressed air energy storage technology with audio clips from CEO Curtis VanWalleghem.25:31–29:24 · Guest disagreement 1/10 Just Transition Potential and Evaluating Compressed Air Storage The judges evaluate compressed air storage; Shayle Kann highlights the fundamental engineering challenge of heat management during air compression.29:25–35:47 · Guest disagreement 0/10 Pitch 3: Dr. Cristina Prieto on Molten Salt Storage Ackerman features Dr. Cristina Prieto explaining molten nitrate salt thermal storage, its 500-plus degree operational ceiling, and high efficiency.35:48–38:34 · Guest disagreement 0/10 Evaluating Industrial Heat Applications and Thermal Storage Shayle Kann provides deep domain insight into industrial heat applications, citing Rondo Energy and highlighting that industrial heat generates massive emissions currently reliant on fossil boilers.38:41–44:19 · Guest disagreement 1/10 Mid-Roll Advertisements: Bloom Energy and Engie The judges allocate their fake investment capital; Shayle splits his between compressed air and molten salt while flagging corrosive safety challenges, and Leah commits all funds to compressed air.0:01–2:11 · Shayle pushing back 0/10 Shayle Kann Introduces the Spark Tank Crossover Episode Solo host intro by Shayle Kann setting up the crossover episode with How to Save a Planet. As a monologue, all interactive metrics are scored zero.2:14–6:37 · Shayle pushing back 1/10 Envisioning a Fully Renewable Future Electric Grid Alex Blumberg and producer Daniel Ackerman playfully discuss the grid of the future. Ackerman corrects Blumberg's assumption that batteries alone can solve the entire grid storage challenge.6:39–9:08 · Shayle pushing back 0/10 Introducing the Spark Tank Game Show Concept Blumberg and Ackerman outline the Spark Tank format and introduce the panel concept, followed by a mid-roll ad read.9:12–12:50 · Shayle pushing back 0/10 Meeting the Spark Sharks and Allocating Capital The panel of judges (Shayle Kann and Dr. Leah Stokes) are introduced and given ten million fake dollars each to allocate, exchanging light banter about Shark Tank formats.12:51–17:38 · Shayle pushing back 0/10 Pitch 1: Pumped Hydro at Northfield Mountain Daniel Ackerman presents the field report from Northfield Mountain, explaining the mechanics and scale of pumped hydro storage.17:39–22:44 · Shayle pushing back 2/10 Judges Evaluate Pumped Hydro Storage and Geography Limits Shayle Kann breaks down the linear scaling cost of lithium-ion batteries compared to pumped hydro, while Dr. Leah Stokes notes severe land and water resource constraints.22:45–25:30 · Shayle pushing back 0/10 Pitch 2: Hydrostor's Compressed Air Energy Storage Ackerman introduces Hydrostor's compressed air energy storage technology with audio clips from CEO Curtis VanWalleghem.25:31–29:24 · Shayle pushing back 1/10 Just Transition Potential and Evaluating Compressed Air Storage The judges evaluate compressed air storage; Shayle Kann highlights the fundamental engineering challenge of heat management during air compression.29:25–35:47 · Shayle pushing back 0/10 Pitch 3: Dr. Cristina Prieto on Molten Salt Storage Ackerman features Dr. Cristina Prieto explaining molten nitrate salt thermal storage, its 500-plus degree operational ceiling, and high efficiency.35:48–38:34 · Shayle pushing back 1/10 Evaluating Industrial Heat Applications and Thermal Storage Shayle Kann provides deep domain insight into industrial heat applications, citing Rondo Energy and highlighting that industrial heat generates massive emissions currently reliant on fossil boilers.38:41–44:19 · Shayle pushing back 2/10 Mid-Roll Advertisements: Bloom Energy and Engie The judges allocate their fake investment capital; Shayle splits his between compressed air and molten salt while flagging corrosive safety challenges, and Leah commits all funds to compressed air.

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

0:00 · Shayle 75% · guest 25%0:00 · Shayle 75% · guest 25%3:00 · Shayle 0% · guest 100%3:00 · Shayle 0% · guest 100%6:00 · Shayle 0% · guest 100%6:00 · Shayle 0% · guest 100%9:00 · Shayle 26% · guest 74%9:00 · Shayle 26% · guest 74%12:00 · Shayle 0.8% · guest 99.2%12:00 · Shayle 0.8% · guest 99.2%15:00 · Shayle 4.1% · guest 95.9%15:00 · Shayle 4.1% · guest 95.9%18:00 · Shayle 45% · guest 55%18:00 · Shayle 45% · guest 55%21:00 · Shayle 9.7% · guest 90.3%21:00 · Shayle 9.7% · guest 90.3%24:00 · Shayle 7.5% · guest 92.5%24:00 · Shayle 7.5% · guest 92.5%27:00 · Shayle 28.4% · guest 71.6%27:00 · Shayle 28.4% · guest 71.6%30:00 · Shayle 0% · guest 100%30:00 · Shayle 0% · guest 100%33:00 · Shayle 0% · guest 100%33:00 · Shayle 0% · guest 100%36:00 · Shayle 61.2% · guest 38.8%36:00 · Shayle 61.2% · guest 38.8%39:00 · Shayle 45.4% · guest 54.6%39:00 · Shayle 45.4% · guest 54.6%42:00 · Shayle 22.8% · guest 77.2%42:00 · Shayle 22.8% · guest 77.2%45:00 · Shayle 3.8% · guest 96.2%45:00 · Shayle 3.8% · guest 96.2%
Sharpest disagreement ▶ 5:38 Daniel Ackerman dismisses the battery-only assumption

Ackerman playfully rebukes Blumberg's assumption that batteries alone will power the entire grid as a 'rookie assumption' and details resource limitations.

Hardest push from Shayle ▶ 41:20 Shayle pushes back on molten salt due to toxicity and corrosion risks

Shayle challenges the uncritical enthusiasm for molten salt by emphasizing its corrosive nature, toxicity risks, and permitting hurdles.

Biggest teaching moment ▶ 32:09 Dr. Prieto explains molten salt thermodynamics

Dr. Prieto and Ackerman educate the hosts on how nitrate salts remain molten past 500°C without exploding or boiling away.

Shayle holds their own ▶ 37:25 Shayle articulates the decarbonization value of industrial thermal storage

Shayle demonstrates authoritative domain expertise by explaining how storing electricity as high-temperature heat directly replaces fossil fuels in heavy industry.

the scores for every segment, with the reasoning behind each
ChapterTopicShayle as informed peerGuest teachingGuest disagreementShayle pushing backWhy
Shayle Kann Introduces the Spark Tank Crossover Episode 0000 Solo host intro by Shayle Kann setting up the crossover episode with How to Save a Planet. As a monologue, all interactive metrics are scored zero.
Envisioning a Fully Renewable Future Electric Grid 3411 Alex Blumberg and producer Daniel Ackerman playfully discuss the grid of the future. Ackerman corrects Blumberg's assumption that batteries alone can solve the entire grid storage challenge.
Introducing the Spark Tank Game Show Concept 2100 Blumberg and Ackerman outline the Spark Tank format and introduce the panel concept, followed by a mid-roll ad read.
Meeting the Spark Sharks and Allocating Capital 3210 The panel of judges (Shayle Kann and Dr. Leah Stokes) are introduced and given ten million fake dollars each to allocate, exchanging light banter about Shark Tank formats.
Pitch 1: Pumped Hydro at Northfield Mountain 2300 Daniel Ackerman presents the field report from Northfield Mountain, explaining the mechanics and scale of pumped hydro storage.
Judges Evaluate Pumped Hydro Storage and Geography Limits 7212 Shayle Kann breaks down the linear scaling cost of lithium-ion batteries compared to pumped hydro, while Dr. Leah Stokes notes severe land and water resource constraints.
Pitch 2: Hydrostor's Compressed Air Energy Storage 2300 Ackerman introduces Hydrostor's compressed air energy storage technology with audio clips from CEO Curtis VanWalleghem.
Just Transition Potential and Evaluating Compressed Air Storage 6211 The judges evaluate compressed air storage; Shayle Kann highlights the fundamental engineering challenge of heat management during air compression.
Pitch 3: Dr. Cristina Prieto on Molten Salt Storage 2400 Ackerman features Dr. Cristina Prieto explaining molten nitrate salt thermal storage, its 500-plus degree operational ceiling, and high efficiency.
Evaluating Industrial Heat Applications and Thermal Storage 8101 Shayle Kann provides deep domain insight into industrial heat applications, citing Rondo Energy and highlighting that industrial heat generates massive emissions currently reliant on fossil boilers.
Mid-Roll Advertisements: Bloom Energy and Engie 7212 The judges allocate their fake investment capital; Shayle splits his between compressed air and molten salt while flagging corrosive safety challenges, and Leah commits all funds to compressed air.

Statements from this episode (14)

Assertion Supported
Ackerman: Current battery tech is too costly and resource-constrained for entire grid
“But with our current battery technology, it would just be way too expensive To back up the entire electric grid. Plus, it would require more materials like lithium and cobalt than we have sitting around right now.”
Daniel Ackerman Jul 1, 2022 ▶ 5:49
Opinion
Stokes: Energy storage remains the key missing piece in clean energy
“What I learned in that course was that the most important gap in terms of what technology we had was storage. This was the missing piece in the puzzle. And it's been 12 years, and it still seems to be a missing piece”
Dr. Leah Stokes Jul 1, 2022 ▶ 10:44
Opinion
Kann: Energy storage has more tech innovation than almost any climate sector
“I mean, there's probably more going on. From a technology standpoint in energy storage than maybe any other space in energy tech or climate tech, because it crosses over. I mean, we're going to talk about a bunch of technologies to store energy on the grid. Bu…”
Shayle Kann Jul 1, 2022 ▶ 11:17
Assertion Supported
Ackerman: Northfield Mountain pumped hydro can power 1M homes for 8 hours
“Len told me that when the reservoir at Northfield Mountain is pumped full of water, it can be used to power about a million homes for eight hours.”
Daniel Ackerman Jul 1, 2022 ▶ 18:47
Assertion Supported
Ackerman: Northfield Mountain pumped hydro achieves roughly 75% efficiency
“Of the energy that it takes to run all the pumps and stuff at Northfield Mountain, they get about 75% of it back.”
Daniel Ackerman Jul 1, 2022 ▶ 19:10
Insight
Kann: Lithium-ion storage cost scales directly with duration, penalizing long-duration use
“The problem with lithium ion is that The cost scales pretty directly with the duration. So if you want four hours of energy storage, it's great. But if you want 40 hours of energy storage, it's very expensive.”
Shayle Kann Jul 1, 2022 ▶ 20:07
Assertion Contradicted
Ackerman: Hydrostor's underground cavern pressurizes air to six atmospheres
“Water sitting up top, the air deep down below underground in the cavern, and that air is pressurized to six times the pressure of Earth's atmosphere at sea level.”
Daniel Ackerman Jul 1, 2022 ▶ 24:07
Assertion Supported
VanWalleghem: Hydrostor repurposes oil and gas machinery and workforce
“All of this equipment is from the oil and gas industry. So The compressors move natural gas down pipelines, the turbines are used in liquid natural gas processes, and the caverns are used to store typically natural gas. So we're keeping that workforce and thos…”
Curtis VanWalleghem Jul 1, 2022 ▶ 26:19
Opinion
Kann: Compressed air energy storage has much better siteability than pumped hydro
“It has the promise of much better siteability than pumped hydro. There's actually lots and lots and lots of places we could do this and to Leah's point, it doesn't use as much above ground land”
Shayle Kann Jul 1, 2022 ▶ 28:21
Insight
Kann: Compressed air storage innovation centers on managing compression heat
“Historically, the challenge with compressed air energy storage has to do with this Trade off between efficiency and cost. So the basic challenge is when you compress air, you create heat, right? And if you let that heat dissipate into the atmosphere, you're ju…”
Shayle Kann Jul 1, 2022 ▶ 28:42
Assertion Supported
Ackerman: Molten salt storage delivers 80% to 90% round-trip efficiency
“And these molten salt tanks, they are quite efficient. You get back about 80 to 90% of the energy you put in.”
Daniel Ackerman Jul 1, 2022 ▶ 34:45
Disclosure
Kann: Energy Impact Partners invests in thermal storage company Rondo Energy
“We are not investors in pumped hydro storage in the moment. We are not investors in compressed air energy storage. We are investors in a company that does thermal storage, storage as heat, albeit not molten salt. So we're investors in a company called Rondo En…”
Shayle Kann Jul 1, 2022 ▶ 37:10
Insight
Kann: Storing electricity as industrial heat may be more valuable than grid storage
“So actually being able to store, you know, clean, cheap electricity as heat and then deliver it as heat may have as much, if not more value than turning that heat back into electricity to put it back on the grid. So specifically for the industrial heat applica…”
Shayle Kann Jul 1, 2022 ▶ 38:05
Prediction Not checkable as stated
Kann: The US will not build much more pumped hydro storage
“Well much as I love pumped hydro storage I just realistically don't think we're gonna add a whole lot more of it, certainly here in the U.S., so I'm not gonna put any of my money into that solution, though it is probably the most mature and maybe the cheapest,…”
Shayle Kann Jul 1, 2022 ▶ 40:41
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