Jun 1, 2023 · 49m · catalyst

Keeping copper from limiting the energy transition

Cristobal Undurraga · 29m spoken Shayle Kann · 13m 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 Ceibo CEO Cristobal Undurraga examine the looming global copper shortage, exploring mining geology, processing pathways, geopolitical bottlenecks, and innovative leaching technologies critical for the clean energy transition.

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

Shayle as informed peer 3.9 Guest teaching 3.8 Guest disagreement 0.0 Shayle pushing back 0.0
05100:0015:0030:0045:000:00–2:06 · Shayle as informed peer 0/10 Upcoming Live Event Announcements for Boston and Seattle Host monologue delivering upcoming live event promotional announcements for Boston and Seattle.2:14–5:49 · Shayle as informed peer 0/10 Sponsor Announcements: Bloom Energy and Engie Sponsor ad reads followed by Shayle Kann's introductory monologue framing his copper investment thesis.5:50–8:04 · Shayle as informed peer 4/10 Copper as the Backbone of Electrification and Modern Society Kann opens the dialogue by exploring copper's role in electrification, and Undurraga outlines the 45% grid allocation for copper usage.8:04–10:16 · Shayle as informed peer 3/10 Global Copper Production Volumes and Mining Geography Undurraga walks through global production statistics, scrap recycling shares, and the geographic concentration across Chile and Peru.10:16–14:31 · Shayle as informed peer 4/10 Corporate Structure and Mega-Scale Mining Assets Kann clarifies top corporate producers, and Undurraga explains tier 1 versus tier 2 producers and mega-scale assets like Escondida.14:31–18:36 · Shayle as informed peer 4/10 Extraction Processes: Leaching versus Concentration Flotation Undurraga provides a detailed technical overview comparing hydrometallurgical leaching with concentration and flotation milling.18:36–20:44 · Shayle as informed peer 5/10 Geopolitics of Smelting Capacity and Global Copper Flows Kann probes the downstream geopolitical implications of smelting, with Undurraga noting China controls roughly half of global smelting capacity.20:44–25:26 · Shayle as informed peer 4/10 Comparing Environmental and Energy Impacts of Refining Pathways Undurraga explains environmental differentials, noting flotation requires massive energy for grinding, water pumping, and tailing dam management.25:31–30:45 · Shayle as informed peer 5/10 Mid-Roll Sponsor Announcements: Bloom Energy and Engie Kann summarizes pyro vs hydrometallurgy and prompts on capital costs, leading Undurraga to explain oxide versus sulfide geology.30:45–38:41 · Shayle as informed peer 6/10 The Looming Supply Crunch and Declining Global Ore Grades Kann questions why new capacity cannot easily be built, and Undurraga outlines collapsing ore grades and lengthy 17-year permitting cycles.38:42–43:09 · Shayle as informed peer 6/10 Ceibo's Technology: Unlocking Primary Sulfides with Leaching Kann articulates the core problem of stranded leaching infrastructure, and Undurraga details Ceibo's method for leaching primary sulfides like chalcopyrite.43:10–48:26 · Shayle as informed peer 6/10 Commercial and Operational Realities of Mining Tech Adoption Kann draws analogies to energy project metrics (LCOE vs C1 costs), and Undurraga breaks down operational robustness across decades of changing ore bodies.0:00–2:06 · Guest teaching 0/10 Upcoming Live Event Announcements for Boston and Seattle Host monologue delivering upcoming live event promotional announcements for Boston and Seattle.2:14–5:49 · Guest teaching 0/10 Sponsor Announcements: Bloom Energy and Engie Sponsor ad reads followed by Shayle Kann's introductory monologue framing his copper investment thesis.5:50–8:04 · Guest teaching 3/10 Copper as the Backbone of Electrification and Modern Society Kann opens the dialogue by exploring copper's role in electrification, and Undurraga outlines the 45% grid allocation for copper usage.8:04–10:16 · Guest teaching 4/10 Global Copper Production Volumes and Mining Geography Undurraga walks through global production statistics, scrap recycling shares, and the geographic concentration across Chile and Peru.10:16–14:31 · Guest teaching 4/10 Corporate Structure and Mega-Scale Mining Assets Kann clarifies top corporate producers, and Undurraga explains tier 1 versus tier 2 producers and mega-scale assets like Escondida.14:31–18:36 · Guest teaching 5/10 Extraction Processes: Leaching versus Concentration Flotation Undurraga provides a detailed technical overview comparing hydrometallurgical leaching with concentration and flotation milling.18:36–20:44 · Guest teaching 4/10 Geopolitics of Smelting Capacity and Global Copper Flows Kann probes the downstream geopolitical implications of smelting, with Undurraga noting China controls roughly half of global smelting capacity.20:44–25:26 · Guest teaching 5/10 Comparing Environmental and Energy Impacts of Refining Pathways Undurraga explains environmental differentials, noting flotation requires massive energy for grinding, water pumping, and tailing dam management.25:31–30:45 · Guest teaching 5/10 Mid-Roll Sponsor Announcements: Bloom Energy and Engie Kann summarizes pyro vs hydrometallurgy and prompts on capital costs, leading Undurraga to explain oxide versus sulfide geology.30:45–38:41 · Guest teaching 6/10 The Looming Supply Crunch and Declining Global Ore Grades Kann questions why new capacity cannot easily be built, and Undurraga outlines collapsing ore grades and lengthy 17-year permitting cycles.38:42–43:09 · Guest teaching 4/10 Ceibo's Technology: Unlocking Primary Sulfides with Leaching Kann articulates the core problem of stranded leaching infrastructure, and Undurraga details Ceibo's method for leaching primary sulfides like chalcopyrite.43:10–48:26 · Guest teaching 5/10 Commercial and Operational Realities of Mining Tech Adoption Kann draws analogies to energy project metrics (LCOE vs C1 costs), and Undurraga breaks down operational robustness across decades of changing ore bodies.0:00–2:06 · Guest disagreement 0/10 Upcoming Live Event Announcements for Boston and Seattle Host monologue delivering upcoming live event promotional announcements for Boston and Seattle.2:14–5:49 · Guest disagreement 0/10 Sponsor Announcements: Bloom Energy and Engie Sponsor ad reads followed by Shayle Kann's introductory monologue framing his copper investment thesis.5:50–8:04 · Guest disagreement 0/10 Copper as the Backbone of Electrification and Modern Society Kann opens the dialogue by exploring copper's role in electrification, and Undurraga outlines the 45% grid allocation for copper usage.8:04–10:16 · Guest disagreement 0/10 Global Copper Production Volumes and Mining Geography Undurraga walks through global production statistics, scrap recycling shares, and the geographic concentration across Chile and Peru.10:16–14:31 · Guest disagreement 0/10 Corporate Structure and Mega-Scale Mining Assets Kann clarifies top corporate producers, and Undurraga explains tier 1 versus tier 2 producers and mega-scale assets like Escondida.14:31–18:36 · Guest disagreement 0/10 Extraction Processes: Leaching versus Concentration Flotation Undurraga provides a detailed technical overview comparing hydrometallurgical leaching with concentration and flotation milling.18:36–20:44 · Guest disagreement 0/10 Geopolitics of Smelting Capacity and Global Copper Flows Kann probes the downstream geopolitical implications of smelting, with Undurraga noting China controls roughly half of global smelting capacity.20:44–25:26 · Guest disagreement 0/10 Comparing Environmental and Energy Impacts of Refining Pathways Undurraga explains environmental differentials, noting flotation requires massive energy for grinding, water pumping, and tailing dam management.25:31–30:45 · Guest disagreement 0/10 Mid-Roll Sponsor Announcements: Bloom Energy and Engie Kann summarizes pyro vs hydrometallurgy and prompts on capital costs, leading Undurraga to explain oxide versus sulfide geology.30:45–38:41 · Guest disagreement 0/10 The Looming Supply Crunch and Declining Global Ore Grades Kann questions why new capacity cannot easily be built, and Undurraga outlines collapsing ore grades and lengthy 17-year permitting cycles.38:42–43:09 · Guest disagreement 0/10 Ceibo's Technology: Unlocking Primary Sulfides with Leaching Kann articulates the core problem of stranded leaching infrastructure, and Undurraga details Ceibo's method for leaching primary sulfides like chalcopyrite.43:10–48:26 · Guest disagreement 0/10 Commercial and Operational Realities of Mining Tech Adoption Kann draws analogies to energy project metrics (LCOE vs C1 costs), and Undurraga breaks down operational robustness across decades of changing ore bodies.0:00–2:06 · Shayle pushing back 0/10 Upcoming Live Event Announcements for Boston and Seattle Host monologue delivering upcoming live event promotional announcements for Boston and Seattle.2:14–5:49 · Shayle pushing back 0/10 Sponsor Announcements: Bloom Energy and Engie Sponsor ad reads followed by Shayle Kann's introductory monologue framing his copper investment thesis.5:50–8:04 · Shayle pushing back 0/10 Copper as the Backbone of Electrification and Modern Society Kann opens the dialogue by exploring copper's role in electrification, and Undurraga outlines the 45% grid allocation for copper usage.8:04–10:16 · Shayle pushing back 0/10 Global Copper Production Volumes and Mining Geography Undurraga walks through global production statistics, scrap recycling shares, and the geographic concentration across Chile and Peru.10:16–14:31 · Shayle pushing back 0/10 Corporate Structure and Mega-Scale Mining Assets Kann clarifies top corporate producers, and Undurraga explains tier 1 versus tier 2 producers and mega-scale assets like Escondida.14:31–18:36 · Shayle pushing back 0/10 Extraction Processes: Leaching versus Concentration Flotation Undurraga provides a detailed technical overview comparing hydrometallurgical leaching with concentration and flotation milling.18:36–20:44 · Shayle pushing back 0/10 Geopolitics of Smelting Capacity and Global Copper Flows Kann probes the downstream geopolitical implications of smelting, with Undurraga noting China controls roughly half of global smelting capacity.20:44–25:26 · Shayle pushing back 0/10 Comparing Environmental and Energy Impacts of Refining Pathways Undurraga explains environmental differentials, noting flotation requires massive energy for grinding, water pumping, and tailing dam management.25:31–30:45 · Shayle pushing back 0/10 Mid-Roll Sponsor Announcements: Bloom Energy and Engie Kann summarizes pyro vs hydrometallurgy and prompts on capital costs, leading Undurraga to explain oxide versus sulfide geology.30:45–38:41 · Shayle pushing back 0/10 The Looming Supply Crunch and Declining Global Ore Grades Kann questions why new capacity cannot easily be built, and Undurraga outlines collapsing ore grades and lengthy 17-year permitting cycles.38:42–43:09 · Shayle pushing back 0/10 Ceibo's Technology: Unlocking Primary Sulfides with Leaching Kann articulates the core problem of stranded leaching infrastructure, and Undurraga details Ceibo's method for leaching primary sulfides like chalcopyrite.43:10–48:26 · Shayle pushing back 0/10 Commercial and Operational Realities of Mining Tech Adoption Kann draws analogies to energy project metrics (LCOE vs C1 costs), and Undurraga breaks down operational robustness across decades of changing ore bodies.

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

0:00 · Shayle 91.9% · guest 8.1%0:00 · Shayle 91.9% · guest 8.1%3:00 · Shayle 97.8% · guest 2.2%3:00 · Shayle 97.8% · guest 2.2%6:00 · Shayle 22.7% · guest 77.3%6:00 · Shayle 22.7% · guest 77.3%9:00 · Shayle 24.9% · guest 75.1%9:00 · Shayle 24.9% · guest 75.1%12:00 · Shayle 18.8% · guest 81.2%12:00 · Shayle 18.8% · guest 81.2%15:00 · Shayle 0% · guest 100%15:00 · Shayle 0% · guest 100%18:00 · Shayle 22.7% · guest 77.3%18:00 · Shayle 22.7% · guest 77.3%21:00 · Shayle 0% · guest 100%21:00 · Shayle 0% · guest 100%24:00 · Shayle 50.6% · guest 49.4%24:00 · Shayle 50.6% · guest 49.4%27:00 · Shayle 19.4% · guest 80.6%27:00 · Shayle 19.4% · guest 80.6%30:00 · Shayle 28.1% · guest 71.9%30:00 · Shayle 28.1% · guest 71.9%33:00 · Shayle 3.3% · guest 96.7%33:00 · Shayle 3.3% · guest 96.7%36:00 · Shayle 32% · guest 68%36:00 · Shayle 32% · guest 68%39:00 · Shayle 46.2% · guest 53.8%39:00 · Shayle 46.2% · guest 53.8%42:00 · Shayle 31.8% · guest 68.2%42:00 · Shayle 31.8% · guest 68.2%45:00 · Shayle 0% · guest 100%45:00 · Shayle 0% · guest 100%48:00 · Shayle 55.8% · guest 44.2%48:00 · Shayle 55.8% · guest 44.2%
Sharpest disagreement ▶ 37:40 Material world vs digital growth contrast

Undurraga forcefully rejects the idea that mining can scale rapidly like digital industries, contrasting software data growth with hard physical limits.

Hardest push from Shayle ▶ 31:37 Challenging the copper shortage paradox

Kann challenges the premise of a supply crunch given abundant global reserves, pressing Undurraga to explain why existing mines cannot simply increase production.

Biggest teaching moment ▶ 34:09 Exponential burden of degrading ore grades

Undurraga educates on historical ore degradation from 4 percent to below 0.5 percent, explaining that three times as much rock must now be processed for the same copper output.

Shayle holds their own ▶ 38:42 Kann synthesizes the complete metallurgical bottleneck

Kann delivers a comprehensive technical synthesis connecting oxide exhaustion, capex barriers in concentration plants, and geopolitical dependencies.

the scores for every segment, with the reasoning behind each
ChapterTopicShayle as informed peerGuest teachingGuest disagreementShayle pushing backWhy
Upcoming Live Event Announcements for Boston and Seattle 0000 Host monologue delivering upcoming live event promotional announcements for Boston and Seattle.
Sponsor Announcements: Bloom Energy and Engie 0000 Sponsor ad reads followed by Shayle Kann's introductory monologue framing his copper investment thesis.
Copper as the Backbone of Electrification and Modern Society 4300 Kann opens the dialogue by exploring copper's role in electrification, and Undurraga outlines the 45% grid allocation for copper usage.
Global Copper Production Volumes and Mining Geography 3400 Undurraga walks through global production statistics, scrap recycling shares, and the geographic concentration across Chile and Peru.
Corporate Structure and Mega-Scale Mining Assets 4400 Kann clarifies top corporate producers, and Undurraga explains tier 1 versus tier 2 producers and mega-scale assets like Escondida.
Extraction Processes: Leaching versus Concentration Flotation 4500 Undurraga provides a detailed technical overview comparing hydrometallurgical leaching with concentration and flotation milling.
Geopolitics of Smelting Capacity and Global Copper Flows 5400 Kann probes the downstream geopolitical implications of smelting, with Undurraga noting China controls roughly half of global smelting capacity.
Comparing Environmental and Energy Impacts of Refining Pathways 4500 Undurraga explains environmental differentials, noting flotation requires massive energy for grinding, water pumping, and tailing dam management.
Mid-Roll Sponsor Announcements: Bloom Energy and Engie 5500 Kann summarizes pyro vs hydrometallurgy and prompts on capital costs, leading Undurraga to explain oxide versus sulfide geology.
The Looming Supply Crunch and Declining Global Ore Grades 6600 Kann questions why new capacity cannot easily be built, and Undurraga outlines collapsing ore grades and lengthy 17-year permitting cycles.
Ceibo's Technology: Unlocking Primary Sulfides with Leaching 6400 Kann articulates the core problem of stranded leaching infrastructure, and Undurraga details Ceibo's method for leaching primary sulfides like chalcopyrite.
Commercial and Operational Realities of Mining Tech Adoption 6500 Kann draws analogies to energy project metrics (LCOE vs C1 costs), and Undurraga breaks down operational robustness across decades of changing ore bodies.

Statements from this episode (18)

Assertion Supported
Solar and wind projects require 3 to 5 tons of copper per megawatt
“We need it for transmission lines, in solar and wind projects, three to five tons per megawatt, actually.”
Shayle Kann Jun 1, 2023 ▶ 4:06
Assertion Supported
EVs require 2.5 times more copper than gas-powered cars
“And especially in EVs, like really in, in electric vehicles, they use like two and a half times as much copper as a traditional internal combustion engine vehicle does.”
Shayle Kann Jun 1, 2023 ▶ 4:12
Assertion Supported
Copper mining volume is 5x lithium, nickel, and cobalt combined
“But just to contextualize the scale of the challenge here, we mine around five times as much copper as we do those other three minerals, lithium, nickel, and cobalt combined.”
Shayle Kann Jun 1, 2023 ▶ 5:09
Assertion Supported
45% of global copper is used in electricity and grid infrastructure
“45% of the copper in the world is used in the grid or in electricity or any application that it's either in the production or the transmission of electrons, or the use of those electrons.”
Cristobal Undurraga Jun 1, 2023 ▶ 7:25
Assertion Supported
The world consumes 28 to 29 million tons of copper annually
“The general number is that the world consumes roughly 28 to twenty-nine million tons of copper a year. Of those, Something like 5,000,006 million come from recycling or scrap, or there's a recovery of copper around that, that helps you. But in general, what is…”
Cristobal Undurraga Jun 1, 2023 ▶ 8:15
Assertion Partly supported
The Americas produce over half of the world's copper
“The main producer of copper is chile. And I'm Chilean, and we're based in Chile as a company. And Chile produces roughly one-third of the copper. Peru produces another 10% of the copper. And the rest of the Americas, that's US, Canada, Mexico, produce roughly …”
Cristobal Undurraga Jun 1, 2023 ▶ 8:45
Insight
Copper mining requires political stability for 50-to-60-year operational horizons
“It is, so it's a function of, yes, nature, but also of political stability and how you access to those minerals. And what's the rule of law that will allow you to make an investment for the next 50 or 60 years? How certain are you that you will be able to make…”
Cristobal Undurraga Jun 1, 2023 ▶ 9:44
Assertion Contradicted
Freeport-McMoRan surpassed Codelco as the world's largest copper producer in 2022
“The largest producer of copper in the world is, there's a tie. So last year there was a change in the ranking. It was usually was Codelco, which is a state-owned company, a Chilean state-owned company. Codelco was the largest producer of copper, and last year …”
Cristobal Undurraga Jun 1, 2023 ▶ 11:16
Assertion Supported
Chile's Escondida mine produces as much copper as the entire US
“So Escondida, which is the largest copper mine in the world, produces all by itself a million tons of copper, a little bit more than one million ton of copper tons per year. That is roughly all the production of the U.S. Just produced by one asset.”
Cristobal Undurraga Jun 1, 2023 ▶ 12:48
Assertion Supported
Flotation concentration enriches low-grade copper ore up to 30%
“In the case that you go through the concentration, what you do is you take this crushed rock, so we go back to the crusher, then we mill it, we grind it into very thin powder, and what we'll do is we'll try to float the particles that are rich in copper. And w…”
Cristobal Undurraga Jun 1, 2023 ▶ 17:19
Assertion Supported
China consumes roughly half of the world's annual copper supply
“So roughly China consumes 12 to 15 to thirteen million tons of copper per year. The U.S. Around one point into two million tons. And then Germany, Japan, and developed nations consume roughly a million tons per year.”
Cristobal Undurraga Jun 1, 2023 ▶ 19:15
Assertion Supported
China holds 45% to 55% of global copper smelting capacity
“Roughly 50, between 45, 55% of the smelting capacity in the world, so companies that purchase the concentrate and smelt it, are in China.”
Cristobal Undurraga Jun 1, 2023 ▶ 20:14
Assertion Supported
Average copper ore grades have fallen below 1%
“Ore grades are below one percent, so which means that non-copper is 99% of a piece of ore.”
Cristobal Undurraga Jun 1, 2023 ▶ 23:24
Assertion Supported
Shipping copper concentrate requires 3x more energy than shipping refined copper
“So you don't ship a pure copper, you ship something that is a bulk material that has 30% of copper. So you have three times at least more energy to move that amount of copper if it's in a concentrate than if it's a pure copper plate.”
Cristobal Undurraga Jun 1, 2023 ▶ 24:20
Assertion Supported
80% of global copper is produced via sulfide concentration
“Today, about 80% of the copper is produced through concentration, because it comes from copper sulfides, and only 20% comes from copper oxides, and those are processes through hydrometallurgy.”
Cristobal Undurraga Jun 1, 2023 ▶ 29:18
Assertion Partly supported
Ore grades at major mines Morenci and Escondida have fallen below 0.6%
“We mentioned Morenci or Escondida, these huge assets in the world. When they started, they were two percenters. Today, those mines are operating below .five or .six percent.”
Cristobal Undurraga Jun 1, 2023 ▶ 34:11
Assertion Partly supported
Mining permit approval times have increased from 5 to 17 years
“In the fifties, it would take five years to get a permit. Today it's getting 17 years to get a permit for a mine.”
Cristobal Undurraga Jun 1, 2023 ▶ 36:49
Prediction Open · timeframe Jun 2053
Copper demand over the next 30 years will equal all historical production
“The amount of copper that will be required in the next 30 year shale is roughly the amount of copper that humanity has produced all over history.”
Cristobal Undurraga Jun 1, 2023 ▶ 38:07
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