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84 Percent: Inside the Worst Coral Bleaching Event Ever Recorded

How To Protect The Ocean

Release Date: 08/31/2026

Red Tide, Decoded: Why It Isn't Random, and How to Track It show art Red Tide, Decoded: Why It Isn't Random, and How to Track It

How To Protect The Ocean

No smell. No warning. Just a beach full of people who start coughing at the same time, grab their towels, and leave. That's red tide, and it feels completely random until you know what's actually happening in the water. Karenia brevis, the algae behind it, produces a toxin called brevetoxin that rides the wind and waves into the air along the shoreline, which is why people can start coughing with no visible sign anything's wrong. The 2017 to 2019 Southwest and Southeast Florida bloom cost the region an estimated $2.7 billion, mostly in tourism losses, and it wasn't a freak event. Follow the...

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Nature's Kidneys: How Coastal Wetlands Stop Ocean Pollution show art Nature's Kidneys: How Coastal Wetlands Stop Ocean Pollution

How To Protect The Ocean

Green water. A smell that won't go away. Sometimes, dead fish washing up on shore. That's what too much nitrogen does to a coastline, and it's easy to hear stories like this and feel like the ocean is just losing. This episode is the opposite of that. Here's what most people don't know: a healthy stretch of marsh or mangrove can pull nitrogen straight out of the water before it ever becomes a problem. A single restored 100-acre wetland cut nearby ammonia by 62 percent and total nitrogen by 37 percent, and saved local water systems about $17,000 a year, all within three years. Then there's...

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Blue Nitrogen: The Nutrient Story Coastal Wetlands Have Been Hiding show art Blue Nitrogen: The Nutrient Story Coastal Wetlands Have Been Hiding

How To Protect The Ocean

Every time this podcast talks about coastal wetlands, the conversation goes straight to carbon. Marshes, mangroves, and seagrasses pull carbon dioxide out of the atmosphere and lock it in soil for centuries, and that story has earned coastal ecosystems a real seat at the climate table. Dr. Adam Langley, a global change ecologist and professor of biology at Villanova University and a research associate at the Smithsonian Environmental Research Center, thinks there's a second story hiding in that same soil that could matter just as much, or more: nitrogen. Langley and 37 co-authors just...

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Who Pays for Plastic? Inside the Law Quietly Shifting the Bill to Producers show art Who Pays for Plastic? Inside the Law Quietly Shifting the Bill to Producers

How To Protect The Ocean

For decades, the honest answer to "who pays to deal with plastic packaging once it leaves the shelf" was taxpayers, quietly, through municipal budgets that funded garbage trucks and recycling plants running at a loss, whether or not the packaging actually got recycled. That's the system extended producer responsibility (EPR) is built to replace: a legal requirement that the companies making and selling packaging fund what happens to it after a customer buys the product, not the city that collects it afterward. Seven US states have now passed packaging EPR laws. Oregon has been charging...

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Inside Ocean Conservancy's Fight to Make Washing Machine Filters the Law show art Inside Ocean Conservancy's Fight to Make Washing Machine Filters the Law

How To Protect The Ocean

Ocean Conservancy's "Not Safe for Wash" campaign is built around a simple premise: the fix for washing machine microfiber pollution already exists, so the fight isn't about inventing new technology, it's about forcing a nearly two-decade-old idea into law. Its own May 2026 poll of 1,010 Americans found concern about microplastics up 32% since 2023, nearly 9 in 10 people concerned, and 81% in favor of requiring filters on new washing machines. The public isn't the obstacle. The real opponent is AHAM, the Association of Home Appliance Manufacturers, the trade group representing the companies...

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Your Washing Machine Sheds Up to 18 Million Microfibers a Load show art Your Washing Machine Sheds Up to 18 Million Microfibers a Load

How To Protect The Ocean

Every wash cycle sheds plastic. Last Monday, Andrew talked with Dr. Anja Brandon of Ocean Conservancy about microfiber pollution, and one question from that conversation stuck with him: has anyone actually fixed this yet? In this solo follow-up, Andrew traces a microfiber's actual path, from the moment agitation, heat, and detergent work it loose from a shirt, through the drain, into a wastewater treatment plant, and out the other side into biosolids, farmland, rivers, and the ocean, with a growing body of research suggesting some of it ends up in human lungs and even in the human placenta....

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Can Bacteria Actually Eat Plastic? show art Can Bacteria Actually Eat Plastic?

How To Protect The Ocean

Bacteria that eat plastic sounds like the fix everyone's been waiting for, and Andrew gets sent videos about it constantly. So on this solo episode, following Monday's interview with Dr. Anja Brandon of Ocean Conservancy, he goes looking for the real state of the science. The short version: it's promising, it's roughly a decade of real research deep, and it is nowhere close to running at the scale the ocean plastic crisis actually needs. The bacterium that started this whole field, Ideonella sakaiensis, was discovered breaking down PET plastic in Japan in 2016. A 2025 breakthrough from NREL,...

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The 90 Percent Fix Hiding in Your Laundry Room show art The 90 Percent Fix Hiding in Your Laundry Room

How To Protect The Ocean

Every time you run a load of laundry, your washing machine sheds plastic. Not metaphorically: synthetic clothing made from polyester, nylon, and rayon releases microfibers with every wash, and depending on the study, a single load can shed anywhere from a few hundred thousand to millions of them. Most of us have never thought about it, because unlike a plastic bag on the beach, you can't see it happening. In this episode, Andrew talks with Dr. Anja Brandon, Director of Plastics Policy at Ocean Conservancy, about the plastic pollution problem hiding in plain sight behind the more familiar...

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A New PBS Documentary Wants You to Care About Coral. Meet the Man Behind It. show art A New PBS Documentary Wants You to Care About Coral. Meet the Man Behind It.

How To Protect The Ocean

A new documentary called Descent – Into the Blue starts airing on public television stations nationwide on September 1, 2026. It's narrated by Peter Coyote, directed by Rory Fielding, and one of its central voices is Mike Goldberg, co-founder of the Florida Keys coral restoration nonprofit I.CARE and owner of Key Dives in Islamorada. Andrew sits down with Mike for the full, unedited version of the conversation this week's four solo episodes have been building toward: 30-plus years running a dive shop, more than 10,000 dives, and a front-row seat to watching the reefs he built his life around...

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Show Me the Receipts: Why I.CARE Monitors Every Coral It Plants show art Show Me the Receipts: Why I.CARE Monitors Every Coral It Plants

How To Protect The Ocean

Most coral restoration groups check on a sample of what they've planted, often around 20 to 30 percent, and report that sample as if it represents everything in the water. I.CARE checks on all of it. Every single coral outplant gets monitored at one week, one month, 90 days, then one, two, and three years, with no substitute and nothing left unaccounted for. That rule was built in by co-founders Mike Goldberg and Dr. Kylie Smith before I.CARE ever planted its first coral, and Mike frames it as a matter of fiduciary duty, the same obligation he'd expect from anyone handling someone else's...

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This year, most of the coral on the planet went through heat stress severe enough to bleach it. That's not a rounding error: 84 percent of the world's reef area, across the Pacific, Atlantic, and Indian Oceans, and NOAA had to add three brand-new alert levels to its Coral Reef Watch scale because the existing one had no category for what was happening. In this episode, Andrew breaks down exactly where global coral reefs stand right now: how the fourth global mass bleaching event on record got declared, why NOAA waited until 2026 to confirm it had actually ended, and why every global bleaching event on record has been worse than the one before it.

From there, Andrew tackles the harder question: if the IPCC's own projections show most reefs disappearing even in a best-case warming scenario, is coral restoration just decoration on a dying patient? He walks through the honest case for restoring reefs anyway, then surveys the full toolkit practitioners actually use beyond planting fragments, including larval propagation ("coral IVF"), selective breeding for heat tolerance, cryopreservation and biobanking, coral probiotics, and engineered substrates like biorock and 3D-printed reef tiles. He digs into the peer-reviewed evidence for whether any of it works (short answer: yes, locally, and not yet at global scale), and closes with a fast history of how restoration itself evolved, from 1970s hand-transplanting to a 2012 lab accident that unlocked 25-to-40-times faster coral growth.

This is episode one of a four-part week built around Andrew's interview with Mike Goldberg, co-founder of ICARE, a coral restoration group in the Florida Keys. The rest of the week digs into specific pieces of Mike's own story before his full interview airs Friday.

Takeaways:

  • Coral reefs just came through the most severe global bleaching event ever recorded: 84 percent of the world's reef area affected between 2023 and 2025, and NOAA only confirms an event over after months of monitoring show it's genuinely done, not just cooling off temporarily.
  • Even the IPCC's best-case warming scenario still projects most reefs lost, which is the strongest argument for restoring reefs now, not a reason to skip it.
  • Fragment-based coral gardening is just one tool. The field also includes selective breeding for heat tolerance, cryopreservation and biobanking, probiotics, engineered substrates like biorock and 3D-printed tiles, and protecting the herbivorous fish and water quality reefs depend on.
  • It's genuinely working at the local scale: peer-reviewed studies show restored reefs regaining their coastal-protection function within four years and fish populations rebounding two to three times over fifteen years.
  • It is not, on current evidence, a global-scale fix on its own. Restoration investment so far covers a tiny fraction of what's been lost, which is exactly why a "one coral cluster at a time" mindset matters.
  • The practice itself has moved fast: hand-transplanting coral in the 1970s, a lab accident in 2012 that unlocked dramatically faster growth, and today's diversified, partnership-driven restoration models.

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