Michael Moore's 'Planet of the Humans' Documentary Attacks Climate Solutions
By Dana Nuccitelli
Environmentalists and renewable energy advocates have long been allies in the fight to keep unchecked industrial growth from irreversibly ruining Earth's climate and threatening the future of human civilization. In their new YouTube documentary "Planet of the Humans," director Jeff Gibbs and producer Michael Moore argue for splitting the two sides. Their misleading, outdated, and scientifically sophomoric dismissal of renewable energy is perhaps the most dangerous form of climate denial, eroding support for renewable energy as a critical climate solution.
"Planet of the Humans" by the end of April had more than 4.7 million views and fairly high scores at the movie critic review aggregator Rotten Tomatoes. The documentary has received glowing reviews from numerous climate "deniers" whose names are familiar to those in the climate community, including Steve Milloy, Marc Morano, and James Delingpole. Some environmentalists who have seen the movie are beginning to oppose wind and solar projects that are absolutely necessary to slow climate change.
The film by these two "progressive" filmmakers may succeed where Fox News and right-wing talk radio have failed: to undermine humanity's last best hope for positive change. As energy journalist Ketan Joshi wrote, the film is "selling far-right, climate-denier myths from nearly a decade ago to left-wing environmentalists in the 2020s."
The film follows Gibbs as he visits various green technology sites in the United States and ostensibly learns that each one is just as bad as the fossil fuel infrastructure that it would replace. Unfortunately, the movie is littered with misleading, skewed, and outdated scenes.
"Planet of the Humans"' approach is fundamentally flawed – Gibbs focuses almost exclusively on the imperfections of technologies like solar panels, wind turbines, biomass, and electric cars without considering their ability to reduce carbon and other pollutants. The film suggests that because no source of energy is perfect, all are bad, thus implying that the very existence of human civilization is the problem while offering little in the way of alternative solutions.
A Badly Outdated Portrait of Solar and Wind
In an interview with Reuters, Michael Moore summarized the premise of the film: "I assumed solar panels would last forever. I didn't know what went into the making of them."
It's true. Solar panels and wind turbines don't last forever (though they do last several decades), and like every other industrial product, they require mining and manufacturing of raw materials. Sadly, that's about as deep as the film delves into quantifying the environmental impacts of renewable energy versus fossil fuels. In fact, the misinformation in the film is at times much worse than ignorance.
In one scene, author and film co-producer Ozzie Zehner falsely asserts, "You use more fossil fuels [manufacturing renewables infrastructure] than you're getting benefit from. You would have been better off burning the fossil fuels in the first place instead of playing pretend."
That's monumentally wrong. A 2017 study in Nature Energy found that when accounting for manufacturing and construction, the lifetime carbon footprints of solar, wind, and nuclear power are about 20 times smaller than those of coal and natural gas, even when the latter include expensive carbon capture and storage technology. The energy produced during the operation of a solar panel and wind turbine is 26 and 44 times greater than the energy needed to build and install them, respectively. There are many life-cycle assessment studies arriving at similar conclusions.
The film's case is akin to arguing that because fruit contains sugar, eating strawberries is no healthier than eating a cheesecake.
It's true that the carbon footprint of renewable energy is not zero. But the film somehow fails to mention that it's far lower than the fossil fuel alternatives, instead falsely suggesting (with zero supporting evidence) that renewables are just as bad. The closest defense of that argument comes when Zehner claims that wind and solar energy cannot displace coal, and instead retired coal power plants are being replaced by even larger natural gas plants.
In reality, coal power generation in the U.S. has declined by about half (over 1 trillion kilowatt-hours) over the past decade, and it's true that natural gas has picked up about two-thirds of that slack (670 kWh). But growth in renewables has accounted for the other one-third (370 kWh). As a result, power sector carbon emissions in the U.S. have fallen by one-third since 2008 and continue to decline steadily. In fact, electricity is the only major sector in the U.S. that's achieving significant emissions reductions.
It's true that natural gas is a fossil fuel. To reach zero emissions, it must be replaced by renewables with storage and smart grids. But thus far the path to grid decarbonization in the U.S. has been a success story that the film somehow portrays as a failure. Moreover, that decarbonization could be accelerated through policies like pricing carbon pollution, but the film does not once put a single second of thought into policy solutions.
In perhaps its most absurd scene, Gibbs and Zehner visit a former solar facility in Daggett, California, built in the mid-1980s and replaced 30 years later. Gazing upon the sand-covered landscape of the former facility, Gibbs declares in an ominous tone, "It suddenly dawned on me what we were looking at: a solar dead zone."
Daggett is located in the Mojave Desert. Sand is the natural landscape. Solar farms don't create dead zones; in fact, some plants thrive under the shade provided by solar panels.
It suddenly dawned on me how hard the film was trying to portray clean energy in a negative light.
A Shallow Dismissal of Electric Vehicles
In another science, Gibbs travels to a General Motors facility in Lansing, Michigan, circa 2010, as GM showcased its then-new Chevy Volt plug-in electric hybrid vehicle. Gibbs interviews a representative from the local municipal electric utility provider, who notes that they generate 95% of their supply by burning coal, and that the power to charge the GM facility's EVs will not come from renewables in the near future.
That is the full extent of the discussion of EVs in the film. Viewers are left to assume that because these cars are charged by burning coal, they're just greenwashing. In reality, because of the high efficiency of electric motors, an electric car charged entirely by burning coal still produces less carbon pollution than an internal combustion engine car (though more than a hybrid). The U.S. Department of Energy has a useful tool for comparing carbon emissions between EVs, plug-in hybrids, conventional hybrids, and gasoline-powered cars for each state. In Michigan, on average, EVs are the cleanest option of all, as is the case for the national average power grid. In West Virginia, with over 90% electricity generated from coal, hybrids are the cleanest option, but EVs are still cleaner than gasoline cars.
In short, EVs are an improvement over gasoline-powered cars everywhere, and their carbon footprints will continue to shrink as renewables expand to supply more of the power grid.
A Valid Critique of Wood Biomass
The film devotes a half hour to the practice of burning trees for energy. That's one form of biomass, which also includes burning wood waste, garbage, and biofuels. Last year, 1% of U.S. electricity was generated by burning wood, but it accounted for 30% of the film run time.
In fairness, Europe is a different story, where wood biomass accounts for around 5% of electricity generation, and which imports a lot of wood chips from America. It's incentivized because the European Union considers burning wood to be carbon neutral, and it can thus be used to meet climate targets. That's because new trees can be planted to replace those removed, and the EU assumes the wood being burned would have decayed and released its stored carbon anyway.
There are numerous problems with those assumptions, one of which is unavoidable: time. Burning trees is close to carbon neutral once a replacement tree grows to sufficient maturity to recapture the lost carbon, but that takes many decades. In the meantime, the carbon released into the atmosphere accelerates the climate crisis at a time when slashing emissions is increasingly urgent. That's why climate scientists are increasingly calling on policymakers to stop expanding this practice. So has 350.org founder Bill McKibben since 2016, despite his depiction in the film as a villainous proponent of clearcutting forests to burn for energy.
It's complicated, but the carbon footprint of biomass depends on where the wood comes from. Burning waste (including waste wood) as biomass that would decay anyway is justifiable, but also generally only practical at a relatively small scale. A more detailed investigation of the wood biomass industry could make for a worthwhile documentary. It's still a small-time player, but it does need to stay that way.
The Bottom Line
Gibbs asks, "Is it possible for machines made by industrial civilization to save us from industrial civilization?"
Why not? Industrial civilization has a non-zero climate and environmental footprint, but the impact of green technologies like EVs, wind turbines, and solar panels is much smaller than the alternatives. They represent humanity's best chance to avoid a climate catastrophe.
The filmmakers call for an end to limitless economic growth and consumption. It's difficult to envision that goal being achieved anytime soon, but even if it is, human civilization will continue to exist and require energy. To avert a climate crisis, that energy must be supplied by the clean renewable technologies pilloried in the film. To expand on the earlier analogy, the filmmakers seem to believe we should improve nutrition not by eating healthier foods like strawberries, but rather by eating a bit less cheesecake.
Like Fox News and other propaganda vehicles, the film presents one biased perspective via carefully chosen voices, virtually all of whom are comfortable white men. It applies an environmental purity test that can seem convincing for viewers lacking expertise in the topic. Any imperfect technology – which is every technology – is deemed bad. It's a clear example of the perfect being the enemy of the good. In reality, this movie is the enemy of humanity's last best chance to save itself and countless other species from unchecked climate change through a transition to cleaner technologies.
Reposted with permission from Yale Climate Connections.
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Two decades ago scientists and volunteers along the Virginia coast started tossing seagrass seeds into barren seaside lagoons. Disease and an intense hurricane had wiped out the plants in the 1930s, and no nearby meadows could serve as a naturally dispersing source of seeds to bring them back.
Restored seagrass beds in Virginia now provide habitat for hundreds of thousands of scallops. Bob Orth, Virginia Institute of Marine Science / CC BY 2.0<p>The paper is part of a growing trend of evidence suggesting seagrass meadows can be easier to restore than other coastal habitats.</p><p>Successful seagrass-restoration methods include <a href="https://www.sciencedirect.com/science/article/abs/pii/S0304377099000078?via%3Dihub" target="_blank">transplanting shoots</a>, <a href="https://onlinelibrary.wiley.com/doi/10.1111/j.1061-2971.2004.00314.x" target="_blank" rel="noopener noreferrer">mechanized planting</a> and, more recently, <a href="https://www.nature.com/articles/s41467-020-17438-4" target="_blank" rel="noopener noreferrer">biodegradable mats</a>. Removing threats, proximity to donor seagrass beds, planting techniques, project size and site selection all play roles in a restoration effort's success.</p><p>Human assistance isn't always necessary, though. In areas where some beds remain, seagrass can even recover on its own when stressors are reduced or removed. For example, seagrass began to recover when Tampa Bay improved its water quality by reducing nitrogen loads from runoff by roughly 90%.</p><p>But more and more, seagrass meadows struggle to hang on.</p><p>The marine flowering plants have declined globally since the 1930s and currently disappear at a rate equivalent to a football field every 30 minutes, according to the <a href="https://www.unep.org/resources/report/out-blue-value-seagrasses-environment-and-people" target="_blank" rel="noopener noreferrer">United Nations Environment Programme</a>. And research published in 2018 found the rate of decline is <a href="https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2018GB005941" target="_blank" rel="noopener noreferrer">accelerating</a> in many regions.</p><p>The causes of decline vary and overlap, depending on the region. They include thermal stress from climate change; human activities such as dredging, anchoring and coastal infrastructure; and intentional removal in tourist areas. In addition, increased runoff from land carries sediment that clouds the water, blocking sunlight the plants need for photosynthesis. Runoff can also carry contaminants and nutrients from fertilizer that disrupt habitats and cause algal blooms.</p><p>All that damage comes with a cost.</p>
The Value of Seagrass<p>As with ecosystems like rainforests and <a href="https://therevelator.org/mangroves-climate-change/" target="_blank">mangroves</a>, loss of seagrass increases carbon dioxide emissions. And that spells trouble not just for certain habitats but for the whole planet.</p><p>Although seagrass covers at most 0.2% of the seabed, it <a href="https://www.unenvironment.org/news-and-stories/story/seagrass-secret-weapon-fight-against-global-heating" target="_blank">accounts for 10%</a> of the ocean's capacity to store carbon and soils, and these meadows store carbon dioxide an estimated 30 times faster than most terrestrial forests. Slow decomposition rates in seagrass sediments contribute to their <a href="https://www.researchgate.net/publication/238506081_Assessing_the_capacity_of_seagrass_meadows_for_carbon_burial_Current_limitations_and_future_strategies" target="_blank" rel="noopener noreferrer">high carbon burial rates</a>. In Australia, according to <a href="https://onlinelibrary.wiley.com/doi/10.1111/gcb.15204" target="_blank" rel="noopener noreferrer">research</a> by scientists at Edith Cowan University, loss of seagrass meadows since the 1950s has increased carbon dioxide emissions by an amount equivalent to 5 million cars a year. The United Nations Environment Programme reports that a 29% decline in seagrass in Chesapeake Bay between 1991 and 2006 resulted in an estimated loss of up to 1.8 million tons of carbon.</p>
Eelgrass in the river delta at Prince William Sound, Alaska. Alaska ShoreZone Program NOAA / NMFS / AKFSC; Courtesy of Mandy Lindeberg / NOAA / NMFS / AKFSC<p>Seagrasses also protect costal habitats. A healthy meadow slows wave energy, reduces erosion and lowers the risk of flooding. In Morro Bay, California, a 90% decline in the seagrass species known as eelgrass caused extensive erosion, according to a <a href="https://www.sciencedirect.com/science/article/abs/pii/S0272771420303528?via%3Dihub" target="_blank" rel="noopener noreferrer">paper</a> from researchers at California Polytechnic State University.</p><p>"Right away, we noticed big patterns in sediment loss or erosion," said lead author Ryan Walter. "Many studies have shown this on individual eelgrass beds, but very few studies looked at it on a systemwide scale."</p><p>In the tropics, seagrass's natural protection can reduce the need for expensive and often-environmentally unfriendly <a href="https://www.nioz.nl/en/news/zeegras-spaart-stranden-en-geld" target="_blank" rel="noopener noreferrer">beach nourishments</a> regularly conducted in tourism areas.</p><p>Seagrass ecosystems improve water quality and clarity, filtering particles out of the water column and preventing resuspension of sediment. This role could be even more important in the future. By producing oxygen through photosynthesis, meadows could help offset decreased oxygen levels caused by warmer water temperatures (oxygen is less soluble in warm than in cold water).</p><p>The meadows also provide vital habitat for a wide variety of marine life, including fish, sea turtles, birds, marine mammals such as manatees, invertebrates and algae. They provide nursery habitat for <a href="https://wedocs.unep.org/bitstream/handle/20.500.11822/32636/seagrass.pdf?sequence=1&isAllowed=y" target="_blank" rel="noopener noreferrer">roughly 20%</a> of the world's largest fisheries — an <a href="https://www.floridamuseum.ufl.edu/science/seagrass-meadows-harbor-wildlife-for-centuries/" target="_blank" rel="noopener noreferrer">estimated 70%</a> of fish habitats in Florida alone.</p><p>Conversely, their disappearance can contribute to die-offs of marine life. The loss of more than 20 square miles of seagrass in Florida's Biscayne Bay may have helped set the stage for a widespread <a href="https://www.wlrn.org/2020-08-14/the-seagrass-died-that-may-have-triggered-a-widespread-fish-kill-in-biscayne-bay" target="_blank">fish kill</a> in summer 2020. Lack of grasses to produce oxygen left the basin more vulnerable when temperatures rose and oxygen levels dropped as a result, says Florida International University professor Piero Gardinali.</p>
Damaged Systems, a Changing Climate<p>Governments and conservationists around the world have already put a lot of effort into coastal restoration efforts. And that's helped some seagrass populations.</p><p>Where stressors remain, though, restoration grows more complicated. <a href="https://www.rug.nl/research/portal/en/publications/the-future-of-seagrass-ecosystem-services-in-a-changing-world(3a8c56db-7bed-4c9e-ac7f-c72453e2a102).html" target="_blank">Research</a> published this September found that only 37% of seagrass restorations have survived. Newly restored meadows remain vulnerable to the original stressors that depleted them, as well as to storms — and <a href="https://www.ecowatch.com/tag/climate-crisis">climate change</a>.</p>
Seagrass in Dry Tortugas National Park, Florida. Alicia Wellman / Florida Fish and Wildlife / CC BY-NC-ND 2.0<p>In Chesapeake Bay a cold-water species of seagrass is currently hitting its heat limit, especially in summer, according to Alexander Challen Hyman of University of Florida's School of Natural Resources and Environment. As waters continue to warm due to climate change, the species likely will disappear there.</p><p>Climate-driven sea-level rise complicates the problem as well. Seagrasses thrive at specific depths — too shallow and they dry out or are eaten, too deep and there isn't enough light for photosynthesis.</p>