Environment featured

A Dead World, Plastic-Wrapped to Preserve Freshness

May 27, 2025

In the classic 1967 film The Graduate, a family friend of lead character Benjamin Braddock (played by Dustin Hoffman) offers him career advice: “One word. Plastics!”

I was 16 when The Graduate was released, and, like Hoffman’s character, completely uninterested in plastics as a career option. But here we are nearly six decades later, and I must admit that, from a purely economic standpoint, Benjamin Braddock received a smart tip.

World plastics production exploded over the intervening decades, from about 25 million metric tons in 1967 to roughly 450 million in 2024. The stock prices of plastics manufacturers soared as the industry expanded, capitalizing on research into new kinds of (and ways of using) synthetic, polymer-based materials. Seemingly endless varieties of vinyl, polystyrene, acrylic, and polyurethane could be extruded, injection-molded, pressed, or spun into a blizzard of products with a stunning array of desirable properties—including durability, disposability, flexibility, hardness, insulative properties, heat resistance, and tensile strength. Plastic was cheap and it could take on any shape or color. It was a magic material that could do almost anything. Soon it was everywhere: in toys, packaging, fabrics, paints, building supplies, medical devices, car interiors, electronics, and more.

The chemical stability of plastics meant that, as objects made of it were eventually discarded, shards and particles would make their way into the natural environment and persist there. Today, traces of plastic can be found everywhere on our planet—in rivers, the air, arctic snow, at the tops of mountains and bottoms of seas, in plants and soil, and in the bodies of animals from insects to humans.

If fossil fuels enabled the modern age by providing the energy for industrial expansion, they also radically altered the materials that both support and imperil human life. Most plastics are made from fossil fuels, and, like it or not, we now live in an age of oil and plastic. Since fossil fuels are finite, depleting resources, this age will necessarily be brief in geologic terms. If there are future geologists and archaeologists, they will easily identify strata from our fleeting era by evidence of the rapid growth (and decline) of human numbers and their environmental impact, and by durable materials we have left behind—many of which will be plastics.

In this article, we’ll explore plastic’s impacts on humans and nature. And I’ll indulge in a little speculation on the world after plastic.

Humans: Swimming in Plastic

My wife Janet and I have been concerned about plastic pollution for years. We keep food in glass containers, and we use fabric shopping bags. And yet, looking around our house, I see plastic everywhere. The keyboard on which I type this article is plastic. So is the computer monitor in front of me. Even the cloth shopping bags we use (to avoid single-use polyethylene bags) have plastic as a fabric component and are sewn with nylon thread. If people who try to steer clear of plastics are still thoroughly enmeshed in them, what does that say for everyone else? And how worried should we all be?

Scientific data on the human health impacts of environmental plastic, and especially microplastics, has burgeoned in recent years. We eat microplastics, inhale them, and absorb them through our skin. They can impair respiratory and cardiovascular health and disrupt the normal functioning of digestive systems. Studies have shown that microplastics can induce persistent oxidative stress, inflammation, and DNA damage, and are implicated in chronic diseases like cancer.

One potentially existential impact, explored in Shanna Swan’s book Count Down (and my recent article on the subject) is the impact of plastics and other chemicals on sperm counts and women’s reproductive health. Men’s average sperm counts have declined by over half in the last 50 years. During the same period, estrogen-mimicking synthetic chemicals (including plastics) have proliferated in the environment. Correlation does not prove causation, but research has shown clear pathways by which plastics-related chemicals disrupt reproductive cells and systems. One of the most widespread disruptors of sperm cells is a group of chemicals called phthalates, which we absorb from plastic food packaging. Phthalates are easily measured in urine, and elevated levels typically follow the consumption of plastic-packaged cheese.

Here’s another correlation in which causation is implicated, though in this case still unproven: as sperm counts are declining, so are population growth rates, with global human population set to shrink in the decades ahead (many countries are seeing plummeting fertility rates, while others are still adding population rapidly). While some environmentalists are breathing a sigh of relief, since fewer people could translate to reduced pollution and resource depletion, growthist commentators see population shrinkage as a crisis requiring heroic pushback; hence the recent rise of pronatalism in many nations. Falling birthrates are usually ascribed to families delaying childbirth for economic reasons, but the reproductive impacts of chemical pollution cannot be ruled out as a contributing cause. In a recent article, chemistry professor Ugo Bardi argues that the link between plastics and plummeting fertility is real, and that the result will be, in the best case, a shrinking and aging population; in the worst case, extinction.

Just as frightening as losing the ability to reproduce is losing the ability to think. Recent studies have documented the presence of microplastics in the human brain. Of even greater concern is the finding that the brains of dementia patients tend to contain more plastic particles than others. Are plastics a cause of dementia? We don’t know yet.

Trying personally to avoid the dangers of plastics invites irony and contradiction. An example that springs to mind is the food supplements industry. Its products appeal to consumers who seek “natural” health benefits from vitamins and other micronutrients. Yet most of the health-promoting pills, powders, and potions that consumers take are delivered in plastic bottles; even glass bottles are often shrink-wrapped. Much the same could be said for pharmaceuticals: most are plastic packaged. Similarly, the food industry, including its health-food segment, relies on sanitation and food preservation typically entailing plastics. Often there simply is no option for receiving the health benefit of supplements, organic foods, medical care, and medicines without a concomitant exposure to health-compromising plastics.

Nature: Shrink Wrapped

If the negative impacts of plastic affected only humans, it might be possible (though callous) to say that our overly clever species is just reaping its just deserts. However, those impacts are falling on other creatures as well, and on whole ecosystems. As a result, our entire planet is being transformed—and not in a good way.

(Photo: Adobe Stock)

Let’s start with water. As Jeremy Rifkin argues in Planet Aqua: Rethinking Our Home in the Universe, life is all about water. Unsurprisingly, plastic pollution is typically swept via storm drains into streams, rivers, and lakes, which supply drinking water for local communities.

Rivers then carry plastic particles (as well as plastic bags, toys, and other larger objects) into the oceans—which provide the world with food and oxygen, regulate the global climate, and are home to between 50 and 80 percent of all life on Earth. Intact plastic objects, such as single-use shopping bags, may entangle, or clog the digestive systems of, animals such as fish, whales, and sea turtles, in some cases causing them to die of malnutrition. Gradually, the churning of ocean waters breaks these objects down into smaller and smaller particles, which even more marine creatures ingest. Ocean plastics also impact the overall health and function of marine ecosystems by altering habitats, such as by changing the physical structure of coral reefs and seagrass beds. A widely cited 2016 report by the World Economic Forum estimated that by mid-century, plastics in the world’s oceans will outweigh all the remaining fish.

Microplastics are dispersed not just in water, but also in the atmosphere. In an urban environment, humans may be exposed to as many as 5,700 microplastic particles per cubic meter of air, and each of us may be inhaling up to 22,000,000 micro- and nanoplastics (i.e., particles less than a micron in size) annually. The human health impacts of airborne plastics are increasingly being documented; however, atmospheric micro- and nanoplastics likewise affect other creatures. They even change the weather by promoting cloud formation, thereby increasing rain- and snowfall.

From water and air, plastics pass into the soil. Also, plastics enter farm soils by deliberate human action—in processed sewage sludge used for fertilizer, in plastic mulches, and in slow-release fertilizers and protective seed coatings. Some estimates suggest that, altogether, more plastics end up in soils than in the oceans. Studies have shown that microplastics alter soil bulk density, microbial communities, and water holding capacity.

From water, air, and soil, plants take up micro- and nanoplastics. Research suggests that microplastics generally have a negative effect on plant development, affecting both seed germination and root or shoot growth, depending on environmental conditions, plant species, and plastic concentration.

From water, air, soil, and plants, microplastics enter the bodies of humans and other animals. We’ve already noted impacts on human reproductive health. Similar impacts on hormones and sperm have been observed in farmed mink in Canada and Sweden, alligators in Florida, crustaceans in the UK, and in fish downstream from wastewater treatment plants around the world.

The environmental impact of plastics is complicated and often indirect, as plastics collect and spread other pollutants. While some plastics are themselves relatively inert, they accumulate other chemicals on their surface—including persistent organic pollutants (POPs), heavy metals, and antibiotics—and serve as dispersal vectors, thereby leading to an overall increase of toxicity and bioaccumulation in the environment.

In short, plastic particles are now systemically present worldwide. While it may be possible to remove large plastic objects from oceans, rivers, creeks, or shorelines, microplastics can’t be cleaned up at scale by any means currently widely deployed. They are part of the biosphere and are changing the way nature functions. They don’t just harm the humans who have unleashed them. They impact all of life.

The World After Plastics

Many folks’ first response upon learning of the dire impacts of plastics pollution is to explore alternative materials. Prior to the plastics revolution, people used objects made of wood, stone, metal, clay, glass, animal skin or bone, and plant fibers. In many instances we could revert to those materials, though often with a sacrifice of affordability or durability. Researchers are finding ways to increase desirable qualities in traditional materials; for example, one company promises to produce wood stronger than steel.

Bioplastics have been around for nearly two centuries in the form of the celluloid once used by the early motion picture industry and fountain pen manufacturers. However, because they often lack the durability of petro-plastic, bioplastics’ main current usage is largely confined to disposable cutlery and plates, and biodegradable supermarket produce bags. Ongoing research will likely expand the range and usefulness of bioplastic materials.

Plastics recycling has been explored since the 1980s; still, after nearly a half-century, most recycling facilities reject the great majority of plastic items that make it into recycle bins (most items go directly into trash bins and hence to landfills that leach toxics). There is research underway by plastics manufacturers to make their products more recyclable, but those efforts are in their infancy.

Perhaps the best hopes for cleaning up some of the plastics already choking our environment lie with bioremediation processes using bacteria and mushrooms. Small-scale trials, using a variety of species, show promising results for removing plastics from water and soil, though the atmosphere will pose a bigger challenge.

The transition to alternative materials, the development of more useful bioplastics, the growth of plastics recycling, and plastics bioremediation all confront two formidable obstacles—scale and speed. Currently, the scale of these solutions is too small, and their rate of adoption is too slow to make much of a difference. That is unlikely to change without government regulations to discourage the use of current plastics along with subsidies to promote alternatives and cleanup efforts. Such post-plastic regulations and subsidies might be seen as one of the Big Solutions needed (along with the global energy transition from fossil fuels to renewables, intended to slow climate change) to keep the current global polycrisis from descending into an unstoppable Great Unraveling. But, with the advent of the second Trump administration, Big Solutions are no longer a priority for the world’s economic, military, and cultural superpower. Indeed, the Trump administration is overturning efforts to rein in a range of harmful chemicals and has thrown climate action into reverse gear. Without US leadership, campaigns to forge global solution treaties will probably be stymied.

So, it is unlikely that government policy will halt the global proliferation of plastics and plastic pollution. In contrast, resource depletion, spasmodic economic/financial contraction, deglobalization, and war are more likely to be limiting factors.

Sadly, however, by the time falling rates of fossil fuel extraction close the spigot on world plastics production, we will be living in a world even more contaminated with plastics. And those plastics will continue to break down into ever smaller bits. They won’t fully decompose into harmless molecules for a very long time, if ever. While plastics are expected to last decades or centuries, one expert argues they may never really go away.

Even after the end of the age of plastics, its wake of destruction will persist. In the worst instance, if sperm counts continue to plummet, higher life could mostly disappear, at least for a few million years. Eventually, evolution will probably find a way to work around microplastics and the other hazards that humanity has generated in just the past century or two. But our species may not be part of that workaround.

What can any of us do in the face of this profound dilemma? First, treat plastics and toxics proliferation as the existential crisis it is. Educate others: share this article with friends and sign up for the free live PCI online event, “Troubled Waters: How Microplastics are Impacting Our Oceans and Our Health.” Contact your elected representatives. Although Trump has embraced the fossil fuel industry, and federal health agencies are undertaking worrisome actions, there could be opportunities to raise the issue of plastics—many of which are produced outside the US—with folks in the MAGA and MAHA worlds.

Second, take the crisis personally. Even though it’s hard to avoid plastics, make your best effort. There are multiple products, websites, and influencers to help you reduce your personal plastic consumption.

Third, make plastics reduction and cleanup a focus of community action. Spend an hour each week picking up plastic garbage in your local creek. Bonus points if you get some friends and neighbors to help. It may seem like a paltry response in the face of the enormity of the threat, but it’s certainly better than nothing. You’ll feel more engaged, less victimized. Maybe the exercise you get will improve your brain function and you’ll be able to think of even more and better ways to defeat the plasticization of our planet and our future.

Note: This is one of the most depressing articles I’ve ever written. Near the beginning of the article, I shared how my wife and I try (mostly unsuccessfully) to avoid plastic. I went on to build the case that humanity is toying with life on Earth, all for short-term profit and convenience. That’s truly dispiriting. I concluded with some ideas for de-plasticizing. I hope you’ll run with some of these ideas, and I just want to say that I intend to take my own advice and double down on my efforts to eliminate plastic from the scene.

Richard Heinberg

Richard is Senior Fellow of Post Carbon Institute, and is regarded as one of the world’s foremost advocates for a shift away from our current reliance on fossil fuels. He is the author of fourteen books, including some of the seminal works on society’s current energy and environmental sustainability crisis. He has authored hundreds of essays and articles that have appeared in such journals as Nature and The Wall Street Journal; delivered hundreds of lectures on energy and climate issues to audiences on six continents; and has been quoted and interviewed countless times for print, television, and radio. His monthly MuseLetter has been in publication since 1992. Full bio at postcarbon.org.

Subscribe
Notify of
14 Comments
Oldest
Newest Most Voted
Inline Feedbacks
View all comments
Fred Beddall

Heartily agree. On my small organic farm (8 acres) I use no plastic landscape fabric, tarps, plastic twine, plastic mulch, or plastic packaging — instead I use straw for mulch, jute for twine, paper fiber for packaging. The unavoidable plastics are in irrigation hoses, but even there, I reuse instead of dispose. Vast use of plastic is the dirty secret of organic and regenerative farming.

jared@watermelonwebworks.com

Here’s my sample reply, to test this system.

Samrat Bee

Hi Richard. Very insightful story about the plastic / polymer contamination of the entire planet. One that is based on the eternal myth of Cheap Nature viz-a-viz Capitalism. Cheap Nature that equates to cheap energy, cheap food, cheap labor, cheap this and cheap that. Yet, blaming fossil fuels is but useless objectively speaking, because you are not addressing the root system / cause. Capitalism, which equates to the entire organization, exploitation and abuse of Nature and of people. Be it plastic or nuclear energy or X, one only gets rich when they devalue Nature. Capitalism is but a continuous massive devaluation of Nature. Any reform within such a system, is bound for failure. Why? Because most environmental policies follow the same "bourgeois green arithmetic of Capitalism" (John Bellamy Foster).

Jon Freise

Thank you Richard.
As the energy returned on energy invested of fossil fuels they will transition from fuel sources to high purity carbon sources. (Free iron was an energy source for microbes long ago and “burned” to the iron oxide that we mine today. That iron ore is no longer and energy source, but the concentrated ore still provides an energy subsidy to our economy.)

The last of the oil, gas and coal will likely be produced using renewable energy at an energy loss. But less of a loss than iron or aluminum production.

Bike tires and carbon fiber construction and nylon thread are likely to be around long after the last middle class person can afford a personal automobile or the taxes needed to pave the asphalt road needed to give cars a place to drive. Again, peak oil does not mean that oil will “run out” but instead that the last of the fossil fuels will follow the economics and be allocated to the highest value processes. Single person automobiles will go away but we might have fossil fuels provide portable energy (like a kerosene lamp or stove) or plastic products well into the 2100’s. But there will still be a peak and decline.

Industrial complexes located in regions that maintain the highest EROI will have energy surplus to spend on defense, repair, and even growth and expansion. It would not be surprising to see the Alberta Tar Sands join a new US petrostate centered around the Gulf of Mexico America refinery complex. If such a state were to reconquest the heavy oil in Venezuela and the offshore oil in South America and West Africa it would have feed stock for a very long time. Even if the remainder of the US collapsed into anarchy.

An autocatalytic loop is one that can self produce. The higher the EROI of the fuel source, plus efficiency of the production process, the more surplus left over. By the 1950’s to 1970’s most industrial processes had reached quite a high level of efficiency. I would expect that we might see a collapse (via disrupted semiconductor supply chains) back to something like that level of technology. Most of the world's regions would continue decline. But those centers of high EROI industry might see regrowth.

The future might look like industrial areas with 24/7 fossil fuel or hydro power producing renewable energy harvesting devices that can operate on intermittent energy sources that they trade for food and other natural resources from more rural areas. For example: in the US coal based steel wind mills were manufactured that could drive mechanical water pumps. These provided US farmers with well water before electric lines were available. It took a lot more subsidy to string and maintain all those electric lines than provide the steel wind mills and water tanks. I can imagine a rural US with solar pv, wind pumped water, solar heat, cellulose insulated passive houses, etc. Not today’s standard of living, but not the 1850’s either.

Robin Schaufler

A great deal of plastic is devoted to packaging. Packaging is necessary for transportation and shelf life. However, any food you grow yourself need never touch plastic. Extreme relocalization is of the essence. Of course, if it scales, it wrecks the modern economy. That's a good thing. As Jason Bradford points out, the Future is Rural, but to optimize that future, we need massive land redistribution. Otherwise, we end up in a new feudalism, where the corporate overlords become the new land barons.

Mr. Krieger

IInteresting Article. Unfortunately we will not run out of fossil fuel for decades maybe centuries.
and as we move to electric renewables this will leave more ff for plastics,
Every time I see a parking lot, I notice the cigarette butts, plastics, the other disposables like floss . And earlier this evening read an article that our agriculture soil contains many times the amount of microplastics than oceans. Humorously, my breathing, drinking and eating is just a slower way of self embalming

Henry Swayze

I recently saw a statement that the biggest source of plastic pollution is tire dust and that all current tire on the market in the US use additives bad for our health.
On a positive note, there is a text talk about the potential of recycling far more plastic through building a proper recycling machine. This would make using resurected plastic cheaper than always using new verging feed stock.

mick the biologist

The Anthropocene – A sliver of fear's detritus in the entanglement of biotic and energetic life. In the quantum field, mistakes are common, extinctions prove that. Animals and plants are emotive, as i have come to know since birth, being born with the blessing and curse of rarefied empathy. We have common ancestry, the patterns that grant entropy a chance for tuning up the entanglements, weaving together, in some synchronized way, the chaos of energies that rebound through the soft blanket of so-called empty space. Isolation is the bedrock of fear. All biota sense potential threats, and respond protectively, either successfully or not. Karma, the cause/effect/consequence of entanglement, plays no favorites, but is honest enough to provide clarity to those beings who choose to pay attention. Humans have fallen prey to their scattered attentions. One-pointed attention, carried out by the micro-second in a resting nervous system, is what living beings can use to avoid egregious errors, and their incessant repetition. Fear takes this away, mangles the perceptive energies, enhances chaos even before the perception of entropy can turn into actual change. I watch many kinds of animals daily, hourly, sometimes via the minute. There is a steady grip to their entropy, a graceful yet intense dance that recognizes the value of life by having witnessed its absence. Always aware, of virtually everything within their spheres, animals find harmonies amidst the melodies, avoiding most of the dis-chords that would plunder their energy and time. Plants have the most ancient and sentient existence. They tower far above all other life, and generously stand still so most other beings can grok their genius. Humans, awash in fear, terror, paranoia, choose isolation, duh, like jumping from the frying pan into the fire. PTSD leads to drama-trauma, then to chemical addictions via the over-taxed endocrine system, and the brain becomes dis-functional. The substitute for living is artifact, formed into caricatures of life via plastic substitutes for actual awareness. The Anthropocene, a cocoon of death meant to protect human life. Mistakes are made. The QF is unforgiving. Tick, tock, tick tock.

jamin

Bio-engineering bacteria to eat plastic while it solves the pollution problem would undermine one of plastics most useful properties of being decay resistant. Still better to have those genes out there then the plastic staying forever.

Bart_at_EB

Remember “The Andromeda Strain” !
(The microorganism that ate the rubber air hoses of the jet pilot.)

J F

I appreciate your POV. I agree that we’ve overused plastic, and that we’ve failed spectacularly at holding corporate manufacturers accountable and forcing them to help remediate the earth they’re destroying.

However, we absolutely cannot have this conversation without also acknowledging and holding space for the people who would not survive without plastic. You say “humanity is toying with life on Earth, all for short-term profit and convenience,” but that’s not the whole picture.

Plastic straws have saved lives by allowing disabled people to safely take in fluids. It sure would be great if there were safe and durable alternatives, but so far there are not. (There are many reasons that reusable straws are inadequate, and tons of disabled people have rehashed this topic better than me.) we’ve also got the plastics on syringes for insulin, packaging for medications, shelf stable food for low income and rural areas, prosthetics, asthma inhalers, and so on and so forth.

There are many reasons that the current alternatives don’t work for people. Glass water bottles can break when you lack dexterity to grip them. Metal water bottles don’t always work with nickel allergies. The list goes on.

We need to have a much more nuanced conversation about the source of pollution (greedy corporations and careless governments), and how we can protect our most vulnerable without demonizing all plastic use. Avoiding unnecessary plastic exposure is a privilege not everyone has. And we can all be much louder when we call out the plastic manufacturers of the world.

Mike Roberts

Plastics are a product of modernity. Modernity is going away, since it is unsustainable. We're going to have to figure out how to survive without plastics. Or other products of modernity. It's not going to be easy, or painless.

Tom Murphy

It galls me that so much of the plastic crap that winds its way into our lives ends up breaking at some critical joint. Thank god for 3D printers (just kidding: most are surrounded by a depressing array of creative trash no one wants). When possible, I try to make ugly repairs using epoxy and fiberglass, which sometimes works "forever" and sometimes breaks again straight away. Often the failure renders the entire device useless, making me regret even more that I ever acquired it in the first place. It's no way to live. When something is beyond repair, I try to learn how to do without that element of modernity, rather than replacing it with yet another embodiment of Earthly exploitation. What a curse plastic has been.

Mike Roberts

Yes, depressing. Especially as it appears impossible to avoid plastic when living in modernity, though life would have still been regarded as a modern life, a century ago, without plastic.

However, the article appears to suggest that there are big solutions to the polycrisis, that can prevent modernity going away. Surely, this is wishful thinking? Modernity is unsustainable and, so, will end. So far as plastic pollution is concerned (and environmental degradation, generally), the sooner modernity ends, the better. Confronting that reality may be an even more depressing article.