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Modern Freedom Beats Feudal Serfdom

Blog Post | Poverty Rates

Modern Freedom Beats Feudal Serfdom

Make the Middle Ages Great Again?

Summary: Some influential voices today romanticize feudalism, but the reality of feudalism was misery for nearly everyone. Life under that system meant hunger, disease, violence, and lives cut brutally short. By contrast, modern societies have lifted billions out of poverty and extended life far beyond what kings and queens once knew. Progress comes from freedom, innovation, and hard work, not a return to the rule of lords and monarchs.


On a recent podcast, Tucker Carlson praised feudalism as “so much better than what we have now” because a ruler is “vested in the prosperity of the people he rules.” This romantic view of medieval hierarchy ignores a brutal reality: For most people, feudalism meant grinding poverty, disease, and early death.

As Gale L. Pooley and I found in our 2022 book Superabundance, society in preindustrial Europe was bifurcated between a small minority of the very rich and the vast majority of the very poor. One 17th-century observer estimated that the French population consisted of “10 percent rich, 50 percent very poor, 30 percent who were nearly beggars, and 10 percent who were actually beggars.” In 16th-century Spain, the Italian historian Francesco Guicciardini wrote, “except for a few Grandees of the Kingdom who live with great sumptuousness … others live in great poverty.”

An account from 18th-century Naples recorded beggars finding “nocturnal asylum in a few caves, stables or ruined houses” where “they are to be seen there lying like filthy animals, with no distinction of age or sex.” Children fared the worst. Paris, according to the French author Louis-Sébastien Mercier, had “7,000 to 8,000 abandoned children out of some 30,000 births around 1780.” These children were then taken—three at a time—to the poor house, with carriers often finding at least “one of them dead” upon arrival.

People were constantly hungry, and starvation was only ever a few bad harvests away. In 1800, even France, one of the world’s richest countries, had an average food supply of only 1,846 calories per person per day. In other words, the majority of the population was undernourished. (Given that the average person needs about 2,000 calories a day.) That, in the words of the Italian historian Carlo Cipolla, gave rise to “serious forms of avitaminosis,” or medical conditions resulting from vitamin deficiencies. There was also, he noted, a prevalence of intestinal worms, which is “a slow, disgusting, and debilitating disease that caused a vast amount of human misery and ill health.”

Sanitation was a nightmare. As the English historian Lawrence Stone wrote in his book The Family, Sex and Marriage in England 1500–1800, “city ditches, now often filled with stagnant water, were commonly used as latrines; butchers killed animals in their shops and threw the offal of the carcasses into the streets; dead animals were left to decay and fester where they lay.” London had “poor holes” or “large, deep, open pits in which were laid the bodies of the poor, side by side, row by row.” The stench was overwhelming, for “great quantities of human excrement were cast into the streets.”

The French historian Fernand Braudel found that in 15th-century England, “80 percent of private expenditure was on food, with 20 percent spent on bread alone.” An account of 16th-century life in rural Lombardy noted that peasants lived on wheat alone: Their “expenses for clothing and other needs are practically non-existent.” Per Cipolla, “One of the main preoccupations of hospital administration was to ensure that the clothes of the deceased should not be usurped but should be given to lawful inheritors. During epidemics of plague, the town authorities had to struggle to confiscate the clothes of the dead and to burn them: people waited for others to die so as to take over their clothes.”

Prior to mechanized agriculture, there were no food surpluses to sustain idle hands, not even those of children. And working conditions were brutal. A 16th-century ordinance in Lombardy found that supervisors in rice fields “bring together a large number of children and adolescents, against whom they practice barbarous cruelties … [They] do not provide these poor creatures with the necessary food and make them labor as slaves by beating them and treating them more harshly than galley slaves, so that many of the children die miserably in the farms and neighboring fields.”

Such violence pervaded daily life. Medieval homicide rates reached 150 murders per 100,000 people in 14th-century Florence. In 15th-century England, it hovered around 24 per 100,000. (In 2020, the Italian homicide rate was 0.48 per 100,000. It was 0.95 per 100,000 in England and Wales in 2024.) People resolved their disputes through physical violence because no effective legal system existed. The serfs—serfdom in Russia was abolished only in 1861—lived as property, bound to land they could never own, subject to masters who viewed them as assets rather than humans. And between 1500 and the first quarter of the 17th century, Europe’s great powers were at war nearly 100 percent of the time.

Carlson’s nostalgia for feudalism is not unique on the MAGA right. The influential American blogger Curtis Yarvin, for example, attributes to monarchs such as France’s Louis XIV decisive and long-term leadership that modern democracies apparently lack. But less frequently mentioned is how, for example, that same Louis ruined his country during the War of the Spanish Succession. As Winston Churchill wrote in Marlborough: His Life and Times,

After more than sixty years of his reign, more than thirty years of which had been consumed in European war, the Great King saw his people face to face with actual famine. Their sufferings were extreme. In Paris the death-rate doubled. Even before Christmas the market-women had marched to Versailles to proclaim their misery. In the countryside the peasantry subsisted on herbs or roots or flocked in despair into the famishing towns. Brigandage was widespread. Bands of starving men, women, and children roamed about in desperation. Châteaux and convents were attacked; the market-place of Amiens was pillaged; credit failed. From every province and from every class rose the cry for bread and peace.

The Great Enrichment, a phrase coined by my Cato Institute colleague Deirdre McCloskey, of the past 200 years or so lifted billions from the misery that defined human existence for millennia. It was driven by market economies and limits on the rulers’ arbitrary power, not feudal hierarchy.

There are many plausible reasons for Carlson’s (and Yarvin’s) openness to giving pre-modern institutions such as feudalism and absolute monarchy a second look. One is a lack of appreciation for the reality of the daily existence of ordinary people whose lives, in the immortal words of the English philosopher Thomas Hobbes, were “poor, nasty, brutish, and short.”

Another is their apparent conviction that the United States is, in the words of President Donald Trump, “a failed nation.” Except that we are nothing of the sort. The United States has plenty of problems, but the lives of ordinary Americans in 2025 are incomparably better than those of the kings and queens of the past. Our standard of living is, in fact, the envy of the world, which is the most parsimonious explanation for millions of people trying to get here.

Solving the problems that remain and will arise in the future will depend on careful evaluation of evidence, historical experience, reason, and hard work. Catastrophism does not help, for it rejects human agency by declaring that the future is already decided. Hunkering down under a protective shield of feudal hierarchy or placing our trust in a modern incarnation of Louis XIV is no guarantee of success. We tried it before, and the results were disastrous.

This article originally appeared in The Dispatch on August 26, 2025.

Banco Bilbao Vizcaya Argentaria | Charity & Aid

1.1 Million Mexicans Lifted Out of Poverty Thanks to Remittances

“During the first nine months of 2025, remittances to Mexico totaled 45,681 million, 5.5% less than the 48,360 million received during the same period in 2024.

Despite this decrease, remittances increased in several states in the central-southern region during the first nine months of the year, notably Chiapas (+1.2%), Oaxaca (+2.0%), Puebla (+1.9%), Guerrero (+4.2%), Veracruz (+0.9%), and Morelos (+1.3%).

1.1 million people in Mexico have been lifted out of multidimensional poverty thanks to remittance transfers. If remittance income is not included in the 2024 measurement, the population living in poverty in Mexico would increase from 38.5 million to 39.6 million people.”

From Banco Bilbao Vizcaya Argentaria.

Blog Post | Pollution

From Waste to Wealth: the Alchemy of Innovation

Environmental challenges can be transformed into economic opportunities.

Summary: Scientists and engineers are finding ways to turn pollution and waste into valuable resources. From recovering fertilizer from toxic lakes to creating biodegradable packaging from farm residues, innovation is transforming environmental problems into opportunities for growth. By reimagining waste as a resource, we can make the planet cleaner while fueling new industries and jobs.


Every summer, toxic algae blooms turn Lake Erie and other US lakes into a green soup, threatening drinking water for millions. Every year, American farmers burn millions of pounds of grain stalks after harvest. And every day, Americans throw away enough packing peanuts to fill an Olympic swimming pool. What if I told you that each of these waste streams could become valuable resources—and that the solutions are emerging from university laboratories right now?

We stand at a unique moment in history. For the first time, we possess the scientific tools to transform our most pressing environmental challenges into economic opportunities. The numbers tell a compelling story. According to the World Bank’s “What a Waste 2.0” report, global waste is projected to rise by 70 percent, from 2.01 billion tons today to 3.4 billion tons in 2050. Yet, the circular economy, or using waste productively to create wealth, could unlock $4.5 trillion in economic benefits by 2030. The question isn’t whether we can afford to innovate—it’s whether we can afford not to.

Three Breakthrough Innovations from North Dakota

The convergence of nanotechnology, materials science, and biotechnology has created unprecedented possibilities for environmental remediation. In a laboratory at North Dakota State University, my research team is developing three innovations that exemplify this waste-to-wealth transformation:

  1. Calcium peroxide nanoparticles that absorb phosphates from polluted lakes and convert them into sustainable fertilizer
  2. Flax-fiber composites that transform agricultural waste into biodegradable packaging materials
  3. Starch-based foam alternatives that replace petroleum-based packing peanuts with compostable materials

These aren’t pie-in-the-sky concepts. They’re practical solutions that could scale from our Fargo lab benches to global implementation within a decade. Here’s how each one works—and why they matter.

Turning Lake Poison into Farm Food

Over 500 “dead zones” now plague our planet’s bodies of water, with the number doubling every decade since the 1960s. These oxygen-depleted areas, caused primarily by phosphate runoff from agriculture, cost the United States $2.4 billion annually in economic losses. The 2014 Toledo water crisis, which left half a million people without access to drinking water for three days, was just a preview of what may come unless we act.

Here’s where nanotechnology can change the game. At our NDSU lab, we’re developing calcium peroxide nanoparticles—imagine particles 5,000-times smaller than the width of a human hair—that act as molecular sponges for phosphate pollution. When deployed in eutrophic (nutrient-rich) lakes, these nanoparticles serve a dual purpose that borders on alchemy: First, they absorb phosphates from the water with an efficiency 500-times greater than conventional materials; second, they slowly release oxygen over 30 days, breathing life back into suffocating bodies of water.

But here’s the truly exquisite part: Those absorbed phosphates don’t disappear. Our research team harvests them to create sustainable fertilizer. Consider the irony—the very phosphates that are killing our lakes came from fertilizer runoff, and now we’re capturing them to make new fertilizer. It’s the circular economy in its purest form.

The timing couldn’t be more perfect. The global phosphate fertilizer market, currently valued at $72 billion, is facing a sustainability crisis. Morocco controls 70 percent of the world’s phosphate rock reserves, and at current extraction rates, most of these reserves will be depleted within a century. By recovering phosphates from water pollution, we’re not just cleaning lakes, we’re securing agriculture’s future. Our preliminary calculations suggest that phosphate recovery from US agricultural runoff alone could replace 15 percent of imported phosphate fertilizer, saving farmers billions while restoring water quality.

From Farm Waste to Amazon Packages

The second innovation transforms an agricultural nuisance into packaging gold. North Dakota grows 90,000 acres of flax annually, primarily for the valuable oil in its seeds. But after harvest, millions of pounds of stalks are typically burned or buried, a waste of remarkably strong natural fibers that have been used for over 30,000 years for textiles, food, paper, and medicine.

At our NDSU lab, we’re extracting these fibers and mixing them with biodegradable polymer matrices to create packaging materials that rival petroleum-based plastics in performance while completely biodegrading in three to six months. The resulting composite materials achieve tensile strengths of 50–70 megapascals—stronger than many conventional plastics—using 35 percent less energy to produce.

The market is hungry for such solutions. The biodegradable packaging sector is experiencing rapid growth, projected to reach $922 billion by 2034. More important, consumers are voting with their wallets: 82 percent say they’ll pay premiums for sustainable packaging, and 39 percent have already switched brands for better environmental practices. Major corporations aren’t waiting. Dell already uses mushroom-based packaging grown on agricultural waste, while IKEA has committed millions of dollars to eliminate polystyrene entirely.

North Dakota sits on a gold mine of opportunity. The state’s two million acres of various crops produce enormous volumes of agricultural residue. By viewing these stalks, husks, and shells not as waste but as industrial feedstock, North Dakota could become a hub for sustainable packaging materials. A single processing facility could create 200 rural jobs while generating $50 million in annual revenue from materials currently worth nothing.

Replacing Satan’s Snowflakes

The third innovation addresses what some environmentalists refer to as “Satan’s snowflakes”—namely, those infuriating polystyrene packing peanuts that seem to multiply in your garage and never decompose. Americans generate enough polystyrene waste to circle the Earth in a chain of coffee cups every four months. This material persists for 500 to one million years, breaking into microplastics that contaminate our food chain.

In our NDSU lab, we’re developing starch-based foam alternatives using corn, wheat, and potatoes, all crops that North Dakota grows in abundance. These “bio-peanuts” dissolve completely in water, compost within 90 days, and require just 12 percent of the energy needed to produce traditional polystyrene. They even eliminate the static cling that makes unpacking electronics feel like wrestling an electric eel.

The economics are compelling. Companies such as electronics retailer Crutchfield report saving $70,000 to $120,000 annually in freight costs after switching to lighter, bio-based packing materials. With 11 states and 250 cities already banning polystyrene foam, and the European Union implementing strict regulations on single-use plastics, the market for alternatives isn’t only growing, it’s becoming mandatory.

Perhaps the most profound impact is psychological. Every online purchase delivered with biodegradable packing materials sends a message: Modern conveniences can be maintained without mortgaging the environment. While a small victory, such progress is building momentum for larger, more significant changes.

The Scaling Potential: From Lab to Global Impact

The opportunity is enormous: If just 10 percent of US agricultural waste were converted to packaging materials, it would replace 33 million tons of petroleum-based plastics annually. If our phosphate recovery technology were deployed in the 100 most-polluted lakes globally, it could recover enough phosphorus to fertilize five million acres of farmland while restoring recreational value worth $10 billion.

These aren’t distant possibilities—our NDSU innovations are progressing through the typical stages: proof of concept, pilot testing, demonstrations, and commercialization. We’re currently in pilot testing, with plans for field demonstrations next year. Industry partners have expressed strong interest, particularly from agricultural cooperatives seeking value-added opportunities for crop residues.

Innovation Beats Despair: Lessons from Environmental History

Some critics might ask, “Aren’t these solutions just Band-Aids on the gaping wound of industrial civilization?” Such a question, however, misses the profound lesson of environmental history. Every major pollution crisis we’ve faced, from London’s killer smog to acid rain and the ozone hole, seemed insurmountable until human ingenuity proved otherwise.

Consider the track record. Since 1970, the United States has reduced major air pollutants by 78 percent while increasing gross domestic product by 321 percent. The Montreal Protocol has eliminated 99 percent of ozone-depleting substances, saving approximately two million people from skin cancer each year. Acid rain, once predicted to cost $6 billion annually to address, was solved for less than $2 billion per year. These victories weren’t achieved by abandoning modern life but by making modernity cleaner and more efficient.

The same patterns are emerging in clean technology. Solar panel costs have plummeted 90 percent in the past decade. Renewable energy is often among the lowest-cost power sources, especially when comparing marginal generation costs. When accounting for storage or backup needs, however, total system costs can vary by region and grid mix. Battery prices have decreased by 97 percent over the past 30 years. Each follows Wright’s Law—costs decline predictably as production scales. Our NDSU waste-to-resource innovations will follow similar trajectories.

The investment community recognizes this potential. Clean technology attracted $1.8 trillion in investments globally in 2023, surpassing fossil fuel investments for the first time. The bioeconomy, currently valued at $4 trillion, is projected to reach $30 trillion by 2050. These aren’t charitable donations, but rather hard-nosed bets on profitable technologies that happen to benefit the planet.

From Lab Bench to Marketplace

Numerous university spin-offs have traveled the well-worn path from laboratory to marketplace. Companies such as Membrion (ceramic membranes developed at the University of Washington) and Integricote (nanocoatings developed at the University of Houston) demonstrate that academic innovations can achieve commercial success while addressing environmental challenges.

The Optimistic Imperative

The waste crises facing our generation are real and urgent—but so is our capacity to transform them into opportunities for prosperity. The toxic algae choking our lakes could become tomorrow’s sustainable fertilizer. The agricultural waste burning in our fields could become the packaging protecting tomorrow’s e-commerce deliveries. The petroleum-based foams polluting our oceans could be replaced by materials that harmlessly dissolve back into the earth.

This transformation, however, won’t happen automatically. It requires continued investment in research, supportive policies that incentivize innovation over incineration, and entrepreneurs willing to scale laboratory successes into industrial realities. The trajectory is clear: Waste is becoming wealth, pollution is becoming profit, and environmental restoration is becoming economic opportunity.

From my lab bench in Fargo, I see a future in which every environmental challenge sparks a thousand innovative solutions, every waste stream becomes a value stream, and the same human ingenuity that created these problems engineers their solutions. That’s human progress at its finest.

Center for Global Development | Poverty Rates

Latin American Poverty Drops by Nearly Half in 20 Years

“Poverty in the region [of Latin America] has dropped by nearly half over the past 20 years, from 58 percent in 2003 to 30 percent in 2023, equivalent to a decline of 28 percentage points (Figure 5A). Argentina, Chile, the Dominican Republic, and Brazil have experienced the most significant reductions in poverty during this period, with decreases between 31 and 61 percentage points. The trend is downward in all but three countries. In Guatemala and Honduras, poverty has remained roughly constant over the available data period. Venezuela is the only country where poverty has increased overall, from 65 to 71 percent during this period.”

From Center for Global Development.

World Bank | Poverty Rates

Tajikistan’s Remarkable Poverty Reduction over past Decade

“Over the past decade, Tajikistan has achieved a remarkable poverty reduction, with the national poverty rate dropping from 56 percent in 2010 to just below 20 percent in 2024.

During the same period, the share of middle-class households — defined as those living on more than $15 per person a day — quadrupled from 8 to 33 percent, signaling profound improvements in living standards.”

From World Bank.