Terigi Ciccone wrote an Open Letter to Ed Ballard Re: “Why Green Energy Makes More Sense With Each Price Shock” (WSJ, April 9, 2026). Excerpts in italics with my bolds and added images.
Open Letter to Ed Ballard
Re: “Why Green Energy Makes More Sense With Each Price Shock” (WSJ, April 9, 2026)
Dear Mr. Ballard,
I have sent you several detailed emails over the past few years outlining the engineering and economic realities of integrating variable renewable energy (VRE). You have never replied. Your latest column—celebrating the Iran/Hormuz crisis as yet another “proof” that solar-plus-battery is now the rational choice—is the latest example of journalistic cheerleading that substitutes press-release optimism for rigorous system-level analysis. As a power-plant design engineer with decades of hands-on experience specifying dispatchable generation, I write this open letter to correct the record, not in theory, but in the hard language of capital costs, ancillary services, capacity factors, and ecological externalities that your piece airbrushes away.
Your star exhibit is the Philippines’ MTerra Solar project: 3.5 GW solar + 4.5 GWh battery storage, fast-tracked amid LNG shortages, now supposedly delivering 13 hours of power “marginally below” LNG cost. You quote Actis investor Rahul Agrawal: “This is not theory. This is actually happening on the ground now.” Indeed, it is—but the ground truth is far uglier than your narrative admits.
1. Intermittency is not a rounding error; it is the dominant cost driver. Even with batteries, MTerra is engineered for ~12–13 hours of mid-merit output. The remaining 11–12 hours (and any multi-day typhoon-induced lull) still require dispatchable backup. My own peer-reviewed analysis of ancillary-service burdens shows that adding solar and wind to a reliable grid inflates total system costs by 135–235 % once frequency regulation, inertia, voltage support, and ramping are properly valued. The raw LCOE of ~$40/MWh becomes a delivered cost of ~$500/MWh.
See: Terigi Ciccone, “A Narrow Lens on Ancillary Services: Overlooking the Full Costs and Ecological Damage of Solar and Wind Integration”
2. The “phenomenal” price drop in Chinese panels and batteries is a geopolitical trap, not progress. You correctly note falling panel costs, but you fail to mention that China controls ~85% of solar manufacturing and ~80% of the battery supply chain. Swapping Middle-East oil dependence for Beijing’s critical-mineral monopoly and state-subsidized overcapacity is not energy security; it is energy servitude. When those subsidies or export policies shift, the “cheap” becomes expensive overnight.

3. Full-system costing reveals multipliers your LCOE ignores. Economist Bjørn Lomborg has repeatedly documented the same reality using Value-Adjusted LCOE (VALCOE). A peer-reviewed study he cites shows that once reliability and backup are included, wind power becomes 11–12× and solar up to 38–42× more expensive than combined-cycle gas turbines (CCGT).
Bjørn Lomborg, “Why solar and wind power aren’t winning,” Financial Post, 17 April 2024
(Identical findings appear in Lomborg’s “The True Cost of Wind and Solar Energy,” NH Journal, 20 May 2024.)

Figure 4 – International Domestic Electricity Prices (p per kWh). UK has the highest domestic electricity prices in the IEA.
My own comparison of 1 GW reliable output at 99.9 % uptime reaches the same conclusion: onshore wind requires 5.6× and offshore wind 7.2× the capital investment of a CCGT, once overbuild, storage, transmission, and peaker plants are added.
See: Terigi Ciccone, “The Well Hidden and Distorted Costs of Renewables: A Comprehensive Comparison of Wind Power and Combined Cycle Gas Turbine Plant”

Typically as wind and solar power share of supply increases, distribution and transmission costs rise sharply.
4. Academic “System LCOE” literature confirms the same directional truth— Falko Ueckerdt, Lion Hirth, and colleagues introduced System LCOE precisely because standard LCOE is misleading at high VRE penetrations. Their 2013 analysis (and subsequent updates) shows integration/profile costs can equal or exceed generation costs themselves once wind shares exceed ~20 %. At the levels now being forced, those costs become an economic barrier.
Ueckerdt et al., “System LCOE: What are the costs of variable renewables?” Energy 63 (2013) 61–75

5. Ecological and material externalities are catastrophic. Your column is silent on land use (10× that of nuclear or gas for equivalent firm power), avian/bat mortality, 78 million tons of non-recyclable solar waste projected by 2050, and the concrete-steel-copper footprint of batteries that must be replaced every 8–12 years. My third paper tallies these hidden costs in full.
See: Terigi Ciccone, “Revised: Let’s Make Electricity Affordable Again”

Moreover, the raw-material demands are staggering. Utility-scale solar and wind installations consume vastly greater quantities of concrete, steel, copper, silver, rare-earth elements, and other minerals per unit of firm, reliable electricity than any dispatchable source. This triggers massive mining operations with severe habitat destruction, water contamination, and toxic tailings. Manufacturing these components remains overwhelmingly dependent on fossil fuels for the energy-intensive processes of silicon purification, steel smelting, and mineral extraction. In full life-cycle terms, many VRE systems may never recover the total primary energy invested in their construction, installation, maintenance, and eventual replacement—rendering the entire enterprise an energy and cost sink rather than a net contributor.

Drone footage shows hundreds of solar panels ripped apart and scattered across farmland after a powerful tornado tore through Wheatfield overnight. Homes in the area also suffered heavy damage as the violent storm carved a path of destruction. Photo credit Joemar Sombero
6. Real-world stress tests expose the fantasy. Philippine typhoons shred solar farms; Florida hurricanes do the same. After every major storm, we see acres of twisted panels and batteries that cannot survive Category 4 winds. Yet the same voices warning about climate risk keep prescribing an energy system that collapses precisely when the weather turns ugly.

7. Ultimately, we are inflicting these enormous costs for no good reason. The entire policy edifice rests on the assumption that anthropogenic CO₂ is the primary driver of dangerous warming. In reality, CO₂’s greenhouse effect is already near saturation in its principal absorption bands; additional emissions yield only minuscule marginal forcing. The true temperature powerhouses on Earth are gravitational auto-compression (the dry adiabatic lapse rate driven by atmospheric mass and pressure) and the dominant water-vapor/latent-heat cycle, which together govern the vast majority of Earth’s energy balance.
We are dismantling reliable, dispatchable power systems, subsidizing
foreign supply chains, and covering productive land in fragile panels
—all to chase a trace-gas tail that cannot wag the climatic dog.
8. Increased atmospheric CO₂ is demonstrably greening the planet. NASA satellite data confirm that rising CO₂ has driven substantial global greening over recent decades. The increase in leaf area is equivalent to twice the size of the continental United States, with CO₂ fertilization responsible for approximately 70 % of this greening across 25–50 % of vegetated lands. Far from harming the biosphere, higher CO₂ levels are enhancing vegetation growth, boosting agricultural yields, and expanding natural habitats worldwide.
9. Humans are not the sole source of rising atmospheric CO₂. As I document in detail in “Revised: Let’s Make Electricity Affordable Again,” natural sources—including volcanic activity, oceanic degassing, and other geological processes—play a far more significant role in the global carbon cycle than the prevailing narrative acknowledges. Attributing nearly all recent increases to human emissions oversimplifies complex geophysical realities and ignores the “Volcanic Vibes” that have shaped atmospheric CO₂ long before industrial civilization.
Mr. Ballard, energy crises do not “hammer home” the virtues of green energy. They expose its fatal engineering defects: zero inertia, negative correlation with demand, dependence on foreign supply chains, and an energy return that fails even basic life-cycle scrutiny. The rational response is an all-of-the-above portfolio anchored by dispatchable, high-capacity-factor sources—modern CCGT, nuclear (including SMRs), and geothermal—with targeted renewables only where they demonstrably lower system cost without compromising reliability.
Your repeated refusal to engage with the peer-reviewed literature or
practicing engineers suggests a commitment to narrative over evidence.
I invite you, once again, to reply—publicly or privately—and defend your claim that solar-plus-battery “makes more sense with each price shock” once full system costs, ecological and material realities, geopolitical risks, and the actual physics and benefits of atmospheric CO₂ are included. Until then, this open letter stands as the record of your April 9 column that you omitted. Let’s bury the narrative. 🔥
Respectfully but firmly,
Terigi Ciccone Ret. Gas Turbine Engineer for power generation and aviation, an independent researcher on climate, Sarasota, Florida, USA




