If I've understood correctly, the denominator being compared against
isn't a "best available alternative" treatment solution of H2O2. It's against the concentration that's an "
equivalent amount"-- which is actually a pretty dilute concentration (for H2O2), that *isn't* effectively bactericidal.
>"...are over 10^7 times more potent than an equivalent amount of preformed hydrogen peroxide..."
Per fig. 2(c,d), the "commercial H2O2" items are solutions of 100 and 200 ppm (0.01% / 0.02%), and have nearly zero effect (less than 1 order-of-magnitude reduction in bacterial/viral viability).
([edit]: or quoting the paper itself: "These standardized preformed H2O2 samples, produced either commercially or catalytically (100–200ppm), exhibited limited bactericidal activity [my emphasis] against...")
Their actual point is that this H2O2+ROS is highly effective at a concentration at which H2O2 alone is not effective.
https://www.researchgate.net/publication/352882305_A_residue...
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[edit]: In attempt to find further context, here's some data about disinfection with H2O2 solutions (in entirely different experimental setups which probably have important caveats I don't know):
>"...organisms with high cellular catalase activity (e.g., S. aureus, S. marcescens, and Proteus mirabilis) required 30–60 minutes of exposure to 0.6% hydrogen peroxide for a 10^8 reduction in cell counts, whereas organisms with lower catalase activity (e.g., E. coli, Streptococcus species, and Pseudomonas species) required only 15 minutes’ exposure [657]..."
https://www.cdc.gov/infectioncontrol/pdf/guidelines/disinfec... (page 47)
So, as a hand-waving non-expert: it looks like you can get the same order of magnitude of effect (factor of 10^8 bacterial reduction) as the stuff in the OP paper, at a hydrogen peroxide concentration that's ~60 times higher than what OP uses (0.6% = 6000 ppm). (?)