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Four viable paths to durable ocean alkalinity enhancement, from polarity-switching electrolyzers to modular hot-swap systems that make short component life acceptable.
Three paths to sub-1 cc/m²/day oxygen barrier while maintaining EN 13432 compostability, from nanoclay composites to integrated oxygen scavengers.
Engineering dispensing systems from a single polymer family, eliminating mixed-material contamination while preserving actuation reliability.
Modeling the interaction between battery capacity, refrigeration load, and route planning to identify where electric cold chain delivery becomes viable.
Analysis of chemical and mechanical degradation mechanisms limiting PEM lifetime, with pathways to reach 80,000+ operating hours.
Comparing storage architectures for industrial process heat, including calcium looping, metal hydrides, and molten salt systems.
Alternative affinity ligands and mixed-mode chromatography strategies to reduce downstream processing costs without sacrificing purity.
Reactor geometries, sparger designs, and operating strategies to improve CO/CO₂ transfer rates at commercial scale.
Comparing electrochemical oxidation, plasma discharge, and supercritical water oxidation for complete mineralization of PFAS compounds.
Economics and energy tradeoffs between evaporator-crystallizer systems and high-recovery membrane configurations for industrial brine.
Pathways to decarbonize cement manufacturing through plasma heating, electric resistance, and hybrid fuel-electric systems.
Co-digestion ratios, lipase dosing, and reactor configurations that prevent long-chain fatty acid toxicity in FOG-rich waste streams.