A flexible heat conducting matrix wraps ammonia storage material to enhance thermal transfer, reducing heating source temperature requirements.
Segmented wet scrubber sprays acid into divided gas streams to capture ammonia efficiently.
A gas mixture of hydrogen cyanide and ammonia converts 3-methylmercaptopropionaldehyde into 2-hydroxy-4-(methylthio)butyronitrile.
A multi-layer exhaust catalyst uses a precious metal-rich upper coating to boost oxidation power while keeping the lower layer inactive.
A circulating acid loop removes ammonia from fuel streams, reducing scrubber volume and maintenance needs.
UV photolysis of nitrous oxide generates precise nitric oxide concentrations, eliminating high temperature requirements and hazardous chemical handling.
A biodiesel scrubber uses a sintered permeable membrane to separate volatile organic compounds from fluid streams via pressure-driven permeation.
Amino acid absorbents with multiple amine groups increase carbon dioxide absorption capacity and rate through specific chemical interactions.
A submersible sensor combines pH and ammonia detection using immobilized dyes to resolve spatial sampling discontinuities in aqueous environments.
Scrubbing solution removes volatile acids and bases from evaporator vapor, preventing downstream corrosion and contamination.
A coproduction process recovers hydrogen from methanol synthesis purge gas to supply ammonia feedstock.
Segmented combustion zones and hydrocarbon fuel streams destroy ammonia in Claus tail gas treating units while minimizing nitrogen oxide formation.