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Standard Methods for the Examination of Water and Wastewater - Métodos de  Analise - Docsity
Standard Methods for the Examination of Water and Wastewater - Métodos de Analise - Docsity

EP0354781B1 - Benzodiazepine compounds and their use as pharmaceuticals -  Google Patents
EP0354781B1 - Benzodiazepine compounds and their use as pharmaceuticals - Google Patents

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

Frontiers | Hypervalent Iodine (III) Catalyzed Regio- and  Diastereoselective Aminochlorination of Tailored Electron Deficient Olefins  via GAP Chemistry | Chemistry
Frontiers | Hypervalent Iodine (III) Catalyzed Regio- and Diastereoselective Aminochlorination of Tailored Electron Deficient Olefins via GAP Chemistry | Chemistry

EP0738514A1 - Treatment of dyskinesias - Google Patents
EP0738514A1 - Treatment of dyskinesias - Google Patents

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

PDF) Enhanced oxidation of polyamide membranes using monochloramine and  ferrous iron
PDF) Enhanced oxidation of polyamide membranes using monochloramine and ferrous iron

Rhodium(III) as a homogeneous catalyst for the oxidative decolorization of  ethyl orange with aqueous acidic chloramine-T: a spectrophotometric,  kinetic and mechanistic study | SpringerLink
Rhodium(III) as a homogeneous catalyst for the oxidative decolorization of ethyl orange with aqueous acidic chloramine-T: a spectrophotometric, kinetic and mechanistic study | SpringerLink

N,N-Dichloro-p-toluenesulfonamide 97 % | 473-34-7 | Sigma-Aldrich
N,N-Dichloro-p-toluenesulfonamide 97 % | 473-34-7 | Sigma-Aldrich

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

Oxidative sulfamidation as a route to N-heterocycles and unsaturated  sulfonamides in: Pure and Applied Chemistry Volume 92 Issue 1 (2020)
Oxidative sulfamidation as a route to N-heterocycles and unsaturated sulfonamides in: Pure and Applied Chemistry Volume 92 Issue 1 (2020)

Design Manual - Municipal Wastewater Disinfection | Sewage Treatment |  Disinfectant
Design Manual - Municipal Wastewater Disinfection | Sewage Treatment | Disinfectant

Ceria-supported palladium as a highly active and selective catalyst for  oxidative decomposition of ammonium ion in water with ozone - ScienceDirect
Ceria-supported palladium as a highly active and selective catalyst for oxidative decomposition of ammonium ion in water with ozone - ScienceDirect

PDF) Patnaik P. Handbook of inorganic chemicals (MGH, 2003)(T)(1125s) |  Muhammad Kamruzzaman - Academia.edu
PDF) Patnaik P. Handbook of inorganic chemicals (MGH, 2003)(T)(1125s) | Muhammad Kamruzzaman - Academia.edu

Water | Surface Runoff | Water Purification
Water | Surface Runoff | Water Purification

Ceria-supported palladium as a highly active and selective catalyst for  oxidative decomposition of ammonium ion in water with ozone - ScienceDirect
Ceria-supported palladium as a highly active and selective catalyst for oxidative decomposition of ammonium ion in water with ozone - ScienceDirect

Ceria-supported palladium as a highly active and selective catalyst for  oxidative decomposition of ammonium ion in water with ozone - ScienceDirect
Ceria-supported palladium as a highly active and selective catalyst for oxidative decomposition of ammonium ion in water with ozone - ScienceDirect

EP0203741A2 - Method and product for removal of chloramines, chlorine and  ammonia from aquaculture water - Google Patents
EP0203741A2 - Method and product for removal of chloramines, chlorine and ammonia from aquaculture water - Google Patents

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

Ceria-supported palladium as a highly active and selective catalyst for  oxidative decomposition of ammonium ion in water with ozone - ScienceDirect
Ceria-supported palladium as a highly active and selective catalyst for oxidative decomposition of ammonium ion in water with ozone - ScienceDirect

Energies | Free Full-Text | Electrochemical Removal of Ammonium Nitrogen  and COD of Domestic Wastewater using Platinum Coated Titanium as an Anode  Electrode | HTML
Energies | Free Full-Text | Electrochemical Removal of Ammonium Nitrogen and COD of Domestic Wastewater using Platinum Coated Titanium as an Anode Electrode | HTML

N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - -  Major Reference Works - Wiley Online Library
N,N‐Dichloro‐4‐methylbenzenesulfonamide [Dichloramine‐T] - Kattamuri - - Major Reference Works - Wiley Online Library

Oxidative sulfamidation as a route to N-heterocycles and unsaturated  sulfonamides in: Pure and Applied Chemistry Volume 92 Issue 1 (2020)
Oxidative sulfamidation as a route to N-heterocycles and unsaturated sulfonamides in: Pure and Applied Chemistry Volume 92 Issue 1 (2020)