Uses of Triazinamide (CAS 136738-23-3)

1. Core Industrial Application: Exclusive Key Intermediate for Pymetrozine TC This is its dominant mass-production use, accounting for over 95% of global consumption. 2. Agrochemical R&D & Laboratory Testing 3. Pharmaceutical & Medicinal Chemistry Research (Lab Scale Only) 4. General Fine Chemical Synthesis 5. Auxiliary QC & Registration Support

VOCs Catalyst Working Principle for Industrial Waste Gas Purification

1. Core Reaction Overview VOC catalytic oxidation uses precious metal (Pt/Pd) or non-noble metal oxide catalysts to decompose volatile organic pollutants at low-to-medium temperature (180–400 ℃). Organics fully oxidize into harmless CO₂ and H₂O without open flame. General chemical reaction: Oxygen-containing VOCs (alcohols, ketones, esters) follow similar complete oxidation routes Read more

HPLC Testing Standard for Industrial Grade Triazinamide (CAS 136738-23-3, P4 Intermediate for Pymetrozine)

Based on the available search results, a single, unified HPLC testing standard specifically for industrial-grade Triazinamide does not appear to be publicly available. However, the search results contain valuable information from related applications and supplier quality specifications that can be used to build a robust analytical method. The table below Read more

Troubleshooting Low Yield in Triazinamide Hydrazinolysis Step

Hydrazinolysis ring expansion of acetonyl oxadiazolone is the core step for triazinamide synthesis; standard industrial mass yield target ≥94%. Low yield (below 90%) mainly arises from incomplete conversion, side tar/ring cleavage, product degradation, poor crystallization recovery, raw material impurity interference, with systematic root cause diagnosis and corrective solutions below. 1. Category Read more

Triazinamide Storage & Handling Safety Guidelines for Factories

Triazinamide (4-Acetamido-6-methyl-1,2,4-triazin-3(2H)-one, CAS 136738-23-3) is a low-toxic white crystalline agrochemical intermediate with mild irritant hazards. This full set of factory safety standards covers warehouse storage, workshop operation, personal protection, spill & fire emergency, waste disposal and regular management, complying with GHS, national chemical safety and agrochemical manufacturing regulations. 1. Basic Read more

Green Production Technology of Low-Impurity Triazinamide (P4 Intermediate)

This green integrated manufacturing technology addresses the core pain points of traditional processes: high hydrazine residue, heavy tar impurities, massive solvent waste, large wastewater discharge and high energy consumption. It realizes closed-loop raw material recycling, mild low-side-reaction synthesis, two-stage low-loss green purification, and stably produces triazinamide with HPLC ≥99.0%, ultra-low Read more

How to Purify Crude Triazinamide to Reach HPLC 99.0% Agro Grade

Crude triazinamide directly from hydrazinolysis ring expansion only reaches HPLC 96%–97%, mixed with free hydrazine, ring-cleavage triazinone tar, inorganic salts, dimeric byproducts and colored impurities. Industrial standardized multi-stage purification removes all pollutants to hit ≥99.0% assay, single unknown impurity ≤0.15%, fully compliant for pymetrozine TC manufacturing. 1. Pre-Purification In-Situ Impurity Read more