Hydrogen Peroxide Stabilizer XH-2402
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  • Hydrogen Peroxide Stabilizer XH-2402

Characteristics
Appearance: Colorless to slightly yellow, transparent liquid
Ionic: Anionic/Nonionic
pH: 2.5–4.5 (1% aqueous solution)
Solubility: readily soluble in water


Advantages
1. Exhibits excellent chelating ability toward metal ions, thereby softening water and mitigating the adverse effects of metal ions on the quality of dyeing and finishing processes;
2. Exhibits excellent chelating ability toward ferrous ions under alkaline conditions, effectively mitigating the adverse effects of ferrous ions on oxygen bleaching and lowering the decomposition temperature of hydrogen peroxide.
3. Easily soluble in water, easy to use, stable in the presence of various electrolytes, and resistant to acids, bases, and oxidizing agents.


Reference Process

1. Cold-rolling stack with hydrogen peroxide
100% NaOH: 15–30 g/L
Hydrogen peroxide stabilizer: 8–12 g/L
Cracking agent: 0.5–3 g/L
Finishing agent: 6–8 g/L
Sodium persulfate (for starch sizing): 0–5 g/L
35% hydrogen peroxide: 40–60 ml/L
Pile for 16–24 hours
2. Hydrogen peroxide padding–steaming process (maximum addition level)
100% NaOH: 10–20 g/L
Hydrogen peroxide stabilizer: 8–12 g/L
Cracking agent: 0.5–3 g/L:
Finishing agent: 4–8 g/L
35% hydrogen peroxide: 30–50 ml/L
Steaming time: 15–25 minutes
Steaming temperature: 100°C saturated steam
3. Bleaching Process for Overflow Dyeing Machines
100% NaOH: 1–3 g/L
Hydrogen peroxide stabilizer: 0.5–2 g/L
Cracking agent: 0.5–2 g/L:
Finishing agent: 0.5–2 g/L
35% hydrogen peroxide: 3–8 ml/L
Bath ratio: 1:10
Process: Treat at 98°C for 45–60 minutes.


Factory scene

Hydrogen Peroxide Stabilizer XH-2402
+
  • Hydrogen Peroxide Stabilizer XH-2402

Hydrogen Peroxide Stabilizer XH-2402


The hydrogen peroxide stabilizer is phosphorus-free and exhibits selective chelating ability toward ferrous ions under alkaline conditions. At a certain temperature, it can orderly activate the decomposition of hydrogen peroxide, thereby effectively preventing oxygen bleaching-induced pitting caused by uncontrolled hydrogen peroxide decomposition and significantly lowering the temperature at which hydrogen peroxide undergoes effective decomposition.

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