(2 mol naoh)
Sodium hydroxide (NaOH), particularly 2 mol NaOH solutions, serves as a cornerstone in chemical manufacturing. With a molar mass of 40g/mol, NaOH solutions ranging from 1 mol to concentrated variants enable precise pH adjustment, saponification, and neutralization reactions. Recent market data reveals a 12.7% CAGR growth for NaOH-based products since 2020, driven by demand in pharmaceuticals (34%), water treatment (28%), and food processing (19%).
Modern NaOH 40g/mol production achieves 99.95% purity levels through membrane cell technology. Key parameters for industrial-grade solutions:
Supplier | Concentration Accuracy | Batch Consistency | pH Range |
---|---|---|---|
ChemCorp | ±0.3 mol | 98.4% | 12-14 |
Solvay | ±0.25 mol | 99.1% | 11.5-13.8 |
Dow Chemical | ±0.18 mol | 99.6% | 12.2-14.1 |
Custom formulations address unique requirements:
A textile manufacturer achieved 23% cost reduction by switching to 2 mol NaOH mercerization baths. Process metrics pre/post optimization:
Concentrated solutions require engineered controls:
Advanced membrane technologies now enable 18-22% energy reduction in 2 mol NaOH production. Emerging applications show potential in:
(2 mol naoh)
A: 2 mol of NaOH equals 80 grams. Since the molar mass of NaOH is 40 g/mol, multiplying 2 mol by 40 g/mol gives 80 g.
A: 1 mol of NaOH weighs 40 grams, while 2 mol weighs 80 grams. The difference is 40 grams.
A: Dissolve 80 grams (2 mol) of NaOH in distilled water and dilute to 2 liters. This ensures a 1M concentration (2 mol / 2 L = 1M).
A: No. 2 mol of NaOH equals 80 grams. The statement "NaOH 40g mol" refers to its molar mass (40 g/mol), not mass per mole.
A: The reaction follows 2NaOH + H₂SO₄ → Na₂SO₄ + 2H₂O. The 2:1 molar ratio ensures complete neutralization between the acid and base.