Sodium CMC for Toothpaste

Sodium Carboxymethyl Cellulose in Toothpaste
Sodium Carboxymethyl Cellulose in toothpaste as a thickener and moisturizer for toothpaste, this CMC product has good pseudoplasticity and thixotropy, endows toothpaste with fluidity, proper viscosity, certain brightness and fineness, and improves the taste of toothpaste; guarantees The storage stability of the paste in the tube prolongs the shelf life.

“LinGuang” CMC Is Better

  • Sodium Carboxymethyl Cellulose has good salt resistance and enzyme resistance, and has good compatibility and compatibility with other raw materials in toothpaste to ensure that the toothpaste ingredients can be evenly mixed;
  • Sodium Carboxymethyl Cellulose has good salt resistance and enzyme resistance, and has good compatibility and compatibility with other raw materials in toothpaste to ensure that the toothpaste ingredients can be evenly mixed;
  • The paste is delicate and smooth, and the extrusion dispersibility of the paste is good;
  • Sodium cmc has suitable viscosity and thixotropy, and it is easy to pour in the paste production. CMC products with different consistency and rheology can be produced through process control to meet the production of different types of toothpaste.

Carboxymethyl Cellulose in Toothpaste Technical Specification

Spec.

Indexes             

9M

TM9

TH9

TVH9

TH10

TM12

Solu.Visosity (mPa.s)
Brookfield 30rmp 25℃

1%

 

 

250-500

≥600

250-500

 

2%

700-900

1500-3000

 

 

 

600-1200

Appearance

White or yellowish fibrous powder or granular

Purity

 

Degree of Substitution

0..90-1.00

≥1.00

1.15-1.25

PH Value (10g/ml)

6.5-8.5

loss on Drying W %

≤7.0

Sodium glycollate W %

≤0.4

Chlorides (NaCl) +Sodiu glyocllate %

≤1.0

Fe  W %

≤0.02

As  W%

≤0.002

 Heay Metals (As Pb) %

≤0.0010

Total Plate Count (cfu/g)

≤500

Mould & Yeasts (cfu/g)

≤100

E.coli (cfu/g)

None

Staphyloccoccus Aureus (cfu/g)

None

Note: According to customer needs, the company can produce CMC with different viscosity and different degrees of substitution.

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