Products Description
Headcel HPMC for Casing products
The advantages of Headcel HPMC for Casing products applied in protein enteric coating are mainly reflected in the following aspects:
- Enhancement of mechanical strength: cellulose ether can enhance the mechanical strength of protein enteric coating, make it tougher and not easy to rupture, and improve the durability of the product.
- Improve the physical properties: cellulose ether can improve the physical properties of protein enteric coating, such as increasing flexibility and ductility, so that the enteric coating is easier to stretch during processing, and not easy to break.
- Improve the barrier property: the addition of cellulose ether can improve the barrier property of enteric coating to gas (such as oxygen, nitrogen, carbon dioxide, etc.), and prolong the freshness period of the content.
- Enhance the adhesive property: cellulose ether can enhance the adhesive property of protein enteric coating, making it easier to bond with other layer materials in the production process, forming a uniform and stable composite enteric coating.
- Regulate moisture migration: cellulose ether can regulate the migration of moisture in the enteric coating, maintain the moisture balance of meat products, and prevent dryness or excessive wetting.
- Improvement of taste: Cellulose ether also helps to improve the taste of the final meat product, making the product texture more delicate and reducing shrinkage and deformation.
- Processing performance: Cellulose ether is easy to operate during processing, and can be adapted to a variety of different processing conditions to improve production efficiency.

Headcel HPMC for Casing products Key attributes
Industry-specific attributes
|
CAS No. |
9004-65-3 |
|
Purity |
99.90% |
Headcel HPMC for Casing other attributes
|
Test Item |
Specification |
|
Appearance |
White to off-white fibrous powder or granules. |
|
Solubility |
Conforms |
|
Identification(A) |
Conforms |
|
Identification(B) |
Conforms |
|
Identification(C) |
Conforms |
|
Methoxy (%) |
28.0~30.0 |
|
Hydroxypropoxy (%) |
7.0~12.0 |
|
Viscosity(mPa·s) |
3-200000 |
|
pH (1% in Water) |
5.0~8.0 |
|
Loss on Drying (%) |
≤ 5.0 |
|
Residue on Ignition (%)/ Sulfated ash (%) |
≤1.5 |
|
Heavy Metals (ppm) |
≤ 20 |
|
Total Aerobic Microbial Count |
≤10³ cfu/g |
|
Total Combined Yeasts/Molds Count |
≤10² cfu/g |
|
Arsenic |
≤3 ppm |
|
Lead |
≤2 ppm |
|
Mercury |
≤1 ppm |
|
Cadmium |
≤1ppm |

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