Product specifications and performance data for formulation review.
LANDERCOLL cellulose ether helps facial cleanser manufacturers improve product texture, viscosity, flow behavior, suspension stability, and consumer-friendly cleansing formulation performance across cleansing gel, foaming, cream, mild, exfoliating, sensitive-skin, herbal, and sulfate-free formats.
From everyday cleansing gels to premium cream and exfoliating facial cleansers — the right HEC, HPMC, or CMC grade delivers predictable rheology, stable product body, and consistent sensory experience for overseas manufacturers and skincare formulators.
Cleansing Gel · Foaming · Cream · Mild · Exfoliating · Sensitive-Skin · Herbal · Sulfate-Free
Quick Answer
Quick AnswerHEC (Hydroxyethyl Cellulose) is the primary cellulose ether used in facial cleanser formulations for mild viscosity control, smooth texture, suspension stability, and formulation consistency. Selected HPMC and CMC grades may be considered in customized facial care systems where suspension support, special texture, or rheology adjustment is required. Cellulose ether helps facial cleansers achieve smooth and stable product body, easy application, formulation uniformity, and consistent appearance during storage.
Key performance, compatibility, and supply reference for overseas facial cleanser manufacturers and personal care formulators.
Looking for a cellulose ether recommendation for your facial cleanser formulation?
Ask for a Facial Cleanser Recommendation Árajánlat kérés
Facial cleanser is a personal care product used to remove oil, sweat, makeup residue, dust, pollution particles, and daily impurities from facial skin. It may be formulated as cleansing gel, cleansing foam, cream cleanser, mild cleanser, exfoliating cleanser, micellar cleansing gel, sulfate-free cleanser, or sensitive-skin cleanser — each requiring specific viscosity, texture, mildness, and stability characteristics.
LANDERCOLL provides cellulose ether products for facial cleanser manufacturers — especially HEC (hidroxietil-cellulóz) for viscosity control, smooth texture, and formulation stability. Selected HPMC (hidroxipropil-metilcellulóz) és CMC (karboximetil-cellulóz) grades may also be considered in customized facial care systems where suspension support, special texture, or rheology adjustment is required.
If facial cleanser is too thin, it may be difficult to dose and may run too quickly during application. If it is too thick or stringy, it may feel heavy, difficult to spread, or difficult to rinse. Without reliable rheology control, products lose consumer-perceived quality, show poor particle suspension, and develop viscosity drift during storage.
LANDERCOLL provides HEC and selected cellulose ether grades for facial cleanser manufacturers who need dependable mild viscosity control, smooth texture, suspension stability, and formulation consistency across different facial cleanser types and production environments.
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Primary · Non-Ionic · HEC
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Specialty · HPMC · Custom Rheology
Specialty cellulose ether for selected thickening, rheology adjustment, and film-forming support.
HPMC may be considered in selected facial cleanser, cleansing gel, and personal care formulations where special rheology, water-soluble polymer behavior, or film-forming support is required. Its use should be validated through formulation testing, because facial cleanser performance depends on surfactant type, pH, electrolytes, moisturizers, oils, fragrance, preservatives, and active ingredients.
Anionic · CMC · Selected Systems
Cellulose ether option for suspension support, consistency, and selected texture adjustment.
CMC may be used in selected facial cleanser formulations where suspension support, product consistency, or viscosity contribution is needed. It may be suitable for certain opaque, herbal, exfoliating, or particle-containing systems after compatibility testing. Final use should be confirmed, because surfactants, electrolytes, pH, moisturizers, and active ingredients can affect formulation behavior.
Facial cleanser formulations vary by product type, surfactant system, mildness requirement, and market positioning. The table below provides a general reference for common components.
| Komponens | Function in Facial Cleanser |
|---|---|
| Víz | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
| Mild Surfactants | Provide cleansing, wetting, and foam |
| Co-Surfactants | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
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| Humectants | Support skin feel and hydration perception |
| Moisturizers / Emollients | Support after-feel and product sensory profile |
| Exfoliating Particles | Provide physical exfoliation in selected systems |
| Fragrance / Preservatives | Provide scent and protect water-based formulas |
| pH Adjusters | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
| Botanical Extracts / Actives | Support selected product positioning or claims |
| Alkalmazás típusa | Recommended Product Direction | Main Performance Requirements |
|---|---|---|
| Facial Cleansing Gel | HEC / selected HPMC | Gel texture, smooth flow, clear or stable appearance |
| Foaming Facial Cleanser | HEC | Mild viscosity, foam-compatible rheology, dispensing |
| Cream Facial Cleanser | HEC / selected cellulose ether | Texture, body, stable emulsion support |
| Mild Facial Cleanser | HEC | Gentle texture, smooth spreading, stable flow |
| Exfoliating Facial Cleanser | HEC / CMC | Particle suspension, product body, stability |
| Sensitive-Skin Cleanser | HEC | Mild rheology, smooth texture, stable consistency |
| Herbal Facial Cleanser | HEC / CMC | Extract or particle suspension, uniform appearance |
| Sulfate-Free Facial Cleanser | HEC / selected cellulose ether | Compatibility, viscosity, rheology balance |
These dosage ranges are starting references only. Final dosage should be confirmed through viscosity testing, compatibility testing, foam evaluation, pH stability testing, suspension testing, storage stability testing, dispensing behavior evaluation, and consumer-use trials.
| Alkalmazás típusa | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
|---|---|
| Facial Cleansing Gel | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
| Foaming Facial Cleanser | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
| Cream Facial Cleanser | 0.2% – 0.9% |
| Mild Facial Cleanser | 0.15% – 0.7% |
| Exfoliating Facial Cleanser | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
| Sensitive-Skin Cleanser | 0.15% – 0.7% |
| Herbal Facial Cleanser | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
| Sulfate-Free Facial Cleanser | cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits |
Cellulose ether influences mild viscosity control, smooth texture, gentle spreading feel, suspension stability, foam-compatible rheology, and long-term storage performance in surfactant-based facial cleanser systems.
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Low viscosity response or weak thickener system.
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Adjust cellulose ether dosage and viscosity grade.
Unsuitable rheology or high polymer dosage.
Select proper grade and optimize dosage.
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Poor suspension or incompatible ingredients.
Support suspension stability through grade selection.
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Test compatible grade and formulation balance.
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Confirm compatibility through testing.
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Mild surfactants, amphoteric surfactants, amino acid surfactants, sulfate-free systems, and mixed surfactant blends can affect cellulose ether hydration, viscosity response, clarity, foam, and stability. Compatibility testing with the specific surfactant blend is always recommended.
Facial cleansers often require controlled pH for skin compatibility and preservative performance. Most facial cleansers are formulated in the mildly acidic to near-neutral range (pH 4.5–7.0). The final pH can influence cellulose ether behavior and viscosity stability.
Salts and other electrolytes can influence viscosity, clarity, suspension, and long-term stability. Their interaction with the surfactant system and cellulose ether should be tested carefully.
Glycerin, propanediol, oils, emollients, and moisturizing ingredients may influence viscosity, sensory feel, and product texture. Their interaction with cellulose ether should be evaluated during formulation development.
Botanical extracts, exfoliating particles, acids, vitamins, or specialty actives may require suspension and compatibility testing to ensure stable performance throughout shelf life.
Fragrance oils and preservatives can influence clarity, viscosity, and long-term stability. Their interaction with cellulose ether should be evaluated during formulation development and stability testing.
Tube, pump, bottle, sachet, or foamer packaging affects the target viscosity and flow profile. A foamer pump, for example, requires a much lower viscosity than a tube or squeeze bottle.
Addition sequence, hydration time, water temperature, and mixing speed affect cellulose ether dispersion and final viscosity. Proper processing is critical for consistent batch results and avoiding lumps or fish eyes.
Choosing the right cellulose ether requires balancing viscosity, texture, foam compatibility, clarity, suspension stability, dispensing behavior, skin feel perception, and storage performance across the complete facial cleanser formulation system.
Grade Selection Guide
LANDERCOLL can review your facial cleanser formulation direction and recommend suitable HEC, HPMC, CMC, or selected cellulose ether grades for testing.
Is the facial cleanser gel, foam, cream, mild, exfoliating, or sulfate-free?
Mild anionic, amino acid, amphoteric, or sulfate-free surfactants?
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Are humectants, oils, emollients, or botanical extracts included?
Do exfoliating particles or visual additives need suspension support?
Is clear appearance or opaque appearance required?
Tube, pump, bottle, sachet, or foamer packaging?
What temperature range and shelf life are expected?
What production process and hydration method are used?
LANDERCOLL provides product-related documentation to support facial cleanser formulation testing, purchasing review, quality approval, and import compliance.
Formulation & Performance Evaluation
Supporting facial cleanser and personal care product development with complete technical documentation.
— LANDERCOLL R&D —Product specifications and performance data for formulation review.
Safety, handling, and regulatory information (SDS / MSDS).
Batch quality confirmation supplied per shipment.
Overview of cellulose ether range and application areas.
Formulation guidance and usage recommendations.
Grade recommendation for specific facial cleanser applications.
Handling, shelf life, and storage condition reference.
Available where applicable for international orders and import compliance.
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Request Product DocumentsIf your facial cleanser is too thin, too thick, stringy, unstable, cloudy, difficult to dispense, losing viscosity, or showing poor suspension — the cellulose ether grade or dosage may need to be reviewed.
Képlet támogatás
Grade selection, rheology adjustment, and compatibility guidance for facial cleanser manufacturers.
— LANDERCOLL Technical Team —HEC selection for mild viscosity control
Facial cleanser texture and rheology adjustment
Suspension stability discussion and testing direction
Foam-compatible viscosity support
Particle or pearl suspension support
Dosage reference and optimization for facial cleanser types
Sample provision and quotation communication
HEC is the most commonly used cellulose ether in facial cleanser for viscosity control, smooth texture, suspension stability, and formulation consistency. HPMC and CMC may be considered in selected customized facial cleanser systems where special rheology, suspension, or texture requirements exist.
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Cellulose ether mainly supports viscosity and texture — not foam generation. Foam performance depends primarily on the surfactant system, foam boosters, water quality, and overall formulation design. Compatibility testing is recommended to ensure cellulose ether does not negatively affect the foam profile.
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