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Éter de celulosa para Non-Woven Applications

HECCMCHPMCCoating Uniformity

HEC, CMC, and HPMC grades for viscosity control, coating uniformity, binder stability, and suspension in non-woven coating, binder, and treatment formulations.

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Coating · Binder · Treatment HEC · CMC · HPMC
8+Application Types
0.05–1.5%Dosage Range
25 kgEmbalaje
8+ Non-Woven Application Types Supported HEC, CMC & HPMC for Non-Woven Viscosity control, coating uniformity, binder stability, additive suspension, and rheology adjustment for non-woven binder, coating, wipe treatment, filtration media, hygiene, medical, industrial finish, and specialty functional treatment systems.
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HEC
HEC · CMC · HPMCGrades Available
%
0.05%–1.5%Reference Dosage Range
KG
25 kgcURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
EXP
Export ReadyDocumentation Supported
Non-Woven Solutions

Cellulose Ether Solutions for
No Tejido
Formulaciones

cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits Coating · Binder · Treatment · Rheology

HEC, CMC, and HPMC cellulose ether are used in selected non-woven coating, binder, and treatment formulations to improve viscosity control, rheology adjustment, coating uniformity, additive suspension, binder stability, and processing consistency. A correctly selected grade helps the treatment bath or coating formulation remain stable during preparation, storage, pumping, and application — delivering more consistent wet pickup, surface coverage, and product quality across production runs.

Non-woven materials are widely used in hygiene products, wipes, filtration media, medical materials, industrial fabrics, packaging, automotive interiors, construction membranes, and specialty technical textiles. Many non-woven manufacturing and finishing processes rely on water-based binders, functional coatings, surface treatments, or impregnation formulations — all of which require stable viscosity and consistent application behavior.

LANDERCOLL provides cellulose ether grades selected for non-woven applications. HEC is recommended for smooth viscosity control and rheology adjustment in water-based coating and treatment systems. CMC is recommended for suspension support, filler distribution, and formulation consistency. HPMC may be considered in specialty systems where water retention, selected film-forming behavior, or controlled coating rheology is required.

What Are Non-Woven Applications? Non-woven materials are fabric-like structures produced from fibers bonded by mechanical, thermal, chemical, or solvent-based processes — rather than by weaving or knitting. In selected finishing processes, cellulose ether may be used in binder systems, coating formulations, finishing agents, print pastes, functional treatments, and slurry systems applied by spraying, dipping, padding, coating, printing, or impregnation.
  1. Hygiene products — diapers, feminine care, adult incontinence
  2. Wipes — wet wipes, industrial wipes, personal care wipes
  3. Filtration media — air, liquid, and industrial filtration
  4. Medical and healthcare non-wovens — surgical drapes, wound care, masks
  5. Construction membranes and geotextiles
  6. Automotive interior non-wovens
  7. Industrial fabrics and technical textiles
  8. Specialty functional non-woven treatments
Beneficios de rendimiento

Why Non-Woven Formulations Need
Éter de celulosa

Non-woven coating and treatment formulations must remain stable during preparation, storage, pumping, and application. If the viscosity is too low, too high, or unstable — or if particles and additives settle during the treatment bath — the result is uneven surface treatment, inconsistent binder distribution, poor coating weight control, and variable product quality. Cellulose ether helps build a stable, controlled water-based formulation structure.

FuncióncURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
Control de la viscosidadAdjusts treatment bath body for the application method
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Binder formulation stabilitySupports stable binder distribution during mixing and storage
Coating uniformityHelps deliver consistent surface coverage and appearance
Additive suspensioncURL 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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Batch-to-batch reliabilitycURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
Recommended Products

Recommended Cellulose Ether Products for
Non-Woven Applications

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HEC for non-woven coating and treatment
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Principales ventajas
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  • Supports suspension stability in selected systems
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CMC for non-woven binder formulations
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CMC for Selected Non-Woven Formulations

Suspension stability, binder support, and formulation consistency

Carboxymethyl Cellulose (CMC) may be used in selected non-woven formulations where additive suspension, pigment stability, binder support, or viscosity contribution is needed. It can help stabilize fillers, pigments, functional particles, or solid additives in water-based treatment systems, reducing settling and improving formulation uniformity. CMC use should be confirmed through compatibility testing with binder chemistry, pH, electrolyte content, surfactant type, preservative system, and processing conditions.

Principales ventajas
  • Supports suspension of fillers, pigments, and functional additives
  • Helps reduce settling in selected water-based systems
  • Supports viscosity adjustment and formulation body
  • Improves formulation consistency and uniformity
  • Helps maintain uniform treatment appearance across the substrate
  • Useful in selected coating, binder, and functional treatment systems
HPMC for specialty non-woven coating systems
Specialty · Film Support

HPMC for Specialty Non-Woven Systems

Water retention, coating behavior, and specialty rheology

Hydroxypropyl Methylcellulose (HPMC) may be considered in specialty non-woven coating, finishing, or functional treatment systems where water retention, selected film-forming behavior, or controlled coating rheology is required. Its water-retention properties can support more uniform drying behavior and help maintain coating integrity during the transition from wet application to dried film. HPMC use should be validated through formulation testing with substrate fiber type, binder system, drying conditions, application method, pH, and additive compatibility.

Principales ventajas
  • Supports selected water retention in coating and treatment systems
  • Helps adjust specialty rheology for controlled application
  • May support film-forming behavior in selected coating systems
  • Supports coating uniformity and surface consistency
  • Useful for customized non-woven functional treatments and specialty finishes

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Formulation Reference

Typical Non-Woven Treatment
Formulation Components

Non-woven treatment formulations typically include water, polymer binder, cellulose ether, fillers, surfactants, dispersants, and functional additives designed to meet specific coating, bonding, and finishing requirements.

Non-woven treatment formulation laboratory
ComponenteFunction in Non-Woven Systems
AguacURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
Polymer BinderSupports fiber bonding, coating, and finish durability
Éter de celulosaViscosity, rheology, suspension, and coating stability
Fillers / PigmentsAdjust appearance, cost, opacity, or functional properties
Surfactants / Wetting AgentsImprove wetting and penetration into non-woven substrates
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsImprove particle distribution and formulation uniformity
SoftenersAdjust hand feel in selected systems
CrosslinkersImprove durability in selected binder systems
ConservantesProtect selected water-based formulations during storage
Functional AdditivesAdd absorbency, repellency, flame resistance, or filtration properties
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Formulation Note: This is a general reference only. Final non-woven formulation must be developed and validated according to substrate fiber type, application method, binder chemistry, drying conditions, coating weight, final product use, and applicable regulatory requirements.
Guía de selección

Non-Woven Product
Selection Reference

Different non-woven treatment systems require different cellulose ether performance profiles. The table below provides a practical selection reference for formulation engineers and non-woven finishing specialists.

Tipo de aplicaciónRecommended DirectionRequisitos principales de rendimiento
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cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsHEC / selected cellulose ethercURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsHEC / CMCcURL 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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cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsCMC / HEC / HPMCcURL 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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Referencia de dosificación

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Non-Woven Applications

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Dosage Note

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AplicacióncURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits0.1% – 0.8%
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits0.2% – 1.2%
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits0.05% – 0.5%
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits0.1% – 1.0%
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cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits0.2% – 1.2%
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits0.2% – 1.5%
Funciones principales

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Non-Woven Applications

Medical and hygiene non-woven materials
01

Control de la viscosidad

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02

Rheology Adjustment

A suitable cellulose ether grade helps balance flow and structure, allowing the formulation to pump, coat, spray, dip, or impregnate more consistently. Proper rheology management reduces dripping, uneven coverage, and application weight variation across the non-woven substrate.

03

Coating Uniformity

Non-woven substrates often require uniform distribution of binder, functional treatment, or coating across the full surface area. Cellulose ether supports stable formulation body and coating consistency, reducing the risk of thin spots, heavy patches, or uneven surface appearance.

04

Estabilidad de Suspensión

Formulations containing pigments, fillers, flame retardants, absorbency modifiers, or other functional particles require effective suspension support. CMC, HEC, and selected cellulose ether grades can help reduce settling in compatible systems, maintaining uniform particle distribution throughout the treatment bath during production.

05

Binder Distribution Support

Cellulose ether helps stabilize binder formulations and may support more uniform distribution of the polymer binder on or within the non-woven fiber structure. Final bonding performance and durability depend on the binder system, crosslinker, and curing process — cellulose ether contributes to the physical formulation stability that enables consistent binder delivery.

06

Storage Stability

A suitable cellulose ether grade helps maintain viscosity, suspension, and formulation appearance during storage when compatible with the complete formulation system — including binders, preservatives, surfactants, and functional additives.

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Common Non-Woven Formulation Problems —
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When non-woven treatment performance fails, the cellulose ether grade, dosage, or formulation balance is often the first variable to review. The guide below maps typical symptoms to likely causes and practical support strategies.

01
Treatment Bath Too Thin
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Low viscosity or weak thickening system.

Cellulose Ether Support

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02
Treatment Bath Too Thick
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Excessive polymer or poor rheology balance.

Cellulose Ether Support

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03
Uneven Coating or Coverage
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Poor viscosity control or substrate wetting imbalance.

Cellulose Ether Support

Improve rheology and coating consistency.

04
Additive or Filler Settling
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Weak suspension or poor particle dispersion.

Cellulose Ether Support

CMC / HEC support suspension stability.

05
Binder Formulation Instability
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Incompatible polymer, pH, or preservative system.

Cellulose Ether Support

Test compatible cellulose ether grade.

06
Poor Wet Pickup Control
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Wrong viscosity or application condition.

Cellulose Ether Support

Adjust viscosity and flow behavior.

07
Poor Hand Feel or Stiffness
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Excessive binder, coating weight, or polymer.

Cellulose Ether Support

Optimize dosage and full formulation balance.

08
Viscosity Drift During Production
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pH, electrolytes, temperature, or binder interaction.

Cellulose Ether Support

Review grade compatibility and formulation balance.

09
Foam During Mixing or Application
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Surfactant and polymer interaction.

Cellulose Ether Support

Optimize defoamer and mixing conditions.

10
Inconsistent Batch Performance
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Raw material variation or poor hydration.

Cellulose Ether Support

Improve mixing procedure and hydration control.

Performance Note: Cellulose ether can help improve viscosity, suspension, coating uniformity, and processing consistency, but final non-woven performance depends on fiber type, binder chemistry, substrate structure, application method, drying conditions, coating weight, and final product requirements.
Formulation Variables

What Affects Cellulose Ether Performance
in Non-Woven Systems?

Understanding what influences cellulose ether behavior in a non-woven formulation helps with grade selection, dosage optimization, and troubleshooting during production.

Fiber Type

Polypropylene, polyester, viscose, cellulose fiber, glass fiber, and blended fibers have different surface energy, wetting behavior, absorption capacity, and interaction with water-based formulations. The fiber type influences how the treatment penetrates, distributes, and bonds to the substrate.

Binder Chemistry

Acrylic, styrene-acrylic, VAE, polyurethane, latex, starch, and other binders can influence cellulose ether compatibility, viscosity response, and formulation stability. Compatibility between the cellulose ether grade and the binder system must be confirmed through testing.

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Spraying, dipping, padding, knife coating, roll coating, impregnation, printing, and foam application each require different viscosity profiles and flow behavior. The target viscosity range depends directly on the application method and equipment design.

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pH and Electrolytes

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Drying and Curing Conditions

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Storage Conditions

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How to Choose the Right
Éter de celulosa para
Non-Woven Applications

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Preguntas Clave a Considerar
i.
Tipo de aplicación

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ii.
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iii.
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iv.
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v.
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vi.
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vii.
Primary Concern

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viii.
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ix.
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x.
Storage Stability

What storage stability and shelf life requirement must the formulation meet?

Not sure which cellulose ether grade fits your non-woven system? LANDERCOLL can recommend a practical starting grade for laboratory testing.

Ask for Non-Woven Application Recommendation
Embalaje y Almacenamiento

Packaging Specifications and
Storage Guidelines

LANDERCOLL cellulose ether for non-woven applications is supplied in industrial packaging suitable for textile, coating, binder, hygiene, filtration, and specialty industrial formulation use.

i.
Typical Packaging Reference
  • 25 kg por bolsa
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  • Embalaje paletizado disponible bajo solicitud
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ii.
Recomendaciones de almacenamiento
  • cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
  • Mantener alejado de la humedad, la luz solar directa y las fuentes de calor
  • Mantener el embalaje sellado cuando no esté en uso
  • Evitar la contaminación durante la manipulación y transferencia
  • Usar dentro del período de vida útil recomendado indicado en la documentación del producto
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Industrial cellulose ether packaging for non-woven formulations cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
Documentación

Technical & Commercial Documents
Disponible bajo solicitud

LANDERCOLL can provide product-related documentation to support non-woven formulation testing, purchasing review, quality evaluation, and internal approval processes.

TDS

Technical Data Sheet

Product specifications, viscosity, and performance data for grade evaluation.

SDS

Safety Data Sheet

Safety, handling, and regulatory information for site compliance.

COA

Certificate of Analysis

Batch-specific quality confirmation for incoming inspection.

SPEC

Product Specification

Detailed grade parameters and acceptance criteria.

PDF

Folleto del producto

Overview of product range and non-woven applications.

APP

Guía de aplicación

Formulation and processing reference for non-woven applications.

REC

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Grade selection support for your non-woven system.

PKG

Embalaje y Almacenamiento

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EXP

Export Documents

Customs and import compliance documentation where applicable.

Asistencia técnica

Need Help Improving Non-Woven Coating or
Treatment
Stability?

If your non-woven treatment formulation is too thin, too thick, settling, showing uneven coating, poor wet pickup control, binder instability, poor hand feel, foam problems, or viscosity drift during production — the cellulose ether grade or dosage may need to be reviewed.

LANDERCOLL can help evaluate suitable HEC, CMC, HPMC, or selected cellulose ether options based on your fiber type, binder system, application method, target viscosity, additive content, drying process, storage requirement, and final product performance target.

— We Can Help With —

HEC grade selection for smooth viscosity control and treatment bath stability

CMC grade selection for suspension support and formulation consistency

HPMC grade evaluation for specialty coating and water-retention needs

Coating uniformity and wet pickup discussion

Binder and additive compatibility evaluation direction

Suspension stability and particle distribution support

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Sample arrangement and quotation communication

Technical documentation for internal review and approval

PREGUNTAS FRECUENTES

Frequently Asked Questions:
Éter de celulosa para Non-Woven Applications

What cellulose ether is used in non-woven applications?

HEC, CMC, and HPMC may each be used in selected non-woven coating, binder, and treatment formulations. HEC is the most commonly used grade for smooth viscosity control and broad binder compatibility. CMC is used for suspension support and formulation consistency. HPMC may be considered in specialty systems requiring water retention or controlled coating behavior.

What does HEC do in non-woven formulations?

HEC provides smooth, consistent viscosity control, rheology adjustment, coating body, and treatment bath stability in selected water-based non-woven systems. Its non-ionic character gives it broad compatibility with polymer dispersions, binders, surfactants, and functional additives commonly used in non-woven treatment formulations.

What does CMC do in non-woven systems?

CMC helps support suspension of fillers, pigments, functional particles, and solid additives in selected non-woven treatment formulations. It also contributes to viscosity adjustment and formulation consistency, helping maintain uniform treatment appearance and reducing settling during production.

Can cellulose ether improve coating uniformity on non-woven substrates?

Yes. Cellulose ether can help control viscosity and rheology, which supports more uniform coating or treatment application across the non-woven substrate. Final coating uniformity depends on the substrate structure, application method, binder system, wet pickup level, and drying conditions.

Can cellulose ether be used in wipes or hygiene non-woven treatment systems?

Selected cellulose ether grades may be used in wipe or hygiene-related treatment systems. Final suitability depends on the specific product grade, formulation design, safety documentation, and market-specific regulatory requirements. Grade selection for hygiene and medical applications should include a full compliance review.

What is the typical dosage of cellulose ether in non-woven applications?

A common reference dosage range is approximately 0.05%–1.5% by formulation weight, depending on the formulation type, target viscosity, application method, binder system, and cellulose ether grade. Wipe and hygiene treatments typically use lower dosages, while specialty functional coatings and industrial finishes may require higher dosages. Final dosage must be confirmed through formulation testing.

Why does non-woven treatment formulation lose viscosity during production?

Viscosity loss in non-woven treatment formulations may be caused by pH changes, electrolyte content, binder incompatibility, preservative interaction, temperature variation, shear during pumping, poor initial hydration, or an unsuitable cellulose ether grade for the specific formulation system. A full formulation review including pH, ionic content, and binder compatibility can help identify the cause.

How do I choose the right cellulose ether for non-woven applications?

Start by defining the fiber type, binder system, application method, target viscosity, wet pickup requirement, additive suspension needs, drying conditions, final product performance requirements, and storage stability target. LANDERCOLL can recommend suitable HEC, CMC, HPMC, or selected cellulose ether grades for your specific non-woven formulation system and arrange samples for testing.

Póngase en contacto

Find the Right Cellulose Ether for Your
Non-Woven Application

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— LANDERCOLL —

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