Product specifications and performance data for formulation review.
LANDERCOLL HEC cellulose ether membantu produsen pembersih permukaan mencapai kontrol viskositas yang andal, tekstur yang stabil, keseimbangan aplikasi semprot dan lap, serta konsistensi formulasi jangka panjang di berbagai format serbaguna, dapur, kamar mandi, semprot, kental, gel, dan konsentrat.
Dari pembersih semprot viskositas rendah hingga cairan kental dan pembersih permukaan gel premium — grade HEC yang tepat memberikan reologi yang dapat diprediksi, aliran yang terkendali, dan pengalaman konsumen yang konsisten bagi produsen luar negeri dan pembeli bahan kimia.
Semprot · Kental · Gel · Dapur · Kamar Mandi · Konsentrat · Serbaguna
Jawaban Cepat
Jawaban CepatHydroxyethyl Cellulose (HEC) adalah eter selulosa utama yang digunakan dalam formulasi pembersih permukaan. Bahan ini berfungsi untuk mengontrol viskositas, menyesuaikan reologi, mengendalikan aliran, menjaga stabilitas suspensi, menyeimbangkan aplikasi semprot dan usap, serta memastikan stabilitas penyimpanan pada berbagai sistem pembersih permukaan, termasuk bentuk semprot, cairan kental, gel, dan konsentrat. CMC dan HPMC dapat dipertimbangkan dalam sistem pembersih permukaan khusus atau yang disesuaikan setelah dilakukan uji kompatibilitas.
Referensi utama mengenai kinerja, kompatibilitas, dan pasokan bagi produsen pembersih permukaan dan pembeli bahan kimia di luar negeri.
Mencari rekomendasi eter selulosa untuk formulasi pembersih permukaan Anda?
Minta Rekomendasi Pembersih Permukaan Minta Penawaran
Pembersih permukaan adalah salah satu kategori produk pembersih rumah tangga dan institusi yang paling banyak digunakan secara global. Ini mencakup produk yang dirancang untuk menghilangkan debu, minyak, sidik jari, residu sabun, noda ringan, dan kotoran sehari-hari dari meja dapur, permukaan kamar mandi, ubin, peralatan, lantai, meja, dan permukaan yang dapat dicuci lainnya.
Viskositas dan reologi sangat penting untuk kinerja pembersih permukaan di semua format. Selulosa eter — terutama — HEC (Hidroksietil Selulosa) — menyediakan sistem pengentalan dan reologi yang andal untuk kontrol viskositas, tekstur yang stabil, dukungan suspensi, dan kinerja formulasi yang konsisten.
Tanpa pengentalan yang efektif, pembersih permukaan menghadapi tantangan kritis: pola semprotan yang tidak konsisten, penampilan encer, gel yang mengalir terlalu cepat di permukaan vertikal, pengendapan opacifier, variasi viskositas antar bets, dan pengurangan waktu kontak permukaan yang memengaruhi efektivitas pembersihan.
LANDERCOLL menyediakan HEC dan grade selulosa eter terpilih untuk produsen pembersih permukaan yang membutuhkan kontrol viskositas yang andal, tekstur yang stabil, dukungan suspensi, dan kinerja formulasi yang konsisten di berbagai jenis pembersih dan lingkungan produksi.
HEC membangun jaringan viskositas dan reologi terstruktur yang memungkinkan pembersih permukaan mempertahankan viskositas yang sesuai, mengalir dengan lancar selama aplikasi, menempel pada permukaan, mempertahankan body yang stabil selama penyimpanan, dan memberikan tekstur yang konsisten di seluruh bets produksi.
LANDERCOLL menawarkan HEC sebagai rekomendasi selulosa eter utama untuk aplikasi pembersih permukaan, dengan CMC dan HPMC tersedia untuk sistem khusus terpilih.
Primer · Non-Ionik · HEC
Selulosa eter non-ionik untuk kontrol viskositas, perbaikan tekstur, dukungan suspensi, dan reologi yang stabil.
HEC adalah selulosa eter non-ionik yang larut dalam air dan banyak digunakan dalam formulasi pembersih permukaan berbasis air. Ini membangun viskositas dalam fase air, membantu menciptakan body produk yang stabil, mendukung aliran terkontrol selama aplikasi, dan mempertahankan tekstur yang konsisten selama penyimpanan dan penggunaan. Cocok untuk pembersih permukaan kental, pembersih serbaguna, pembersih kamar mandi, pembersih dapur, dan sistem pembersih semprot terpilih.
Anionik · CMC · Sistem Terpilih
Karboksimetil Selulosa untuk kebutuhan dukungan suspensi terpilih, badan produk, dan konsistensi formulasi.
CMC dapat dipertimbangkan dalam formulasi pembersih permukaan tertentu di mana dukungan suspensi, kontribusi viskositas, atau keseimbangan biaya-kinerja menjadi prioritas. Penting: CMC adalah polimer anionik; kompatibilitas dengan asam, garam, sistem elektrolit tinggi, dan bahan aktif lainnya harus dikonfirmasi melalui pengujian sebelum digunakan.
Spesialisasi · HPMC · Sistem Gel
Hydroxypropyl Methylcellulose untuk pengentalan khusus, reologi terkendali, dan tekstur pembersih yang disesuaikan.
HPMC dapat dipertimbangkan dalam pembersih permukaan khusus, pembersih gel, atau sistem pembersih rumah tangga yang disesuaikan di mana diperlukan perilaku reologi tertentu, sifat pembentuk film, atau tekstur gel yang disesuaikan. Kinerja akhir harus dikonfirmasi melalui pengujian formulasi, karena jenis surfaktan, sistem pelarut, kadar elektrolit, pH, dan metode produksi semuanya dapat memengaruhi kinerja HPMC.
Formulasi pembersih permukaan bervariasi secara signifikan tergantung pada jenis produk, permukaan target, dan kebutuhan kinerja pembersihan. Tabel di bawah ini memberikan referensi umum untuk komponen-komponen yang umum digunakan.
| Komponen | Function in Surface Cleaner |
|---|---|
| Air | Main solvent and carrier phase |
| Surfaktan | Provide wetting, cleaning, grease removal, and soil removal |
| Solvents | Support grease removal and quick-drying behavior in selected systems |
| Cellulose Ether (HEC / CMC / HPMC) | Improve viscosity, rheology, texture, suspension, and stability |
| Builders / Chelating Agents | Support cleaning efficiency and water hardness control |
| Penyesuai pH | Adjust cleaning profile and formulation stability |
| Pengawet | Protect water-based formulations from microbial growth |
| Wewangian | Provide product scent |
| Pewarna / Opasifier | Improve appearance in selected products |
| Antibacterial Ingredients | Used in selected sanitizing or antibacterial surface cleaners |
| Surface Cleaner Type | Produk yang Direkomendasikan | Persyaratan Utama |
|---|---|---|
| Pembersih Permukaan Serbaguna | HEC / eter selulosa terpilih | Viscosity, flow control, formulation stability |
| Pembersih Permukaan Dapur | HEC | Degreasing compatibility, texture, application control |
| Pembersih Permukaan Kamar Mandi | HEC / eter selulosa terpilih | Cling, viscosity, stable spreading on ceramic |
| Pembersih Permukaan Semprot | Low viscosity HEC / selected grade | Sprayability, stable viscosity, low residue feel |
| Pembersih Permukaan Kental | HEC | Product body, controlled flow, surface contact time |
| Pembersih Permukaan Berbentuk Gel | HEC / selected HPMC | Gel texture, cling, stable appearance |
| Pembersih Permukaan Pekat | HEC / eter selulosa terpilih | High-active compatibility, viscosity balance |
| Pembersih Opak atau Partikel | HEC / selected CMC | Suspension support, stable opaque appearance |
These ranges are starting references only. Final dosage must be confirmed through viscosity testing, spray testing, wiping evaluation, surface residue assessment, compatibility testing, storage stability evaluation, and consumer-use trials.
| Surface Cleaner Application | Referensi Dosis Khas |
|---|---|
| Pembersih Permukaan Serbaguna | 0.1% – 0.6% |
| Pembersih Permukaan Dapur | 0.1% – 0.6% |
| Pembersih Permukaan Kamar Mandi | 0.2% – 0.8% |
| Pembersih Permukaan Semprot | 0.05% – 0.3% |
| Pembersih Permukaan Kental | 0.2% – 0.9% |
| Pembersih Permukaan Berbentuk Gel | 0.3% – 1.2% |
| Pembersih Permukaan Pekat | 0.2% – 0.8% |
| Pembersih Opak atau Partikel | 0.2% – 0.8% |
Cellulose ether influences viscosity development, rheology adjustment, controlled flow, suspension stability, spray and wipe application balance, and long-term storage performance in water-based surface cleaner systems.
HEC helps adjust surface cleaner viscosity across a wide range — from low-viscosity spray formulations to thickened liquids and gel formats. Proper viscosity control ensures the product looks and performs appropriately for its intended application method and consumer expectations.
Cellulose ether helps control how the surface cleaner flows during use — spreading smoothly under wiping pressure while maintaining enough body during storage and dispensing. Good rheology balance is especially important on vertical surfaces or spray applications.
Surface cleaners applied to vertical tiles, bathroom walls, or inclined surfaces should not run too quickly before cleaning agents have time to act. A suitable cellulose ether grade helps improve flow control and supports longer surface contact time.
Many surface cleaners contain opacifiers, fragrance droplets, particles, colorants, or functional additives that need stable distribution throughout the product. Cellulose ether can support suspension stability when properly matched with the complete formulation system.
For spray cleaners, viscosity must remain low enough for consistent spray pattern and nozzle performance. For thickened cleaners, viscosity should support controlled spreading without excessive residue. Grade and dosage selection should match the final application method.
A suitable cellulose ether grade helps maintain stable texture, viscosity, and appearance during storage — reducing separation, viscosity loss, settling, and inconsistent performance across different temperatures and conditions.
When surface cleaner fails viscosity, spray, or stability targets, cellulose ether grade, dosage, hydration, or compatibility is often the first variable to review.
Low viscosity or weak thickening system.
HEC builds viscosity and improves product body.
Viscosity too high or wrong rheology profile.
Use lower viscosity grade and optimize dosage.
Insufficient body or weak flow control.
Improve viscosity and controlled flow behavior.
Poor suspension or formulation imbalance.
Support suspension stability through grade selection.
pH, solvent, surfactant, salt, or temperature interaction.
Test compatible grade with full formulation system.
Excessive dosage or unsuitable viscosity grade.
Adjust grade selection and dosage level.
Poor dispersion or hydration method.
Improve addition sequence and mixing process.
Excessive polymer or poor wiping balance.
Optimize dosage and complete formulation design.
Surface cleaner formulations vary widely in chemistry and complexity. Multiple factors influence how cellulose ether performs in the final product.
Spray cleaners, thickened liquids, gels, concentrates, and ready-to-use cleaners require different viscosity targets and rheology profiles. Grade selection must match the intended product format and application method.
Surfactant type, concentration, and combination affect wetting, cleaning performance, foam behavior, viscosity response, and compatibility with cellulose ether. Surfactant system should be evaluated during formulation testing.
Solvents can improve cleaning performance and quick-drying behavior but may influence cellulose ether hydration, product clarity, viscosity development, and long-term stability.
Neutral, acidic, and alkaline surface cleaners have different compatibility and stability requirements. Cellulose ether grade selection should match the final pH range of the formulation.
Salts, builders, and chelating agents may affect viscosity development, product clarity, and long-term stability. High-electrolyte systems require careful grade selection and testing.
Surface cleaner residue, wiping feel, and surface finish quality should be tested on all target surfaces including glass, ceramic, stainless steel, plastic, and painted surfaces.
Fragrance oils and preservatives can influence product clarity, viscosity stability, and long-term storage performance. Compatibility should be confirmed during formulation development.
Addition sequence, hydration time, mixing speed, and water temperature all affect cellulose ether dispersion quality and final viscosity development. Poor dispersion leads to lumps, fish eyes, and inconsistent viscosity across batches.
Choosing the right cellulose ether requires balancing viscosity target, sprayability, wiping behavior, surface contact time, suspension stability, product clarity, and storage performance.
Grade Selection Guide
LANDERCOLL can review your surface cleaner formulation direction and recommend suitable HEC, CMC, or selected cellulose ether grades for testing.
Spray, thickened liquid, gel, concentrate, or ready-to-use?
Kitchen, bathroom, glass, floor, or multipurpose?
What surfactant system and loading level are used?
What pH range is required for the final formulation?
What solvent level and type are included?
Clear, opaque, or does it contain suspended particles?
What target viscosity is required for the application format?
Is sprayability, surface cling, or wiping behavior the primary priority?
What fragrance and preservative system is used?
What temperature range and shelf life are expected?
LANDERCOLL provides product-related documentation to support surface cleaner formulation testing, purchasing review, quality approval, and import compliance.
Formulation & Performance Evaluation
Supporting surface cleaner 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 surface cleaner applications.
Handling, shelf life, and storage condition reference.
Available where applicable for international orders and import compliance.
All documents supplied upon request to support formulation review, quality approval, and import compliance.
Minta Dokumen ProdukHEC grade selection for viscosity control and rheology adjustment
Sprayable or thickened cleaner formulation support
Gel texture and controlled flow optimization
Suspension stability discussion and testing direction
Surface contact and wiping behavior support
Compatibility review for different pH and surfactant systems
Dosage reference for different surface cleaner types
Sample provision and quotation communication
If your surface cleaner is too watery, too thick, difficult to spray, unstable during storage, separating, forming lumps, or leaving an undesirable wiping feel or surface residue, the cellulose ether grade or dosage may need to be reviewed.
LANDERCOLL can help evaluate suitable HEC, CMC, and selected cellulose ether options based on your product format, surfactant system, pH, solvent level, viscosity target, application method, and storage requirement.
HEC (Hydroxyethyl Cellulose) is the most commonly used cellulose ether in surface cleaner formulations. It provides viscosity control, rheology adjustment, smooth texture, suspension stability, and storage stability. CMC and HPMC may be considered in selected customized systems after compatibility testing.
HEC dissolves in the water phase and builds viscosity, product body, and a structured rheology network. In surface cleaner, this improves controlled flow, supports suspension of opacifiers and particles, helps balance spray and wipe application behavior, and maintains stable consistency during storage.
Yes. Low viscosity HEC or selected cellulose ether grades may be used in spray surface cleaners. Dosage must be carefully controlled — typically in the range of 0.05%–0.3% — to maintain good sprayability and avoid nozzle performance issues.
Cellulose ether primarily supports viscosity, texture, suspension, and application stability — not cleaning chemistry. Cleaning performance depends on surfactants, solvents, pH, builders, active ingredients, and application conditions. However, improved flow control can support longer surface contact time.
A common reference dosage range is approximately 0.05%–1.2% by formulation weight, depending on product format, target viscosity, surfactant system, solvent level, and cellulose ether grade. Spray cleaners typically use lower dosages, while gel and thickened cleaners use higher dosages. Final dosage must be confirmed through testing.
Separation may be caused by poor suspension system design, surfactant incompatibility, pH changes, solvent effects, high electrolyte levels, temperature fluctuations, or an unsuitable cellulose ether grade for the system. A full formulation compatibility review is recommended.
The viscosity may be too high, the cellulose ether grade may be unsuitable for spray applications, or the formulation may have poor rheology balance. A lower viscosity grade, reduced dosage, or different grade selection may be needed.
Start by defining your product format, target viscosity, spray or wipe application method, pH, surfactant system, solvent level, clarity or suspension requirement, storage conditions, and production process. LANDERCOLL can review your formulation direction and recommend suitable HEC or selected cellulose ether grades for evaluation and testing.
Whether you produce multipurpose surface cleaner, kitchen cleaner, bathroom cleaner, spray cleaner, thickened liquid cleaner, gel surface cleaner, concentrated cleaner, or opaque particle cleaner — LANDERCOLL can help you choose the right cellulose ether grade for better viscosity control, stable flow, suspension support, spray and wipe application balance, and formulation consistency.
Our team can provide grade recommendations, dosage references, technical data sheets, samples, and quotations to support your formulation development and purchasing process.
LANDERCOLL cellulose ether products are manufactured for industrial and commercial use. All formulation data, dosage references, and application guidance provided are for general reference only. Final product performance must be confirmed through testing under your specific formulation, process, and storage conditions.