Excelência em Éter de Celulose — Confiado por mais de 1000 empresas globalmente Obtenha Amostra Grátis
Oilfield well completion operations
Completion fluid formulation laboratory
Brine completion fluid systems
Well workover operations
CMCHECControle de ViscosidadeSuporte para Perda de FluidosEstabilidade da SuspensãoCompatibilidade com SalmouraFluidos de conclusão

Éter de Celulose para Fluidos de conclusão

Soluções de éter de celulose CMC e HEC para controle de viscosidade, suporte de perda de fluido, estabilidade de suspensão e consistência reológica em sistemas de completação e intervenção de poços à base de água e salmoura.

Éter de celulose CMC e HEC são usados em sistemas selecionados de fluidos de completação para melhorar o controle de viscosidade, suporte de perda de fluido, estabilidade de suspensão e consistência reológica — ajudando o fluido a manter um desempenho estável durante mistura, bombeamento, posicionamento e exposição ao poço.

De fluidos de completação de salmoura clara e fluidos de workover a fluidos transportadores de gravel-pack, fluidos de matação, fluidos de packer e aplicações especiais de serviço de poço — a LANDERCOLL fornece graus de éter de celulose selecionados para formulações de fluidos de completação em todo o mundo.

— CMC · HEC · Controle de Viscosidade · Suporte à Perda de Fluido · Estabilidade de Suspensão · Compatibilidade com Salmoura · Fluidos de Completação

Well completion Conclusão do Poço
Completion fluid lab Fluid Lab
Brine systems Sistemas de Salmoura
Workover operations Workover · Gravel Pack
CMC
HEC
Graus de Fluido de Completação
8+ Tipos de Aplicação de Fluido de Completação CMC e HEC para Fluidos de Completação Controle de viscosidade, suporte de perda de fluido, estabilidade de suspensão e consistência reológica para sistemas de fluidos de completação, workover, empacotamento de cascalho, abate e serviços especiais de poço à base de água e salmoura.
⚗️
CMC · HECNotas Disponíveis
📐
0.1%–1.2%Faixa de Dosagem de Referência
📦
25 kgEmbalagem Industrial
🌍
Pronto para exportaçãoDocumentação Suportada

Precisa de uma referência de grau ou dosagem inicial para o seu sistema de fluido de completação?

Peça uma recomendação Solicite um orçamento
Soluções de Fluidos de Completação

Soluções de Éter de Celulose para
Fluido de Completação
Formulações

Well completion operations Completion fluid formulation laboratory Brine completion fluid systems Viscosidade · Suspensão · Compatibilidade com Salmoura

CMC e HEC éter de celulose são usados em sistemas selecionados de fluidos de completação. para melhorar o controle de viscosidade, suporte de perda de fluido, estabilidade de suspensão e consistência reológica em operações de completação e intervenção de poços à base de água e salmoura. Um grau corretamente selecionado ajuda o fluido a manter um desempenho estável durante a mistura, bombeamento, posicionamento e exposição ao fundo do poço — permanecendo compatível com as condições da formação, a química da salmoura e o pacote completo de aditivos.

Fluidos de completação são utilizados durante a completação de poços, intervenções, limpeza, perfuração, empacotamento de cascalho e operações downhole relacionadas. Esses fluidos devem suportar o controle do poço, minimizar danos à formação, manter a reologia estável e permanecer compatíveis com as condições da formação e o equipamento de completação durante toda a operação.

LANDERCOLL fornece graus de éter de celulose selecionados para aplicações em fluidos de completação. CMC é recomendado para controle de filtração e ajuste de viscosidade em sistemas à base de água compatíveis. HEC é recomendado para espessamento não iônico e reologia selecionada de sistemas de salmoura onde é necessária compatibilidade eletrolítica mais ampla.

O que São Fluidos de Completação? Os fluidos de completação são fluidos especialmente projetados utilizados após a perfuração e antes ou durante a produção. Suas funções principais incluem controlar a pressão da formação, proteger o reservatório contra danos, dar suporte às operações de equipamentos de fundo de poço, transportar partículas ou aditivos funcionais e manter um ambiente de poço limpo e estável.
  1. Fluidos de completação de salmoura clara — NaCl, KCl, CaCl₂, CaBr₂, ZnBr₂
  2. Fluidos de completação à base de polímero aquoso
  3. Kill fluids and well control fluids
  4. Packer fluids and annular fluids
  5. Workover fluids and re-entry fluids
  6. Gravel-pack carrier fluids
  7. Cleanout and displacement fluids
  8. Specialty well service fluids
Benefícios de Desempenho

Why Completion Fluids Need
Éter de Celulose

Completion fluids operate under demanding conditions — high salinity, elevated temperature, formation pressure, and contact with sensitive reservoir rock. If the fluid has poor viscosity control, weak suspension behavior, or insufficient filtration support, it may affect operational efficiency, increase formation damage risk, or lead to poor placement and well performance. Cellulose ether helps create a controlled, stable fluid structure in selected systems.

FunctionO Que Isso Significa na Prática
Controle de viscosidadeAdjusts fluid flow behavior for pumping and placement
Ajuste de reologiaSupports consistent flow profile under shear and temperature
Suporte ao controle de perda de fluidoReduces filtrate invasion into formation in selected systems
Estabilidade da suspensãoKeeps particles, bridging materials, and additives in suspension
Particle carrying capacitySupports transport of gravel, sand, or functional particles
Brine-fluid consistencySupports stable performance in selected salt-containing systems
Handling and pumping behaviorMaintains workable flow profile during operations
Operational stabilitySupports consistent performance from mixing through placement
Additive distributionHelps maintain uniform distribution of functional additives
Confiabilidade lote a loteSupports repeatable fluid behavior across operations
Produtos Recomendados

Produtos de Éter de Celulose Recomendados para
Fluidos de conclusão

LANDERCOLL offers CMC, HEC, and selected cellulose ether grades for completion fluid systems. Product selection depends on base fluid type, brine composition, temperature, pressure, and whether viscosity control, fluid-loss support, suspension, or brine compatibility is the primary performance requirement.

CMC for completion fluids
Viscosity · Fluid-Loss

CMC for Completion Fluids

Viscosity adjustment, fluid-loss support, and suspension stability

Carboxymethyl Cellulose (CMC) may be used in selected completion fluids where viscosity control, filtration support, and solids or additive suspension are required. It helps improve fluid consistency and can support reduced fluid loss in compatible water-based systems. CMC grade selection should carefully consider salinity level, divalent ion content, temperature exposure, pH range, and compatibility with the full additive package — particularly corrosion inhibitors, biocides, and scale inhibitors.

Principais Benefícios
  • Supports viscosity adjustment and rheology control
  • Helps improve fluid-loss control in selected water-based systems
  • Supports suspension stability of particles and additives
  • Helps stabilize fluid consistency during mixing and placement
  • Useful for selected water-based completion and workover fluids
  • Supports operational reliability and batch consistency
HEC for completion fluids
Primary · Brine Systems

HEC for Completion Fluids

Non-ionic thickening and brine-system rheology support

Hydroxyethyl Cellulose (HEC) is particularly well-suited for completion fluid applications where non-ionic thickening, smooth viscosity development, and broader electrolyte compatibility are required. Its non-ionic character makes it more tolerant of high salinity and divalent ions compared to anionic grades such as CMC — making it a preferred option in many brine-based completion fluid systems. HEC performance should be validated through testing, as behavior depends on brine type, salt concentration, temperature, pH, shear exposure, and the full additive package.

Principais Benefícios
  • Supports viscosity control in water-based and brine-based systems
  • Non-ionic thickening with broader salt and electrolyte compatibility
  • Helps improve fluid consistency and smooth rheology
  • Supports rheology stability under shear and temperature
  • Useful for gravel-pack carrier fluids, workover fluids, and brine systems
  • Suitable for customized completion fluid formulations
Specialty completion fluid grades
Specialty · High-Density Brine

Selected Grades for Specialty Completion Fluids

Customized filtration, rheology, and operational performance

Specialty completion fluids — including high-density brines, high-temperature systems, or low-residue clear fluids — may require selected cellulose ether grades to balance viscosity, fluid loss, suspension, clarity, salinity tolerance, and pumpability. LANDERCOLL can recommend suitable grades based on fluid type, brine composition, temperature exposure, pressure conditions, formation sensitivity, and operational performance target.

Principais Benefícios
  • Supports customized rheology for specialty fluid systems
  • Helps improve stability in selected high-density brine systems
  • Supports fluid handling and pumping behavior
  • Useful for workover, well service, and specialty completion operations
  • Helps meet specific application and formation compatibility requirements

Not sure which grade fits your completion fluid system? Solicite uma Recomendação de Produto →

Referência de Formulação

Typical Completion Fluid
Componentes

Completion fluid formulations typically include freshwater, seawater, or brine, cellulose ether, salts, fluid-loss additives, corrosion inhibitors, and other functional additives designed to meet specific well control and formation protection requirements.

ComponenteFunction in Completion Fluids
Freshwater / Seawater / BrineBase fluid and density control medium
Éter de CeluloseViscosity control, suspension, and fluid-loss support
SaltsAdjust density and well control properties
Aditivos de Controle de Perda de FluidoReduce filtrate invasion in selected systems
Corrosion InhibitorsProtect tubulars and downhole equipment
BiocidesControl microbial growth where required
Oxygen ScavengersReduce oxygen-related corrosion risk
pH AdjustersMaintain required pH range for stability
Scale InhibitorsReduce scale formation risk
Outros AditivosAdjust stability, compatibility, or operational performance
Formulation Note: This is a general reference only. Final completion fluid formulation must be developed and validated according to brine type, density requirement, formation compatibility, temperature, pressure, corrosion risk, regulatory requirements, and field operation conditions.
Guia de Seleção

Completion Fluid Product
Referência de Seleção

Different completion fluid systems require different cellulose ether performance profiles. The table below provides a practical selection reference for completion fluid engineers and formulation specialists.

Tipo de AplicaçãoDireção RecomendadaPrincipais Requisitos de Desempenho
Water-Based Completion FluidCMC / HECViscosity, suspension, fluid consistency
Brine-Based Completion FluidHEC / selected cellulose etherSalt compatibility, rheology stability, clarity target
Workover FluidCMC / HECFluid handling, suspension, stability
Kill FluidSelected cellulose etherDensity compatibility, viscosity, operational stability
Gravel-Pack Carrier FluidHEC / selected gradeParticle carrying, viscosity, pumpability
Packer FluidSelected cellulose etherLong-term stability, compatibility, performance
Cleanout FluidHEC / CMCSuspension, carrying capacity, flow behavior
Specialty Completion FluidCMC / HEC / selected gradeCustomized rheology and fluid-loss support
Selection Note: This table is for general guidance only. Final product selection must be confirmed through brine compatibility testing, viscosity measurement, filtration testing, thermal aging, corrosion compatibility evaluation, and field validation.
Referência de Dosagem

Referência de Dosagem Recomendada para
Fluidos de conclusão

Reference dosage ranges for cellulose ether in completion fluid applications (% by fluid volume). Actual dosage should be determined through laboratory testing and field performance validation.

Nota de Dosagem

These ranges are starting references only. Final dosage must be confirmed through viscosity testing, fluid-loss testing, brine compatibility testing, temperature aging, shear stability evaluation, formation compatibility testing, and field performance review.

AplicaçãoTypical Reference Dosage (% by fluid volume)
Water-Based Completion Fluid0.1% – 0.8%
Brine-Based Completion Fluid0.1% – 1.0%
Workover Fluid0.1% – 0.8%
Kill Fluid0.1% – 0.8%
Gravel-Pack Carrier Fluid0.2% – 1.2%
Packer FluidSubject to long-term compatibility testing
Cleanout Fluid0.1% – 1.0%
Specialty Completion Fluid0.1% – 1.2%
Funções Principais

Principais Funções de Desempenho do Éter de Celulose em
Fluidos de conclusão

01

Controle de Viscosidade

Cellulose ether helps adjust completion fluid viscosity to support pumping, placement, particle carrying, and fluid handling in selected systems. The viscosity contribution depends on the grade selected, dosage, brine type, salt concentration, temperature, and shear conditions.

02

Suporte ao Controle de Perda de Fluido

CMC and selected cellulose ether grades can support filtration control in compatible completion fluid systems by reducing the rate of filtrate invasion into permeable formations. Effective fluid-loss control helps protect the reservoir, maintain wellbore integrity, and reduce formation damage risk.

03

Estabilidade da Suspensão

Completion fluids may need to carry gravel, sand, bridging materials, or functional additives during gravel packing, cleanout, or workover operations. Cellulose ether can support suspension stability and carrying capacity in selected formulations, helping maintain uniform particle distribution throughout the fluid.

04

Brine Compatibility Support

Many completion fluids contain high concentrations of chloride, bromide, calcium, sodium, potassium, or other salts. Selected cellulose ether grades — particularly HEC — should be tested for compatibility with the specific brine type, density, and ion composition before use.

05

Equilíbrio de Bombeabilidade

Completion fluid must remain pumpable while providing enough viscosity and stability for the intended operation. Cellulose ether dosage should be optimized to balance handling performance, suspension, and fluid-loss control without creating excessive pumping resistance.

06

Operational Consistency

A suitable cellulose ether grade helps maintain consistent fluid behavior during mixing, storage, circulation, placement, and downhole exposure — reducing the need for frequent adjustments and supporting more predictable completion operations.

Solução de Problemas

Common Completion Fluid Problems —
e Como o Éter de Celulose Ajuda

When completion fluid 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
Baixa Viscosidade
Causa Possível

Insufficient viscosifier or poor hydration.

Suporte do Éter de Celulose

CMC / HEC support viscosity control.

02
Perda Excessiva de Fluido
Causa Possível

Weak filtration control or high formation permeability.

Suporte do Éter de Celulose

Selected cellulose ether supports fluid-loss control.

03
Particle Settling
Causa Possível

Low viscosity or weak suspension.

Suporte do Éter de Celulose

Improve suspension and carrying capacity.

04
Poor Brine Compatibility
Causa Possível

High salinity or divalent ion concentration.

Suporte do Éter de Celulose

Test suitable HEC or selected grade for brine conditions.

05
Viscosity Loss After Aging
Causa Possível

Temperature, shear, salinity, or pH effects.

Suporte do Éter de Celulose

Select thermally and chemically compatible grade.

06
Difficult Pumping
Causa Possível

Excessive viscosity or poor flow profile.

Suporte do Éter de Celulose

Optimize grade and dosage balance.

07
Formation Damage Concern
Causa Possível

Incompatible additive or polymer residue risk.

Suporte do Éter de Celulose

Confirm formation compatibility through testing.

08
Mixing or Hydration Problems
Causa Possível

Poor dispersion or incorrect addition sequence.

Suporte do Éter de Celulose

Improve addition method and mixing procedure.

09
Additive Incompatibility
Causa Possível

Interaction between cellulose ether and other additives.

Suporte do Éter de Celulose

Confirm full additive package compatibility.

10
Desempenho de Campo Inconsistente
Causa Possível

Brine variation, temperature, or pressure changes.

Suporte do Éter de Celulose

Testar sob condições operacionais representativas.

Performance Note: Cellulose ether can help improve completion fluid viscosity, suspension, and filtration support, but final performance depends on brine composition, temperature, pressure, pH, formation compatibility, additive package, equipment, and field operation practices.
Variáveis de Formulação

O que Afeta o Desempenho do Éter de Celulose
in Completion Fluids?

Understanding what influences cellulose ether behavior in a completion fluid system helps with grade selection, dosage optimization, and troubleshooting under field conditions.

Brine Type and Density

Sodium chloride, potassium chloride, calcium chloride, calcium bromide, zinc bromide, and other brines can significantly affect cellulose ether hydration, viscosity response, and polymer compatibility. HEC generally offers better salt tolerance than CMC.

Temperature and Thermal Aging

Elevated downhole temperature may reduce polymer viscosity, accelerate degradation, and weaken filtration behavior. Grade selection and dosage should be evaluated through hot-rolling aging tests under the expected temperature range.

pH Conditions

pH influences cellulose ether hydration rate, viscosity stability, and compatibility with other additives. Most cellulose ether grades perform within a defined pH range — this should be confirmed during formulation development.

Divalent Ions

Calcium, magnesium, zinc, and other divalent ions can significantly reduce the viscosity and filtration efficiency of anionic grades such as CMC. HEC is generally more tolerant of divalent ions and may be preferred in calcium- or zinc-containing brine systems.

Shear Exposure

Mixing shear, pumping shear, and circulation shear can influence viscosity and polymer structure. Shear stability should be evaluated under conditions representative of the actual mixing and pumping process.

Formation Compatibility

Completion fluids contact reservoir rock and formation fluids. Cellulose ether and the full additive package should be tested for formation compatibility — including clay swelling, fines migration, and residue concerns — before field use.

Additive Package Interactions

Corrosion inhibitors, biocides, scale inhibitors, oxygen scavengers, surfactants, and fluid-loss additives may interact with cellulose ether. Full additive compatibility should be confirmed through laboratory testing.

Cleanliness and Clarity Requirements

Some completion fluids require low polymer residue and high fluid clarity — particularly in clear brine systems used near the production zone. Cellulose ether selection should match the cleanliness, filtration, and clarity requirements of the specific application.

Método de Seleção

Como Escolher o Grau
Éter de Celulose para
Fluidos de conclusão

Choosing the right cellulose ether for completion fluids requires balancing viscosity, salinity tolerance, fluid-loss support, suspension, pumpability, thermal stability, formation compatibility, and cleanliness requirements.

LANDERCOLL can help review your completion fluid system and recommend suitable CMC, HEC, or selected cellulose ether grades for laboratory testing and field evaluation.

Perguntas-chave a considerar
i.
Base Fluid Type

Is the completion fluid freshwater-based, seawater-based, or brine-based?

ii.
Brine Composition

What brine type, salt composition, and target density are required?

iii.
Carrying Capacity

What viscosity and particle carrying capacity are needed for the operation?

iv.
Fluid-Loss Requirement

Is fluid-loss control into the formation required?

v.
Temperatura & Pressão

What temperature and pressure conditions are expected downhole?

vi.
Divalent Ions

Are calcium, magnesium, zinc, or other divalent ions present in the brine?

vii.
Pacote de Aditivos

Are corrosion inhibitors, biocides, scale inhibitors, or other additives included?

viii.
Clarity Requirements

Is clarity, low residue, or formation-return performance required?

ix.
Formation Testing

What formation compatibility testing is required before field use?

x.
Field Operation

What operation is planned — workover, cleanout, gravel pack, kill, or completion?

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

Solicitar Recomendação de Grau de Fluido de Completação
Embalagem & Armazenamento

Especificações de Embalagem e
Diretrizes de Armazenamento

i.
Embalagem Padrão
  • 25 kg por saco — embalagem industrial padrão
  • Saco de papel com revestimento interno de proteção contra umidade
  • Embalagem paletizada disponível mediante solicitação
  • Embalagem personalizada para cooperação de fornecimento de longo prazo
ii.
Recomendações de Armazenamento
  • Armazenar em local fresco, seco e bem ventilado
  • Manter afastado de umidade, luz solar direta e fontes de calor
  • Manter a embalagem selada quando não estiver em uso
  • Evitar contaminação durante o manuseio e transferência
  • Usar dentro do prazo de validade recomendado indicado na documentação do produto
Embalagem de éter de celulose industrial Completion fluid supply materials Higi­groscópico · Selar Quando Não Estiver em Uso
Documentação

Técnico e Comercial
Documentos Disponíveis
Mediante Solicitação

LANDERCOLL provides product-related documentation to support completion fluid formulation testing, purchasing review, quality evaluation, and project approval processes.

Solicitar documentos do produto
— Documentos Disponíveis Mediante Solicitação —
  • Ficha Técnica (TDS) — especificações do produto e dados de desempenho
  • Ficha de Dados de Segurança (FDS / FISPQ) — informações de segurança, manuseio e regulamentação
  • Certificado de Análise (COA) — confirmação de qualidade específica do lote
  • Ficha Técnica do Produto — parâmetros detalhados do grau
  • Folheto do Produto — visão geral da linha de produtos e aplicações
  • Guia de Aplicação — referência de formulação e processamento
  • Product Recommendation Document — grade selection support for your completion fluid system
  • Informações de Embalagem e Armazenamento — referência de manuseio e prazo de validade
  • Documentos de Exportação — quando aplicável, para conformidade aduaneira e de importação
Suporte Técnico

Need Help Improving Completion Fluid
Viscosity or
Stability?

If your completion fluid is experiencing low viscosity, particle settling, poor brine compatibility, excessive fluid loss, viscosity loss after thermal aging, difficult pumping, formation damage concerns, or inconsistent field performance — the cellulose ether grade or dosage may need to be reviewed.

LANDERCOLL can help evaluate suitable CMC, HEC, or selected cellulose ether options based on your base fluid type, brine composition, density, temperature range, pH, additive package, viscosity target, fluid-loss target, and field operation requirements.

— Podemos Ajudar Com —

CMC grade selection for fluid-loss control and viscosity support

HEC grade selection for brine-based rheology and salt tolerance

Viscosity and carrying capacity adjustment discussion

Brine compatibility and divalent ion tolerance evaluation

Thermal aging and shear stability assessment direction

Suspension stability and particle carrying support

Formation compatibility testing guidance

Referência de dosagem e recomendações de ponto de partida

Providenciamento de amostras e comunicação de cotações

Documentação técnica para revisão e aprovação do projeto

FAQ

Perguntas Frequentes:
Éter de Celulose para Fluidos de conclusão

What cellulose ether is used in completion fluids?

CMC and HEC are the most commonly considered cellulose ethers for completion fluid applications. CMC supports viscosity adjustment and filtration control in selected water-based systems. HEC provides non-ionic thickening with broader salt and electrolyte compatibility, making it particularly useful in brine-based completion fluids.

What does CMC do in completion fluids?

CMC helps adjust viscosity, support fluid-loss control, improve suspension stability, and maintain fluid consistency in selected water-based completion fluid systems. Its performance is sensitive to salinity and divalent ion concentration, so compatibility with the specific brine system must be confirmed through testing.

What does HEC do in completion fluids?

HEC supports viscosity control, smooth rheology, and fluid consistency in compatible water-based and brine-based completion fluids. Its non-ionic character provides broader tolerance for salts and divalent ions compared to CMC, making it a preferred choice in many brine-based systems including calcium chloride and calcium bromide fluids.

Can cellulose ether be used in brine-based completion fluids?

Selected cellulose ether grades — particularly HEC — may be used in brine-based completion fluids, but compatibility must be confirmed through testing with the specific brine type, density, ion composition, temperature, and full additive package. Not all grades are suitable for high-density or divalent-ion-containing brines.

Can cellulose ether improve particle carrying capacity?

Yes. Cellulose ether can help increase fluid viscosity and suspension behavior, which may support the carrying capacity for gravel, sand, bridging materials, or functional additives in gravel-pack, cleanout, and workover operations. Final carrying capacity depends on the complete fluid rheology, particle size and density, flow rate, and wellbore geometry.

What is the typical dosage of cellulose ether in completion fluids?

A common reference dosage range is approximately 0.1%–1.2% by fluid volume, depending on base fluid type, brine composition, viscosity target, fluid-loss target, temperature, and cellulose ether grade. Gravel-pack carrier fluids and specialty systems may require higher dosages. Final dosage must be confirmed through laboratory testing.

Why does completion fluid lose viscosity after thermal aging?

Viscosity loss in completion fluids after aging may be caused by elevated temperature, high salinity, pH changes, divalent ion effects, shear degradation, additive incompatibility, insufficient polymer concentration, or an unsuitable grade for the specific brine and temperature conditions. Grade selection should include hot-rolling aging evaluation under representative conditions.

How do I choose the right cellulose ether for completion fluids?

Start by defining the base fluid type, brine composition, target density, temperature range, pH, viscosity target, fluid-loss requirement, formation compatibility needs, and the full additive package. LANDERCOLL can recommend suitable CMC, HEC, or selected cellulose ether grades for your specific completion fluid system and arrange samples for laboratory evaluation.

Entre em Contato

Encontre o Éter de Celulose Certo para Seu
Completion Fluid System

Whether you formulate water-based completion fluids, brine-based completion fluids, workover fluids, kill fluids, gravel-pack carrier fluids, packer fluids, cleanout fluids, or specialty well service fluids — LANDERCOLL can help you identify the right cellulose ether grade for better viscosity control, fluid-loss support, suspension stability, brine compatibility, and consistent operational performance.

Our technical team is available to review your completion fluid system, recommend suitable CMC, HEC, or selected cellulose ether grades, provide dosage references, arrange samples, and support your evaluation from initial laboratory testing through to field application.

— LANDERCOLL —

CMC for Viscosity & Fluid-Loss · HEC for Brine Systems · Selected Grades for Specialty Fluids · Suspension Stability · Particle Carrying · Clear Brine · Workover · Gravel Pack · Kill Fluid · Packer Fluid · Cleanout.

CMCHECControle de ViscosidadeSuporte para Perda de FluidosEstabilidade da SuspensãoCompatibilidade com SalmouraÀ base de águaBrine-BasedWorkover FluidGravel-PackKill FluidPacker FluidCleanout FluidFluidos de conclusão

All performance data, dosage references, and formulation guidance provided on this page are for reference only. Final suitability must be confirmed through testing under your specific completion fluid system and field conditions. LANDERCOLL reserves the right to update product information without prior notice.