Advanced Oilfield Chemistry for Oil & Gas Production

Field-proven chemical solutions for acidizing, fracturing, profile control, gathering, and production treatment. Deployed across Bohai Sea, Middle East, Xinjiang, Daqing, Sichuan, South China Sea, and Tarim operations -- tested to petroleum industry first-class standards.

0°C Max Temperature Rating
0+ km Pipelines Protected
0%+ Plugging Rates Achieved
0m Ultra-Deep Well Depth
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The NCPS Advantage

Our technology platforms address specific challenges that conventional oilfield chemistry cannot solve, validated through field deployment across major operating regions.

Supermolecular Technology

Our supermolecular pre-construction creates nanometer-scale water channels in dry powders for 1-3 minute dissolution. Salt resistance through hydrophobic association interactions enables performance in reservoirs exceeding 30,000 mg/L salinity.

Quantum Chemistry Design

Materials Studio-based molecular design creates corrosion inhibitors that meet first-class standards from 90°C to 180°C. Molecular-level optimization of adsorption configurations and functional groups for ultra-deep well environments.

CO2-Responsive Systems

Polymers that form three-dimensional networks exclusively in CO2 environments, combined with acid-resistant foam, achieve plugging rates exceeding 96% and gas reduction rates exceeding 98% across the 40-90°C temperature range.

VES Self-Assembly

Viscoelastic surfactant molecules that transform from spherical to worm-like micelles as acid reacts with rock, creating intelligent temporary plugging that diverts acid to low-permeability zones automatically.

Products & Solutions

Four core product lines covering acidizing and fracturing, profile control and flooding, gathering and transmission, and oil/gas/water treatment -- with documented field performance data.

Acidizing & Fracturing Fluids

Supermolecular instant-dissolving polymers, emulsion gelled acids, corrosion inhibitors rated to 180°C, VES diverting agents, autogenic acid systems, and acid additives. Deployed in Bohai Sea, Middle East, and Sichuan shale gas.

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Profile Control & Flooding

CO2-responsive gel anti-channeling (>96% plugging rate), horizontal well composite water shutoff, nano-imbibition oil displacement (20% recovery increase), and foam drainage systems. Proven in Xinjiang and Daqing operations.

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Gathering & Transmission

Drag reducers (47% throughput increase), imidazoline corrosion inhibitors (97% failure rate reduction across 5,000+ km), asphaltene inhibitors, wax prevention agents, and pour point depressants. Deployed across Tarim Oilfield.

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Oil, Gas & Water Treatment

Heavy oil viscosity reducers (2,000+ tons/year production increase), composite sulfur removal agents (30+ high-sulfur wells), wax de-blocking agents (>90% high-carbon wax dispersion), and natural gas desulfurization systems.

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Why Choose NanoChem Petroleum Solutions

Every product in our portfolio has documented field performance data from real operations. Our technology platforms solve specific challenges that conventional oilfield chemistry cannot address, validated through deployment across major global operating regions.

SY/T Standards Compliance

All products tested to petroleum industry first-class standards

R&D University Partnership

Collaborative research with Southwest Petroleum University

0 Technology Platforms

Supermolecular, quantum chemistry, VES, CO2-responsive

0+ Operating Regions

Bohai Sea, Middle East, Xinjiang, Daqing, Sichuan, Tarim

What Sets Us Apart

Research-Driven Solutions

Molecular design through Materials Studio quantum chemistry, not off-the-shelf formulations.

Supermolecular Engineering

Nanometer-scale water channels enable 1-3 minute dissolution and superior salt resistance.

Documented Field Results

5%+ recovery improvement, 97% pipeline failure reduction, 96%+ plugging rates.

Advanced Analytical Testing

HAAKE RS600 rheometers, dynamic corrosion instruments, and core displacement systems.

Four Technology Platforms Driving Oilfield Innovation

Our proprietary technology platforms -- supermolecular pre-construction, quantum chemistry molecular design, VES micelle transformation, and CO2-responsive polymer systems -- represent genuine advances in oilfield chemistry that translate directly into measurable operational improvements.

1
Supermolecular Pre-Construction & Nanoscale Water Channels
2
Quantum Chemistry Molecular Design via Materials Studio
3
VES Self-Assembly & pH-Triggered Micelle Transformation
4
CO2-Responsive Gel & Acid-Resistant Foam Systems
Explore Our Technology

University-Backed Research & Computational Chemistry

Our collaborative research partnership with Southwest Petroleum University combines academic rigor with field-proven deployment, driving innovation across all four product lines through advanced computational and analytical methods.

Computational Molecular Design

Materials Studio quantum chemistry software enables molecular-level design of corrosion inhibitors, polymer structures, and surfactant configurations.

Advanced Analytical Characterization

HAAKE RS600 high-temperature rheometers, TX-500C interfacial tensiometers, NMR pore analysis, and dynamic corrosion instruments for rigorous performance evaluation.

Standards-Based Validation

All products evaluated against SY/T petroleum industry standards including SY/T 6214, SY/T 6296, SY/T 5886, SY/T 6571, and SY/T 6300.

R&D Capabilities

Our Approach
Challenge: Ultra-deep well at 160°C where conventional corrosion inhibitors degrade, causing pipeline perforation and costly repairs.
Step 1: Quantum chemistry calculation via Materials Studio to screen molecular structures with strong adsorption capacity and thermal stability at 160°C.
How do you validate the design before field deployment?
Step 2: High-temperature high-pressure dynamic corrosion testing confirms corrosion rate of 54.76 g/(m2·h) at 160°C -- well within the SY/T first-class standard of ≤65 g/(m2·h). Field deployment follows with documented performance monitoring.

Environmental Responsibility

Reduced Chemical Consumption

Supermolecular instant dissolution eliminates the need for large maturation tanks, reducing chemical waste and site footprint.

Produced Water Reuse

Our salt-resistant polymers are compatible with high-calcium/magnesium produced water, enabling efficient wastewater recycling.

CO2 Channeling Control

Our CO2-responsive systems improve CO2 flooding efficiency, reducing gas waste and maximizing oil recovery from existing wells.

Pipeline Integrity Protection

97% reduction in pipeline failures across 5,000+ km prevents leaks, spills, and associated environmental contamination.

Responsible Chemistry for Operational Excellence

Our technologies inherently reduce environmental impact while improving operational performance. Supermolecular instant-dissolving powders eliminate the need for large maturation tanks and reduce on-site chemical handling. VES diverting agents break down on contact with formation hydrocarbons, leaving no permanent residue. Our CO2-responsive systems improve the efficiency of CO2 flooding operations, reducing greenhouse gas waste.

Pipeline corrosion protection across 5,000+ km of Tarim Oilfield infrastructure prevents leaks and spills that would otherwise contaminate surrounding environments. Our produced water-compatible formulations enable wastewater recycling rather than disposal, and our nano-imbibition oil displacement technology recovers additional oil from existing wells without new drilling.

Discuss Your Sustainability Goals

Field Case Studies

Documented performance data from real operations across major global producing regions.

Bohai Sea offshore oil field, 85°C, salinity exceeding 30,000 mg/L. Supermolecular instant-dissolving powder with salt-resistant surfactant deployed as binary composite flooding system. Recovery rate increased by more than 5 percentage points above conventional system predictions. Instant dissolution eliminated need for large maturation tanks on space-constrained platforms.

Bohai Sea Offshore Recovery

Supermolecular Polymer Flooding • 5%+ Recovery Increase
Xinjiang oilfield CO2 flooding operations experiencing severe gas channeling. CO2-responsive gel + acid-resistant foam composite sealing deployed across multiple well groups. Average daily gas production reduced from 11,000 m3 to 5,600 m3, with 260-ton average oil increase per treatment stage. Oil production rose from 5.1 t/day to 17.6 t/day in western block operations.

Xinjiang CO2 Channeling Control

CO2-Responsive Gel System • 96%+ Plugging Rate
Tarim Oilfield pipeline corrosion inhibitor deployment across 9 business divisions. Coverage expanded to 5,000+ km of carbon steel pipelines under varying conditions. Pipeline leakage failures dropped from 418 incidents (2016) to 49 incidents (2022). Failure rate reduced from 0.116 to 0.003 per km per year -- a 97% reduction in pipeline failures.

Tarim Oilfield Pipeline Protection

Imidazoline Corrosion Inhibitors • 97% Failure Reduction

Ready to Solve Your Toughest Oilfield Chemistry Challenges?

Whether you need corrosion protection at 180°C, CO2 channeling control, instant-dissolving polymers for offshore operations, or pipeline integrity solutions across thousands of kilometers -- we have documented field results to back every recommendation.