NANOBUBBLE TECHNOLOGY · CUSTOM-ENGINEERED SYSTEMS

Do More With Water
Through Nanobubble Technology

Honour Tech is a deep-tech company engineering industrial nanobubble systems. We work with customers to design each system around real operating conditions and gas requirements—built to perform reliably in the field.

2017~
Commercial Supply
600+
Systems Supplied
20+
Countries
5
Patents
2 Registered · 3 Pending
Find Your Solution

What Challenge Are You Solving?

Select an objective or industry to explore suitable nanobubble approaches, gases, products, and case studies.

Developing a New Nanobubble Application?

We configure lab, pilot, OEM·ODM, and custom systems for your gas, water quality, flow, pressure, and operating needs.

Laboratory Systems Pilot Systems OEM·ODM Custom Systems
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Technology

Small Bubbles, Better Gas–Water Contact

Nanobubbles remain finely dispersed in water, increasing gas–water contact. This supports gas transfer, oxidation, cleaning, and functional-water production.

01What Are Nanobubbles?

Ultrafine bubbles below 1 μm that rise slowly and can remain in water longer than conventional bubbles.

02More Contact, Longer Residence

Smaller bubbles create more gas–water interface and longer contact, supporting oxygen transfer, ozone oxidation, cleaning, and functional water.

03Patent-Based Core Technology

Honour Tech's patented technology stably mixes and disperses gas, with conditions tailored to flow, concentration, and pressure. We're also developing ultra-low-pressure systems.

04Application-Specific System Design

Gas, water quality, flow, pressure, and contact time are reviewed together to configure each system.

5 Patents: 2 Registered · 3 Pending Low-Pressure Circulation · Pressurized Modular Air · O₂ · O₃ · CO₂ · H₂
Key Applications
Gas Transfer Gas transfer and concentration control
Oxidation & Cleaning Ozone oxidation and nanobubble-assisted cleaning
Functional Water Gas-enriched functional water
NTA Analysis

Bubble size and number concentration verified by NTA

  • Analysis Method — NanoSight NTA 3.4
  • Mean Diameter — approx. 61.9 nm ·Mode — 56.9 nm
  • D50 — approx. 58.8 nm
  • Lab-cale system (LAB-I · 600 L/h)

※ At higher commercial flow, mean bubble size tends to increase while number density decreases. Results vary by gas, water quality, and operating conditions.
※ Process performance is also evaluated by dissolved-gas targets, oxidation or cleaning results, stability, and energy use.

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Case Studies

Nanobubble Performance, Verified by Data

Field and comparative tests cover agriculture, cleaning, water treatment, pond water quality, and ozone oxidation/AOP.

FIELD & CULTIVATION TEST · O₂

Agriculture & Irrigation Water

Root density ≈3×
Yield +7–58%

O₂ nanobubble irrigation improved root development and yield across tested crops.

View Agriculture Cases →
COMPARATIVE TEST · O₂ / O₃

Cleaning & Laundry

Cleaning indicator +≈50%
Laundry efficiency +25–40%

Tests showed stronger cleaning at lower spray pressure and reduced detergent residue.

View Cleaning Cases →
FIELD OPERATION · O₂

Water Treatment & Pond Water

Mohali STP COD −56–92%
Pond DO up to 14.32 mg/L

Field data documented COD reduction during STP operation and clear DO increases in oxygen-deficient ponds.

View Water Cases →
PROCESS & FIELD TEST · O₃

Ozone Oxidation & AOP

Fe & Mn removal >98%
Livestock wastewater ozone data

Tests covered decolorization, wastewater oxidation, and Fe/Mn removal under different ozone and process conditions.

View Ozone/AOP Cases →

Field Validation Beyond Korea

Field operation in India measured DO and COD changes at STPs and ponds.

Bengaluru STP 300 m³/day · DO improvement
Mohali STP 1,250 m³/day · COD −56–92%
3 Ponds in Haryana DO increase measured

※ Results are site-specific. See each case for water quality, capacity, operating conditions, and test method.

APPLICATION READINESS

From Proven Markets to New Applications

We classify applications by field validation, supply experience, product readiness, and economics. Proven fields expand commercially; emerging fields advance through staged validation.

Explore Applications →
Product Platforms

Platforms by Structure & Operating Method

Four platforms share Honour Tech Bubble Mixer technology. Pump type, pressure, flow, gas, and materials are selected for each process.

CORE TECHNOLOGY·OEM COMPONENT

Bubble Mixer Core ModuleCore Module for Every Platform

SQN, HQN, and HEN Bubble Mixers power Honour Tech systems and can also be integrated into existing or partner-built equipment.

SQN HQN HEN OEM Supply Custom System Design
HQN and HEN Bubble Mixer core modules
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About Honour Tech

Nanobubble Engineering for Real Processes

Honour Tech is a deep-tech company developing nanobubble technology and application systems using oxygen, ozone, CO₂, and other gases. Since 2017, we've expanded from agriculture into cleaning, water treatment, precision processes, and hygiene. Built on our own technology, we manage every project stage — from system design and fabrication to field installation, condition review, and performance verification.

2017
Nanobubble Business
First Agricultural Products
600+
Systems Supplied
Industry & R&D Sites
20+
Countries
Global Supply & Partners
2+3
Patents
2 Registered · 3 Pending

01Proprietary Technology

In-house Bubble Mixer and generation technology configured for each gas and process.

02Field Validation

Test and field data guide product development and process deployment.

03Application Engineering

We review site conditions, integration, and operation to configure the right system.

About Honour Tech →
FAQ

Frequently Asked Questions

How Do Nanobubbles Differ from Regular Bubbles?

They are much smaller, rise more slowly, and can stay in water longer, increasing gas–water contact.

Do They Work the Same in Every Process?

No. Performance depends on water quality, gas, flow, pressure, temperature, contact time, and process design.

Must Existing Equipment Be Replaced?

Usually not. Systems can often integrate with existing piping, tanks, cleaning, or water-treatment equipment.

Which Gas Should I Use?

Air, O₂, O₃, H₂, or CO₂ is selected by purpose, target concentration, safety, and operating cost.

How Is Performance Verified?

NTA measures bubble size and count; process performance is verified with DO, ozone, COD, pH, cleaning, and other target metrics.

Are Nanobubble Systems Economical?

Economics depend on total cost: equipment, energy, gas, chemicals, water, wastewater, maintenance, and process gains.

More FAQs →
Application Review

Start with the Process — Not the Product

Share your process issue, flow, water quality, existing equipment, and performance target. We will review feasibility and next steps.

Helpful Information
  • Industry & process
  • Problem & target
  • Flow & runtime
  • Water quality
  • Current process
  • Site & utilities
  • Schedule & project stage
Inquiry Type
Feasibility review Product & quote Lab & pilot test Process improvement Custom & OEM Partnership & co-development
We will advise on any additional data, testing, and engineering steps.