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Bubble generating nozzle(20) - List of Manufacturers, Suppliers, Companies and Products

Bubble generating nozzle Product List

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Ultrafine bubble generation nozzle "Nano Celeb" 20A

Ultra-fine bubble generation nozzle for 20A equipment and piping that can be introduced at low cost.

Our industrial and commercial ultra-fine bubble generation nozzle "NanoCeleb 20A" generates a large number of ultra-fine bubbles using special technology by simply being attached to a 20A pipe, utilizing approximately 2% of the air contained in the water. This contributes to solving various industrial problems through the enhanced cleaning power provided by the surfactant action characteristic of ultra-fine bubbles. ■ Structure that generates ultra-fine bubbles at tap water pressure levels ■ Ultra-fine bubbles generated in a 1-pass (inline) system ■ Compact and lightweight ■ Maintenance-free, with no running costs or electricity required ■ Unlike equipment types, no additional space is needed

  • nozzle

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[Example] Use of 25L/min OK nozzle

Achieved 400%! A case where it was proposed to install a hose about 10 to 20 meters on the discharge side of the OK nozzle.

We received data from a Chilean vendor regarding an experiment to increase the Do value using a "25L/min OK nozzle." In the experiment before reaching 400%, we received an email stating that the Do value did not exceed 160%. At that time, we suggested placing a hose about 10 to 20 meters on the discharge side of the OK nozzle. As a result, we achieved 400%. *For more details on this case, you can view them through the related link. Please feel free to contact us for more information.

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Ultra Fine Bubble Generation Nozzle "Nano Celeb" 15A

Ultra-fine bubble generation nozzle for 15A equipment and piping that can be introduced at low cost.

Our industrial and commercial ultra-fine bubble generation nozzle "NanoCeleb 15A" generates a large number of ultra-fine bubbles using special technology by simply being installed on 15A piping, utilizing approximately 2% of the air contained in the water. It contributes to solving various industry problems through the cleaning power enhanced by the surfactant action characteristic of ultra-fine bubbles. ■ Structure that generates ultra-fine bubbles at tap water pressure levels ■ Ultra-fine bubbles generated in a 1-pass (inline) system ■ Compact and lightweight ■ Maintenance-free, with no running costs or electricity required ■ Unlike equipment types, no additional space is needed

  • nozzle

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[Case Study] Flounder Farming in Jeju Island, South Korea (1200L/min OK Nozzle)

Using the "1200L/min OK nozzle"! It is expected to cover an area of about 8,000 to 10,000 m2 of water surface.

At the Jeju flounder breeding farm "Sangji Fisheries," an oxygen dissolution system using the "large nozzle MB1,200" has been introduced. The total water surface area of the farm is approximately 25,000 m2. One "MB1,200L nozzle" is expected to cover an area of about 8,000 to 10,000 m2. [Case Overview] ■ Jeju flounder breeding farm "Sangji Fisheries" - The total water surface area of the farm is approximately 25,000 m2 - One "MB1,200L nozzle" is expected to cover an area of about 8,000 to 10,000 m2 *For more detailed information about the case, please refer to the related link. For further inquiries, feel free to contact us.

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[Case Study] Use of Nanobubbles in Irrigation Cultivation of Mini Tomatoes

Mini tomatoes thrive with nanobubbles! Depending on the variety, there are cases where the harvest increased by 5% to 35%.

Here is a case study from Kumamoto Prefecture using nanobubbles in the irrigation cultivation of mini tomatoes. In 2014, simply incorporating the "200L/min OK nozzle" into the existing pipeline resulted in an increase in harvest of 5% to 35%, depending on the variety. In 2015, by adding 10% oxygen and using the OK nozzle with pig manure, organic fertilizer was produced, leading to a 46% increase in harvest. 【Case Summary】 <2014> ■ Just incorporating the 200L/min OK nozzle into the existing pipeline ■ Harvest increase of 5% to 35% depending on the variety ■ Use of well water ■ Irrigation volume approximately 150% ■ Liquid fertilizer without solidification ■ Increased fertilizer amount ■ Irrigation tubes are cleaned *For detailed information about the case, please refer to the related links. For more information, feel free to contact us.

  • nozzle

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[Case] Ship Bottom Resistance Reduction Experiment (500L/min OK Nozzle)

Using a 500L/min OK nozzle! This is an introduction to the hull resistance reduction experiment conducted in October 2016.

We would like to introduce a case where the "500L/min OK nozzle" was used during a hull resistance reduction experiment at a shipyard in the Netherlands. 【Case Overview】 ■ Hull Resistance Reduction Experiment: October 2016 ■ Shipyard in the Netherlands ■ Used the 500L/min OK nozzle *For more details about the case, you can view them through the related links. Please feel free to contact us for more information.

  • nozzle

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Patent obtained in May! Loop flow microbubble generation nozzle.

The loop flow microbubble generation nozzle has been patented!

The Loop Flow Microbubble Generation Nozzle, application number 2008-034846, was granted a patent on May 15, 2012, and the patent registration process was completed on the 21st, resulting in the acquisition of the patent. We were considering a "divisional application," but concluded that it was unnecessary, and completed the patent registration process on the 21st. It took four years from the application. No one had created a similar microbubble generation nozzle. Neither patent searches nor internet searches revealed any designs that maximized the characteristics of loop flow. In August of this year, I will present on "Characteristics and Application Examples of the Loop Flow Microbubble Generation Nozzle" at a conference of the Japan Society of Multiphase Flow at the University of Tokyo, Kashiwa Campus. For more details, please contact us or refer to the catalog.

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[Application Example] Coverage of measures against clams in Lake Shinji.

An example of application where the collaboration of fine bubbles and jet injectors is believed to have been effective.

As a measure against the clams in Lake Shinji, we would like to introduce an application example using the "100L・500L/min OK nozzle." After fishing, we took turns with fellow fishermen to aerate the lake bottom for two hours every day using a jet sprayer to inject fine bubbles. It is believed that the collaboration of fine bubbles and the jet sprayer has been effective. [Overview] ■ In July 2012, the "100L OK nozzle" was introduced. ■ Approximately one year later, clam catch increased. ■ In August 2014, the "500L" was introduced by the Shinji Lake Fisheries Cooperative. *For more detailed information about this case, please refer to the related links. For further inquiries, feel free to contact us.

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Loop flow microbubble generation device nozzle 200 mL/min *Customizable

A device (nozzle) with a high generation efficiency of milky white nanobubbles even at low water pressure of 0.22 MPa.

This device (nozzle) directly applies the mechanism of a loop flow microbubble generation device (nozzle). It adopts a multi-stage turbulent method, resulting in a high generation efficiency of nanobubbles and a large gas self-absorption capacity. It can be manufactured in sizes ranging from ultra-small to large, contributing to the enhancement of existing equipment capabilities. *For more details, please download the catalog or contact us directly.*

  • nozzle
  • Ozone Generator

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Birth of the Loop Flow Microbubble Generation Nozzle

The birth of the loop flow microbubble generation nozzle is in the "rice field."

The impetus for developing the loop flow microbubble generation nozzle came from the inspiration I got from observing the phenomenon of stealth bubbles.

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From households to agriculture, fisheries, and industry! Introduction of achievements in the use of microbubbles.

There are over 300 inquiries with clear applications for microbubbles! We have achievements in hydroponics, drainage, wastewater treatment, portable toilets, microbubble showers, and more.

<Agriculture> Individuals and agricultural workers are starting to show interest in microbubbles. There have been many inquiries about hydroponics. ● Hydroponics ● Irrigation cultivation ● Liquid fertilizer production ● Improved germination efficiency <Water Treatment> Since 2013, inquiries about this matter have suddenly increased. The power of microbubbles seems to be gaining recognition. ● Wastewater treatment ● Purification of ponds, rivers, and lakes ● Purification of seawater ● Application in portable toilets <Fisheries> Inquiries related to fisheries have also increased. ● Aquaculture of fish and shellfish ● Sterilization and cleaning of oysters ● Live fish tanks ● Fish pens on boats ● Live bait such as sardines ● Transport of juvenile shrimp <Cleaning> Since 2013, inquiries related to cleaning have increased. ● Vegetable cleaning ● Animal cleaning ● Parts cleaning ● Cleaning machines <Household> There are many inquiries. ● Microbubble baths ● Jacuzzis (bubble baths) ● Microbubble showers ● Bubble showers ● Ornamental aquariums ● Coral cultivation ● Ranchu goldfish cultivation ● Arowana cultivation <Others> ● Fuel improvement ● Various oil separation ● Plating-related ● Deodorization ● Reduction of ship resistance ● Medical-related ● Chemical ● Cosmetics *For more details, please request materials or contact us.

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[Example] Custom nozzle with a small flow rate of 500 mL/min

Manufactured a 500mL/min nozzle! Adjusted to increase vacuum level, resulting in an increase in bubble generation.

We would like to introduce a case study using the '500mL/min small custom nozzle' from OK Engineering Co., Ltd. In July 2011, at a water pressure of 0.15MPa, the discharge rate was 410mL/min, and the vacuum level was approximately -0.03MPa under normal settings. A 500mL/min nozzle was manufactured, and adjustments were made to increase the vacuum level at the nozzle agitation section to -0.09MPa when the water pressure was 0.25MPa, resulting in a slight increase in bubble generation. Currently, we are ensuring that the vacuum level of the nozzle exceeds -0.05MPa at a water pressure of 0.15MPa. [Case Summary] <July 2011> ■ A 500mL/min nozzle was manufactured. ■ Since the generation amount is low, it is necessary to increase the vacuum level if required. ■ Adjusted to increase the vacuum level to -0.09MPa at a water pressure of 0.25MPa. ■ There was a slight increase in bubble generation. *For more detailed information about the case, please refer to the related links. For further inquiries, feel free to contact us.

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Generation of microbubbles in anhydrous ethanol.

I filmed how microbubbles are generated.

I recorded a video on how microbubbles are generated in 99.5% anhydrous ethanol. I placed a glass filled with ethanol into an empty tank and generated the bubbles using a nozzle with a flow rate of 420 cc/min. The pressure was about 0.27 MPa. In the first half, the solution was a thick white turbidity, but it became thinner in the second half. It seems that there is a bit of a trick to controlling the generation of microbubbles. Since I was using an electromagnetic pump, I tried to reduce vibrations by using a silicone rubber tube, but it burst during the experiment. The video was recorded after changing to a urethane tube where the pressure was applied. For more details, please contact us or refer to the catalog.

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[Example] Use of fine bubbles in clam farming

Used a total of 6 "100L/min OK nozzles"! It became so clean that there is no need for cleaning.

Here is an example of using fine bubbles in clam farming. Immediately after generating fine bubbles, dirt surfaced to the extent that workers were reluctant to continue. One unit was used in this tank, and now the waste that had accumulated at the bottom has disappeared, making it clean enough that there is no need for cleaning. Additionally, a new tank compatible with fine bubble usage has been created. The ammonia concentration has drastically decreased. Furthermore, there have been reports that scallops and top shells suffer damage and die. Microbubbles may be clogging their respiratory systems. 【Sea Water Analysis Results for Clam Farming Tank *Evaluation: 1 is no problem, 5 is problematic】 <Water Quality Analysis Data: 15-ton Tank> ■Ammonia: 0.0mg/L - Evaluation 1 ■Nitrite: 0.0mg/L - Evaluation 1 ■Nitrate: 50mg/L - Evaluation 4 ■Phosphorus: 2.0mg/L - Evaluation 5 ■pH 7.5 *For more details on the case, please refer to the related links. For further inquiries, feel free to contact us.

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Custom-made ■ Loop Flow Microbubble Generation Nozzle 80, 100L/min

Milky appearance even with low water pressure. Compact design even with a discharge rate of 200-300 L/min.

This nozzle directly applies the mechanism of the loop flow microbubble generation nozzle. It is also equipped with a self-priming inlet for gas-liquid applications.

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