Superoxide micro nano bubbles have small particle size and large quantity, and have a large contact area with hydrogen sulfide waste gas, which can react quickly. Like countless small brushes, it cleans hydrogen sulfide thoroughly, with much higher processing efficiency than traditional methods, and can increase the removal rate of hydrogen sulfide to over 95%.
Integrating oxygen into nutrient solution to form micro nano bubbles and enriched water, achieving efficient oxygenation. Micro nano bubbles rise slowly, stay for a long time, and have good slow-release properties, continuously delivering oxygen to the roots and allowing plants to grow vigorously. On the other hand, generating micro nano bubble ozone water, utilizing strong oxidative disinfection of ozone, combined with ultraviolet disinfection technology, achieves a synergistic disinfection effect of 1+1>2, comprehensively protecting the hydroponic environment.
Ozone dissolves at the gas-liquid interface of micro nano bubbles and in water bodies, and micro nano bubbles serve as carriers to transport ozone to various corners. When micro nano bubbles rupture, high concentrations of ozone are released, further enhancing the oxidation and sterilization effects. This synergistic effect not only leverages the strong oxidizing properties of ozone, but also utilizes the unique physical properties of micro nano bubbles to achieve comprehensive cleaning, odor removal, sterilization, and preservation of objects.
After ozone decomposition, hydroxyl radicals (· OH) are generated, which have stronger oxidation ability and can indiscriminately attack microbial proteins, enzyme systems, and genetic material (such as DNA/RNA), blocking their metabolism and reproductive functions. Broad spectrum killing: Effective against bacteria (including spores), viruses, fungi, protozoa, etc., especially against chlorine tolerant pathogens (such as Cryptosporidium).
Application analysis of "new power" micro nano bubbles in oilfield injection wells for oil recovery
Aerobic disinfection micro nano bubble technology, micro nano bubble generation device, micro nano bubble machine
Micro nano bubble technology, micro nano bubble generator, waste gas treatment micro nano bubble generator
A solution using superoxide micro nano bubble purification technology is adopted to address the foul odor emissions from animal farming. This technology utilizes the powerful oxidation effect of micro nano scale superoxide bubbles to degrade organic pollutants in exhaust gas. These bubbles contain multiple oxygen atoms, which can quickly dissolve in water and release highly reactive oxygen species upon rupture, including oxygen ions and hydroxyl radicals. These substances can rapidly oxidize and decompose pollutants in exhaust gas.
Corrosion resistant micro nano bubble generator is a patented technology used in chemical laboratories for anti-corrosion, strong acid and alkali resistance. The micro nano bubble generator is designed specifically for chemical laboratories and has the characteristics of anti-corrosion, strong acid and alkali resistance. This device is capable of stably generating micro nano scale bubbles, providing efficient gas and liquid mass transfer processes for chemical experiments, while ensuring long-term stable operation in corrosive environments. Can be used for highly corrosive liquids containing solutions of different concentrations such as hydrochloric acid, sulfuric acid, sodium hydroxide, seawater, sodium hypochlorite, and other strong acids and bases.
Micro nano bubble technology is a relatively new technique that involves generating bubbles with diameters ranging from micrometers (μ m) to nanometers (nm). These tiny bubbles have a very high surface area to volume ratio, which makes them exhibit unique physical and chemical properties in many applications. In the field of oil extraction, micro nano bubble technology has been researched and developed to improve Enhanced Oil Recovery (EOR).
Superoxide micro nano bubbles have small particle size and large quantity, and have a large contact area with hydrogen sulfide waste gas, which can react quickly. Like countless small brushes, it cleans hydrogen sulfide thoroughly, with much higher processing efficiency than traditional methods, and can increase the removal rate of hydrogen sulfide to over 95%.
Integrating oxygen into nutrient solution to form micro nano bubbles and enriched water, achieving efficient oxygenation. Micro nano bubbles rise slowly, stay for a long time, and have good slow-release properties, continuously delivering oxygen to the roots and allowing plants to grow vigorously. On the other hand, generating micro nano bubble ozone water, utilizing strong oxidative disinfection of ozone, combined with ultraviolet disinfection technology, achieves a synergistic disinfection effect of 1+1>2, comprehensively protecting the hydroponic environment.
Ozone dissolves at the gas-liquid interface of micro nano bubbles and in water bodies, and micro nano bubbles serve as carriers to transport ozone to various corners. When micro nano bubbles rupture, high concentrations of ozone are released, further enhancing the oxidation and sterilization effects. This synergistic effect not only leverages the strong oxidizing properties of ozone, but also utilizes the unique physical properties of micro nano bubbles to achieve comprehensive cleaning, odor removal, sterilization, and preservation of objects.
After ozone decomposition, hydroxyl radicals (· OH) are generated, which have stronger oxidation ability and can indiscriminately attack microbial proteins, enzyme systems, and genetic material (such as DNA/RNA), blocking their metabolism and reproductive functions. Broad spectrum killing: Effective against bacteria (including spores), viruses, fungi, protozoa, etc., especially against chlorine tolerant pathogens (such as Cryptosporidium).
Application analysis of "new power" micro nano bubbles in oilfield injection wells for oil recovery
Aerobic disinfection micro nano bubble technology, micro nano bubble generation device, micro nano bubble machine
Micro nano bubble technology, micro nano bubble generator, waste gas treatment micro nano bubble generator
A solution using superoxide micro nano bubble purification technology is adopted to address the foul odor emissions from animal farming. This technology utilizes the powerful oxidation effect of micro nano scale superoxide bubbles to degrade organic pollutants in exhaust gas. These bubbles contain multiple oxygen atoms, which can quickly dissolve in water and release highly reactive oxygen species upon rupture, including oxygen ions and hydroxyl radicals. These substances can rapidly oxidize and decompose pollutants in exhaust gas.
Corrosion resistant micro nano bubble generator is a patented technology used in chemical laboratories for anti-corrosion, strong acid and alkali resistance. The micro nano bubble generator is designed specifically for chemical laboratories and has the characteristics of anti-corrosion, strong acid and alkali resistance. This device is capable of stably generating micro nano scale bubbles, providing efficient gas and liquid mass transfer processes for chemical experiments, while ensuring long-term stable operation in corrosive environments. Can be used for highly corrosive liquids containing solutions of different concentrations such as hydrochloric acid, sulfuric acid, sodium hydroxide, seawater, sodium hypochlorite, and other strong acids and bases.
Micro nano bubble technology is a relatively new technique that involves generating bubbles with diameters ranging from micrometers (μ m) to nanometers (nm). These tiny bubbles have a very high surface area to volume ratio, which makes them exhibit unique physical and chemical properties in many applications. In the field of oil extraction, micro nano bubble technology has been researched and developed to improve Enhanced Oil Recovery (EOR).