|
Contact Details Customer service hot:021-60535568 Manager Qian:13951127702 Manager Zhou:13585780954 e-mail:china@i-zjhb.com |
Experimental nano bubble generation device - Shanghai ZhongjingIssuing time:2025-09-13 14:00 The Shanghai Zhongjing experimental nano bubble generation device adopts advanced technology, has multiple advantages, and is widely used in multiple fields. Here is a specific introduction: working principle Using the principle of gas-liquid shear force variation, such as high-speed rotary cutting, the gas and liquid are highly miscible and mixed, and the bubbles in the mixture are chopped to tens of nanometers to several micrometers, forming high-quality micro nano bubbles. Product Features Adjustable parameters: The gas flow rate can be flexibly adjusted, and the bubble size and concentration can be precisely adjusted to meet different experimental needs. Excellent Material: The overcurrent components are made of SUS304 stainless steel/316L stainless steel/PTFE and other materials, which can resist the corrosion of oxidants such as ozone and hydrogen peroxide, and extend the service life of the equipment. Stable operation: After multiple improvements and upgrades, it can achieve long-term continuous stable operation, reduce the probability of failure, and ensure the efficiency of experimental work. Intelligent Control: Equipped with an advanced microprocessor control system, it can accurately set and automatically adjust bubble generation parameters such as gas flow rate, liquid flow rate, and working hours. It supports remote control or timed mode, making it easy to achieve automated control. Multi gas source selection: It can integrate multiple gas sources (air, oxygen, nitrogen, carbon dioxide, hydrogen, etc.) into a micro nano bubble generation device, and can also connect multiple gas sources externally to meet different experimental needs. Product Model Taking the ZJC-NM-200L model as an example, with a flow rate of 16-160L/h (adjustable), it is suitable for scenarios such as scientific research experiments that do not require high water sample volume. The stability and reproducibility of bubble quantity and size distribution are extremely high. Application field Widely used in scientific research experiments, river management, aquaculture, oil-water separation, sewage decolorization, waste gas treatment, agricultural irrigation, oil extraction, precision cleaning, mineral flotation, food processing, raw material synthesis, medicinal material processing, efficient emulsification and other fields. |