7 Factors to Consider when Selecting a water pump
In water treatment equipment, the use of water pumps is indispensable. The correct selection of water pumps directly affects the operation of the equipment. Generally speaking, the selection of water pumps should be based on the process flow and water supply and drainage requirements. Now let's talk about the 7 factors that need to be considered when selecting water pumps. The operating environment of the equipment includes the layout of the equipment, terrain conditions, water level conditions, and operating conditions. It is necessary to determine the selection of horizontal, vertical, and other types (pipeline type, submersible type, submerged type, non-clogging type, self-priming type, gear type, etc.) pumps. 2. Flow rate: Flow rate is one of the important performance data for selecting a water pump, as it directly affects the production capacity and conveying capacity of the entire device. Based on the flow rate, determine whether to select a single suction pump or a double suction pump. Depending on the head level, choose between a single-stage pump or a multi-stage pump, a high-speed pump or a low-speed pump (air conditioning pump), and the efficiency of a mul
Details >The causes of reverse osmosis RO membrane fouling and physical and chemical cleaning methods
The reverse osmosis (RO) membrane is the core component of the reverse osmosis pure water production system. During normal operation, the contamination level of the reverse osmosis RO membrane will only become more severe. Therefore, membrane cleaning is essential. Now let's talk about the causes of reverse osmosis (RO) membrane contamination and the physical and chemical cleaning methods. I. Classification and Causes of Reverse Osmosis (RO) Membrane Fouling 1. Classification by fouling Location. According to the location of contamination, membrane fouling can be classified into membrane adhesion layer fouling, membrane pore blockage and membrane flow channel blockage. In the adherent layer, it was found that there were filter cake layers formed by suspended solids, colloidal substances and microorganisms, gel layers adhered after the concentration of dissolved organic matter, and scale layers formed by dissolved inorganic substances. However, the pollutants adhering to the membrane surface in a specific reactor vary with different experimental conditions and water quality. Membrane pore blockage occurs when pollutants adhere within the porous stru
Details >Introduction to commonly used flocculants
In water treatment, we often use flocculants. According to their chemical composition, flocculants can be generally classified into two categories: inorganic flocculants and organic flocculants. Among them, inorganic flocculants include inorganic coagulants and inorganic polymer flocculants. Organic flocculants include synthetic organic polymer flocculants, natural organic polymer flocculants and microbial flocculants. The following is an introduction to the commonly used flocculants. Inorganic flocculants include aluminium sulfate, aluminium chloride, ferric sulfate and ferric chloride. Modified single cationic inorganic flocculants include polysilicate flocculant (PSAA), polyferric silicate sulfate (PFSS), polyphosphorus ferric chloride (PPFC), polyphosphorus aluminum chloride (PPAC), and polyferric silicate (PSF). 2. Modified multi-cationic inorganic flocculants such as polyaluminium ferric sulfate chloride (PAFCS) and Poly
Details >Six major factors affecting the operation of EDI ultra-pure water equipment
EDI ultra-pure water treatment equipment is a pure water manufacturing technology that combines ion exchange technology, ion exchange membrane technology and ion electromigration technology. It features no need for acid or alkali regeneration. The operation is continuous and simple. With advantages such as simple installation requirements, it has gradually been applied in various industrial fields. Now let's talk about the six major factors that affect the operation of EDI ultra-pure water equipment. 1. Feed water Conductivity: When feed water is introduced, if the conductivity of the raw water rises beyond a certain range, the working zone of the membrane block moves downward, causing the regeneration zone to disappear and the working zone to penetrate. Most of the filling resin within the membrane block becomes saturated and ineffective. At the same time, the ion concentration in water increases. Under the condition that the voltage remains constant, the current increases, thereby weakening the process of ionizing water. Correspondingly, the H+ and OH- ions released from water decrease, directly leading to a deterioration in the regeneration of the resin. I
Details >How to operate and maintain the scale inhibitor dosing device?
When industrial circulating cooling systems operate naturally, they may develop a tendency to scale or corrode due to factors such as the hardness, alkalinity, pH value, concentration ratio, air temperature, and ambient temperature of the circulating water, which will have adverse effects on the system and its operation. To prevent scaling or corrosion, corrosion inhibitors or scale inhibitors need to be added to the water. The scale inhibitor dosing device mainly consists of four parts: the liquid medicine dissolution and preparation system, the metering and dosing system, the system and the control system. Solid chemicals are added to the dissolving tank, and then demineralized water or condensate water is added in proportion and stirred to dissolve. They are then added to the boiler drum by the metering and dosing system. The dosing control can be carried out manually or automatically based on the control signal output by the upper-level system for following control. Now let's talk about how to operate and maintain the scale inhibitor dosing device? I. Installation and Commissioning of Equipment 1
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Yuan LaiEDIThe ultra-pure water equipment uses electro-deionization technology.EDIElectrodeionization is a water purification method that combines the dual advantages of electrodialysis and ion exchange. It does not require acid-base chemical regeneration and can continuously and stably prepare high-purity ultrapure water. Under the action of a direct current electric field, ion separation in water is completed. At the same time, water is electrolyzed to generate hydrogen ions and hydroxide ions, achieving automatic regeneration of the resin without the need to stop the machine for manual regeneration. The pre-treatment combined with reverse osmosis can prevent oxidized substances from damaging the resin, ensuring stable effluent quality and widely meeting the high-standard water usage requirements of various industries.
The non-negative pressure water supply equipment can be directly connected to the municipal water supply network, making full use of the residual pressure of the original network for superimposed water supply. Fully enclosed operation does not require the construction of a domestic water tank, eliminating secondary pollution. Intelligent variable frequency voltage stabilization, energy-saving, quiet and easy installation, it is the preferred equipment for secondary water supply in high-rise residential buildings and commercial buildings.
Constant pressure water supply equipment is widely used in central air conditioning, floor heating, industrial closed-loop water circulation, and boiler systems. It integrates automatic pressure stabilization, automatic water replenishment, automatic exhaust, pressure relief and buffering functions. It stabilizes the pressure in the pipeline network, eliminates abnormal sounds caused by air blockage, and prevents damage from negative pressure and water shortage in the pipeline. It is an essential supporting equipment for HVAC and circulating water systems.
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