Pompe de transfert de produits chimiques corrosifs de la série CYB-ZKJ

The CYB-ZKJ Series Corrosive Chemical Transfer Pump utilizes FEP lining material, enabling the transport of corrosive media with varying concentrations within a temperature range of -20 °C to 120 °C. PFA lining material can be selected for high-temperature conditions.

This pump has a wide range of applications, such as conveying corrosive liquids like acids and alkalis, as well as liquids containing up to 20% flexible solid particles; various corrosive mineral slurries in the smelting industry; various dilute acids in the sulfuric acid and phosphate fertilizer industries; and various wastewater in the environmental protection industry.

Plage de débit :

3m³/h~2600m³/h

Gamme de têtes :

5m~100m

Puissance du moteur :

0,75kw~300kw

Vitesse :

968-3450 r/min

Gamme de température moyenne :

-80℃~ 120℃

Matériaux personnalisables :

FEP

Aperçu du produit

The CYB-ZKJ series is a high-performance, highly corrosion-resistant centrifugal pump manufactured by China Changyu Pump. Constructed with imported FEP fluoroplastic material, its wetted components are optimized for highly corrosive fluids and equipped with Changyu’s independently developed new dual-end mechanical seal, ensuring leak-free operation over extended periods. This chemical pump exhibits outstanding resistance to acids, alkalis, and abrasion, making it suitable for conveying sulfuric acid, hydrochloric acid, nitric acid, and slurries containing fine particles.

Parts of the Chemical Transfer Pump

The main components of this chemical transfer pump include the pump casing, shaft sleeve, seal chamber, bearing assembly, pump shaft, and impeller. Constructed from corrosion-resistant FEP and equipped with Changyu’s independently developed new double-ended mechanical seal, it effectively prevents particle ingress and various leakage scenarios, meeting global environmental requirements at all times. This slurry pump is specifically designed for handling strong acids, strong alkalis, and corrosive slurries.

Analyse de la structure des pompes de transfert de produits chimiques
Analyse de la structure des pompes de transfert de produits chimiques

Salon des pièces détachées

Schéma des composants

Impeller Material Comparison

FEP: Its primary advantages lie in exceptional temperature resistance, chemical corrosion resistance, and superior mechanical properties. These characteristics enable stable operation in extreme environments, extending product lifespan.

PFA: Key benefits include:

  1. Wide long-term operating temperature range: -80°C to 260°C.
  2. Outstanding chemical corrosion resistance against all chemicals.
  3. Lowest coefficient of friction, with electrical insulation unaffected by temperature.

Spécifications

Vous trouverez ci-dessous les spécifications standard de nos produits. Nous proposons également une fabrication sur mesure pour créer des pompes de transfert de produits chimiques adaptées à vos besoins.

Contactez-nous dès aujourd'hui pour personnaliser votre solution de pompe chimique industrielle.

Signification de nos numéros de modèles

Signification du modèle
ModèleDébit
Tête
m
Vitesse
r/min
EfficacitéPuissance lorsque la gravité spécifique est égale à 1Diamètre de la roue
mm
32CYB5~1010~30290017~28%1,1~3KW100~165
40CYB10~1510~30290025~35%2,2~4KW140~165
50CYB10~2015~40290020~35%4~7.5KW140~190
65CYB10~3010~601450~290020~35%1,5~15KW155~220
80CYB40~6010~801450~290022~50%5,5~30KW145~400
100CYB50~11010~801450~290020~50%15~55KW160~400
125CYB100~1406~801450~290020~48%11~75KW180~268
150CYB150~28020~80145040~52%22~90KW260~380
200CYB200~4506~50980~145025~58%22~90KW325~380
250CYB300~6506~60750~145028~65%11~160KW280~420

Voici nos modèles pour votre sélection


Vidéos Show

Watch the video to learn about chemical transfer pumps and see examples of their applications.

Pourquoi le choisir ?

Advantages of Chemical Transfer Pump

Conditions de travail

Pour connaître le débit, la puissance ou d'autres paramètres spécifiques à certains modèles, contactez le fabricant pour obtenir une solution personnalisée adaptée à vos conditions d'utilisation.

ObjetGamme standard / ExigencePersonnalisation spéciale / Notes
Température-20℃ ~ 120℃
Concentration moyenne≤80% Acide sulfurique, ≤50% Acide nitrique, tout acide chlorhydrique/alcaliCertains solvants organiques et agents réducteurs
Tolérance à l'égard des particulesBoues avec particules molles (roue semi-ouverte)La dureté des particules nécessite une validation personnalisée
Débit / Hauteur de chuteDébit : 5~2600 m³/h, hauteur de chute : ≤80 mDes paramètres plus importants nécessitent une conception non standard
Exigences opérationnelles1. Ne pas utiliser la vanne d'entrée pour réguler le débit (pour éviter la cavitation).
2. Séquence d'arrêt : Fermer la vanne de sortie → Couper l'alimentation → Fermer l'eau de refroidissement → Fermer la vanne d'entrée

Series Corrosive Chemical Transfer Pump Selection Considerations

  • Détails moyens : Fournir la teneur en particules, la dureté et la composition chimique en fonction du type de joint et de la structure de la roue (ouverte/fermée).
  • Exigences antidéflagrantes : Moteurs antidéflagrants YA ou moteurs antidéflagrants YB disponibles en option.
  • Exigences en matière d'entretien : Rincer soigneusement les passages d'écoulement lors des arrêts de longue durée. Vidanger tout le liquide dans les environnements à basse température pour éviter les dommages causés par le gel.

Application

The Chemical Transfer Pump is designed for extreme corrosion environments and is widely used in:

Industries pharmaceutiques et de chimie fine

Industrie chimique

Transfert d'acide et de soude : acide sulfurique, acide chlorhydrique, acide nitrique, eau régale, soude caustique.
Solvants organiques corrosifs : le benzène, les alcools, les esters et les boues liquides.

énergie et industrie chimique

Environnement et énergie

Désulfuration des gaz de combustion et dénitrification : boues humides de DGC, eaux usées contenant du soufre.
Traitement des eaux usées industrielles : galvanoplastie, cuir, produits pharmaceutiques et autres eaux usées hautement corrosives.

Industrie minière

Métallurgie et mines

Fusion par voie humide : les boues de plomb, de zinc et de cuivre, et les électrolytes.
Industrie du charbon : les liquides corrosifs et les boues de charbon dans les processus chimiques du charbon.

eaux usées

Autres industries

Convient pour le transfert de boues hygiéniques ou chimiques dans les industries alimentaires, pharmaceutiques, papetières et tinctoriales.

China Chemical Transfer Pump Manufacturer & Factory

Changyu is a professional manufacturer and factory specializing in chemical transfer pumps, equipped with advanced production facilities and a dedicated technical team. Our company holds ISO 9001 international quality management system certification, with products compliant with CE, ATEX, EAC, and API standards, and has secured 25 invention patents.

Salon de l'usine

FAQ

Q1: What type of pump is used for chemical transfer?

A1 : Pumps used for chemical transfer are typically corrosion-resistant, such as magnetic drive pumps, centrifugal pumps, or self-priming pumps. These pumps are capable of handling corrosive liquids and are commonly used in industries like petrochemicals and pharmaceuticals. When selecting a pump, it’s important to consider the characteristics of the medium, temperature, and flow rate to ensure optimal performance and longevity.

Q3: When to use a transfer pump?

A3 : A transfer pump should be used when you need to move liquids from one location to another quickly and efficiently. Common scenarios include:

Emptying or filling tanks and containers: When you need to transfer large volumes of liquid, such as in fuel storage or water tanks.

Transferring chemicals or corrosive liquids: In industrial settings, when moving chemicals between storage areas or process equipment.

Emergency situations: For draining flooded areas or removing unwanted water or liquids quickly.

Agricultural applications: To distribute water, pesticides, or fertilizers across fields.

Transfer pumps are ideal when precise control and speed in liquid movement are required.

Q5: What type of pump is used for most chemical pumps?

A5 : Most chemical pumps typically use centrifugal pumps or diaphragm pumps.

Pompes centrifuges : Efficiently handle large volumes of non-viscous and non-abrasive chemicals.

Diaphragm Pumps: Durable and capable of handling highly viscous, abrasive, or corrosive liquids, making them suitable for dosing and metering applications.

Both types are widely used in industries like petrochemicals, pharmaceuticals, and water treatment.

Q2: What is the purpose of a transfer pump?

A2 : The purpose of a transfer pump is to move fluids from one location to another. These pumps are commonly used to transfer liquids such as water, fuel, chemicals, or other fluids between containers, tanks, or systems. Transfer pumps are essential in various industries, including agriculture, manufacturing, and chemical processing, for efficient fluid handling and transport.

Q4 : Quelles pompes produisez-vous principalement ?

A4 : The duration for which you can run a transfer pump depends on several factors, including the pump type, its design, and the operating conditions. Generally:

Continuous Duty Pumps: Some transfer pumps are designed for continuous operation and can run for extended periods, even 24/7, as long as they are within their rated capacity and properly maintained.

Intermittent Duty Pumps: Other pumps are designed for short, intermittent use and should only be run for limited periods (e.g., 15-30 minutes at a time) to avoid overheating or damage.

Always consult the manufacturer’s specifications and guidelines to determine the safe operating time for your specific transfer pump model. Proper cooling and maintenance can extend the pump’s runtime and lifespan.

Q6: What types of liquids can the chemical transfer pump handle?


A6 : The CYB-ZKJ Chemical Transfer Pump is designed for transferring highly corrosive liquids and slurries, including sulfuric acid, hydrochloric acid, nitric acid, caustic soda, organic solvents, and fine-particle slurries in chemical, metallurgical, and wastewater treatment applications.

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