• Sistema del RO del agua salada 9000GPD
  • Sistema del RO del agua salada 9000GPD
  • Sistema del RO del agua salada 9000GPD
  • Sistema del RO del agua salada 9000GPD
Sistema del RO del agua salada 9000GPD

Sistema del RO del agua salada 9000GPD

Datos del producto:

Lugar de origen: China
Nombre de la marca: Fenigal/OEM
Certificación: CE/UL/NSF etc.
Número de modelo: HR-1.5k~9k

Pago y Envío Términos:

Cantidad de orden mínima: 1 sistema
Precio: Negotiable
Detalles de empaquetado: Cajón de madera/cartón o desnudo de la exportación estándar envuelto por la película
Tiempo de entrega: 15~30 días
Condiciones de pago: T/T, Western Union, Paypal etc.
Capacidad de la fuente: sistema 50 por mes
Mejor precio Contacto

Información detallada

Tecnología: ósmosis reversa del agua salobre Diseño: Soporte de la resbalón
Tarifa de recuperación: el 15~65% Alimentación TDS/ppm: <10>
Temporeros de agua.: 5~35˚C PH: 4~9
TSS/mg/L: <5> Índice de la densidad del légamo: <3>
Mg/l libre del cloro: 0 Mg/l del hierro disuelto: <0>
Garantía: 1 año Material: SS304/SS316L, de acero de carbono
Capacidad: 0.5-100m3/h Voltaje: 380V, 415V, 220V, puede ser modificado para requisitos particulares
Uso: Purificación del agua, filtración, agua pharmceutical, potable, comida Tamaño: Depende, 1750*550*1650m m
Tipo: Sistema de ósmosis reversa Función: Agua que purifica, desalación
Tarifa de la desalación: el 99%, 99,7% Control: electrónico, Manual/PLC
Membrana del RO: Hydranautics o DOW, 4040 bomba: CNP/Grundfos, CNP
Resaltar:

Sistema del ro del agua salada 9000GPD

,

sistema del ro del agua salada 10000ppm

,

Circuito de agua salobre 9000GPD

Descripción de producto

Brackish water reverse osmosis system HR1,500GPD~9,000GPD TDS<10,000ppm

HR – Series Reverse Osmosis Systems are designed for durability and superior performance and are well–suited for treating well water and surface water containing dissolved solids up to 10,000 ppm. The HR – Series is specifically designed with a compact frame to fit into small areas such as utility rooms. HR – Series Reverse Osmosis Systems have been engineered for capacities ranging from 1,500 to 9,000 gallons per day. These systems include a computer processor with standard control functions for dual TDS monitoring, low pressure monitoring with alarm, pre–treatment lockout, feed flush and tank level input. These models feature high quality components such as a stainless steel multi–stage high pressure pump, low energy membrane elements, membrane housings rated at 450 psi and a cartridge housing with a 5 – micron sediment pre–filter. Options available for the HR – Series include permeate divert, variable frequency drive, a chemical injection system and a clean–in–place system.

 

Benefits

Fully Equipped and Customizable

Expandable and Skid Mounted

Decreased Size of Dimensional Footprint

Components Easily Accessible

Pre–Plumbed, Wired and Assembled

Individually Tested and Preserved

Low Operation and Maintenance Costs

Easy Maintenance and Servicing

1–Year Limited Warranty

 

Features

Microcomputer Controller

LCD Backlit Display

Pre–Treatment Lockout

Tank Level Input

High Pressure Monitoring with Alarm

Low Pressure Monitoring with Alarm

Dual TDS Monitoring

Feed Flush

Permeate and Concentrate Flow Meters

Pre–Filter 0 – 100 psi Panel Mounted Glycerin Filled Gauges

Glycerin–Filled Pump Discharge and

Concentrate Pressure Gauges

Micron Sediment Pre–Filter

Single O–Ring Heavy–Duty Filter Housing

Filmtec® LCLE Low Energy Membrane Elements

FRP – Series Membrane Housings – 450 psi

Vertical Multi–Stage Stainless Steel Booster Pump

Plastomatic Feed Solenoid Valve

Feed Low Pressure Switch

Pump High Pressure Switch

Clean–in–Place (CIP) Ports

Victaulic® Style Fittings

Permeate Sample Ports

High Pressure Stainless Steel Tubing and Fittings

White Powder Coated Aluminum Frame

 

Options and Upgrades

Variable Frequency Drive (VFD)

n Filmtec® LCHR Membrane Elements

n Pump Pressure Relief Valve

n Blending Valve

n Permeate Divert Valve

n Permeate Flush

Chemical Pump Outlet

pH Controller

ORP Controller

n High Pressure Tank Switch

n Caster Wheels

n Wooden Shipping Crate

 

Array Specifications

Model Vessel Array Vessel Size Vessel Quantity Membrane Size Membrane Quantity
HR – 1140 1 4040 1 4040 1
HR – 2140 1:1 4040 2 4040 2
HR – 3140 1:1:1 4040 3 4040 3
HR – 4140 1:1:1:1 4040 4 4040 4
HR – 5140 1:1:1:1:1 4040 5 4040 5
HR – 6140 1:1:1:1:1:1 4040 6 4040 6

 

Product Specifications

Models HR – 1140 HR – 2140 HR – 3140 HR – 4140 HR – 5140 HR – 6140
Design
Configuration Single Pass Single Pass Single Pass Single Pass Single Pass Single Pass
Feedwater Source† TDS <10,000 ppm TDS <10,000 ppm TDS <10,000 ppm TDS <10,000 ppm TDS <10,000 ppm TDS <10,000 ppm
Standard Recovery Rate % 15 – 25 30 – 40 40 – 50 40 – 55 40 – 60 40 – 65
Rejection and Flow Rates
Nominal Salt Rejection % 99.2 99.2 99.2 99.2 99.2 99.2
Permeate Flow (gpm / lpm) 1.04 / 3.94 2.08 / 7.89 3.13 / 11.83 4.17 / 15.77 5.21 / 19.72 6.25 / 23.66
Minimum Feed Flow (gpm / lpm) 4.04 / 15.30 5.08 / 19.20 6.13 / 23.20 7.17 / 27.10 8.21 / 31.10 9.25 / 35.00
Maximum Feed Flow (gpm / lpm) 14.00 / 53.00 14.00 / 53.00 14.00 / 53.00 14.00 / 53.00 14.00 / 53.00 14.00 / 53.00
Minimum Concentrate Flow (gpm / lpm) 3.00 / 11.36 3.00 / 11.36 3.00 / 11.36 3.00 / 11.36 3.00 / 11.36 3.00 / 11.36
Connections
Feed (in) 1 FNPT 1 FNPT 1 FNPT 1 FNPT 1 FNPT 1 FNPT
Permeate (in) 3/4 FNPT 3/4 FNPT 3/4 FNPT 1 FNPT 1 FNPT 1 FNPT
Concentrate (in) 3/4 FNPT 3/4 FNPT 3/4 FNPT 1 FNPT 1 FNPT 1 FNPT
CIP (in) 3/4 FNPT 3/4 FNPT 3/4 FNPT 3/4 FNPT 3/4 FNPT 3/4 FNPT
Membranes
Membrane Per Vessel 1 1 1 1 1 1
Membrane Quantity 1 2 3 4 5 6
Membrane Size 4040 4040 4040 4040 4040 4040
Vessels
Vessel Array 1 1:1 1:1:1 1:1:1:1 1:1:1:1:1 1:1:1:1:1:1
Vessel Quantity 1 2 3 4 5 6
Pumps
Pump Type Multi–Stage Multi–Stage Multi–Stage Multi–Stage Multi–Stage Multi–Stage
Motor HP 3 3 3 5 5 5
RPM @ 60 Hz (50 Hz) 3450 (2900) 3450 (2900) 3450 (2900) 3450 (2900) 3450 (2900) 3450 (2900)
System Electrical
Standard Voltage + Amp Draw 220V, 60Hz, 1PH, 14.5A** 220V, 60Hz, 1PH, 14.5A** 220V, 60Hz, 1PH, 14.5A** 220V, 60Hz, 3PH, 14.2A** 220V, 60Hz, 3PH, 14.2A** 220V, 60Hz, 3PH, 14.2A**
High Voltage Service + Amp Draw 220V, 50Hz, 1PH, 17.4A**
220V, 50Hz, 3PH, 10.6A**
220V, 60Hz, 3PH, 9A**
460V, 60Hz, 3PH, 5A**
220V, 50Hz, 1PH, 17.4A**
220V, 50Hz, 3PH, 10.6A**
220V, 60Hz, 3PH, 9A**
460V, 60Hz, 3PH, 5A**
220V, 50Hz, 1PH, 17.4A**
220V, 50Hz, 3PH, 10.6A**
220V, 60Hz, 3PH, 9A**
460V, 60Hz, 3PH, 5A**
220V, 50Hz, 3PH, 16.1A**
460V, 60Hz, 3PH, 7A**
220V, 50Hz, 3PH, 16.1A**
460V, 60Hz, 3PH, 7A**
220V, 50Hz, 3PH, 16.1A**
460V, 60Hz, 3PH, 7A**
Systems Dimensions
Approximate Dimensions* L x W x H (in / cm) 27 x 26 x 61 /
69 x 66 x 155
27 x 26 x 61 /
69 x 66 x 155
30 x 26 x 61 /
75 x 66 x 155
32 x 26 x 61 /
80 x 66 x 155
32 x 26 x 61 /
80 x 66 x 155
37 x 26 x 61 /
94 x 66 x 155
Approximate Weight (lbs / kg) 560 / 250 590 / 270 620 / 280 650 / 300 680 / 310 700 / 320

Test Parameters: 10,000 TDS Filtered (5 – Micron), Dechlorinated, Municipal Feedwater, 65 psi / 4.50 bar Feed Pressure, 350 psi / 24.13 bar Operating Pressure,

77ªF / 25ªC, Recovery as stated, 7.0 pH. Data taken after 60 minutes of operation.

* Does not include operating space requirements.

** Varies with motor manufacturer.

 

Operating Limits

 

Maximum Feed Temperature (°F / °C) 85 / 29 Maximum Free Chlorine (ppm) 0
Minimum Feed Temperature (°F / °C) 40 / 4 Maximum TDS (ppm) 10,000
Maximum Ambient Temperature (°F / °C) 120 / 49 Maximum Hardness (gpg) <1
Minimum Ambient Temperature (°F / °C) 40 / 4 Maximum pH (Continuous) 11
Maximum Feed Pressure (psi / bar) 85 / 6 Minimum pH (Continuous) 2
Minimum Feed Pressure (psi / bar) 45 / 3 Maximum pH (Cleaning 30 Minutes) 13
Maximum Operating Pressure (psi / bar) 400 / 28 Minimum pH (Cleaning 30 Minutes) 1
Maximum Feed Silt Density Index (SDI) <3 Maximum Turbidity NTU <1

 

Low temperatures and feedwater quality, such as high TDS levels will significantly affect the systems production capabilities and performance. Computer projections must be run for individual applications which do not meet or exceed minimum and maximum operating limits for such conditions.

System pressure is variable due to water conditions. Permeate flow will increase at a higher temperature and will decrease at a lower temperature.

Product flow and maximum recovery rates are based on feedwater conditions as stated above. Do not exceed recommended permeate flow.

 

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