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详情描述
Product Introduction
On the basis of traditional distillation equipment, a far-infrared ceramic heating unit replaces high-power electric heaters, integrating a moldable power-adjustable heating system, a circulating condensation system, a terminal control system, and an anti-siphon system. It features dual control with dials and buttons, automatic temperature control, constant temperature heating, sealed recirculating cooling water, automatic control of the distillation endpoint, endpoint alarm, anti-siphon protection, cooling water reverse blow, and air tightness detection of the flow path. Additionally, advanced techniques such as intelligent distillation endpoint control, an integrated cooling water automatic temperature reduction and reflux unit, and professionally designed condenser tubes are employed, achieving simple operation, automatic distillation, aesthetic practicality, and energy-saving goals. It is widely applicable to the distillation of volatile phenols, cyanides, ammonia nitrogen, and other substances in water samples for environmental monitoring, water supply and drainage, and disease prevention and control centers. It is also suitable for all pretreatment projects using distillation methods in sample testing projects such as water quality, soil, and solid waste, including cyanides, volatile phenols, ammonia nitrogen (with nitrogen spheres).
Meets standards
Water Quality - Sulfide Determination - Methylene Blue Spectrophotometric Method HJ1226-2021
Determination of Volatile Phenols in Water Quality - Spectrophotometric Method with 4-Aminophenazone (HJ 503-2009)
Determination of Cyanide in Water Quality - Capacity Method and Spectrophotometric Method (HJ 484—2009)
Water Quality - Determination of Ammonia Nitrogen - Distillation-Nitration Titration Method (HJ 537-2009)
Soil Cyanide and Total Cyanide Determination by Spectrophotometry (HJ 745-2015)
Standard Test Method for Drinking Water Quality (GB 5750-2006)
Sanitation Standard for Drinking Water (GB 5749-2006)

Technical Specifications
1. Heating Method: Utilizes an imported far-infrared ceramic heating furnace for more stable heating power and superior thermal conductivity. Infrared radiation heating (no open flame, waterproof), equipped with an insulating protective cover to prevent heat loss, ensuring more even heating of the samples.
2. Large-screen LCD panels for easier operation.
3. Heating Units: 6, each with individual control.
4. Heating Time: 5-8 min; Distillation Rate: 2-12 ml/min
5. Distillation End Control: Features automatic detection of the distillation end, which automatically stops heating. Utilizes dual control with pressure sensing and time, with a distillation volume range of 1-500ml ±2ml. Upon completion, a light alarm signals the end of distillation. The entire experimental process requires no supervision, ensuring high automation levels.
6. Single Furnace Heating Power: 100W-800W (adjustable per hole)
7. Heating Power: 2400W-4800W (adjustable)
8. Cooling Method: Closed-loop internal recirculation system with one-touch water filling function, automatically stops when the water level reaches the line. A water level indicator is installed in front of the instrument for real-time monitoring of the circulating water tank level. Built-in air-cooling system + built-in compressor refrigeration, dual cooling system, no need for external cooling water source, and the cooling and heating areas are separated for better cooling effect.
9. Anti-siphon: Equipped with a vacuum relief solenoid valve, featuring anti-siphon protection for the evaporated liquid.
10. Receiving Unit: Default configuration is volumetric flask, which can be replaced with other containers as per experimental requirements; trays can be flexibly configured.
11. Time Control: adjustable from 0-200 minutes
12. Distillation Flask Specifications: 500ml, 250ml options and configurations available
13. Rated Voltage/Frequency: 220V/50Hz
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