Fully Automated Silicate Analyzer

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未标题-1_0000_全自动硅酸盐分析仪2
未标题-1_0001_全自动硅酸盐分析仪
未标题-1_0000_全自动硅酸盐分析仪2
未标题-1_0001_全自动硅酸盐分析仪

Fully Automated Water Quality Analyzer

Fully Automated Silicate Analyzer

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Product Description:

Based on the flow injection principle and utilizing unsteady-state FIA theory, this system comprises five main components: a fluid drive unit, injection valve, reactor, detector, and recorder. It integrates online pretreatment modules such as online distillation, online digestion, online extraction, online reduction, and online condensation. Flow paths are designed according to different test parameters to enable rapid analysis and testing of large numbers of samples for various parameters.

It can be used to determine volatile phenols, cyanides, sulfides, anionic surfactants, total phosphorus, total nitrogen, ammonia nitrogen, permanganate index, and hexavalent chromium in surface water, groundwater, drinking water, and environmental water.


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Product Details

Product Features

Convenience

Equipped with a 7-inch LCD screen displaying instrument status, operation instructions, maintenance procedures, etc. Individual control of each component is possible, with automatic alarms for abnormalities. Fully automatic Chinese multi-channel data processing software system for intelligent control. Compact instrument size (450mm*250mm*450mm), lightweight, and low power consumption.

Flexibility

Each channel can operate independently or simultaneously. Flexible configuration based on customer needs; one autosampler can be paired with one flow injection analyzer, or one autosampler with multiple flow injection analyzers; can be powered by 24V DC or 220V AC.

Stability

The peristaltic pump features a one-piece compression design, eliminating the need for pressure adjustment; pump speed is computer-set. The photometer uses LEDs as the detection light source, offering short stabilization time, long lifespan, and low power consumption. The main unit's flow path is horizontally placed, avoiding leakage due to tilting and the effects of gravity on the flow path, increasing instrument stability.

High Sample Processing Capacity

Features 1-20x online dilution capability; optional syringe pump allows for even higher dilution ratios. Includes online distillation and digestion functions for sample pretreatment, automatically configuring curves and reducing manual labor. Optional 51-position, 120-position, and 240-position autosamplers meet the needs of large-volume sample testing in laboratories, offering high detection accuracy and intelligent detection.

Software System

Full Chinese operating system with a clean interface and a new user experience, eliminating learning barriers.

Individual scaling of the horizontal and vertical axes of the spectrum, and proportional scaling of the entire spectrum for precise peak shape viewing. Automatic baseline calibration before peak emergence eliminates baseline drift interference. Offline data processing workstation capable of identifying and processing abnormal peak shapes without affecting data.


Application Areas

Environmental Industry Standards:

"Determination of Ammonia Nitrogen in Water - Flow Injection Method - Salicylic Acid Spectrophotometry" (HJ666-2013)

"Determination of Total Nitrogen in Water - Flow Injection Method - Naphthylethylenediamine Hydrochloride Spectrophotometry" (HJ668-2013)

"Determination of Phosphate and Total Phosphorus in Water - Flow Injection Method - Ammonium Molybdate Spectrophotometry" (HJ671-2013)

"Determination of Cyanide in Water - Flow Injection Method - Spectrophotometry" (HJ823-2017)

"Determination of Sulfide in Water - Flow Injection Method - Methylene Blue Spectrophotometry" (HJ824-2017)

"Determination of Volatile Phenols in Water - Flow Injection Method - 4-Aminoantipyrine Spectrophotometry" (HJ825-2017)

"Determination of Anionic Surfactants in Water - Flow Injection Method - Methylene Blue Spectrophotometry" (HJ826-2017) Determination of Hexavalent Chromium in Water: Flow Injection-Diphenylcarbazide Spectrophotometric Method** (HJ908-2017)

National Food Safety Standards:

Test Methods for Cyanide in Drinking Natural Mineral Water: Flow Injection Online Distillation Method** (GB8538-201645.3)

Test Methods for Volatile Phenolic Compounds in Drinking Natural Mineral Water: Flow Injection Online Distillation Method (GB8538-201646.2)

Application Areas: Laboratory testing or on-site emergency monitoring of drinking water, surface water, groundwater, sewage, seawater, food and beverages, etc. Application scenarios include, but are not limited to, laboratories, field applications, and vehicles/ships.


Specification

Technical Parameters

Silicate Technical Parameters
Linear RangeTrace silicon0.008 mg/L~0.2 mg/L; Major silicon0.1 mg/L~5 mg/L
Detection Limit (DL)≤0.002 mg/L
Repeatability (RSD)≤1%
Sample Analysis Frequency20 samples/hour
Spiked Recovery90%~110%
Dimensions (L*W*H)550mm*250mm*450mm;
Weight14~18kg
Operating Temperature10℃~40℃;
Operating Humidity25%RH~85%RH;
Storage Temperature(0~70) ℃

Instrument room door width ≥100cm to allow normal entry of the instrument.

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