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OILA-I Oil Emission Spectrometer - Top Choice from China Suppliers and Factory for Accurate Oil Analysis
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OILA-I Oil Emission Spectrometer - Top Choice from China Suppliers and Factory for Accurate Oil Analysis

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    Product Video

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    Overview

    OILA-I Oil Emission Spectrometer is as a proven means of precisely determining elemental composition of wear metals, pollutants and additives in lubricating oil, hydraulic oil, heavy fuels, coolant and electrolyte. It is used as both a quality control tool and machine health monitor.

    Oil Emission Spectrometer, also known as the rotating disc Electrode Atomic emission spectrometer (RDE-AES), is a standard analytical instrument for oil element detection recognized in the global market.

    It is specially used to accurately quantify the composition of trace elements in various industrial oils and liquids.

    OILA-I provides simultaneous multi-element analysis in tens of seconds without using gases and cooling water.

    It is an effective tool for preventive maintenance of equipment.

    OILA-I OIL EMISSION SPECTROMETER
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    Application

    OILA-I OIL EMISSION SPECTROMETER
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    Industrial Oil Monitoring Monitor the wear condition of equipment and the pollution and aging condition of lubricating oil.
    Quality Control of Lubricants, Fuels and Electrolytes Process preparation and monitoring of derivative or pollutant concentration in fuel oil.
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    Cooling System Monitoring Monitor the element concentration in the cooling system antifreeze.
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    Industrial Water Monitoring Measuring power plant cooling water and turbine wash water provides unique system condition insights and ensure compliant disposal or reuse.

    Characteristic

    OILA-I OIL EMISSION SPECTROMETER

    · Fast and Easy to Operate

    - No sample preparation required without the sample dilution or preheating required by other technologies

    - No gases and cooling water required

    - Tens of seconds analysis time

    - Minimal training/background required to operate — No highly skilled or trained users are required

    · Stable and Reliable Structure

    - Classical Pashen-Rungel optical path structure

    - High precision multi-CMOS acquisition system

    - Full spectrum measurement while ensuring good resolution and accuracy

    - Overall structural light chamber and seismic system design to ensure stability

    OILA-I OIL EMISSION SPECTROMETER

    · Human Safety Protection Design

    - Humanized excitation chamber design, more convenient sample replacement.

    - Excitation chamber door safety interlock, electromagnetic shield design, to protect the safety of users.

    · Intelligent Oil Analysis and Diagnosis Platform

    - Integrating oil data trend tracking analysis and oil condition automatic diagnosis function;

    - Multi-peak separation computing ability, a variety of digital filtering algorithm modules and adaptive background function;

    - Real-time calibration, interference correction, element identification and measurement, trend analysis and diagnosis, historical tracing;

    - Analysis software platform specially tailored for oil detection.

    OILA-I OIL EMISSION SPECTROMETER
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    Industry Applications

    Electric Power
    ⚡ Electric Power
    Gear box, bearing, analysis of copper and iron content in insulating oil.
    Petrochemical Industry
    🏗️ Petrochemical Industry
    Equipment asset management, product quality control, cooling water discharge detection, electrolyte and electrolysis process allocation.
    Petrochemical Industry 2
    🔩 Mining / Engineering
    Engine, hydraulic, compressor systems, bearing monitoring, fuel element monitoring.
    Mining Engineering
    ⚓ Ships
    Engine set, generating set, hydraulic system, cranes, etc. Wear warning, seawater pollution monitoring.
    Ships
    🔬 Third Party Laboratory
    Oil sample testing.
    Aviation
    ✈️ Aviation
    Turbine/turbofan engine, hydraulic landing gear system, wear monitoring and warning.
    Aviation 2
    🎓 Schools / Institutes
    Teaching and Research.
    Schools Institutes
    🚂 Locomotive Railway
    Gear box, the transmission system, power systems, etc. Wear monitoring and warning, oil product testing.
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    Conforming Standard

    ASTM D6595 Standard test method for determination of wear metals and contaminants in used lubricating oils or used hydraulic fluids by rotating disc electrode atomic emission spectrometry.
    ASTM D6728 Standard test method for determination of contaminants in gas turbine and diesel engine fuel by RDE-AES.
    NB/SH/T 0865-2013 Determination of wear metals and contaminants in used lubricating oils RDE-AES — Petrochemistry.
    SN/T 1652-2005 Method for determination of contaminants in import and export gas turbine and diesel engine fuel RDE-AES — CIQ.
    HB 2009 4.1-2012 Determination of wear metals in aviation working fluid Part 1: RDE-AES — Aerospace.
    DL/T 1550-2016 Determination of metallic copper and iron content in mineral insulating oils RDE-AES — Power Industry.
    OILA-I OIL EMISSION SPECTROMETER Conforming Standard
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    Specification

    Application
    Sample type Lubricating oil, hydraulic oil, fuel oil, grease, antifreeze, cooling water, electrolyte, etc
    Analytical Element A1, Ba, B, Ca, Cr, Cu, Fe, Pb, Mg, Mn, Mo, Ni, K, Na, Si, Ag, Sn, Ti, V, Zn, etc (extensible)
    Optical System Working Parameter
    Optical Structure Pashen-Runge1 Operating Temperature -10℃~40℃
    Spectral Region 201nm-810nm Storage Temperature -40℃~65℃
    Focal Length 400mm Operating Humidity 0-95%RH, condensation free
    Detector Highly sensitive CMOS array Injection Volume ≤2ml
    Temperature Control Thermally stabilized; 37℃±0.1℃ (adjustable) Injection Mode Rotating disc electrode
    Power Source Consumable
    Voltage Input 220V/50Hz Top Electrode Spectral pure graphite rod electrode
    Power Consumption ≤500W Bottom Electrode Spectral pure graphite disc electrode
    Output type AC arc Sample Cup High temperature oil cup
    Mechanical Specifications Standard Sample
    Dimensions (mm³) 500(W)×720(H)×730(D) Standard Oil 0#, 10#, 50#, 100#, …
    Weight About 82kg Standard Solution 1000ppm, …

    Frequently Asked Questions

    💡What is the OILA-I Oil Emission Spectrometer used for?
    The OILA-I Oil Emission Spectrometer is used to precisely determine the elemental composition of wear metals, pollutants, and additives in lubricating oil, hydraulic oil, heavy fuels, coolant, and electrolyte. It serves both as a quality control tool and a machine health monitor, making it ideal for preventive maintenance of industrial equipment.
    💡Does the OILA-I require gas or cooling water to operate?
    No. One of the key advantages of the OILA-I is that it does not require any gases or cooling water during operation. This significantly simplifies the setup, reduces operating costs, and makes the instrument more accessible in a wider range of environments.
    💡How long does it take to complete an analysis with the OILA-I?
    The OILA-I provides simultaneous multi-element analysis in just tens of seconds. No sample dilution or preheating is required, which makes the analysis process fast, efficient, and easy to perform even with minimal operator training.
    💡Which industries can benefit from using the OILA-I Oil Emission Spectrometer?
    The OILA-I is widely applied across many industries including electric power, petrochemical, mining and engineering, aviation, shipping, locomotive and railway, schools and research institutes, and third-party laboratories. Its versatility makes it a preferred solution for oil analysis in diverse operating environments.
    💡What international standards does the OILA-I comply with?
    The OILA-I conforms to multiple international and industry standards including ASTM D6595, ASTM D6728, NB/SH/T 0865-2013 (Petrochemistry), SN/T 1652-2005 (CIQ), HB 2009 4.1-2012 (Aerospace), and DL/T 1550-2016 (Power Industry), ensuring its reliability and acceptance in regulated applications worldwide.
    💡What are the key technical specifications of the OILA-I?
    The OILA-I features a Pashen-Runge optical structure with a spectral region of 201nm–810nm and a 400mm focal length. It uses a highly sensitive CMOS array detector, operates on 220V/50Hz with power consumption ≤500W, and requires an injection volume of ≤2ml. The instrument dimensions are 500(W)×720(H)×730(D) mm and weighs approximately 82kg.