Máy Đo Độ Đục Và Clo Hanna HI83414-02
Model: HI83414-02
Hãng sản xuất: HANNA
Xuất xứ: RUMANI
Bảo hành: 12 tháng
Thông số kỹ thuật:
ĐỘ ĐỤC
Thang đo chế độ không tỷ lệ: 0.00 to 9.99; 10.0 to 40.0 NTU; 0.0 to 99.9; 100 to 268 Nephelos; 0.00 to 9.80 EBC
Độ phân giải chế độ không tỷ lệ: 0.01; 0.1 NTU; 0.1; 1 Nephelos; 0.01 EBC
Thang đo tỷ lệ chế độ: 0.00 to 9.99; 10.0 to 99.9; 100 to 4000 NTU; 0.0 to 99.9; 100 to 26800 Nephelos; 0.00 to 9.99; 10.0 to 99.9; 100 to 980 EBC
Độ phân giải tỷ lệ chế độ: 0.01; 0.1; 1 NTU; 0.1; 1 Nephelos; 0.01; 0.1, 1 EBC
Độ chính xác: ±2% giá trị cộng 0.02 NTU (0.15 Nephelos; 0.01 EBC), ±5% giá trị trên 1000 NTU (6700 Nephelos; 245 EBC)
Lựa chọn thang đo: Tự động
Độ lặp: ±1% giá trị hoặc 0.02 NTU (0.15 Nephelos; 0.01 EBC) cho giá trị lớn hơn
Ánh sáng lạc: < 0.02 NTU (0.15 Nephelos; 0.01 EBC)
Đầu dò ánh sáng: tế bào quang điện silicon
Phương pháp: nephelometric (90°) hoặc nephelometric theo tỷ lệ (90° & 180°), phù hợp của USEPA 180.1 và Chuẩn 2130 B
Chế độ đo: bình thường, trung bình, liên tục
Chuẩn độ đục: < 0.1, 15, 100, 750 và 2000 NTU
Hiệu chuẩn: 2, 3, 4 hoặc 5 điểm
CLO
Thang đo clo dư và clo tổng: 0.00 to 5.00 mg/L (ppm)
Độ phân giải clo dư và clo tổng: 0.01 mg/L (ppm) từ 0.00 to 3.50 mg/L (ppm); 0.10 trên 3.50 mg/L (ppm)
Độ chính xác clo dư và clo tổng: ±0.02 mg/L @ 1.00 mg/L
Đầu dò ánh sáng: tế bào quang điện silicon @525nm
Phương pháp: USEPA 330.5 và Chuẩn 4500-Cl G.
Chuẩn độ đục: 1.00 mg/L
Hiệu chuẩn: 1 điểm
THÔNG SỐ CHUNG Máy Đo Độ Đục Và Clo Hanna HI83414-02
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Nguồn sáng: Đèn tungsten filament / hơn 100.000 giá trị
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Màn hình: LCD đồ họa 40 x 70 mm (64 x 128 pixels) có đèn nền
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Bộ nhớ: 200 bản ghi
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Kết nối: USB
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Môi trường: 0 to 50°C (32 to 122°F), RH max 95% không ngưng tụ
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Nguồn: 115/130 VAC; 50/60 Hz
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Kích thước; 230 x 200 x 145 mm (9.0 x 7.9 x 5.7”)
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Khối lượng: 2.5 kg (88 oz.)
Máy Đo Độ Đục Và Clo Hanna HI83414-02 Cung cấp gồm: HI83414 được cung cấp với cuvet mẫu và nắp (5), bộ cuvet hiệu chuẩn máy HI83414-11, dầu silicon, khăn lau cuvet, kéo, dây điện, hướng dẫn.
Details
The HI83414 is a multi parameter benchtop meter that measures the most important parameters in drinking water: turbidity and chlorine. The instrument is based on a state-of-the-art optical system which provides accurate results by minimizing stray light and color interferences. Periodic calibration with the supplied standards compensates for any variations in intensity of the tungsten lamp. The colorimeter portion of the meter uses a 525 nm narrow band interference filter for maintaining the proper wavelength in the measurement of free and total chlorine. All measurements are performed with 25 mm round cuvettes composed of special optical glass to ensure maximum repeatability of turbidity and chlorine measurements.
Features at-a-glance:
Four Measurement Modes - The HI83414 features four measurement modes including ratio or non-ratio mode for turbidity, free chlorine, and total chlorine. In ratio mode the turbidity is 0.00 to 4000 NTU (Nephelometric Turbidity Units) while in the non-ratio mode the range is 0.00 to 40.0 NTU. The range for free or total chlorine measurements is 0.00 to 5.00 mg/L (ppm) range.
Multiple Turbidity Units of Measure - Turbidity can be displayed as nephelometric turbidity units (NTU), European Brewing Convention units (EBC) or Nephelos units.
EPA Compliant - The HI83414 meets and exceeds the requirements of EPA and Standard Methods both for turbidity and colorimetric chlorine measurements. When the meter is in EPA mode all turbidity readings are rounded accordingly to meet reporting requirements.
Calibration – A two, three, four, or five-point turbidity calibration can be performed by using the supplied (<0.1, 15, 100, 750, and 2000 NTU) standards. Calibration points can be modified if user-prepared standards are used. For free and total chlorine, the CAL Check™ standard can be used for calibration to 1.00 mg/L (ppm).
AMCO AEPA-1 Primary Turbidity Standard - The AMCO AEPA-1 supplied standards are recognized as a primary standard by the USEPA. These non-toxic standards are made of styrene divinylbenzene polymer spheres that are uniform in size and density. The standards are stable and reusable with a long shelf life.
CAL Check ™ – With the powerful CAL Check™ function, reliable performance of the chlorine colorimeter can be validated at any moment by using the exclusive HANNA ready-made, NIST traceable standards. All standards are supplied with a Certificate of Analysis (COA) for traceability.
GLP Data – The HI83414 features complete GLP (Good Laboratory Practice) functions that allow traceability of the calibration conditions. Data includes calibration points, date, and time.
Data Logging – Up to 200 measurements can be stored in the internal memory and recalled at any time.
Data Transfer – For further storage or analysis options, logged data can be downloaded to a Windows compatible PC using the USB port and the HI92000 software.
Tutorial Mode - The unique tutorial mode provides additional information to help the user during measurements. When enabled, the instrument displays explanations and a confirmation button when a preparation or other operation has to be performed.
Contextual Help – Contextual help is always available through a dedicated HELP button. Clear tutorial messages and directions are available on-screen to quickly and easily guide users through setup and calibration. The help information displayed is relative to the setting/option being viewed.
Backlit Graphic LCD Display – A graphic LCD display provides an easy to understand, user-friendly interface. All messages are in plain text making them easy to read.
Turbidity is one of the most important parameters used to determine the quality of drinking water. Once considered as a mostly aesthetic characteristic of drinking water, significant evidence exists that controlling turbidity is a competent safeguard against pathogens. In natural water, turbidity measurements are taken to gauge general water quality and its compatibility in applications involving aquatic organisms. The monitoring and treatment or wastewater was once solely based on the control of turbidity. Currently, the measurement of turbidity at the end of the wastewater treatment process is necessary to verify that the values are within regulatory standards.
Turbidity of water is an optical property that causes light to be scattered and absorbed, rather than transmitted. The scattering of light that passes through a liquid is primarily caused by the suspended solids present. The higher the turbidity, the greater the amount of scattered light. Even a very pure liquid will scatter light to a certain degree, as no solution will have zero turbidity.
Drinking water treatment plants that obtain water from surface water are required by the EPA to monitor and report the turbidity. Surface water sources include lakes and rivers. The requirements of the nephelometer and reporting measurements according to EPA Method 180.1 are:
The applicable range is 0-40 nephelometric turbidity units (NTU)
Light source: Tungsten lamp operated at a color temperature between 2200-3000°K.
Distance traversed by incident light and scattered light within the sample tube: Total not to exceed 10 cm.
Detector: Centered at 90° to the incident light path and not to exceed ±30° from 90°. The detector, and filter system if used, shall have a spectral peak response between 400 nm and 600 nm
The sensitivity of the instrument should permit detection of a turbidity difference of 0.02 NTU or less in waters having turbidities less than 1 unit.
Report results as follows:
NTU reading | Rounded to nearest |
0.0 - 1.0 | 0.05 |
1 - 10 | 0.1 |
10 - 40 | 1 |
40 - 100 | 5 |
100 - 400 | 10 |
400 - 1000 | 50 |
>1000 | 100 |
The HI83414 meets and exceeds the meter criteria specied by the EPA Method 180.1 and Standard Methods for the Examination of Water and Wastewater 2130 B.
Principal of Operation
The light beam that passes through the sample is scattered in all directions. The intensity and pattern of the scattered light is affected by many variables, such as wavelength of the incident light, particle size and shape, refractive index, and color. The optical system of the HI83414 includes a tungsten filament lamp, a scattered light detector (90°) and a transmitted light detector (180°).
In the ratio turbidimeter range, the microprocessor of the instrument calculates the NTU value from the signals that reach the two detectors by using an effective algorithm that corrects and compensates for interferences of color. The optical system and measuring technique also compensate for fluctuations in lamp intensity, minimizing the need for frequent calibration.
In the non-ratio turbidimeter range, the NTU value is calculated from the signal on the scattered light detector (90°). This method offers a high linearity on the low range but is more sensitive to lamp intensity fluctuations. The lower detection limit of a turbidimeter is determined by stray light that is detected by the sensors but not caused by light scattering from suspended particles. The optical system of the HI83414 is designed to have very low stray light, providing highly accurate results for low turbidity samples.
The HI88703-11 AMCO AEPA-1 standards ensure that measurements are traceable to primary reference materials. These standards are used for calibration and performance verification of the HI83414 turbidity meter.
Supplied with Certificate of AnalysisCAL Check™ standards with certificate
The HI93414-11 free and total chlorine CAL Check™standards are used for calibration and performance verification of the HI83414.
Supplied with Certificate of AnalysisTurbidity Specifications
Non-Ratio Mode Range | 0.00 to 9.99; 10.0 to 40.0 NTU; 0.0 to 99.9; 100 to 268 Nephelos; 0.00 to 9.80 EBC |
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Non-Ratio Mode Resolution | 0.01; 0.1 NTU; 0.1; 1 Nephelos; 0.01 EBC |
Ratio Mode Range | 0.00 to 9.99; 10.0 to 99.9; 100 to 4000 NTU; 0.0 to 99.9; 100 to 26800 Nephelos; 0.00 to 9.99; 10.0 to 99.9; 100 to 980 EBC |
Ratio Mode Resolution | 0.01; 0.1; 1 NTU; 0.1; 1 Nephelos; 0.01; 0.1, 1 EBC |
Range Selection | automatic |
Accuracy (@25ºC/77ºF) | ±2% of reading plus 0.02 NTU (0.15 Nephelos; 0.01 EBC); ±5% of reading above 1000 NTU (6700 Nephelos; 245 EBC) |
Repeatability | ±1% of reading or 0.02 NTU (0.15 Nephelos; 0.01 EBC) whichever is greater |
Stray Light | < 0.02 NTU (0.15 Nephelos; 0.01 EBC) |
Light Detector | silicon photocell |
Method | nephelometric method (90°) or ratio nephelometric method (90° & 180°), adaptation of the USEPA Method 180.1 and Standard Method 2130 B |
Measuring Mode | normal, average, continuous |
Turbidity Standards | < 0.1, 15, 100, 750 and 2000 NTU |
Calibration | two, three, four, or five-point calibration |
Free and Total Chlorine Specifications
Free and Total Chlorine Range | 0.00 to 5.00 mg/L (ppm) |
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Free and Total Chlorine Resolution | 0.01 mg/L (ppm) from 0.00 to 3.50 mg/L (ppm); 0.10 above 3.50 mg/L (ppm) |
Free and Total Chlorine Accuracy | ±0.02 mg/L @ 1.00 mg/L |
Light Detector | silicon photocell with 525 nm narrow band interference filter |
Method | adaptation of the USEPA Method 330.5 and Standard Method 4500-Cl G. |
Standards | 1.00 mg/L (ppm) free chlorine; 1.00 mg/L (ppm) total chlorine |
Calibration | one-point calibration |
Battery Type / Life | Auto-shut off after 15 min |
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General Specifications
Light Source | tungsten filament lamp / greater than 100,000 readings |
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Display | 40 x 70 mm graphic LCD (64 x 128 pixels) with backlight |
Log Memory | 200 records |
Connectivity | USB |
Environment | 0 to 50°C (32 to 122°F), RH max 95% non-condensing |
Power Supply | 115/130 VAC; 50/60 Hz |
Dimensions | 230 x 200 x 145 mm (9.0 x 7.9 x 5.7”) |
Weight | 2.5 kg (88 oz.) |
Ordering Information | HI83414 is supplied with sample cuvettes (5) with caps, calibration cuvettes for turbidity and chlorine, silicone oil, cuvette wiping cloth, scissors, power cord, and instruction manual. |
Warranty | 2 years |
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