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HI83399-02

HI83399-02

Benchtop multiparameter water quality photometer

HANNA Instruments HI83399-02
Water and wastewater multiparameter (with COD) photometer and pH meter

Product Overview

HI83399 is a compact multi-parameter photometer for measuring key water and wastewater quality parameters. This photometer is one of the most advanced photometers, featuring an innovative optical design that utilizes a reference detector and focusing lens to eliminate errors caused by light source variations and glass cuvette defects. 40 key water and wastewater quality parameters, 73 different methods, covering multiple ranges, are programmed into the meter. Digestion parameters for wastewater treatment include COD, total nitrogen, and total phosphorus, which are important for monitoring nutrient removal. HI83399 also provides an absorbance measurement mode for performance verification and for users who wish to develop their own concentration versus absorbance curves.

  • To save valuable laboratory benchtop space, HI83399 doubles as a professional pH meter with its digital pH/temperature electrode input. Now, one meter can be used for both photometric and pH measurements.

  • Advanced optical system

  • Unrivaled performance for a benchtop photometer

  • Digital pH electrode input

  • Save valuable benchtop space by using one meter that serves as both a photometer and a laboratory pH meter

  • Digestion parameters for water and wastewater treatment

  • Allows measurement of COD, total nitrogen, and total phosphorus

SKU HI83399-02
Product Name Water & Wastewater Multiparameter (with COD) Photometer and pH meter - HI83399
Quote Required Yes
pH Range Photometer
pH Resolution Photometer
pH Accuracy Photometer
pH Calibration Automatic one or two point calibration with one set of standard buffers available (4.01, 6.86, 7.01, 9.18, 10.01)
pH Temperature Compensation Automatic (-5.0 to 100.0 oC; 23.0 to 212.0 oF); limits reduced based on the pH electrode used
pH CAL Check (electrode diagnostics) clean electrode and check buffer/check probe displayed during calibration
pH Method Photometer
pH-mV Range ±1000 mV
pH-mV Resolution 0.1 mV
pH-mV Accuracy ±0.2 mV
Dissolved Oxygen Range 0.0 to 10.0 mg/L (as O2)
Dissolved Oxygen Resolution 0.1 mg/L
Dissolved Oxygen Accuracy ±0.4 mg/L ±3% of reading
Dissolved Oxygen Measurement Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, Azide modified Winkler method
Absorbance Range 0.000 to 4.000 Abs
Absorbance Resolution 0.001 Abs
Absorbance Accuracy +/-0.003Abs @ 1.000 Abs
Alkalinity Range Freshwater
Alkalinity Resolution 1 mg/L
Alkalinity Accuracy ±5 mg/L ±5% of reading
Alkalinity Method Colorimetric method
Aluminum Range 0.00 to 1.00 mg/L (as Al3+)
Aluminum Resolution 0.01 mg/L
Aluminum Accuracy ±0.04 mg/L ±4% of reading
Aluminum Method Adaptation of the aluminon method
Ammonia Range Low Range
Ammonia Resolution Low and Medium Range
Ammonia Accuracy Low Range
Ammonia Method Adaptation of the ASTM Manual of Water and Environmental Technology, D1426-92, Nessler method
Anionic Surfactants Range 0.00 to 3.50 mg/L (as SDBS)
Anionic Surfactants Resolution 0.01 mg/L
Anionic Surfactants Accuracy ±0.04 mg/L ±3% of reading
Anionic Surfactants Method Adaptation of the USEPA method 425.1 and Standard Methods for the Examination of Water and Wastewater, 20th edition, 5540C, Anionic Surfactants as MBAS
Bromine Range 0.00 to 8.00 mg/L (as Br2)
Bromine Resolution 0.01 mg/L
Bromine Accuracy ±0.08 mg/L ±3% of reading
Bromine Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, DPD method.
Calcium Range Freshwater
Calcium Resolution 1 mg/L
Calcium Accuracy Freshwater
Calcium Method Freshwater
Chemical Oxygen Demand Range Low Range
Chemical Oxygen Demand Resolution 1 mg/L
Chemical Oxygen Demand Accuracy Low Range
Chemical Oxygen Demand Method Adaptation of the USEPA 410.4
ISO dichromate methods
Mercury-free dichromate green method (LR & MR); dichromate method (HR)
Chloride Range 0.0 to 20.0 mg/L (as Cl⁻)
Chloride Resolution 0.1 mg/L
Chloride Accuracy ±0.5 mg/L ±6% of reading at 25 °C
Chlorine Dioxide Range 0.00 to 2.00 mg/L (as ClO2)
Chlorine Dioxide Resolution 0.01 mg/L
Chlorine Dioxide Accuracy ±0.10 mg/L ±5% of reading
Chlorine Dioxide Method Adaptation of the Chlorophenol Red method.
Free Chlorine Range 0.00 to 5.00 mg/L (as Cl2)
Ultra Low Range
Free Chlorine Resolution 0.01 mg/L
Ultra Low Range
Free Chlorine Accuracy ±0.03 mg/L ±3% of reading
Ultra Low Range
Total Chlorine Range 0.00 to 5.00 mg/L (as Cl2)
Ultra Low Range
Total Chlorine Resolution 0.01 mg/L
Ultra Low Range
Total Chlorine Accuracy ±0.03 mg/L ±3% of reading
Ultra Low Range
Chlorine Method Adaptation of the EPA 330.5 DPD method
Free Chlorine (ULR) & Total Chlorine (UHR)
Chromium, Hexavalent Range Low Range
Chromium, Hexavalent Resolution 1 μg/L
Chromium, Hexavalent Accuracy Low Range
Chromium, Hexavalent Method Adaptation of the ASTM Manual of Water and Environmental Technology, D1687-92, Diphenylcarbohydrazide method.
Color, Water Range 0 to 500 PCU (Platinum Cobalt Units)
Color, Water Resolution 1 PCU
Color, Water Accuracy ±10 PCU ±5% of reading
Color, Water Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, Colorimetric Platinum Cobalt method.
Copper Range Low Range
Copper Resolution 0.001 mg/L; 0.01 mg/L
Copper Accuracy Low Range
Copper Method Adaptation of the EPA bicinchoninate method
Cyanuric Acid Range 0 to 80 mg/L (as CYA)
Cyanuric Acid Resolution 1 mg/L
Cyanuric Acid Accuracy ±1 mg/L ±15% of reading
Cyanuric Acid Method Adaptation of the turbidimetric method
Fluoride Range Low Range
Fluoride Resolution 0.01 mg/L; 0.1 mg/L
Fluoride Accuracy Low Range
Fluoride Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, SPADNS method
Hardness, Total Range Low Range
Hardness, Total Resolution 1 mg/L
Hardness, Total Accuracy Low Range
Hardness, Total Method Adaptation of the EPA recommended method 130.1
Hardness, Calcium Range 0.00 to 2.70 mg/L (as CaCO3)
Hardness, Calcium Resolution 0.01 mg/L
Hardness, Calcium Accuracy ±0.11 mg/L ±5% of reading
Hardness, Calcium Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, Calmagite method
Hardness, Magnesium Range 0.00 to 2.00 mg/L (as CaCO3)
Hardness, Magnesium Resolution 0.01 mg/L
Hardness, Magnesium Accuracy ±0.11 mg/L ±5% of reading
Hardness, Magnesium Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, EDTA Colorimetric method
Hydrazine Range 0 to 400 μg/L (as N2H4)
Hydrazine Resolution 1 μg/L
Hydrazine Accuracy ±4% of full scale reading
Hydrazine Method Adaptation of the ASTM Manual of Water and Environmental Technology, method D1385-88, p-Dimethylaminobenzaldehyde method
Iodine Range 0.0 to 12.5 mg/L (as I2)
Iodine Resolution 0.1 mg/L
Iodine Accuracy ±0.1 mg/L ±5% of reading
Iodine Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, DPD method
Iron Range Low Range
Iron Resolution 0.001 mg/L; 0.01 mg/L
Iron Accuracy Low Range
Iron Method Low Range
Magnesium Range 0 to 150 mg/L (as Mg2+)
Magnesium Resolution 1 mg/L
Magnesium Accuracy ±5 mg/L ±3% of reading
Magnesium Method Adaptation of the Calmagite method
Manganese Range Low Range
Manganese Resolution 1 μg/L; 0.1 mg/L
Manganese Accuracy Low Range
Manganese Method Low Range
Molybdenum Range 0.0 to 40.0 mg/L (as Mo6+)
Molybdenum Resolution 0.1 mg/L
Molybdenum Accuracy ±0.3 mg/L ±5% of reading
Molybdenum Method Adaptation of the mercaptoacetic acid method
Nickel Range Low Range
Nickel Resolution 0.001 mg/L; 0.01 g/L
Nickel Accuracy Low range
Nickel Method Low Range
Nitrate Range 0.0 to 30.0 mg/L (as NO3-- N)
16 mm vial
Nitrate Resolution 0.1 mg/L
Nitrate Accuracy ±0.5 mg/L ±10% of reading
16 mm vial
Nitrate Method Adaptation of the cadmium reduction method
16 mm vial
Nitrite Range Freshwater
Low Range
Nitrite Resolution Freshwater
Nitrite Accuracy Freshwater
Low Range
Nitrite Method Low Range and Seawater
Nitrogen, Total Range Low Range
Nitrogen, Total Resolution 0.1 mg/L; 1 mg/L
Nitrogen, Total Accuracy Low Range
Nitrogen, Total Method Chromotropic acid method
Oxygen, Scavenger Range 0 to 1000 μg/L (as DEHA)
0.00 to 1.50 mg/L (as Carbohydrazide)
0.00 to 2.50 mg/L (as Hydroquinone)
0.00 to 4.50 mg/L (as ISO-ascorbic acid)
Oxygen, Scavenger Resolution 1 μg/L (DEHA); 0.01 mg/L
Oxygen, Scavenger Accuracy ±5 μg/L ±5% of reading
Oxygen, Scavenger Method Adaptation of the iron reduction method
Ozone Range 0.00 to 2.00 mg/L (as O3)
Ozone Resolution 0.01 mg/L
Ozone Accuracy ±0.02 mg/L ±3% of reading
Ozone Method Colorimetric DPD Method
Phosphate Range Freshwater
Low Range
Phosphate Resolution Freshwater
Phosphate Accuracy Freshwater
Low Range
Phosphate Method Freshwater Low Range
Phosphorous, Acid Hydrolyzable Range 0.00 to 1.60 mg/L (as P)
Phosphorous, Acid Hydrolyzable Resolution 0.01 mg/L
Phosphorous, Acid Hydrolyzable Accuracy ±0.05 mg/L or ±5% of reading
Phosphorous, Acid Hydrolyzable Method Adaptation of the EPA method 365.2 and Standard Methods for the Examination of Water and Wastewater, 20th edition, 4500-P E, ascorbic acid method
Phosphorous, Reactive Range Low Range
Phosphorous, Reactive Resolution 0.01 mg/L; 0.1 mg/L
Phosphorous, Reactive Accuracy Low Range
Phosphorous, Reactive Method Low Range
Phosphorous, Total Range Low Range
Phosphorous, Total Accuracy Low Range
Phosphorous, Total Resolution Low Range
Phosphorous, Total Method Low Range
Potassium Range 0.0 to 20.0 mg/L (as K)
Potassium Resolution 0.1 mg/L
Potassium Accuracy ±3.0 mg/L ±7% of reading
Potassium Method Adaptation of the Turbidimetric Tetraphenylborate method
Silica Range Low Range
Silica Resolution 0.01 mg/L; 1 mg/L
Silica Accuracy Low Range
Silica Method Low Range
Silver Range 0.000 to 1.000 mg/L (as Ag)
Silver Resolution 0.001 mg/L
Silver Accuracy ±0.020 mg/L ±5% of reading
Silver Method Adaptation of the PAN method
Sulfate Range 0 to 150 mg/L (as SO42-)
Sulfate Resolution 1 mg/L
Sulfate Accuracy ±5 mg/L ±3% of reading
Sulfate Method Turbidimetric - Sulfate is precipitated with barium chloride crystals
Zinc Range 0.00 to 3.00 mg/L (as Zn)
Zinc Resolution 0.01 mg/L
Zinc Accuracy ±0.03 mg/L ±3% of reading
Zinc Method Adaptation of the Standard Methods for the Examination of Water and Wastewater, 18th edition, Zincon method
Input Channels 1 pH electrode input and 5 photometer wavelengths
pH Electrode digital pH electrode (not included)
Photometer/Colorimeter Light Source 5 LEDs with 420 nm, 466 nm, 525 nm, 575 nm, and 610 nm narrow band interference filters
Photometer/Colorimeter Light Detector silicon photodetector
Bandpass Filter Bandwidth 8 nm
Bandpass Filter Wavelength Accuracy ±1 nm
Cuvette Type round, 24.6 mm
Number of Methods 128 max.
GLP calibration data for connected pH electrode
Display 128 x 64 pixel LCD with backlight
Logging Type log on demand with user name and sample ID optional input
Logging Memory 1000 readings
Connectivity USB-A host for flash drive; micro-USB-B for power and computer connectivity
Power Supply 5 VDC USB 2.0 power adapter with USB-A to micro-USB-B cable (included)
Battery Type/Life 3.7 VDC Li-polymer rechargeable battery / >500 photometric measurements or 50 hours of continuous pH measurement
Environment 0 to 50.0 oC (32 to 122.0 oF); 0 to 95% RH, non-condensing
Weight 1.0 kg (2.2 lbs.)
Dimensions 206 x 177 x 97 mm (8.1 x 7.0 x 3.8")
Ordering Information HI83399 is supplied with sample cuvettes and caps (4 ea.), cloth for wiping cuvettes, USB to micro USB cable connector, power adapter and instruction manual.
Municipal Wastewater Treatment

Municipal Wastewater Treatment · Hanna — Stock Configuration Case

Project Overview

The site is the inlet, biological and outlet stages of a municipal plant. The customer wanted Hanna properly configured on the existing plant, with the aim of covering portable and laboratory water testing with Hanna instruments.

Technical Challenges

What actually causes trouble is high solids and corrosive fractions, with large diurnal flow swings, and effluent parameters drift and probes foul with sludge and biofilm. All of this means the Hanna configuration has to involve selected by parameter set, accuracy and field portability.

Configuration

Supply and installation were organised through the stock channel: configuring from stock and delivered quickly. On site this meant selected by parameter set, accuracy and field portability, checked line by line against: stable compliance with Grade 1A discharge limits and online data reporting.

Performance

After commissioning the outcome is results available on site, reducing lab re-checks, and the readings are now used for process tuning.

Food & Beverage

Food & Beverage · Hanna — Stock Configuration Case

Site Conditions

This is a Food & Beverage customer whose plant is at dosing, pasteurising, filling and CIP stages. The main task was covering portable and laboratory water testing with Hanna instruments.

The Problem

The difficulty lies in syrups, dairy and beverages that scale easily, under strict hygienic requirements; at the same time frequent cleaning demands instruments that withstand hot CIP/SIP caustic cycles. Specification therefore means selected by parameter set, accuracy and field portability.

What We Did

We took a stock channel approach — configuring from stock and delivered quickly. Delivery was built around selected by parameter set, accuracy and field portability, with point-by-point checks on: food-safety and hygienic design per 3-A / EHEDG.

Operating Outcome

In service the system performs as intended — results available on site, reducing lab re-checks, with routine maintenance falling noticeably.

Chemical & Pharmaceutical

Chemical & Pharmaceutical · Hanna — Stock Configuration Case

Application Context

reactors, metering vessels and finished-product tanks is a typical Chemical & Pharmaceutical duty. The project started from Hanna, focusing on covering portable and laboratory water testing with Hanna instruments.

Process Constraints

corrosion plus Ex protection shortens instrument life and makes downtime costly, and highly corrosive media with solvents and crystallisation, partly in explosive atmospheres only amplify it. The Hanna specification must therefore cover selected by parameter set, accuracy and field portability.

Delivery Approach

Delivery was handled as the stock channel — configuring from stock and delivered quickly. Execution centred on selected by parameter set, accuracy and field portability, together with Ex certification and GMP traceability of records.

Field Results

Operation shows the benefit clearly — results available on site, reducing lab re-checks, with confidence in this measuring point improving markedly.

Power & Energy

Power & Energy · Hanna — Stock Configuration Case

Customer Profile

The typical setting in Power & Energy is boiler feedwater, turbine condensate and FGD/DeNOx systems. The measuring point is Hanna; the focus is covering portable and laboratory water testing with Hanna instruments.

Key Difficulties

Conditions are high temperature and pressure with both steam and saline water and, on top of that, drift under high temperature and pressure, with very costly unplanned outages, which a standard configuration cannot handle for long. The design therefore starts with selected by parameter set, accuracy and field portability.

Implementation

The scope ran through the stock channel: configuring from stock and delivered quickly. Technically it hinges on selected by parameter set, accuracy and field portability, and on these requirements: compliance with power-industry codes and unit availability targets.

Customer Benefit

In practice this means results available on site, reducing lab re-checks, which cut the workload on the site maintenance team.