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HI83314 Wastewater Multiparameter (with COD) Benchtop Photometer and pH meter

Product information “HI83314 Wastewater Multiparameter (with COD) Benchtop Photometer and pH meter”

HI83314 is a compact, multiparameter photometer for measuring key water and wastewater quality parameters. The meter is one of the most advanced photometers available with an innovative optical design that utilizes a reference detector and focusing lens to eliminate errors from changes in the light source and from imperfections in the glass cuvette. 10 key water and wastewater quality parameters with 20 different methods covering multiple ranges are programmed into the meter. Wastewater treatment digestion parameters include COD, Total Nitrogen and Total Phosphorous which are important for monitoring nutrient removal. The HI83314 also offers an absorbance measurement mode for performance verification and for users that would like to develop their own concentration versus absorbance curves.

To save valuable laboratory benchtop space, the HI83314 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

Unparalleled performance from a benchtop photometer
Digital pH electrode input

Save valuable bench space with one meter that works both as a photometer and as a laboratory pH meter
Wastewater Treatment Digestion Parameters

Measures common wastewater parameters including COD, Total Nitrogen and Total Phosphorus
Details

HI83314 benchtop photometer measures 10 different key wastewater quality parameters using 20 different methods that allow for multiple ranges and variations in chemistry for specific applications. The Chemical Oxygen Demand (COD) parameter is included for industrial and municipal wastewater treatment. The Phosphorous and Nitrogen parameters included are beneficial to municipal wastewater treatment customers that need to monitor their biological and chemical nutrient removal process. This photometer features an innovative optical system that uses LED’s, narrow band interference filters, focusing lens and both a silicon photodetector for absorbance measurement and a reference detector to maintain a consistent light source ensures accurate and repeatable photometric readings every time.

A digital pH electrode input is provided allowing the user to measure pH by a traditional glass electrode. The digital pH electrode has a built in microchip within the probe that stores all of the calibration information. Having the calibration information stored in the probe allows for hot swapping of pH electrodes without having to recalibrate. All pH measurements are automatically compensated for temperature variations with a built in thermistor located in the tip of the sensing bulb for fast and accurate temperature measurement.

Two USB ports are provided for transferring data to a flash drive or computer and to use as a power source for the meter. For added convenience and portability the meter can also operate on an internal 3.7 VDC Lithium-polymer rechargeable battery.

The HI83314 offers an absorbance measuring mode that allows for CAL Check standards to be used to validate the performance of the system. The absorbance mode allows the user to select one of the 4 wavelengths of light (420 nm, 466 nm, 525 nm, and 610 nm) to measure and plot their own concentration versus absorbance mode. This is useful for users with their own chemical method and for education to teach the concept of absorbance by using the Beer-Lambert Law.
pH
pH Range Photometer: 6.5 to 8.5 pH
pH electrode: -2.00 to 16.00 pH
pH Resolution Photometer: 0.1 pH
pH electrode: 0.01 pH
pH Accuracy Photometer: ±0.1 pH
pH electrode: ±0.01 pH
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: phenol red
pH-mV Range ±1000 mV
pH-mV Resolution 0.1 mV
pH-mV Accuracy ±0.2 mV

Absorbance
Absorbance Range 0.000 to 4.000 Abs
Absorbance Resolution 0.001 Abs
Absorbance Accuracy ±0.003Abs @ 1.000 Abs

Ammonia
Ammonia Range Low Range: 0.00 to 3.00 mg/L
Low Range (16 mm vial): 0.00 to 3.00 mg/L
Medium Range: 0.00 to 10.00 mg/L
High Range: 0.0 to 100.0 mg/L
High Range (16 mm vial): 0.0 to 100.0 mg/L
(all as NH3-N)
Ammonia Resolution 0.01 mg/L; 0.1 mg/L
Ammonia Accuracy Low Range: ±0.04 mg/L ±4% of reading
Low Range (16 mm vial): ±0.10 mg/L or ±5% of reading
Medium Range: ±0.05 mg/L ±5% of reading
High range: ±0.5 mg/L ±5% of reading
High range (16 mm vial): ±1 mg/L or ±5% of reading
Ammonia Method Adaptation of the ASTM Manual of Water and Environmental Technology, D1426-92, Nessler method

Chemical Oxygen Demand
Chemical Oxygen Demand Range Low Range: 0 to 150 mg/L
Medium Range: 0 to 1500 mg/L
High Range:0 to 15000 mg/L
Chemical Oxygen Demand Resolution Low and Medium Range: 1 mg/L
High Range: 10 mg/L
Chemical Oxygen Demand Accuracy Low Range: ±5 mg/L ±5% of reading
Medium Range: ±15 mg/L ±4% of reading
High Range: ±150 mg/L ±3% of reading
Chemical Oxygen Demand Method Adaptation of the USEPA 410.4
ISO dichromate methods
Mercury-free dichromate green method (LR & MR); dichromate method (HR)

Chlorine
Total Chlorine Range 0.00 to 5.00 mg/L (as Cl2)
Total Chlorine Resolution 0.01 mg/L
Total Chlorine Accuracy ±0.03 mg/L ±3% of reading
Chlorine Method Adaptation of the EPA 330.5 DPD method

Nitrate
Nitrate Range 16 mm vial: 0.0 to 30.0 mg/L (as NO3– N)
Nitrate Resolution 0.1 mg/L
Nitrate Accuracy 16 mm vial: ±1.0 mg/L or ±3% of reading
Nitrate Method Adaptation of the cadmium reduction method

Nitrite
Nitrite Range Freshwater
Low Range: 0 to 600 ?g/L (as NO2–N)
High Range: 0 to 150 mg/L (as NO2-)
Nitrite Resolution Freshwater: 1 ?g/L; 1 mg/L
Nitrite Accuracy Freshwater
Low Range: ±20 ?g/L ±4% of reading
High Range: ±4 mg/L ±4% of reading
Nitrite Method Adaptation of the EPA Diazotization method 354.1

Nitrogen, Total
Nitrogen, Total Range Low Range: 0.0 to 25.0 mg/L (as NO3–N)
High Range: 0 to 150 mg/L (as N)
Nitrogen, Total Resolution 0.1 mg/L; 1 mg/L
Nitrogen, Total Accuracy Low Range: ±1.0 mg/L or ±5% of reading
High Range: ±3 mg/L or ±4% of reading
Nitrogen, Total Method Chromotropic acid method

Phosphorous, Acid Hydrolyzable
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
Phosphorous, Reactive Range Low Range: 0.00 to 1.60 mg/L (as P)
High Range: 0.0 to 32.6 mg/L (as P)
Phosphorous, Reactive Resolution 0.01 mg/L; 0.1 mg/L
Phosphorous, Reactive Accuracy Low Range: ±0.05 mg/L or ±4% of reading
High Range: ±0.5 mg/L or ±4% of reading
Phosphorous, Reactive Method Adaptation of Standard Methods for the Examination of Water and Wastewater, 20th edition and EPA method 365.2 (low range)
Low Range: ascorbic acid method
High Range: vanadomolybdophosphoric acid method

Phosphorous, Total
Phosphorous, Total Range Low Range: 0.00 to 1.15 mg/L (as P)
High Range: 0.0 to 32.6 mg/L (as P)
Phosphorous, Total Accuracy Low Range: ±0.05 mg/L or ±6% of reading
High Range: ±0.5 mg/L or ±5% of reading
Phosphorous, Total Resolution Low Range: 0.01 mg/L; 0.1 mg/L
Phosphorous, Total Method Adaptation of Standard Methods for the Examination of Water and Wastewater, 20th edition and EPA method 365.2 (low range)
Low Range: ascorbic acid method
High Range: vanadomolybdophosphoric acid method

General Meter
Input Channels 1 pH electrode input and 5 photometer wavelengths
pH Electrode digital pH electrode (not included)
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
GLP calibration data for connected pH electrode
Display 128 x 64 pixel LCD with backlight
Battery Type / Life 3.7 VDC Li-polymer rechargeable battery / >500 photometric measurements or 50 hours of continuous pH measurement
Power Supply 5 VDC USB 2.0 power adapter with USB-A to micro-USB-B cable (included)
Environment 0 to 50.0 oC (32 to 122.0 oF); 0 to 95% RH, non-condensing
Dimensions 206 x 177 x 97 mm (8.1 x 7.0 x 3.8″)
Weight 1.0 kg (2.2 lbs.)
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.
Ordering Information HI83314 is supplied with sample cuvettes and caps (4 ea.), cloth for wiping cuvettes, USB to micro USB cable connector, power adapter and instruction manual.

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Deskripsi Produk: HI83314 Wastewater Multiparameter (with COD) Benchtop Photometer and pH meter

 

HI83314 adalah fotometer benchtop (meja laboratorium) yang ringkas dan multifungsi, dirancang khusus untuk mengukur parameter kualitas air dan air limbah utama. Alat ini merupakan salah satu fotometer tercanggih yang tersedia, menggabungkan kemampuan fotometri yang luas dengan fungsi sebagai pH meter profesional.

 

Fungsi Utama (Fungsi)

 

HI83314 berfungsi ganda sebagai fotometer multiparameter dan pH meter.

 

1. Fungsi Fotometer Multiparameter:

 

  • Pengukuran Parameter Kunci: Alat ini diprogram dengan $20$ metode berbeda untuk mengukur $10$ parameter kualitas air limbah utama mencakup berbagai rentang.
  • Pengujian Air Limbah: Secara khusus dirancang untuk parameter pencernaan pengolahan air limbah, termasuk:
    • Chemical Oxygen Demand (COD): Parameter penting untuk pengolahan air limbah industri dan kota.
    • Total Nitrogen (TN): Penting untuk memantau proses penghilangan nutrisi biologis.
    • Total Fosfor (TP): Penting untuk memantau proses penghilangan nutrisi kimia.
  • Mode Absorbansi: Memungkinkan pengguna untuk melakukan verifikasi kinerja atau mengembangkan kurva konsentrasi vs. absorbansi mereka sendiri.

 

2. Fungsi pH Meter:

 

  • Input Elektroda pH Digital: Dilengkapi dengan input khusus untuk elektroda pH/suhu digital (dijual terpisah), mengubah alat ini menjadi pH meter laboratorium profesional.
  • Kompensasi Suhu Otomatis (ATC): Semua pengukuran pH dikompensasi secara otomatis untuk variasi suhu.
  • Fitur GLP: Merekam data kalibrasi elektroda pH untuk ketertelusuran (Good Laboratory Practice).

 

Keunggulan Produk (Keunggulan) ✨

 

HI83314 menawarkan kinerja dan fitur unggulan:

Aspek Keunggulan Utama
Sistem Optik Canggih Menggunakan desain optik inovatif dengan detektor referensi dan lensa pemfokusan. Ini berfungsi untuk menghilangkan kesalahan akibat perubahan sumber cahaya dan ketidaksempurnaan pada kuvet kaca, memastikan pembacaan fotometri yang sangat akurat dan berulang.
Hemat Ruang Laboratorium Menggandakan fungsi sebagai fotometer dan pH meter laboratorium dalam satu unit, menghemat ruang meja laboratorium yang berharga.
Fleksibilitas Pengujian Mampu mengukur berbagai parameter krusial dalam pengolahan air limbah (COD, TN, TP, dll.) dengan beberapa rentang pengukuran.
Keterlacakan Data (Datalogging & Konektivitas) Mampu menyimpan hingga $1.000$ pembacaan (fotometri dan pH) dengan opsi nama pengguna dan ID sampel. Data dapat ditransfer dengan mudah melalui port USB-A host ke flash drive atau Micro-USB-B ke komputer.
Desain Portabel Meskipun merupakan unit benchtop, alat ini ringkas dan dilengkapi baterai isi ulang Li-polymer $3.7$ VDC internal, memungkinkannya digunakan di lapangan (portable) jika diperlukan.
Informasi Kalibrasi Digital Input pH digital menyimpan semua informasi kalibrasi (tanggal, buffer, offset, kemiringan) di dalam microchip elektroda, memungkinkan penggantian elektroda (hot swapping) tanpa perlu kalibrasi ulang.

 

Prosedur Penggunaan Dasar (Cara Penggunaan) 📖

 

Penggunaan HI83314 bervariasi tergantung parameter yang diukur (fotometri atau pH).

 

A. Pengukuran Fotometri (Contoh: COD)

 

  1. Pemilihan Metode: Hidupkan alat, dan dari menu, pilih parameter yang akan diuji (misalnya, COD). Pilih rentang yang sesuai (misalnya, Low Range, Medium Range, atau High Range).
  2. Persiapan Sampel: Ikuti prosedur pencernaan (digest) untuk COD yang ditetapkan (biasanya melibatkan penambahan reagen tabung ke sampel dan pemanasan di reaktor, seperti Hanna HI8398).
  3. Kalibrasi Nol (Zeroing):
    • Masukkan kuvet (biasanya blank atau larutan standar) ke dalam wadah kuvet alat.
    • Ikuti instruksi di layar untuk melakukan “zeroing” (kalibrasi nol). Alat akan mengukur absorbansi dasar.
  4. Pengukuran Sampel:
    • Keluarkan kuvet zero dan masukkan kuvet sampel yang sudah direaksikan (yang warnanya telah berkembang setelah pencernaan).
    • Tekan tombol “Read” atau sesuai instruksi di layar.
    • Alat akan mengukur absorbansi dan menampilkan konsentrasi parameter (misalnya, COD dalam mg/L $O_2$).

 

B. Pengukuran pH (Memerlukan Elektroda pH Digital)

 

  1. Koneksi Elektroda: Hubungkan elektroda pH digital/suhu ke input yang disediakan.
  2. Kalibrasi pH:
    • Akses menu kalibrasi pH.
    • Lakukan kalibrasi menggunakan $1$ hingga $5$ buffer pH standar (misalnya, $pH 4.01$, $7.01$, $10.01$).
    • Alat akan memandu pengguna untuk membilas dan memasukkan elektroda ke dalam setiap buffer.
  3. Pengukuran Sampel:
    • Bilas elektroda dengan air suling.
    • Masukkan elektroda ke dalam sampel air limbah.
    • Alat akan menampilkan pembacaan pH secara instan, dengan kompensasi suhu otomatis.

Catatan Penting: Reagen untuk pengujian fotometri (seperti COD, Nitrogen, Fosfor) dijual terpisah. Pembelian unit HI83314 hanya mencakup fotometer, tanpa reagen atau elektroda pH

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