产品概述
HI83399是一款紧凑型多参数光度计,用于测量关键的水和废水质量参数。该光度计是最先进的光度计之一,具有创新的光学设计,利用参考检测器和聚焦透镜来消除光源变化和玻璃比色杯缺陷造成的误差。40个关键的水和废水质量参数,73种不同的方法,覆盖多个范围,被编程到仪表中。废水处理的消化参数包括COD、总氮和总磷,这对监测营养物的去除是重要的。HI83399还为性能验证和希望开发自己的浓度与吸光度曲线的用户提供了吸光度测量模式。
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为了节省宝贵的实验室台面空间,HI83399可兼作专业pH计,其数字pH/温度电极输入。现在,一个仪表既可以用于光度测量,也可以用于pH值测量。
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先进的光学系统
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台式光度计无与伦比的性能
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数字pH电极输入
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使用一个既可作为光度计又可作为实验室pH计的仪表,可节省宝贵的工作台空间
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水和废水处理消化参数
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允许测量COD、总氮和总磷
| 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. |
服务案例
市政污水处理 · 汉钠现货配置案例
项目概况
项目现场在城市污水处理厂的进水、生化与出水工段。客户希望在既有装置上完善汉钠配置,核心诉求是以 Hanna 系列仪器覆盖便携与实验室水质检测。
技术难点
真正麻烦的是:污水中含固率高、含腐蚀性组分,昼夜水量波动大,并且出水指标波动、探头易被污泥与生物膜覆盖。这些都要求汉钠在配置时按参数组合、精度与现场便携性选型。
配置方案
按现货中心组织供货与实施:从现货库存中直接配置并快速交付。现场按参数组合、精度与现场便携性选型,并逐条核对:出水须稳定达到一级 A 标准并联网上传数据。
投运表现
完成调试后,现场即可出结果,实验室复核量下降,测量数据可直接用于工艺调整与考核。
食品饮料 · 汉钠现货配置案例
现场工况
该客户属于食品饮料行业,生产装置位于配料、杀菌、灌装与 CIP 清洗工段。项目的主要任务就是以 Hanna 系列仪器覆盖便携与实验室水质检测。
需要解决的问题
难点在于介质多为糖浆、乳品与饮料等易结垢物料,卫生级要求高;与此同时清洗频繁,仪表必须耐受 CIP/SIP 高温碱洗。选型上必须按参数组合、精度与现场便携性选型。
我们的做法
我们采用现货中心的交付思路 — 从现货库存中直接配置并快速交付。实施时按参数组合、精度与现场便携性选型,同时逐项校验:须满足食品安全与卫生级(3-A / EHEDG)要求。
运行结果
系统投运以来表现稳定,日常维护量明显减少 — 现场即可出结果,实验室复核量下降。
化工制药 · 汉钠现货配置案例
应用背景
反应釜、计量罐与成品储罐区是化工制药行业的典型工况。项目以汉钠为切入点,重点是以 Hanna 系列仪器覆盖便携与实验室水质检测。
工况约束
强腐蚀与防爆双重约束,仪表寿命短、停机维护成本高,而介质腐蚀性强、常带溶剂与结晶,部分区域为爆炸性环境的条件又进一步放大了这一点。因此汉钠必须按参数组合、精度与现场便携性选型。
交付方案
交付按现货中心来组织 — 从现货库存中直接配置并快速交付。实施中按参数组合、精度与现场便携性选型,同时满足需满足防爆认证与 GMP 数据可追溯要求。
使用效果
运行结果表明:现场即可出结果,实验室复核量下降,该测点的测量置信度明显提高。
电力能源 · 汉钠现货配置案例
客户情况
电力能源行业的典型场景是锅炉给水、汽机凝结水与脱硫脱硝系统。本次测量对象为汉钠,工作重点是:以 Hanna 系列仪器覆盖便携与实验室水质检测。
面临的难点
现场工况为高温高压,蒸汽与含盐水并存,加上高温高压下测量漂移,非计划停机代价极高,常规配置很难长期胜任。方案需要按参数组合、精度与现场便携性选型。
实施方式
方案由现货中心落地:从现货库存中直接配置并快速交付。技术要点在于按参数组合、精度与现场便携性选型,并确保符合:需满足电力行业规程与机组可用率指标。
客户收益
实际效果上,现场即可出结果,实验室复核量下降,现场运维人员的工作负担随之下降。






