The InLab-2016 multi parameter water quality rapid measuring instrument adopts a touch sensitive design, a fully Chinese operating interface, guided system operation, and exquisite overall design combined with a high-strength corrosion-resistant shell, which enhances the user's use and operating experience. The design of the digestion colorimetric integrated tube pre stores dozens of indicator parameter curves (according to user needs) such as COD, ammonia nitrogen, total phosphorus, total nitrogen, etc., making the entire detection process simpler and more convenient, and easier for users to operate. It can be widely applied in fields such as environmental monitoring, scientific research water quality testing, production and emission monitoring and testing.
Product Introduction
InLab-2016manyparameterRapid water quality analyzerAdopting a touch sensitive design, a fully Chinese operating interface, guided system operation, and exquisite overall design combined with a high-strength corrosion-resistant shell, it enhances the user's usage and operating experience. Dissolve colorimetric integrated tube design, pre storedCODDozens of parameter curves for indicators such as ammonia nitrogen, total phosphorus, and total nitrogen (according to user needs),Make the entire detection process simpler, more convenient, and easier for users to operate. It can be widely applied in fields such as environmental monitoring, scientific research water quality testing, production and emission monitoring and testing.
Instrument Features
1、Color touch screen design, user-friendly human-machine dialogue interface, easy operation, and direct reading of concentration.
2、Using a digestion colorimetric integrated tube, the water sample determination process is simple, fast, safe, and the measurement results are accurate.
3Wide measurement range, diverse measurement indicators, and the ability to freely combine measurement indicators according to user needs.
4Equipped with a built-in thermal printer, it can directly print measurement data and also query and print historical data.
5Pre stored standard measurement curves can be easily retrieved for measurement, and self built measurement curves can also be created.
6Adopting imported solid-state cold light source,Excellent optical performance and long service life,The test results are accurate.
7Large capacity data storage with power-off protection design ensures that the instrument is not damaged and data records are not lost.
8Low reagent usage, low operating costs, and strong anti-interference ability.
Can be applied in various fields to meet the different water quality testing needs of users
1.Sewage detection
Wastewater testing mainly targets the wastewater and sewage discharged by enterprises and factories during the production process, which can be divided into papermaking wastewater, textile wastewater, metallurgical wastewater, food treatment wastewater, etc. Applicable to self inspection of water quality discharge by relevant enterprises, as well as law enforcement inspections by environmental protection departments.
2.scientific research
Mainly used for daily water quality testing and teaching in research institutes, laboratories, and universities, including parameter comparison, qualitative and quantitative analysis of environmental water pollution.
Water quality testing indicators
This product adopts modular programming design, which allows users to select single or multiple indicator detection indicator modules according to their needs. Users can also install new measurement indicators on this machine at any time during later use according to their measurement requirements. The following are the water quality testing indicators of our company:CODTheCODMnAmmonia nitrogen, total phosphorus, total nitrogen, nitrate nitrogen, nitrite nitrogen, residual chlorine, total chlorine, chlorine dioxide, hexavalent chromium, chromaticity, turbidity, suspended solids, sulfates, sulfides, fluorides, aniline, phosphate, barium, total chromium, iron, ferrous, copper, nickel, zinc, manganese, dissolved oxygenPHValue, temperature, conductivity
Technical Specifications
Measurement indicators:CODAmmonia nitrogen, total phosphorus, total nitrogen, etc. (freely combined according to user needs);
Display mode: Color LCD touch screen, Chinese operation interface;
Colorimetric method: Colorimetric tube (digestion colorimetric integrated tube)
Number of curves: adjustable100Measurement curve parameters;
Calibration mode:1-7Point correction mode, automatically correcting curve values;
Record storage: storable10000The test results show that the data will not be lost when the power is cut off;
hit Printing: Comes with a thermal printer;
Data communication:RS232+USBinterfaceThe measurement results can be uploaded to a computer for easy statistical analysis by users;
Environmental temperature:(5 ~ 40)℃; Environmental humidity: Relative humidity<85%(No condensation);
Overall dimensions:300*220*120mm;
Working power supply:AC220V±10% / 50Hz;
Weight:2.8kg.
Index parameters of water quality analyzer
serial number |
indicator |
range |
error |
resolve |
Reagent warranty period |
method |
standard |
1 |
CODhigh range |
5-10000mg/L(dish style, handheld),
5-15000 mg/L(tubular)
|
≤5% |
165℃,15minute |
Prepared liquid reagents (same below)6month |
Rapid catalytic method (chromium method) |
HJ/T399-2007 |
2 |
CODLow range |
5-150mg/L |
≤5% |
165℃,15minute |
6month |
Rapid catalytic method (chromium method) |
HJ/T399-2007 |
3 |
GAO potassium permanganate index
(CODMn)
|
0.2-50mg/L |
≤8% |
100℃,13minute |
6month |
Acid digestion spectrophotometry |
GB11892-89 |
4 |
ammonia nitrogen |
0.01-50mg/L |
≤5% |
none |
6month |
Nessler's colorimetric method |
HJ535-2009 |
5 |
Total Phosphorus |
0-24mg/L(dish style, handheld),
0-20mg/L(tubular)
|
≤5% |
120℃,30minute |
2month |
Ammonium molybdate spectrophotometric method |
GB11893-89 |
6 |
Total Nitrogen |
0-100mg/L |
≤5% |
125℃,30minute |
2month |
Persulfate digestion colorimetric method |
the United StatesEPArecognize |
7 |
Nitrate nitrogen |
0-100mg/L |
≤5% |
none |
3month |
Chromic acid spectrophotometric method |
the United StatesEPArecognize |
8 |
Nitrite nitrogen |
0-6mg/L |
≤5% |
none |
1month |
Diazotization spectrophotometry |
GB7493-87 |
9 |
residual chlorine |
0-10 mg/L |
≤5% |
none |
1month |
DPDSpectrophotometry |
HJ586-2010 |
10 |
Total Chlorine |
0-10 mg/L |
≤5% |
none |
1month |
DPDSpectrophotometry |
HJ586-2010 |
11 |
Chlorine dioxide |
0-5mg/L(Dish style, handheld)
0-10 mg/L(tubular)
|
≤5% |
none |
1month |
DPDSpectrophotometry |
Standard testing methods for water and wastewater |
12 |
hexavalent chromium |
0-5mg/L(Dish style, handheld)
0-10 mg/L(tubular)
|
≤5% |
none |
3month |
Diphenylcarbazide photometric method |
GB7466-87 |
13 |
chroma |
0-500Hazen |
≤5% |
none |
none |
platinum-Cobalt colorimetric method |
GB11903-89 |
14 |
turbidity |
0-400NTU |
≤5% |
none |
none |
Fulmazhen spectrophotometric method |
GB13200-91 |
15 |
suspended solids |
0-500mg/L |
≤5% |
none |
none |
colorimetry |
Q/HYQH001-2019 |
16 |
sulfate |
5-200mg/L(Dish style, handheld)
5-1000 mg/L(tubular)
|
≤5% |
none |
3month |
分光光度比浊法 |
Standard testing methods for water and wastewater |
17 |
sulfide |
0-12 mg/L(Dish style)
0-16 mg/L(Handheld)
0-15 mg/L(tubular)
|
≤5% |
none |
3month |
Methylene blue spectrophotometric method |
GB/T16489-1996 |
18 |
fluoride |
0-12 mg/L |
≤5% |
none |
3month |
Fluorine reagent spectrophotometric method |
HJ488-2009 |
19 |
aniline |
0-20 mg/L |
≤5% |
none |
2month |
Naphthalene ethylenediamine azo photometric method |
GB/T11889-1989 |
20 |
phosphate |
0-24 mg/L(dish style, handheld),
0-20mg/L(tubular)
|
≤5% |
none |
2month |
Ammonium molybdate spectrophotometric method |
GB11893-89 |
21 |
barium |
0-30mg/L |
≤5% |
none |
6month |
Tetraphenylborate sodium turbidity method |
Enterprise Standard |
22 |
Total chromium |
0-10mg/L(Dish type, tube type)
0-8 mg/L(Handheld)
|
≤5% |
120℃,30minute |
2month |
Potassium permanganate digestion spectrophotometric method |
GB7466-87 |
23 |
iron |
0-50mg/L |
≤5% |
none |
3month |
Phenanthroline spectrophotometric method |
HJ/T345-2007 |
24 |
ferrous |
0-50mg/L |
≤5% |
none |
3month |
Phenanthroline spectrophotometric method |
HJ/T345-2007 |
25 |
copper |
0-50mg/L(Dish type, tube type)
0-40 mg/L(Handheld)
|
≤5% |
none |
3month |
Bisquinoline spectrophotometric method |
the United StatesEPArecognize |
26 |
nickel |
0-50mg/L |
≤5% |
none |
3month |
Dimethylglyoxime spectrophotometric method |
GB11910-89 |
27 |
zinc |
0-20mg/L(Dish type, tube type)
0-10 mg/L(Handheld)
|
≤5% |
none |
3month |
Zinc reagent spectrophotometric method |
the United StatesEPArecognize |
28 |
manganese |
0-50mg/L |
≤5% |
none |
3month |
Potassium high DIAN acid photometric method |
GB11906-89 |
29 |
magnesium |
0-20mg/L(Dish style)
0-10mg/L(tubular)
No handheld device
|
±5% |
none |
2month |
Chlorophosphonazo photometric method |
the United StatesEPArecognize |
30 |
hardness |
0~100mg/L |
±5% |
none |
2month |
Chlorophosphonazo photometric method |
the United StatesEPArecognize |
31 |
cadmium |
0-0.5mg/L
No handheld device
|
≤5% |
none |
2month |
Cadmium reagent spectrophotometric method |
the United StatesEPArecognize |
32 |
PHvalue |
0-14.00PH |
≤±0.02PH |
none |
none |
Glass electrode method |
GB6920-1986 |
33 |
temperature |
-20.0℃- 120.0℃ |
≤±0.5℃ |
none |
none |
Electrode method |
Enterprise Standard |
34 |
conductivity |
0-200mS/cm |
≤±1% |
none |
none |
Electrode method |
GB11007-1989 |
35 |
dissolved oxygen |
0-20.0mg/L |
≤±0.3mg/L |
none |
none |
Electrochemical probe method |
GB11913-1989 |
36 |
ORP |
-2000~2000mV |
±0.1% |
none |
none |
Electrode method |
Enterprise Standard |
37 |
salinity |
0~5% |
±0.05%
(Absolute Error)
|
none |
none |
Electrode method |
GB11007-1989 |
38 |
TDS |
0~50000mg/L |
±1% |
none |
none |
Electrode method |
GB11007-1989 |
39 |
cobalt |
0-5mg/L |
≤5% |
none |
1month |
PADSpectrophotometry |
HJ550-2015 |
40 |
ozone |
0-1mg/L |
≤5% |
none |
1month |
Indigo spectrophotometric method |
GB/T5750.11-2006 |
41 |
QIN compound |
0-0.5mg/L |
≤5% |
none |
2month |
IsoYAN acid-Pyrazolinone photometric method |
HJ484-2009 |
Note:1.If the instrument type is not specified in the range column, the range for dish, tube, and handheld instruments is the same.
2.The warranty period for reagents is the time it takes for the liquid to be prepared. If a reagent is all in powder solid form, the warranty period before preparation is12Months; For solid and prepared liquids, the warranty period of the liquid is used as the expiration date; The warranty period of the prepared liquid reagents starts from the time of factory production. If the customer prepares the reagents themselves, the warranty period starts from the time of reagent preparation.