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Heavy metal monitoring equipment
The AVVOR 8000 heavy metal monitoring equipment is precise, accurate, convenient, and fast, capable of detecting heavy metal ions in water bodies and
Product details
The AVVOR 8000 heavy metal monitoring equipment can detect heavy metal ions in water bodies and solid substances.
Measurable metalThere are: copper (Cu), cadmium (Cd), lead (Pb), zinc (Zn), nickel (Ni), mercury (Hg), arsenic (As), iron (Fe), manganese (Mn), antimony (Sb), thallium (Tl), selenium (Se), cobalt (Co), molybdenum (Mo), gold (Au), silver (Ag), chromium (Cr), palladium (Pb), tin (Sn)
Measurable metalThere are: copper (Cu), cadmium (Cd), lead (Pb), zinc (Zn), nickel (Ni), mercury (Hg), arsenic (As), iron (Fe), manganese (Mn), antimony (Sb), thallium (Tl), selenium (Se), cobalt (Co), molybdenum (Mo), gold (Au), silver (Ag), chromium (Cr), palladium (Pb), tin (Sn)
AVVOR 8000 is a precise, accurate, convenient, and fast portable heavy metal monitoring device suitable for on-site testing and laboratory research. The flexible selection of electrode components, fully functional operating software, and sturdy waterproof outer box make AVVOR 8000 an ideal tool for detecting heavy metal content in surface water (such as rivers, lakes, etc.), wastewater, sewage, drinking water sources, and environmental water monitoring, truly achieving PPB level testing and analysis. In addition, the AVVOR 8000 portable heavy metal monitoring device can also be used to determine the heavy metal content of solid substances such as soil, food, beverages, and solid waste.
The AVVOR 8000 heavy metal monitoring equipment adopts the internationally recognized and US Environmental Protection Agency approved dissolution voltammetry principle to quickly detect the concentrations of various metal ions such as copper, cadmium, lead, zinc, arsenic, mercury, nickel, chromium, manganese, thallium, antimony, etc. in water. Due to its high sensitivity, accurate testing, and low cost, voltammetry has replaced traditional atomic absorption methods in the United States and is widely used in environmental analysis, especially in water quality analysis, medicine, and biology. The US EPA has listed it as a standard testing method, such as EPA 7063 and 7472.
AVVOR 8000 Heavy Metal Monitoring Equipment
Product Features
Product Features
The detection time only takes a few tens of seconds, and the preparation time before detection only takes a few minutes;
Low cost, minimal consumables, and easy operation; If the laboratory conditions are good, some consumables can be self-made.
Multiple sampling point testing can be achieved: By comparing data from multiple sampling points, on-site testing can be more accurate and processing costs can be reduced.
Low cost, minimal consumables, and easy operation; If the laboratory conditions are good, some consumables can be self-made.
Multiple sampling point testing can be achieved: By comparing data from multiple sampling points, on-site testing can be more accurate and processing costs can be reduced.
AVVOR 8000 Heavy Metal Monitoring Equipment
application area
Laboratory: Connected to computers or laptops, equipped with specialized software to control the testing process, resulting in higher testing accuracy.
Field site: Rechargeable batteries ensure power supply, and monitoring data can be directly displayed on the LCD screen;
Liquid detection: The operation is very convenient, and personnel can avoid contact with toxic substances such as mercury when using it;
Solid state detection: It is necessary to extract heavy metal ions from the sample to be tested first, which takes about 10 minutes.
Field site: Rechargeable batteries ensure power supply, and monitoring data can be directly displayed on the LCD screen;
Liquid detection: The operation is very convenient, and personnel can avoid contact with toxic substances such as mercury when using it;
Solid state detection: It is necessary to extract heavy metal ions from the sample to be tested first, which takes about 10 minutes.
Testing technology accreditation
The method implemented by the AVVOR 8000 heavy metal monitoring equipment is a standard method recognized by some authoritative institutions, namely the anodic leaching method. The currently recognized method name is:
The standard method recognized by authoritative institutions - voltammetric dissolution method, the following currently recognized method names:
US EPA Method 7472 for Hg in aqueous solution and extracted species
US EPA Method 7063: As in aqueous solution and extracted species
US EPA Method 1001: Using ASV, Pb in drinking water
ASTM Method D3557-95: Cadmium in water
DIN 38 406, part 16, Zn in water, Cd,Pb,Cu,Tl,Ni,Co
AOAC Method 982.23: Ca and Pb in food (non oil or fat)
AOAC Method 974.13: Pb in dehydrated milk
AOAC Method 979.17: Pb in dehydrated milk and juice
AOAC method 986.15: As in human and pet food, Cd, Pb, Se, and Zn
NIOSH Method 7701: Pb under ultrasound and ASV
American Public Health Association "Standard Methods for Monitoring Water and Wastewater" 3130
ISO 6636/1 : Zinc in fruits and vegetables
The standard method recognized by authoritative institutions - voltammetric dissolution method, the following currently recognized method names:
US EPA Method 7472 for Hg in aqueous solution and extracted species
US EPA Method 7063: As in aqueous solution and extracted species
US EPA Method 1001: Using ASV, Pb in drinking water
ASTM Method D3557-95: Cadmium in water
DIN 38 406, part 16, Zn in water, Cd,Pb,Cu,Tl,Ni,Co
AOAC Method 982.23: Ca and Pb in food (non oil or fat)
AOAC Method 974.13: Pb in dehydrated milk
AOAC Method 979.17: Pb in dehydrated milk and juice
AOAC method 986.15: As in human and pet food, Cd, Pb, Se, and Zn
NIOSH Method 7701: Pb under ultrasound and ASV
American Public Health Association "Standard Methods for Monitoring Water and Wastewater" 3130
ISO 6636/1 : Zinc in fruits and vegetables
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