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Wall-mounted Magnesium Ion Analyzer

Product Introduction The online magnesium ion analyzer is a precision instrument mainly used to detect magnesium ions in liquids. There is a magnesium ion selective membrane at the front end of the sensor. When the sensor is placed in the measured solution, magnesium ions in the solution pass through the selective membrane into the interior of the sensor. A tiny potential difference is formed inside the sensor between the cations and the reference electrode. The potential difference is proportional to the concentration of magnesium ions. The potential difference is amplified through the circuit for processing, thereby obtaining the concentration of magnesium ions.

Wall-mounted Nitrite Ion/Nitrite Analyzer

Product Introduction The online nitrite analyzer is a precision instrument mainly used to detect nitrite ions in liquids. There is a nitrite ion selective membrane at the front end of the sensor. When the sensor is placed in the measured solution, nitrite ions in the solution enter the interior of the sensor through the selective membrane. The cation inside the sensor rises and forms a tiny potential difference with the reference electrode. The magnitude of the potential difference is proportional to the concentration of nitrite ions. The potential difference is amplified and processed through a circuit, so as to obtain the concentration of nitrite ions.

Wall-mounted Nitrate Nitrogen Analyzer

Product Introduction The online nitrate nitrogen analyzer is a precision instrument mainly used to detect nitrate nitrogen ions in liquids. There is a nitrate nitrogen ion selective membrane at the front end of the sensor. When the sensor is placed in the measured solution, nitrate nitrogen ions in the solution enter the inside of the sensor through the selective membrane. The cation concentration inside the sensor increases, forming a tiny potential difference with the reference electrode. The potential difference is proportional to the concentration of nitrate nitrogen ions. The potential difference is amplified by the circuit to obtain the concentration of nitrate nitrogen ions.

Wall-mounted Nitrate/Nitrite Analyzer

Product Introduction The online nitrate analyzer is a precision instrument mainly used to detect nitrate ions in liquids. There is a nitrate ion selective membrane at the front end of the sensor. The sensor is placed in the test solution. Nitrate ions in the test solution enter the interior of the sensor through the selective membrane. The cation concentration inside the sensor increases, forming a tiny potential difference with the reference electrode. The potential difference is positively correlated with the concentration of nitrate ions. The circuit amplifies the potential difference to obtain the concentration of nitrate ions.

Wall-mounted Copper Ion Analyzer

Product Introduction The online copper ion analyzer is a precision instrument mainly used to detect copper ions in liquids. There is a copper ion selective membrane at the front end of the sensor. When the sensor is placed in the measured solution, copper ions in the solution enter the interior of the sensor through the selective membrane. The cation concentration inside the sensor increases, forming a tiny potential difference with the reference electrode. The potential difference is proportional to the copper ion concentration. The potential difference is amplified through the circuit. Thus, the copper ion concentration is obtained.

Wall-mounted Fluoride Ion Analyzer

Product Introduction The online fluoride ion analyzer is a precision instrument mainly used to detect fluoride ions in liquids. There is a layer of fluoride ion solid membrane at the front end of the sensor. The sensor is placed in the tested solution, and fluoride ions in the tested solution enter the interior of the sensor through the solid membrane. The cation concentration inside the sensor increases, forming a tiny potential difference with the reference electrode. The potential difference is proportional to the fluoride ion concentration. The potential difference is amplified through the circuit. Thus, the fluoride ion concentration is obtained.

Wall-mounted Chloride Ion Analyzer

Product IntroductionThe online chloride ion analyzer is a precision instrument mainly used to detect chloride ions in liquids. There is a layer of chloride ion solid membrane at the front end of the sensor. The sensor is placed in the measured solution, and the chloride ions in the measured solution enter the interior of the sensor through the solid membrane. The cation inside the sensor rises, forming a tiny potential difference with the reference electrode. The potential difference is proportional to the concentration of chloride ions. The potential difference is amplified by the circuit. Thus, the chloride ion concentration is obtained.

Wall-mounted Calcium Ion Analyzer

Product Introduction The online calcium ion analyzer is a precision instrument mainly used to detect calcium ions in liquids. There is a calcium ion selective membrane at the front end of the sensor. The sensor is placed in the test solution. Calcium ions in the test solution enter the interior of the sensor through the selective membrane. A tiny potential difference is formed between the cations inside the sensor and the reference electrode. The potential difference is positively proportional to the calcium ion concentration. The circuit amplifies the potential difference, so that the calcium ion concentration can be obtained.

Wall-mounted Salinometer

Product Brief A salinometer is an instrument that measures the total salt content in water using an electrical conductivity sensor. The electrical conductivity refers to the conductivity of a 1cm³ solution filled between two parallel electrodes 1cm apart. Therefore, when the electrical conductivity (EC) is known, the salinity value can be obtained according to the relationship between salinity and electrical conductivity.

Wall-mounted Hardness Meter

Product Introduction​ The online hardness analyzer is a precision instrument mainly used to detect the total amount of calcium ions in liquids. There is a calcium-magnesium ion selective membrane at the front end of the sensor. When the sensor is placed in the tested solution, calcium and magnesium ions in the tested solution enter the interior of the sensor through the selective membrane. The cation concentration inside the sensor increases, forming a tiny potential difference with the reference electrode. The magnitude of the potential difference is proportional to the concentration of calcium and magnesium ions. The circuit amplifies the potential difference, thereby obtaining the concentration of calcium and magnesium ions and calculating the hardness value.

Wall-mounted Conductivity Analyzer

Product Introduction Conductivity is a numerical representation of a solution's ability to conduct electric current. The conductivity of water is related to the amount of inorganic acids, alkalis, and salts it contains. When their concentrations are low, conductivity increases with the increase in concentration. Therefore, this indicator is commonly used to infer the total concentration of ions in water or the salt content. The measurement principle of conductivity is to place two parallel electrodes in the solution to be measured. A certain electric potential (usually a sine wave voltage) is applied across the electrodes, and then the electrical conductivity between the electrodes is determined by the voltage and current. Conductivity is actually the resistance of the solution part between parallel electrodes determined by Ohm's law.

Wall-mounted Photometric Sludge Concentration Meter

Product Introduction The Photometric Sludge Concentration Meter is an online monitoring instrument designed to measure the concentration of suspended solids in sludge during municipal sewage and industrial wastewater treatment processes. It can be used to detect changes in the concentration of suspended solids during biochemical treatment and provide continuous and accurate measurement results. It adopts innovative multi-beam mutual compensation technology, which can eliminate measurement errors caused by dirt on the sensor's optical window, significantly improving measurement accuracy, reducing maintenance workload, and enhancing work reliability.
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