Free quotations · Genuine products · Delivery across Thailand and worldwide

Product code: MX-11899
Feststoffelektrode, Halbzelle aus Epoxy, ausgelegt als Indikator bei Titrationen mit Chelaten. Messbereiche 1 M bis 10 -7 M / 11200 bis 0,01 mg/l ; Temperatur: 0 bis 80°C / Optimaler pH Bereich:2 -12.5pH Approximative Steilheit +28 Körper Epoxy Kabel Coaxial 1m Abmessungen Ø 12 mm x 120 mm Weitere Erklärung: Die…
Prices are quoted, not listed. Add this product to your quote request and we reply with pricing and availability, usually within one business day. No payment, no account, no minimum order.
Prefer to talk? Call +66 99 241 5692, email us or chat on LINE.
The HI4003 cadmium ion-selective electrode is a potentiometric half-cell sensor housed within an epoxy body. The internal elements are isolated from the sample by a compressed cadmium sulfide/silver sulfide sensing membrane. This solid-state sensor requires a separate reference electrode to complete the measurement system. Hanna's solid-state half-cell ISEs are designed for use with the HI5315 reference half-cell. The reference half-cell features a cone style junction. The skirted cone geometry of the reference forms the liquid junction with the test solution at the tip of the junction cone, producing a highly stable reference potential and consistent flow rates of electrolyte into the solution. A simple press of the top portion of the ISE makes it easy to empty the electrolyte fill solution and replace when necessary. For the HI4003 to measure cadmium accurately, it is important that the ionic strength of the standards and sample be adjusted to a high and constant value with the HI4000-00 ionic strength adjuster (ISA) solution. The ISA ensures that the activity coefficient is constant so the concentration of free cadmium ions can be measured. Measuring all solutions with a constant ionic strength reduces the margin of error between measurements. The HI4003 cadmium solid-state ISE can measure from 0.1µM (0.01 mg/L) to 0.1M (11,200 mg/L). Conversion Table for Cd2+ Multiply moles/L (M) to ppm (mg/L) 1.124 x 105 ppm (mg/L) to M (moles/L) 8.896x10-6 Features at-a-glance Fixed Sensing Modules Solid state half-cell ISEs are electrodes that detect free ions in a solution. The highly insoluble, compressed sensing pellet is attached to the HI4003 cadmium half-cell by a fixed sensing module for ease of use. Durable Epoxy Body The probe body of the cadmium half-cell ISE is composed of durable epoxy resin. BNC Connection The HI4003 has a universal BNC connector for easy connection to any benchtop meter with a female BNC probe input. Theory of Operation A solid state sensor electrode develops a voltage due to the ion exchange that occurs between the solution and the inorganic membrane. An equilibrium occurs due to the highly limited solubility of the membrane material in the sample. When the ionic strength of the solution is fixed by the addition of ISA, the voltage is proportional to the concentration of free ions in solution.
| Messbereiche | 1 M bis 10 -7 M / 11200 bis 0,01 mg/l ; Temperatur: 0 bis 80°C / Optimaler pH Bereich:2 -12.5pH |
|---|---|
| Approximative Steilheit | +28 |
| Körper | Epoxy |
| Kabel | Coaxial 1m |
| Abmessungen | Ø 12 mm x 120 mm |

Hanna
MX-12184
HI7035/1L is a premium quality 111,800 µS/cm conductivity solution standardized with a conductivity meter that has been calibrated with potassium chloride NIST 2202 SRM (Standard Reference Material) in deionized water for analytical use in accordance with ISO 3696/BS3978.

Hanna
MX-12186
H7035M is a premium quality 111,800 µS/cm conductivity solution standardized with a conductivity meter that has been calibrated with potassium chloride NIST 2202 SRM (Standard Reference Material) in deionized water for analytical use in accordance with ISO 3696/BS3978.

Hanna
MX-12011

Hanna
MX-12163
H7030/1L is a premium quality 12,880 µS/cm conductivity solution standardized with a conductivity meter that has been calibrated with potassium chloride NIST 2202 SRM (Standard Reference Material) in deionized water for analytical use in accordance with ISO 3696/BS3978.