Description
Specifications Table
| Product Name | Boron ICP Standard Traceable to SRM from Merck |
|---|---|
| Quantity/Pack Size | 100 mL |
| Form | Liquid |
| Grade | ICP Standard |
| Application | ICP-OES, ICP-MS, trace element analysis |
Product Description
When it comes to precise elemental analysis, accuracy is non-negotiable. The Boron ICP Standard Traceable to SRM from Merck (1.70307.0100) is designed for researchers, students, and lab professionals who demand reliable results in ICP-OES and ICP-MS applications. This high-purity standard ensures traceability to certified reference materials, making it a trusted choice for calibration and quality control in laboratories across India.
Whether you’re conducting environmental testing, material science research, or routine lab analysis, this boron standard solution delivers consistent performance. The 100 mL pack size is ideal for frequent use, reducing the need for frequent reorders while maintaining freshness. With eqipped, you get authentic Merck standards delivered to your lab, ensuring you never compromise on precision.
Upgrade your lab’s accuracy with the Boron ICP Standard from eqipped. Order now for seamless calibration and reliable results.
FAQs
What is the shelf life of this boron ICP standard?
The shelf life is typically 12-24 months when stored as recommended. Always check the label for the exact expiry date.
Can this standard be used for both ICP-OES and ICP-MS?
Yes, this boron standard solution is suitable for both ICP-OES and ICP-MS applications, ensuring versatility in your lab.
Is this product traceable to NIST or other international standards?
Yes, it is traceable to SRM (Standard Reference Materials), ensuring compliance with global metrological standards.
What is the concentration of boron in this standard?
The exact concentration is specified on the certificate of analysis provided with the product. Typically, it is 1000 mg/L.
How should I store this boron standard solution?
Store it in a tightly sealed container at room temperature, away from direct sunlight and moisture.