EN ISO 11887-2009 is an international standard that specifies the method for the determination of selected elements in water samples by inductively coupled plasma optical emission spectrometry (ICP-OES). This analytical technique allows for the simultaneous analysis of multiple elements at extremely low levels, making it a valuable tool in environmental monitoring, research, and industrial applications.
Importance of EN ISO 11887-2009
The implementation of EN ISO 11887-2009 has significant implications for various industries and organizations involved in water quality assessment. This standard enables accurate and reliable quantification of elements such as heavy metals, nutrients, and trace elements in water, facilitating comprehensive analysis and monitoring of potential environmental risks and impacts.
Application of EN ISO 11887-2009
EN ISO 11887-2009 plays a crucial role in ensuring the safety and compliance of drinking water sources. By analyzing water samples using ICP-OES, it becomes possible to detect and quantify potentially harmful contaminants, including arsenic, lead, mercury, and other substances that can pose serious health risks if present above permissible limits. Regular monitoring based on this standard ensures the protection of public health and helps maintain the quality of drinking water supplies.
Benefits of EN ISO 11887-2009
EN ISO 11887-2009 offers numerous benefits in terms of accuracy, reliability, and efficiency. The use of ICP-OES allows for simultaneous determination of multiple elements within a single sample, reducing the time, cost, and resources required for analysis. The standardized methodology ensures consistent results across different laboratories, enabling reliable comparison of data and effective collaboration among researchers and regulatory bodies.
In conclusion, EN ISO 11887-2009 provides a comprehensive framework for the analysis of selected elements in water samples using ICP-OES. Its importance lies in promoting accurate water quality assessment, facilitating compliance with regulatory standards, and safeguarding public health. The application of this standard ensures the reliable detection and quantification of potentially harmful contaminants, supporting effective environmental monitoring and research efforts around the world.
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