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Homepage>BS Standards>65 AGRICULTURE>65.080 Fertilizers>PD CEN/TS 17784-1:2022 Organo-mineral fertilizers. Identification of complexing agents. Method using UV-Vis spectrophotometry and gravimetry
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PD CEN/TS 17784-1:2022 Organo-mineral fertilizers. Identification of complexing agents. Method using UV-Vis spectrophotometry and gravimetry

PD CEN/TS 17784-1:2022

Organo-mineral fertilizers. Identification of complexing agents. Method using UV-Vis spectrophotometry and gravimetry

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Standard number:PD CEN/TS 17784-1:2022
Pages:18
Released:2022-07-20
ISBN:978 0 539 17912 5
Status:Standard
PD CEN/TS 17784-1:2022 Organo-mineral fertilizers. Identification of complexing agents. Method using UV-Vis spectrophotometry and gravimetry

PD CEN/TS 17784-1:2022 Organo-mineral fertilizers. Identification of complexing agents. Method using UV-Vis spectrophotometry and gravimetry

Standard Number: PD CEN/TS 17784-1:2022

Pages: 18

Released: 2022-07-20

ISBN: 978 0 539 17912 5

Name: Organo-mineral fertilizers. Identification of complexing agents. Method using UV-Vis spectrophotometry and gravimetry

Status: Standard

Overview

Unlock the potential of your agricultural practices with the latest standard in organo-mineral fertilizers. The PD CEN/TS 17784-1:2022 provides a comprehensive method for the identification of complexing agents using UV-Vis spectrophotometry and gravimetry. This standard is essential for professionals in the agricultural and environmental sectors who are committed to enhancing the quality and efficiency of their fertilization processes.

Why Choose PD CEN/TS 17784-1:2022?

In the ever-evolving field of agriculture, staying ahead with the latest standards is crucial. The PD CEN/TS 17784-1:2022 offers a scientifically robust and reliable method for identifying complexing agents in organo-mineral fertilizers. This ensures that your fertilizers are not only effective but also environmentally friendly.

Key Features

  • Comprehensive Methodology: This standard outlines a detailed procedure using UV-Vis spectrophotometry and gravimetry, ensuring accurate and reproducible results.
  • Environmental Compliance: By adhering to this standard, you can ensure that your fertilization practices meet the latest environmental regulations and standards.
  • Enhanced Fertilizer Efficiency: Proper identification of complexing agents can significantly improve the efficiency and effectiveness of your fertilizers, leading to better crop yields and soil health.
  • Expertly Crafted: Developed by leading experts in the field, this standard is based on the latest scientific research and technological advancements.

Detailed Methodology

The PD CEN/TS 17784-1:2022 standard provides a step-by-step guide for the identification of complexing agents in organo-mineral fertilizers. The methodology involves the use of UV-Vis spectrophotometry and gravimetry, two highly reliable and precise analytical techniques.

UV-Vis Spectrophotometry

UV-Vis spectrophotometry is a powerful analytical technique used to measure the absorbance of UV and visible light by a sample. This method is particularly useful for identifying complexing agents in fertilizers, as it allows for the detection of specific compounds based on their absorbance spectra.

Gravimetry

Gravimetry is a classical analytical technique that involves the measurement of mass. In the context of this standard, gravimetry is used to determine the concentration of complexing agents in the fertilizer sample. This method is highly accurate and provides reliable quantitative data.

Applications

The PD CEN/TS 17784-1:2022 standard is applicable to a wide range of organo-mineral fertilizers used in various agricultural practices. Whether you are involved in large-scale farming, horticulture, or environmental management, this standard will help you optimize your fertilization processes and achieve better results.

Agricultural Sector

For farmers and agricultural professionals, this standard provides a reliable method for ensuring the quality and effectiveness of their fertilizers. By accurately identifying complexing agents, you can enhance crop yields, improve soil health, and reduce environmental impact.

Environmental Management

Environmental professionals can use this standard to ensure that fertilization practices are in line with the latest environmental regulations. By adhering to this standard, you can minimize the risk of soil and water contamination and promote sustainable agricultural practices.

Benefits

Adopting the PD CEN/TS 17784-1:2022 standard offers numerous benefits, including:

  • Improved Fertilizer Quality: Ensure that your fertilizers are of the highest quality and effectiveness.
  • Regulatory Compliance: Meet the latest environmental and agricultural regulations with confidence.
  • Enhanced Crop Yields: Optimize your fertilization practices to achieve better crop yields and soil health.
  • Environmental Protection: Reduce the risk of soil and water contamination by using environmentally friendly fertilizers.
  • Scientific Rigor: Benefit from a standard that is based on the latest scientific research and technological advancements.

Conclusion

The PD CEN/TS 17784-1:2022 standard is an essential tool for anyone involved in the production, application, or regulation of organo-mineral fertilizers. By providing a reliable and scientifically robust method for identifying complexing agents, this standard helps you ensure the quality, effectiveness, and environmental compliance of your fertilization practices. Invest in the future of your agricultural practices with the PD CEN/TS 17784-1:2022 standard and unlock the full potential of your fertilizers.

DESCRIPTION

PD CEN/TS 17784-1:2022


This standard PD CEN/TS 17784-1:2022 Organo-mineral fertilizers. Identification of complexing agents. is classified in these ICS categories:
  • 65.080 Fertilizers
This document specifies two methods required for the identification of lignosulfonate by UV-Vis spectrophotometry (method A) and gravimetry (method B) in organo-mineral fertilizers. NOTE Lignosulfonate, as a complexing agent, is a natural polymer produced as a by-product of the sulfite method for manufacturing paper from wood pulp in the paper industry. As a natural polymer, it presents a poorly defined and variable chemical structure. It is an intricate mixture of small- to moderate-sized polymeric compounds with sulfonate groups attached to the molecule, and diverse complexing capacity.