Skip to content
Research Article Open access CC BY 3.0

A Comparative Study on the use of Calcium Acetate Lactate, Calcium Chloride and Acidic Ammonium Acetate- Ethylene Diaminetetra Acetic Acid (AAAc-EDTA) for the Quantification of Extractable, P, K and Mg from Acidic Soils

Nkengafac Jetro Njukeng, Elambo George Nkeng, Ejolle Eugene Ehabe, Ewald Schnug

International Research Journal of Pure and Applied Chemistry · pp. 22–31 · Published 8 Feb 2013

10.9734/IRJPAC/2013/2600

Abstract

Soils need to be tested before and after the establishments of plantations. This is because the results of a soil test gives a relative measure of the amount of nutrients available in the soil and thus are use as a base for nutrient diagnosis. The Calcium Acetate lactate (CAL) method for the extraction of available soil K and P and the CaCl2method for the extraction of available Mg were compared to the Acidic ammonium acetate- ethylene diaminetetraacetic acid (AAAc-EDTA) method for the determination of these elements in soil. A total of 130 samples were collected during a survey and analysed for K, P and Mg content after using the different extracting solutions. According to the results obtained, CAL and AAAc-EDTA methods were similar in their extracting power for P. In the case of K, the CAL method extracted only about half of the amount of K extracted using the AAAc-EDTA method. On the other hand, CaCl2 extracted about twice the amount of Mg extracted using the AAAc-EDTA method. These extraction methods were poorly correlated to each other except the methods for P. This shows that P data obtained by the two methods can be interpreted in the same way.  The difference in the quantities of nutrients extracted was associated to the differences in the reaction mechanisms between the soil nutrients and the extracting solutions. There was an influence of pH and organic carbon content on the amount of K and Mg extracted. These preliminary studies indicate that the choice of the extraction procedure may depend on the resources available as well as the soil properties. However, the AAAc-EDTA extracting solution offers the advantage of extracting many nutrients and can save time and energy.  

Calcium acetate lactate calcium chloride acidic ammonium acetate-ethylenediaminetetraacetic acid potassium magnesium and phosphorus

Cited by 6

Diagnosis and Optimization of Phosphorus Nutrition Conditions of Grain Crops in Northern Kazakhstan

Valentina Chernenok, Dietmar Barkusky · Environmental Science and Engineering · 2013

Evaluation of multi-nutrient extractants for determination of available phosphorus, potassium and micronutrient cations in red soils of Alfisols

Krishna Murthy R, Govinda K, Bhavya N · International Journal of Advanced Biochemistry Research · 2024

Proximal Sensing Sensors for Monitoring Crop Growth

Lea Hallik, Egidijus Šarauskis, Marius Kazlauskas · Springer Optimization and Its Applications · 2022

Evaluation of multi-nutrient extractants for determination of available P, K, and micronutrient cations in soil

Sanjay K. Sharma, Ankita Sharma, Surinder Rana · Journal of Plant Nutrition · 2018

Benchmarking soil potassium extraction methods and establishing critical thresholds for wheat production in Inceptisols

Shubhadip Dasgupta, Rajat Pandit, Sudip Sengupta · Soil and Tillage Research · 2026

Assessment of the impact of plant species composition and drought stress on survival of strongylid third-stage larvae in a greenhouse experiment

Friederike Knapp-Lawitzke, Frank Küchenmeister, Kai Küchenmeister · Parasitology Research · 2014

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

6

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.