Development of ELN/COL- LA/CA matrix for urea encapsulation and study of its nitrogen release kinetics

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Direct Administration Of Chemical Fertilizers On Soil Was Shown To Have Low Utilization Efficiency Of The Nutrients Absorbed. The High Solubility Of Chemicals Like Urea As A Fertilizer Has Higher Chances Of Leaching Resulting In Losses Of Nutrients. In This Research, A New Type Of Least Water Soluble Eln/Col-La/Ca Matrix Was Synthesized To Reduce The Release Of Nutrients From Urea Fertilizer. Eln/Col-Mixture Was Extracted From Waste Broiler Skin And Modified With Lactic And Citric Acids For Urea Encapsulation. The Urea Powder Was Also Dispersed On La/Ca Modified Eln/Col Matrix With A Matrix To Urea Ratio Of 1:1.5,1:1,1:2,And 1:3. The Effect Of Reaction Time, Temperature, And Lactic Acid To Citric Acid Ratio On The Water Solubility Of The Eln/Col-La/Ca Matrix Was Studied. The Extracted Eln/Col From Broiler Skin Was Characterized By Ftir. 1h Nmr And 13c-Nmr Were Also Applied To Further Characterize The Eln/Col-La/Ca Matrixes For The Reaction Mechanism And The Type Of Bonds Formed During The Condensation Reaction Between Eln/Col And La/Ca. The Solubility Test For The Synthesized Eln/Col-La/Ca Matrix Was Investigated Following The Kjeldahl Method For Its Release Kinetics. The Ftir And Nmr Results Show That The Eln/Col-La/Ca Matrix Synthesized Was Formed Due To The Reaction Between The Primary Structure Of Eln/Col And That Of La/Ca With A Formation Of Amide As Well As Ester Bonds. Further Results From The Solubility Test, As Well As The Ftir Analysis, Shows That The Matrix Which Was Synthesized At A Reaction Time Of 4 Hours, Reaction Temperature Of 70 Oc, And Lactic Acid To Citric Acid Ratio Of 1:1.5 Was Found To Be The Least Water Soluble Matrix. The Nitrogen Release Data Were Fitted And Compared With Two Empirical Models Namely Higuchi And The Korsmeyer-Peppas To Evaluate The Release Kinetics. The Nitrogen Release Kinetics For Urea Dispersed Eln/Col?�?La/Ca Matrix Was Found To Have A Good Korsmeyer-Peppas Model Fitting At An R2 Value Of More Than 0.98. The Diffusion Exponent (N) For The Three Samples (1:0.5, 1:1, And 1:2) Matrix To Urea Ratio Was (N ??? 0.85) Showing A Non-Fickian Diffusion, Case Ii Transport Mechanism. But For The Fourth Sample Which Is A (1:3) Ratio The Value Of The Diffusion Exponent Was (N=0.75) Representing Anomalous Transport

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