Valorizing lignite waste into engineered nitro-humic fertilizer: Advancing resource efficiency in the era of a circular economy

Author:

Sarlaki Ehsan,Kianmehr Mohammad Hossein,Kermani Ali-mashaallahORCID,Ghorbani Marzieh,Ghorbani Javid Majid,Rezaei Meisam,Peng Wanxi,Lam Su Shiung,Tabatabaei Meisam,Aghbashlo MortazaORCID,Chen Xiangmeng

Publisher

Elsevier BV

Subject

Management, Monitoring, Policy and Law,Pharmaceutical Science,Pollution,Environmental Chemistry

Reference79 articles.

1. Formulation and characterization of polyester-lignite composite coated slow-release fertilizers;Abhiram;J. Coating Technol. Res.,2022

2. Iron-rich sand promoted nitrate reduction in a study for testing of lignite based new slow-release fertilisers;Abhiram;Sci. Total Environ.,2023

3. Optimising water holding capacity and hydrophobicity of biochar for soil amendment – a review;Adhikari;Sci. Total Environ.,2022

4. Study on the effects of humic acid-urea fertilizers application on some agronomic characteristics of maize (Zea mays L);Amini;Appl. Soil Res.,2018

5. Understanding the role of humic acids on crop performance and soil health;Ampong;Front. Agron.,2022

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