The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement
The influence of ZnCl2 activation on macronutrient Nitrogen, Phosphor, Potassium (NPK) adsorption simultaneously using Coconut Shell Biochar for soil fertility improvement has been conducted. Biochar formation is carried out at temperature up to 500 oC using variation in the concentration of ZnCl2 0...
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Jenderal Soedirman University
2021-03-01
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doaj-cc3ee130f9584594b4edd011dea029592021-04-10T06:11:45ZengJenderal Soedirman UniversityMolekul1907-97612503-03102021-03-01161758110.20884/1.jm.2021.16.1.713327The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility ImprovementCandra Purnawan0Christina Candra Dewi1Syafrudin syafrudin2Bimastyaji Surya Ramadan3Mochamad Arief Budihardjo4Agus Jatnika Effendi5Syarif Hidayat6Department of Chemistry Mathematics and Natural Sciences Sebelas Maret University (UNS), Surakarta, Central Java, IndonesiaDepartment of Chemistry Mathematics and Natural Sciences Sebelas Maret University (UNS), Surakarta, Central Java, IndonesiaDepartment of Environmental Engineering, Faculty of Engineering, Diponegoro University (UNDIP), Semarang, Central Java, IndonesiaDepartment of Environmental Engineering, Faculty of Engineering, Diponegoro University (UNDIP), Semarang, Central Java, IndonesiaDepartment of Environmental Engineering, Faculty of Engineering, Diponegoro University (UNDIP), Semarang, Central Java, IndonesiaDepartment of Environmental Engineering, Faculty of Engineering, Bandung Institute of Technology, Bandung, West Java, IndonesiaDepartment of Environmental Engineering, Faculty of Engineering, Bandung Institute of Technology, Bandung, West Java, IndonesiaThe influence of ZnCl2 activation on macronutrient Nitrogen, Phosphor, Potassium (NPK) adsorption simultaneously using Coconut Shell Biochar for soil fertility improvement has been conducted. Biochar formation is carried out at temperature up to 500 oC using variation in the concentration of ZnCl2 0,5; 1,0; 1,5; 2,0; dan 2,5 M. The biochar formed was characterized using Fourier Transform InfraRed (FTIR) spectroscopy and Surface Area Analyzer (SAA). Whereas NPK analysis has used the Indonesian standard method (SNI 7763: 2018). Based on this research, it was concluded that the greater the concentration of ZnCl2 activator, indicated that the higher intensity of the spectra of –OH and –NH2 at wave number 3400 cm-1 and 1600 cm-1. It showed that biochar activation was higher and a more active functional group was opened. Increasing the concentration of ZnCl2 activator has increased Biochar adsorption of NPK macronutrients. The optimum condition for activation of coconut shell Biochar was activation with ZnCl2 2.5 M. The addition of activated Biochar was increased soil adsorption on NPK macronutrients. Biochar addition had increased Nitrogen (N) adsorption up to 23.53%, Phosphor (P) up to 200%, and Potassium (K) up to 41.24%.https://ojs.jmolekul.com/ojs/index.php/jm/article/view/713 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Candra Purnawan Christina Candra Dewi Syafrudin syafrudin Bimastyaji Surya Ramadan Mochamad Arief Budihardjo Agus Jatnika Effendi Syarif Hidayat |
spellingShingle |
Candra Purnawan Christina Candra Dewi Syafrudin syafrudin Bimastyaji Surya Ramadan Mochamad Arief Budihardjo Agus Jatnika Effendi Syarif Hidayat The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement Molekul |
author_facet |
Candra Purnawan Christina Candra Dewi Syafrudin syafrudin Bimastyaji Surya Ramadan Mochamad Arief Budihardjo Agus Jatnika Effendi Syarif Hidayat |
author_sort |
Candra Purnawan |
title |
The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement |
title_short |
The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement |
title_full |
The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement |
title_fullStr |
The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement |
title_full_unstemmed |
The Influence of ZnCl2 Activation on Macronutrient NPK Adsorption Simultaneously Using Coconut Shell Biochar for Soil Fertility Improvement |
title_sort |
influence of zncl2 activation on macronutrient npk adsorption simultaneously using coconut shell biochar for soil fertility improvement |
publisher |
Jenderal Soedirman University |
series |
Molekul |
issn |
1907-9761 2503-0310 |
publishDate |
2021-03-01 |
description |
The influence of ZnCl2 activation on macronutrient Nitrogen, Phosphor, Potassium (NPK) adsorption simultaneously using Coconut Shell Biochar for soil fertility improvement has been conducted. Biochar formation is carried out at temperature up to 500 oC using variation in the concentration of ZnCl2 0,5; 1,0; 1,5; 2,0; dan 2,5 M. The biochar formed was characterized using Fourier Transform InfraRed (FTIR) spectroscopy and Surface Area Analyzer (SAA). Whereas NPK analysis has used the Indonesian standard method (SNI 7763: 2018). Based on this research, it was concluded that the greater the concentration of ZnCl2 activator, indicated that the higher intensity of the spectra of –OH and –NH2 at wave number 3400 cm-1 and 1600 cm-1. It showed that biochar activation was higher and a more active functional group was opened. Increasing the concentration of ZnCl2 activator has increased Biochar adsorption of NPK macronutrients. The optimum condition for activation of coconut shell Biochar was activation with ZnCl2 2.5 M. The addition of activated Biochar was increased soil adsorption on NPK macronutrients. Biochar addition had increased Nitrogen (N) adsorption up to 23.53%, Phosphor (P) up to 200%, and Potassium (K) up to 41.24%. |
url |
https://ojs.jmolekul.com/ojs/index.php/jm/article/view/713 |
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