2024
DOI: 10.1021/acsomega.3c06687
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Agricultural Waste-Derived Biochar-Based Nitrogenous Fertilizer for Slow-Release Applications

Karthikeyan Ramesh,
Vimala Raghavan

Abstract: The exponential increase in population demands more food to be produced by employing modern technologies. There is a worldwide increase in the use of chemical fertilizers to rapidly enhance the crop yield. Nitrogen is a crucial plant nutrient, and nitrogenous fertilizers are the most widely used fertilizers. However, the high solubility and volatility of commonly used nitrogenous fertilizers have led to low nutrient use efficiency and alarming environmental pollution. They are lost due to the volatilization of… Show more

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Cited by 4 publications
(1 citation statement)
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“…In the agricultural field, hydrothermal liquefied biochar can be used as a soil conditioner to improve soil structure and fertility. Its porous structure and adsorption properties help improve the water-holding capacity, nutrient retention and aeration of the soil. Faria et al used sewage sludge biochar to replace organic fertilizers in corn and verified that biochar increased the chemical properties of the soil, especially phosphorus, magnesium, cation exchange capacity and alkali saturation, allowing plants to better absorb nutrients and increase corn yield . Guo et al utilized rice straw biochar combined with zerovalent and quicklime to significantly enhance the chemical fertility of soil, leading to increased levels of TOC, cation exchange capacity (CEC), available phosphorus, and available potassium .…”
Section: Characteristics Of Htl Productsmentioning
confidence: 99%
“…In the agricultural field, hydrothermal liquefied biochar can be used as a soil conditioner to improve soil structure and fertility. Its porous structure and adsorption properties help improve the water-holding capacity, nutrient retention and aeration of the soil. Faria et al used sewage sludge biochar to replace organic fertilizers in corn and verified that biochar increased the chemical properties of the soil, especially phosphorus, magnesium, cation exchange capacity and alkali saturation, allowing plants to better absorb nutrients and increase corn yield . Guo et al utilized rice straw biochar combined with zerovalent and quicklime to significantly enhance the chemical fertility of soil, leading to increased levels of TOC, cation exchange capacity (CEC), available phosphorus, and available potassium .…”
Section: Characteristics Of Htl Productsmentioning
confidence: 99%