Pyrolysis temperature effects of tomato stems biochar on leaching dynamics of ammonium, nitrate, and dissolved organic carbon in sandy soil
Amer Eisa Amer, Mohamed Ali El-Desoky, Abu El-Eyuoon Abu Zied Amin, Hosny Mubarak Farrag

TL;DR
This study shows how biochar made from tomato stems at different temperatures can improve sandy soil quality and reduce the leaching of nitrogen compounds.
Contribution
The study reveals the differential effectiveness of biochar pyrolyzed at various temperatures in reducing ammonium and nitrate leaching in sandy soil.
Findings
Biochar produced at 400°C was most effective in reducing ammonium leaching.
Biochar at 600°C was most effective in reducing nitrate leaching.
All biochar treatments increased leaching of dissolved organic carbon compared to the control.
Abstract
The study objectives are to examine the effect of doses of tomato stems biochar (TSB) produced at different pyrolysis temperatures (250, 400, and 600 °C) on the leaching of nitrate, ammonium, and dissolved organic carbon, as well as quality indicators of sandy soil. The column experiment was including these treatments; control (no biochar added), 1% TSB250, 2.5% TSB250, 5% TSB250, 1% TSB400, 2.5% TSB400, 5% TSB400, 1% TSB600, 2.5% TSB600, and 5% TSB600. Each plastic column was filled with 1 kg of sandy soil. Tomato stems biochar was applied at three doses (1%, 2.5%, and 5% w/w). Soil available nitrogen increased significantly relative to the control treatment by 9.50%, 31.69%, 46.71%, 69.07%, 15.24%, 37.43%, and 75.57% under applying 1% TSB250, 1% TSB400, 2.5% TSB400, 5% TSB400, 1% TSB600, 2.5% TSB600, and 5% TSB600 treatments, respectively. Results showed significant decreases in…
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Taxonomy
TopicsSoil Carbon and Nitrogen Dynamics · Thermochemical Biomass Conversion Processes · Wastewater Treatment and Reuse
