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Environmental Remediation
Iron Modified Orange Peel Biochar Achieves Over Ninety Percent Removal of Emerging Antibiotic Contaminants from Wastewater
Highly Conductive Graphitized Biochar Increases Active Iron Generation by Nearly Nineteen Percent to Accelerate Antibiotic Degradation in Paddy Soils
Sorghum Cultivar Biochar Reduces Carbon Dioxide Emissions by Over Two Hundred Percent Compared to Raw Plant Waste
Hierarchical Porous Biochar from Banana Straw Achieves a Surface Area Increase from Seven to Nine Hundred Sixty Square Meters per Gram
Biochar Application Within Optimal Thresholds Can Increase Soil Water-Holding Capacity by 14.3% and Reduce Greenhouse Gas Emissions by 31.5%
Novel Biochar Nanosphere Hybrids Achieve a Maximum Uranium Adsorption Capacity of 203.4 Milligrams per Gram to Support Seawater Extraction
Hyperaccumulating Plants Can Remove Over Ten Thousand Milligrams of Toxic Nickel per Kilogram of Dry Biomass to Clean Contaminated Soil
Machine Learning Model Predicts Biochar is Beneficial for Ten Percent Plant Growth but Increases Hazardous Risks for Soil Animals by Over Twenty Percent
Shaanxi University of Science and Technology Engineers Orange Waste Biochar Achieving 237.53 Milligrams per Gram Methylene Blue Adsorption Capacity
Sichuan Agricultural University Engineers One-Step Sludge Biochar to Nearly Double Aqueous Cadmium Removal Capacity
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