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Global Change Biology|August 25, 2022
Contrasting effects of altered precipitation regimes on soil nitrogen cycling at the global scaleQiqian Wu, Kai Yue, Yuandan Ma, et al.Journal of Hazardous Materials|June 25, 2021
Nickel in soil and water: Sources, biogeochemistry, and remediation using biocharAli El-Naggar, Naveed Ahmed, Ahmed Mosa, et al.Global Change Biology|January 17, 2025
Unlocking Mechanisms for Soil Organic Matter Accumulation: Carbon Use Efficiency and Microbial Necromass as the KeysYang Yang, Anna Gunina, Huan Cheng, et al.Chemosphere|May 31, 2019
Biochar properties and lead(II) adsorption capacity depend on feedstock type, pyrolysis temperature, and steam activationJin-Hyeob Kwak, Md Shahinoor Islam, Siyuan Wang, et al.Chemosphere|May 16, 2022
Modified and pristine biochars for remediation of chromium contamination in soil and aquatic systemsAli El-Naggar, Ahmed Mosa, Naveed Ahmed, et al.Chemosphere|May 3, 2023
Biogeochemical behaviour and toxicology of chromium in the soil-water-human nexus: A reviewWael I Mortada, Ali El-Naggar, Ahmed Mosa, et al.Global Change Biology|September 12, 2021
Global gross nitrification rates are dominantly driven by soil carbon-to-nitrogen stoichiometry and total nitrogenAhmed S Elrys, Jing Wang, Mohamed A S Metwally, et al.Global Change Biology|June 12, 2025
Unfolding the Potential of Soil Microbial Community Diversity for Accumulation of Necromass Carbon at Large ScaleYang Yang, Anna Gunina, Ji Chen, et al.Journal of Environmental Management|April 22, 2020
Plant diversity improves the effluent quality and stability of floating constructed wetlands under increased ammonium/nitrate ratio in influentXiao Wang, Bin Luo, Lichunxiao Wang, et al.Environment International|May 24, 2021
Mechanistic insights into the (im)mobilization of arsenic, cadmium, lead, and zinc in a multi-contaminated soil treated with different biocharsAli El-Naggar, Scott X Chang, Yanjiang Cai, et al.Pageof 16