Amarasinghe, B. M. W. P. K., and Williams, R. A. (2007). Tea waste as a low cost adsorbent for the removal of Cu and Pb from wastewater. Chemical Engineering Journal, 132(1), 299-309.
Benmessaoud, A., Nibou, D., Mekatel, E. H., and Amokrane, S. (2020). A Comparative Study of the Linear and Non-Linear Methods for Determination of the Optimum Equilibrium Isotherm for Adsorption of Pb2+ Ions onto Algerian Treated Clay. Iranian Journal of Chemistry and Chemical Engineering (IJCCE), 39(4), 153-171.
Bernardo, M., Mendes, S., Lapa, N., Gonçalves, M., Mendes, B., Pinto, F., and Fonseca, I. (2013). Removal of lead (Pb2+) from aqueous medium by using chars from co-pyrolysis. Journal of Colloid and Interface Science, 409, 158-165.
Bhatti, H. N., Khalid, R., and Hanif, M. A. (2009). Dynamic biosorption of Zn(II) and Cu(II) using pretreated Rosa gruss an teplitz (red rose) distillation sludge. Chemical Engineering Journal, 148(2), 434-443.
Bilal, M., Adeel, M., Rasheed, T., Zhao, Y., and Iqbal, H. M. N. (2019). Emerging contaminants of high concern and their enzyme-assisted biodegradation – A review. Environment International, 124, 336-353.
Cantrell, K. B., Hunt, P. G., Uchimiya, M., Novak, J. M., and Ro, K. S. (2012). Impact of pyrolysis temperature and manure source on physicochemical characteristics of biochar. Bioresource Technology, 107, 419-428.
Cao, Y., Xiao, W., Shen, G., Ji, G., Zhang, Y., Gao, C., and Han, L. (2019). Carbonization and ball milling on the enhancement of Pb(II) adsorption by wheat straw: Competitive effects of ion exchange and precipitation. Bioresource Technology, 273, 70-76.
Chakravarty, P., Sarma, N. S., and Sarma, H. P. (2010). Removal of lead(II) from aqueous solution using heartwood of Areca catechu powder. Desalination, 256(1), 16-21.
Chen, Z.-l., Zhang, J.-q., Huang, L., Yuan, Z.-h., Li, Z.-j., and Liu, M.-c. (2019). Removal of Cd and Pb with biochar made from dairy manure at low temperature. Journal of Integrative Agriculture, 18(1), 201-210.
Cole, E. J., Zandvakili, O. R., Xing, B., Hashemi, M., Herbert, S., & Mashayekhi, H. H. (2019). Dataset on the effect of hardwood biochar on soil gravimetric moisture content and nitrate dynamics at different soil depths with FTIR analysis of fresh and aged biochar. Data in Brief, 25, 104073.
Cui, X., Dai, X., Khan, K. Y., Li, T., Yang, X., and He, Z. (2016). Removal of phosphate from aqueous solution using magnesium-alginate/chitosan modified biochar microspheres derived from Thalia dealbata. Bioresource Technology, 218, 1123-1132.
Domingues, R. R., Trugilho, P. F., Silva, C. A., Melo, I., Melo, L. C. A., Magriotis, Z. M., and Sánchez-Monedero, M. A. (2017). Properties of biochar derived from wood and high-nutrient biomasses with the aim of agronomic and environmental benefits. PLOS ONE, 12(5).
Gammoudi, S., Frini-Srasra, N., and Srasra, E. (2012). Nitrate sorption by organosmectites. Engineering Geology, 124, 119-129.
Ghasemi, M., Naushad, M., Ghasemi, N., and Khosravi-fard, Y. (2014). Adsorption of Pb(II) from aqueous solution using new adsorbents prepared from agricultural waste: Adsorption isotherm and kinetic studies. Journal of Industrial and Engineering Chemistry, 20(4), 2193-2199.
Hassan, M., Liu, Y., Naidu, R., Parikh, S. J., Du, J., Qi, F., and Willett, I. R. (2020). Influences of feedstock sources and pyrolysis temperature on the properties of biochar and functionality as adsorbents: A meta-analysis. Science of The Total Environment, 744, 140714.
Hou, J., Huang, L., Yang, Z., Zhao, Y., Deng, C., Chen, Y., and Li, X. (2016). Adsorption of ammonium on biochar prepared from giant reed. Environmental Science and Pollution Research, 23. doi:10.1007/s11356-016-7084-4
Inyang, M. I., Gao, B., Yao, Y., Xue, Y., Zimmerman, A., Mosa, A., and Cao, X. (2016). A review of biochar as a low-cost adsorbent for aqueous heavy metal removal. Critical Reviews in Environmental Science and Technology, 46(4), 406-433.