| Literature DB >> 28458173 |
Jerosha Ifthikar1, Jia Wang2, Qiliang Wang2, Ting Wang1, Huabin Wang2, Aimal Khan1, Ali Jawad3, Tingting Sun1, Xiang Jiao1, Zhuqi Chen4.
Abstract
Highly efficient magnetic sewage sludge biochar (MSSBC) discloses feasible fabrication process with lower production cost, superior adsorption capacity, usage of waste sewage sludge as resource, selected by external magnetic field and exceptional regeneration property. 2gL-1 MSSBC exhibited a high adsorption capacity of 249.00mgg-1 in 200ppmPb(II) and the lead-MSSBC equilibrium was achieved within one hour, owing to the existence of the copious active sites. The adsorption kinetics was well described by the pseudo-second-order model while the adsorption isotherm could be fitted by Langmuir model. Mechanism study demonstrated the adsorption involved electrostatic attraction, ion exchange, inner-sphere complexation and formation of co-precipitates at the surface of MSSBC. Additionally, adsorption performance maintained remarkable in a broad pH window. These outcomes demonstrated the promising waste resource utilization by a feasible approach that turns the solid waste of sewage sludge into biochar adsorbent with auspicious applications in elimination of Pb(II) from wastewater.Entities:
Keywords: Adsorption; Biochar; Lead removal; Magnetic separation; Sewage sludge
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Year: 2017 PMID: 28458173 DOI: 10.1016/j.biortech.2017.03.133
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642