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Removal of lead and fluoride from contaminated water using exhausted coffee grounds based bio-sorbent.
Naga Babu, A; Reddy, D Srinivasa; Kumar, G Suresh; Ravindhranath, K; Krishna Mohan, G V.
Affiliation
  • Naga Babu A; Department of Chemistry, KLEF, Guntur, Andhra Pradesh, 522502, India.
  • Reddy DS; Department of Petroleum Engineering, KLEF, Guntur, Andhra Pradesh, 522502, India.
  • Kumar GS; Petroleum Engineering Program, Department of Ocean Engineering, IIT Madras, Chennai, Tamil Nadu, 600036, India.
  • Ravindhranath K; Department of Chemistry, KLEF, Guntur, Andhra Pradesh, 522502, India.
  • Krishna Mohan GV; Department of Chemistry, KLEF, Guntur, Andhra Pradesh, 522502, India. Electronic address: drkrishnamohangv@kluniversity.in.
J Environ Manage ; 218: 602-612, 2018 Jul 15.
Article in En | MEDLINE | ID: mdl-29715669
ABSTRACT
Water pollution by industrial and anthropogenic actives has become a serious threat to the environment. World Health Organization (WHO) has identified that lead and fluoride amid the environmental pollutants are most poisonous water contaminants with devastating impact on the human race. The present work proposes a study on economical bio-adsorbent based technique using exhausted coffee grounds in the removal of lead and fluoride contaminants from water. The exhausted coffee grounds gathered from industrial wastes have been acid-activated and examined for their adsorption capacity. The surface morphology and elemental characterization of pre-and-post adsorption operations by FESEM, EDX and FTIR spectral analysis confirmed the potential of the exhausted coffee ground as successful bio-sorbent. However, thermodynamic analysis confirmed the adsorption to be spontaneous physisorption with Langmuir mode of homogenous monolayer deposition. The kinetics of adsorption is well defined by pseudo second order model for both lead and fluoride. A significant quantity of lead and fluoride is removed from the synthetic contaminated water by the proposed bio-sorbent with the respective sorption capabilities of 61.6 mg/g and 9.05 mg/g. However, the developed bio-sorbent is also recyclable and is capable of removing the lead and fluoride from the domestic and industrial waste-water sources with an overall removal efficiency of about 90%.
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Full text: 1 Database: MEDLINE Main subject: Coffee / Water Purification / Fluorides / Lead Limits: Humans Language: En Year: 2018 Type: Article

Full text: 1 Database: MEDLINE Main subject: Coffee / Water Purification / Fluorides / Lead Limits: Humans Language: En Year: 2018 Type: Article