ISSN: 2155-6199

Jornal de Biorremediação e Biodegradação

Acesso livre

Nosso grupo organiza mais de 3.000 Séries de conferências Eventos todos os anos nos EUA, Europa e outros países. Ásia com o apoio de mais 1.000 Sociedades e publica mais de 700 Acesso aberto Periódicos que contém mais de 50.000 personalidades eminentes, cientistas de renome como membros do conselho editorial.

Periódicos de acesso aberto ganhando mais leitores e citações
700 periódicos e 15 milhões de leitores Cada periódico está obtendo mais de 25.000 leitores

Indexado em
  • Índice de Fonte CAS (CASSI)
  • Índice Copérnico
  • Google Scholar
  • Sherpa Romeu
  • Abra o portão J
  • Genâmica JournalSeek
  • Chaves Acadêmicas
  • JornalTOCs
  • PesquisaBíblia
  • Infraestrutura Nacional de Conhecimento da China (CNKI)
  • Diretório de Periódicos de Ulrich
  • Acesso à Pesquisa Online Global em Agricultura (AGORA)
  • RefSeek
  • Universidade Hamdard
  • EBSCO AZ
  • OCLC – WorldCat
  • Catálogo online SWB
  • Publons
  • Fundação de Genebra para Educação e Pesquisa Médica
  • MIAR
  • ICMJE
Compartilhe esta página

Abstrato

Competitive Adsorptive Removal of Pb, Cu and Cd from Water Using Water Pennywort Fixed on Alginate

Mahamadi C, Mupa M and Jackson GE

The adsorption of Pb (II), Cu (II) and Cd (II) on immobilized water pennywort-Hydrocotyle ranunculoides was investigated in batch and continuous flow systems. Physical characterization of adsorbent was performed using fourier transform infrared (FT-IR) spectroscopy and scanning electron microscopy (SEM). Analysis of batch sorption data using single component and competitive Langmuir models showed that maximum equilibrium sorption capacities for single-metal systems followed the trend (mg/g): Pb(II) (22.25)>Cu(II) (12.55)>Cd(II) (11.45). Mutual interference was probed using normalised equilibrium adsorption capacities, qe'/qe, where the prime indicates the presence of the other metal ion. The results showed that removal of Cu (II) and Cd(II) ions was severely suppressed in the presence of Pb(II) whereas the removal of Pb(II) in the presence of Cu(II) and Cd(II) ions was still effective. Adams-Bohart and Thomas models were used to study the effect of important parameters: bed depth (1.5-2.5 cm), flow rate (2-20 ml/min) and initial metal concentration (10-100 mg/l). It was shown that the Thomas model provided a better fit to the experimental data indicating that mass transfer, i.e. external diffusion was not the rate limiting steps. In conclusion, immobilised H. ranunculoides proved to be a potential biosorbent for the removal of heavy metal ions from aquatic environments.