References
- N.J. Ashbolt, Microbial contamination of drinking water and
disease outcome in developing regions, Toxicology, 198 (2004)
229–238.
- K. Ondo, J. LoBuglio, J. Bartram, Global access to safe water:
accounting for water quality and the resulting impact on MDG
progress, Environ. Res. Public Health, 9(3) (2012) 880–894.
- T.O. Mahlangu, L. Mpenyana-Monyatsi, M.N.B. Momba, B.B.
Mamba, A simplified cost-effective biosandfilter (BSFZ) for
removal of chemical contaminants from water, Chem. Eng.
Mater. Sci., 10 (2011) 156–167.
- I. Bradley, A.P. Straub, P. Maraccini, S. Markazi, T.H. Nguyen,
Iron oxide amended biosand filters for virus removal, Water
Res., 45(15) (2011) 4501–4510.
- M.M. Ahammed, K. Davra, Performance evaluation of biosand
filter modified with iron oxide-coated sand for household
treatment of drinking water, Desalination, 276 (2011) 287–293.
- H.G. Hwang, M.S. Kim, S.M. Shin, C.W. Hwang, Risk assessment
of the schmutzdecke of biosand filters: identification of
an opportunistic pathogen in schmutzdecke developing by an
unsafe water source, Int. J. Envrion. Res. Public Health, 11(2)
(2014) 2033–2048.
- J. Baumgartner, S. Murcott, M. Ezzati, Reconsidering ‘appropriate
technology’: the effects of operating conditions on the
bacterial removal performance of two household drinking-water
filter systems, Environ. Res. Lett., 2 (2007) 024003.
- M.W. Jenkins, S.K. Tiwari, J. Darby, D. Nyakash, W. Saenyi, K.
Langenbach, The BioSand Filter for Improved Drinking Water
Quality in High Risk Communities in the Njoro Watershed,
Kenya, Global Livestock Collaborative Research Support Program,
(2009) 1–4.
- W.F. Duke, A. Mazumder, The influence of differing sand
media on the performance of the biosand intermittent slow
sand filter, Water Environment Federation, (2009) 602–615.
- P.R. Hirsch, T.H. Mauchline, I.M. Clark, Culture-independent
molecular techniques for soil microbial ecology, Soil Biol. Biochem.,
42 (2010) 878–887.
- P. Earwaker, Evaluation of Household BioSand Filters in Ethiopia,
M.Sc. Thesis, Cranfield University, Silsoe, (2006) 22–24.
- G. Muyzer, E.C. de Waal, A.G. Uitterlinden, Profiling of complex
microbial populations by denaturing gradient gel electrophoresis
analysis of polymerase chain reaction-amplified
genes coding for 16S rRNA, Appl. Environ. Microbiol., 59
(1993) 695–700.
- C. Brady, I. Cleenwerck, S. Venter, T. Coutinho, P. De Vos, Taxonomic
evaluation of the genus Enterobacter based on multilocus
sequence analysis (MLSA): proposal to reclassify E.
nimipressuralis and E. Amnigenus into Lelliottia gen. nov. as
Lelliottianimipressuralis comb. nov. and Lelliottiaamnigenacomb.
nov., respectively, E. gergoviae and E. pyrinus into Pluralibacter
gen. nov. as Pluralibactergergoviae comb. nov. and
Pluralibacterpyrinus comb. nov., respectively, E. cowanii, E.
radicincitans, E. oryzae and E. arachidis into Kosakonia gen.
nov. as Kosakoniacowanii comb. nov., Kosakoniaradicincitans comb. nov., Kosakoniaoryzae comb. nov. and Kosakoniaarachidis comb. nov., respectively, and E. turicensis, E. helveticus and E. pulveris into Cronobacter as Cronobacterzurichensis nom. nov., Cronobacterhelveticus comb. nov. and Cronobacterpulveris comb. nov., respectively, and emended description of
the genera Enterobacter and Cronobacter, Syst. Appl. Environ.
Microbiol., 36 (2013) 309–319.
- A. Davin-Regli, J.-M. Pagès, Enterobacter aerogenes and
Enterobacter cloacae; versatile bacterial pathogens confronting
antibiotic treatment, Frontiers Microbiol., 6 (2015) 392.
- J.J. Farmer, 3rd, G.R. Fanning, G.P. Huntley-Carter, B. Holmes,
F.W. Hickman, C. Richard, D.J. Brenner, Kluyvera, a new (redefined)
genus in the family Enterobacteriaceae: Identification of
Kluyveraascorbata sp. nov. and Kluyveracryocrescens sp. nov.
in clinical specimens, J. Clin. Microbiol., 13 (1981) 919–933.
- R.E. Luttrell, G.A. Rannick, J.L.S. Hernandez, A. Verghese,
Kluyvera species soft tissue infection, J. Clin. Microbiol., 26
(1988) 2650–2651.
- H.E. Müller, D.J. Brenner, G.R. Fanning, P.A. Grimont, P. Kämpfer,
Emended description of Buttiauxellaagrestis with recognition
of six new species of Buttiauxella and two new species of
Kluyvera: Buttiauxellaferragutiae sp. nov., Buttiauxellagaviniae sp.
nov., Buttiauxellabrennerae sp. nov., Buttiauxellaizardii sp. nov., Buttiauxellanoackiae sp. nov., Buttiauxellawarmboldiae sp. nov., Kluyvera cochleae sp. nov., and Kluyverageorgiana sp. nov, Int. J. Syst. Bacteriol., 46 (1996) 50–63.
- O. Prakash, Y. Nimonkar, A. Vaishampayan, M. Mishra, S.
Kumbhare, N. Josef, Y.S. Shouche, Pantoea intestinalis sp. nov.,
isolated from the human gut, Int. J. Syst. Evol. Microbiol., 65
(2015) 3352–3358.
- A. Delétoile, D. Decré, S. Courant, V. Passet, J. Audo, P. Grimont,
G. Arlet, S. Brisse, Phylogeny and identification of Pantoea species
and typing of Pantoeaagglomerans strains by multilocus
gene sequencing, J. Clin. Microbiol., 47 (2009) 300–310.