Biodegradation of Lead from Accumulated Municipal Solid Waste …
111
bioremediation. These resistant species could also potentially be used for biomining
of heavy metals.
References
Ayyasamy PM, Lee S (2009) Redox transformation and biogeochemical interaction of heavy metals
in Korean soil using different treatment columns in the presence of Shewanella sp. Chemosphere
77(4):501–509
Balint Nimirciag R, Buratto E, Ajmone-Marsan F (2013) Leaching of trace metals from soil under
alternating oxic-anoxic conditions: a column study. In: E3S web of conferences, vol 1, p 19005
Bergey DH, Buchanan RE, Gibbons NE (1974) Bergey’s manual of determinative bacteriology.
Williams & Wilkins, Baltimore
Bergey DH (1986) Bergey’s manual of systematic bacteriology, 1st edn, vol 2. The Williams &
Wilkins Co., Baltimore
Hrynkiewicz K, Baum C (2014) Application of microorganisms in bioremediation of environment
from heavy metals. Environ Deterioration Human Health 215–227
Malin B, Jarno M, Marja S, Mona A (2017) Microbial community structure and functions in
ethanol-fed sulfate removal bioreactors for treatment of mine water. Microorganisms 5:61
Massadeh AM, Al-Momani FA, Haddad HI (2005) Removal of lead and cadmium by halophilic
bacteria isolated from the dead sea shore, Jordan. Biol Trace Element Res 108(1–3):259–270
Moten AM, Rehman A (1998) Study on heavy trace metal ions in industrial waste effluents in
Pakistan. Environ Exp Com Article 909
Rehman A, Zahoor A, Muneer B, Hasnain S (2008) Chromium tolerance and reduction potential
of a Bacillus sp. ev3 isolated from metal contaminated wastewater. Bull Environ Contam Toxicol
81:25–29
Rojas LA, Yáñez C, González M, Lobos S, Smalla K, Seeger M (2011) Characterization of the
metabolically modified heavy metal-resistant cupriavidus metallidurans strain MSR33 generated
for mercury bioremediation. PLoS ONE 6(3):e17555
Tchounwou PB, Yedjou CG, Patlolla AK, Sutton DJ (2012) Heavy metal toxicity and the
environment. Mol Clin Environ Toxicol 133–164
Thassitou P, Arvanitoyannis I (2001) Bioremediation: a novel approach to food waste management.
Trends Food Sci Technol 12(5):185–196
U.S. EPA (1996) Method 3050B: acid digestion of sediments, sludges, and soils, Revision 2.
Washington, DC
Yamina B, Tahar B, Marie Laure F (2012) Isolation and screening of heavy metal resistant bacteria
from wastewater: a study of heavy metal co-resistance and antibiotics resistance. Water Sci
Technol 66(10):2041–2048
111
bioremediation. These resistant species could also potentially be used for biomining
of heavy metals.
References
Ayyasamy PM, Lee S (2009) Redox transformation and biogeochemical interaction of heavy metals
in Korean soil using different treatment columns in the presence of Shewanella sp. Chemosphere
77(4):501–509
Balint Nimirciag R, Buratto E, Ajmone-Marsan F (2013) Leaching of trace metals from soil under
alternating oxic-anoxic conditions: a column study. In: E3S web of conferences, vol 1, p 19005
Bergey DH, Buchanan RE, Gibbons NE (1974) Bergey’s manual of determinative bacteriology.
Williams & Wilkins, Baltimore
Bergey DH (1986) Bergey’s manual of systematic bacteriology, 1st edn, vol 2. The Williams &
Wilkins Co., Baltimore
Hrynkiewicz K, Baum C (2014) Application of microorganisms in bioremediation of environment
from heavy metals. Environ Deterioration Human Health 215–227
Malin B, Jarno M, Marja S, Mona A (2017) Microbial community structure and functions in
ethanol-fed sulfate removal bioreactors for treatment of mine water. Microorganisms 5:61
Massadeh AM, Al-Momani FA, Haddad HI (2005) Removal of lead and cadmium by halophilic
bacteria isolated from the dead sea shore, Jordan. Biol Trace Element Res 108(1–3):259–270
Moten AM, Rehman A (1998) Study on heavy trace metal ions in industrial waste effluents in
Pakistan. Environ Exp Com Article 909
Rehman A, Zahoor A, Muneer B, Hasnain S (2008) Chromium tolerance and reduction potential
of a Bacillus sp. ev3 isolated from metal contaminated wastewater. Bull Environ Contam Toxicol
81:25–29
Rojas LA, Yáñez C, González M, Lobos S, Smalla K, Seeger M (2011) Characterization of the
metabolically modified heavy metal-resistant cupriavidus metallidurans strain MSR33 generated
for mercury bioremediation. PLoS ONE 6(3):e17555
Tchounwou PB, Yedjou CG, Patlolla AK, Sutton DJ (2012) Heavy metal toxicity and the
environment. Mol Clin Environ Toxicol 133–164
Thassitou P, Arvanitoyannis I (2001) Bioremediation: a novel approach to food waste management.
Trends Food Sci Technol 12(5):185–196
U.S. EPA (1996) Method 3050B: acid digestion of sediments, sludges, and soils, Revision 2.
Washington, DC
Yamina B, Tahar B, Marie Laure F (2012) Isolation and screening of heavy metal resistant bacteria
from wastewater: a study of heavy metal co-resistance and antibiotics resistance. Water Sci
Technol 66(10):2041–2048
