Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Mrozik, A.
Miga, S.
and
Piotrowska-Seget, Z.
2011.
Enhancement of phenol degradation by soil bioaugmentation with Pseudomonas sp. JS150.
Journal of Applied Microbiology,
Vol. 111,
Issue. 6,
p.
1357.
Aislabie, Jackie M.
Ryburn, Janine
Gutierrez-Zamora, Maria-Luisa
Rhodes, Phillipa
Hunter, David
Sarmah, Ajit K.
Barker, Gary M.
and
Farrell, Roberta L.
2012.
Hexadecane mineralization activity in hydrocarbon-contaminated soils of Ross Sea region Antarctica may require nutrients and inoculation.
Soil Biology and Biochemistry,
Vol. 45,
Issue. ,
p.
49.
Dias, Romina L.
Ruberto, Lucas
Hernández, Edgardo
Vázquez, Susana C.
Lo Balbo, Alfredo
Del Panno, María T.
and
Mac Cormack, Walter P.
2012.
Bioremediation of an aged diesel oil-contaminated Antarctic soil: Evaluation of the “on site” biostimulation strategy using different nutrient sources.
International Biodeterioration & Biodegradation,
Vol. 75,
Issue. ,
p.
96.
Vázquez, S.
Nogales, B.
Ruberto, L.
Mestre, C.
Christie-Oleza, J.
Ferrero, M.
Bosch, R.
and
Mac Cormack, W.P.
2013.
Characterization of bacterial consortia from diesel-contaminated Antarctic soils: Towards the design of tailored formulas for bioaugmentation.
International Biodeterioration & Biodegradation,
Vol. 77,
Issue. ,
p.
22.
Raymond, T.
King, C.K.
Raymond, B.
Stark, J.S.
and
Snape, I.
2017.
Oil Spill Science and Technology.
p.
759.
Chaudhary, Dhiraj Kumar
and
Kim, Jaisoo
2019.
New insights into bioremediation strategies for oil-contaminated soil in cold environments.
International Biodeterioration & Biodegradation,
Vol. 142,
Issue. ,
p.
58.
Martorell, María Martha
Ruberto, Lucas Adolfo Mauro
de Castellanos, Lucía Inés Figueroa
and
Cormack, Walter Patricio Mac
2019.
Fungi in Extreme Environments: Ecological Role and Biotechnological Significance.
p.
517.
Flocco, Cecilia G.
Mac Cormack, Walter P.
and
Smalla, Kornelia
2019.
The Ecological Role of Micro-organisms in the Antarctic Environment.
p.
133.
Yap, How Swen
Zakaria, Nur Nadhirah
Zulkharnain, Azham
Sabri, Suriana
Gomez-Fuentes, Claudio
and
Ahmad, Siti Aqlima
2021.
Bibliometric Analysis of Hydrocarbon Bioremediation in Cold Regions and a Review on Enhanced Soil Bioremediation.
Biology,
Vol. 10,
Issue. 5,
p.
354.
Villalba Primitz, Julia
Vázquez, Susana
Ruberto, Lucas
Lo Balbo, Alfredo
and
Mac Cormack, Walter
2021.
Bioremediation of hydrocarbon-contaminated soil from Carlini Station, Antarctica: effectiveness of different nutrient sources as biostimulation agents.
Polar Biology,
Vol. 44,
Issue. 2,
p.
289.
Massot, Francisco
Bernard, Nathalie
Alvarez, Lucas M. Martinez
Martorell, María M.
Mac Cormack, Walter P.
and
Ruberto, Lucas A. M.
2022.
Microbial associations for bioremediation. What does “microbial consortia” mean?.
Applied Microbiology and Biotechnology,
Vol. 106,
Issue. 7,
p.
2283.
Abdullah, Kristopher
Wilkins, Daniel
and
Ferrari, Belinda C.
2023.
Utilization of—Omic technologies in cold climate hydrocarbon bioremediation: a text-mining approach.
Frontiers in Microbiology,
Vol. 14,
Issue. ,
Yap, How Swen
Khalid, Farah Eryssa
Wong, Rasidnie Razin
Convey, Peter
Sabri, Suriana
Khalil, Khalilah Abdul
Zulkharnain, Azham
Merican, Faradina
Shaari, Hasrizal
and
Ahmad, Siti Aqlima
2024.
Diesel−biodegradation and biosurfactant−production by Janthinobacterium lividum AQ5-29 and Pseudomonas fildesensis AQ5-41 isolated from Antarctic soil.
International Biodeterioration & Biodegradation,
Vol. 188,
Issue. ,
p.
105731.
Koolivand, Ali
Coulon, Frederic
Ball, Andrew S.
Ismail, Nur ‘Izzati
Khudur, Leadin S.
ParsiMehr, Mohamad
Gao, Guanyue
and
Godini, Kazem
2024.
Challenges with Bioaugmentation and Field-Scale Application of Bioremediation Processes for Petroleum-Contaminated Sites: A Review.
Indian Journal of Microbiology,