Articles published in Journal of Petroleum & Environmental Biotechnology have been cited by esteemed scholars and scientists all around the world. Journal of Petroleum & Environmental Biotechnology has got h-index 35, which means every article in Journal of Petroleum & Environmental Biotechnology has got 35 average citations.

Following are the list of articles that have cited the articles published in Journal of Petroleum & Environmental Biotechnology.

  2022 2021 2020 2019 2018

Year wise published articles

60 53 18 16 31

Year wise citations received

612 718 595 556 512
Journal total citations count 4786
Journal Impact Factor 1.72
Journal 5 years Impact Factor 2.78
Journal CiteScore 20.15
Journal h-index 35
Important citations

Mohkam M, Nezafat N, Berenjian A, Negahdaripour M, Behfar A, Ghasemi Y. Role of bacillus genus in the production of value-added compounds. InBacilli and Agrobiotechnology 2016 (pp. 1-33). Springer, Cham.

Csutak O, Stoica I, Vassu T. Lipolytic activity of a new yeast strain Candida rugosa CMGB-CR6 isolated from oil-polluted soil. Romanian Biotechnological Letters. 2015 May 1;20(3):10547.

Kremser K, Thallner S, Strbik D, Spiess S, Kucera J, Vaculovic T, Vsiansky D, Haberbauer M, Mandl M, Guebitz GM. Leachability of metals from waste incineration residues by iron-and sulfur-oxidizing bacteria. Journal of Environmental Management. 2021 Feb 15;280:111734.

Hardatt V, Prakash N. Generation of surface-active substances from fungal systems (Doctoral dissertation).

Jimoh AA, Senbadejo TY, Adeleke R, Lin J. Development and genetic engineering of hyper-producing microbial strains for improved synthesis of biosurfactants. Molecular Biotechnology. 2021 Feb 1:1-22.

Barzkar N, Sohail M, Jahromi ST, Gozari M, Poormozaffar S, Nahavandi R, Hafezieh M. Marine bacterial esterases: emerging biocatalysts for industrial applications. Applied Biochemistry and Biotechnology. 2021 Apr;193(4):1187-214.

Oje OA. Life Cycle Assessment of the environmental impact of Biosurfactant production from oil waste by a diculture of Azotobacter vinelandii and Pseudomonas sp (Doctoral dissertation, University of Nigeria Nsukka).

Sabati H, Motamedi H. Investigation of the relationship between cell surface hydrophobicity and demulsifying capability of biodemulsifier-producing bacteria. Frontiers in Biology. 2018 Oct;13(5):358-65.

Nowak B, Rusinowski S, Chmielnicki B, Kami?ska-Bach G, Bortel K. Degradation of PVC/rPLA thick films in soil burial experiment. InIOP Conference Series: Earth and Environmental Science 2016 Oct 1 (Vol. 44, No. 5, p. 052029). IOP Publishing.

Brito DA. Biosurfactants from renewable raw materials (Doctoral dissertation).

Hope N, Gideon A. Biosurfactant production from Palm Oil Mill Effluent (POME) for applications as oil field chemical in Nigeria. InSPE Nigeria Annual International Conference and Exhibition 2015 Aug 4. OnePetro.

Howe KL, Dean CW, Kluge J, Soloviev AV, Tartar A, Shivji M, Lehner S, Perrie W. Relative abundance of Bacillus spp., surfactant-associated bacterium present in a natural sea slick observed by satellite SAR imagery over the Gulf of Mexico. Elementa: Science of the Anthropocene. 2018 Jan 1;6.

Farias CB, Almeida FC, Silva IA, Souza TC, Meira HM, Rita de Cássia F, Luna JM, Santos VA, Converti A, Banat IM, Sarubbo LA. Production of green surfactants: Market prospects. Electronic Journal of Biotechnology. 2021 Mar 11.

Vijayakuma S, Saravanan V. In vitro cytotoxicity and antimicrobial activity of biosurfactant produced by Pseudomonas aeruginosa strain PB3A. Asian Journal of Scientific Research. 2015 Sep 15;8(4):510-8.

Jimoh AA, Lin J. Heterologous Expression of S fp-Type Phosphopantetheinyl Transferase is Indispensable in the Biosynthesis of Lipopeptide Biosurfactant. Molecular biotechnology. 2019 Nov;61(11):836-51.

Huang C, Hu C, Sun G, Ji B, Yan K. Antimicrobial finish of cotton fabrics treated by sophorolipids combined with 1, 2, 3, 4-butanetetracarboxyic acid. Cellulose. 2020 Mar;27(5):2859-72.

Colin VL, Bourguignon N, Gómez JS, de Carvalho KG, Ferrero MA, Amoroso MJ. Production of surface-active compounds by a hydrocarbon-degrading actinobacterium: presumptive relationship with lipase activity. Water, Air, & Soil Pollution. 2017 Dec 1;228(12):454.

Fracchia L, Ceresa C, Banat IM. Biosurfactants in cosmetic, biomedical and pharmaceutical industry. Microbial Biosurfactants and their Environmental and Industrial Applications; Banat, IM, Rengathavasi, T., Eds. 2019 Jan 15:258-88.

De la Rosa Cruz NL, Sanchez-Salinas E, Ortiz-Hernández M. Biosurfactants and their role in the bioremediation of soils contaminated with pesticides. Latin American Journal of Environmental Biotechnology and Algal. 2014 Oct; 5 (1): 1-21.

Schaller A, Connors NK, Dwyer MD, Oelmeier SA, Hubbuch J, Middelberg AP. Computational study of elements of stability of a four-helix bundle protein biosurfactant. Journal of computer-aided molecular design. 2015 Jan;29(1):47-58.