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 39, which means every article in Journal of Petroleum & Environmental Biotechnology has got 39 average citations.

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

  2023 2022 2021 2020 2019

Year wise published articles

56 60 53 18 16

Year wise citations received

584 687 779 648 603
Journal total citations count 5646
Journal Impact Factor 1.72
Journal 5 years Impact Factor 2.78
Journal CiteScore 20.15
Journal h-index 39
Important citations

Marchand C (2017) Phytoremediation of soil contaminated with petroleum hydrocarbons and trace elements (Doctoral dissertation, Linnaeus University Press).

Zárate MD, González JF, Pérez AS, Domínguez EE, Oviedo JT, et al. (2016) ISOLATION AND IDENTIFICATION OF BACTERIA AND FUNGI RESISTANT TO CRUDE OIL.

R Kamireddy S, Degenstein J, Berti M, Ji Y (2015) Pretreatment and Enzymatic Hydrolysis of Kenaf as a Potential Source for Lignocellulosic Biofuel and Green Chemicals. Current Organic Chemistry 17: 1624-32.

Kafilzadeh, Farshid, Khalid (2015) Bio-synergy soil contaminated with kerosene, by Pseudomonas putida and Serratia marcescens isolated from activated sludge and growth rate. Journal of Environmental Health

Kafilzadeh F, Khaledi Z (2016) Evaluation of the Isolated Bacteria from Activated Sludge of Asalouyeh Special Zone Municipal Wastewater Treatment for Bioaugmentation of Kerosene-Contaminated Soils. Iranian Journal of Health and Environment 9: 211-22.

Olawale O, Adepoju T, Aikulolu S, Akinmoladun A (2015) OPTIMISATION OF DIESEL POLLUTED SOIL. Int. J. Modn. Res. Revs 3: 1082-8.

HAMZAH A, MANIKAN V, AZIZ N (2017) Biodegradation of Tapis Crude Oil Using Consortium of Bacteria and Fungi: Optimization of Crude Oil Concentration and Duration of Incubation by Response Surface Methodology. Sains Malaysiana 46: 43-50.

Anak Emparan Q (2015) Bioremediation of biodiesel and diesel contaminated soil by pseudomonas putida (Doctoral dissertation, Universiti Tun Hussein Onn Malaysia).

Anak Emparan Q (2015) Bioremediation of biodiesel and diesel contaminated soil by pseudomonas putida (Doctoral dissertation, Universiti Tun Hussein Onn Malaysia).

Askar MB, Moghadam MF (2013) Research and Reviews: Journal of Engineering and Technology.

Agarry SE (2017) Statistical optimization and kinetic studies of enhanced bioremediation of crude oil-contaminated marine water using combined adsorption-biostimulation strategy. Journal of Applied Sciences and Environmental Management 21: 59-74.

de Almeida DG, da Silva MD, do Nascimento Barbosa R, Silva DD, da Silva RO, et al. (2017) Biodegradation of marine fuel MF-380 by microbial consortium isolated from seawater near the petrochemical Suape Port, Brazil. International Biodeterioration & Biodegradation 116: 73-82.

Ashok S, Akila V, Ayyasamy PM, Rajakumar S (2016) Bioremediation of Ethylbenzene by Soil Column Study and Bioreactor Study for Polluted Soil and Water Samples Using Optimized Bacterial Consortium. InIntegrated Waste Management in India pp. 155-168. Springer International Publishing.

Shahi A, Aydin S, Ince B, Ince O (2016) Reconstruction of bacterial community structure and variation for enhanced petroleum hydrocarbons degradation through biostimulation of oil contaminated soil. Chemical Engineering Journal 306: 60-6.

Virupakshappa PK, Krishnaswamy MB, Mishra G, Mehkri MA (2016) Optimization of Crude Oil and PAHs Degradation by Stenotrophomonas rhizophila KX082814 Strain through Response Surface Methodology Using Box-Behnken Design. Biotechnology Research International

Agarry SE, Oghenejoboh KM (2014) Biodegradation of Bitumen in Soil and Its Enhancement by Inorganic Fertilizer and Oxygen Release Compound: Experimental Analysis and Kinetic Modelling. J Microbial Biochem Technol S 4: 2.

Al Disi Z, Jaoua S, Al-Thani D, Al-Meer S, Zouari N (2017) Considering the Specific Impact of Harsh Conditions and Oil Weathering on Diversity, Adaptation, and Activity of Hydrocarbon-Degrading Bacteria in Strategies of Bioremediation of Harsh Oily-Polluted Soils. BioMed Research International

Olawale O, Oyawale FA, Adepoju TF, Aikulolu S, Akinmoladun AI (2015) Optimisation of diesel polluted soil using response surface methodology. International Journal of Environmental Protection and Policy 3: 194-202.

Nwogu TP, Azubuike CC, Ogugbue CJ (2015) Enhanced bioremediation of soil artificially contaminated with petroleum hydrocarbons after amendment with Capra aegagrus hircus (goat) manure. Biotechnology research international

Chattoraj S, Mondal NK, Sadhukhan B, Roy P, Roy TK (2016)Optimization of adsorption parameters for removal of carbaryl insecticide using neem bark dust by response surface methodology. Water Conservation Science and Engineering 1: 127-41.