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

Sameera V, Naga Deepthi CH, Srinu Babu G, Ravi Teja Y (2011) Role of Biosorption in Environmental Cleanup. J Microbial Biochem Technol 1: 2.

Sameera V (2011) Current strategies involved in biofuel production from plants and algae. Journal of Microbial & Biochemical Technology.

Paliwal R, Rawat AP, Rawat M, Rai JPN (2012) Bioligninolysis: recent updates for biotechnological solution. Applied biochemistry and biotechnology 167: 1865-1889.

Varsha YM, Naga Deepthi CH, Chenna S (2011) An emphasis on xenobiotic degradation in environmental cleanup. J Bioremed Biodegrad S11: 1-10.

Srilatha B (2011) Nanotechnology in agriculture. Journal of Nanomedicine & Nanotechnology.

Asgher M, Iqbal HMN, Irshad M (2012) Characterization of purified and xerogel immobilized novel lignin peroxidase produced from Trametes versicolor IBL-04 using solid state medium of corncobs. BMC biotechnology 12: 46.

Gini A ( 2014) Self-cleaning fabrics with titanium dioxide ( TiO2 ).

Ishaq U, Akram MS, Iqbal Z, Rafiq M, Akrem A, Nadeem M, Baig MA (2015) Production and characterization of novel self‐assembling biosurfactants from Aspergillus flavus. Journal of applied microbiology 119: 1035-1045.

Chakraborty J, Das S (2014) 7 Biosurfactant-Based Bioremediation of Toxic Metals. Microbial Biodegradation and Bioremediation.

Zhang Hui , Guo Chuling , Lugui Ning , Yang Chen, DANG Zhi , et al. ( 2013 ) . Screening and optimization of fermentation conditions have produced surfactant function of oil decomposing bacteria . Agricultural Environmental Science 32: 2185-2191 .

Naga Deepthi C (2011) Evaluation of the Various uses of Microorganisms with Emphasis on Probiotics. Journal of Microbial & Biochemical Technology.

Amin GA, Bazaid SA, Abd El-Halim M (2013) A Two-stage immobilized cell bioreactor with Bacillus subtilis and Rhodococcus erythropolis for the simultaneous production of biosurfactant and biodesulfurization of model oil. Petroleum Science and Technology 31: 2250-2257.

Sameera V, Naga Deepthi CH, Srinu Babu G, Ravi Teja Y (2011) Role of Biosorption in Environmental Cleanup. J Microbial Biochem Technol 1: 2.

Sameera V (2011) Current strategies involved in biofuel production from plants and algae. Journal of Microbial & Biochemical Technology.

Jeevani T (2011) Nanotextiles-A Broader Perspective. Journal of Nanomedicine & Nanotechnology.

Varsha YM, Naga Deepthi CH, Chenna S (2011) An emphasis on xenobiotic degradation in environmental cleanup. J Bioremed Biodegrad S11: 1-10.

Srilatha B (2011) Nanotechnology in agriculture. Journal of Nanomedicine & Nanotechnology.

Amin Nabati (2010) "Effect of Rim Seal on Evaporation Loss from Khark Island Storage Tanks." Journal of Petroleum & Environmental Biotechnology.

Erik G (2012) "Laboratory investigation of Thermoanaerobacter brockii Subsp. Lactiethylicus Strain 9801T for Possible utilization in microbial enhanced oil recovery." Journal of Petroleum & Environmental Biotechnology.

Mesquini JA, Sawaya AC, López BG, Oliveira VM, Miyasaka NR (2015) Detoxification of Atrazine by Endophytic Streptomyces sp. Isolated from Sugarcane and Detection of Nontoxic Metabolite. Bulletin of environmental contamination and toxicology 95: 803-809.