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

Srivastav A, Yadav KK, Yadav S, Gupta N, Singh JK, Katiyar R, Kumar V. Nano-phytoremediation of pollutants from contaminated soil environment: current scenario and future prospects. InPhytoremediation 2018 (pp. 383-401). Springer, Cham.

Rajput V, Minkina T, Sushkova S, Behal A, Maksimov A, Blicharska E, Ghazaryan K, Movsesyan H, Barsova N. ZnO and CuO nanoparticles: a threat to soil organisms, plants, and human health. Environmental geochemistry and health. 2020 Jan;42(1):147-58.

Achari GA, Kowshik M. Recent developments on nanotechnology in agriculture: plant mineral nutrition, health, and interactions with soil microflora. Journal of agricultural and food chemistry. 2018 Jul 23;66(33):8647-61.

Rajput VD, Minkina T, Suskova S, Mandzhieva S, Tsitsuashvili V, Chapligin V, Fedorenko A. Effects of copper nanoparticles (CuO NPs) on crop plants: a mini review. BioNanoScience. 2018 Mar;8(1):36-42.

Rawat S, Pullagurala VL, Hernandez-Molina M, Sun Y, Niu G, Hernandez-Viezcas JA, Peralta-Videa JR, Gardea-Torresdey JL. Impacts of copper oxide nanoparticles on bell pepper (Capsicum annum L.) plants: a full life cycle study. Environmental Science: Nano. 2018;5(1):83-95.

Husen A, Siddiqi KS. Phytosynthesis of nanoparticles: concept, controversy and application. Nanoscale research letters. 2014 Dec;9(1):1-24.

Thuesombat P, Hannongbua S, Akasit S, Chadchawan S. Effect of silver nanoparticles on rice (Oryza sativa L. cv. KDML 105) seed germination and seedling growth. Ecotoxicology and environmental safety. 2014 Jun 1;104:302-9.

Bouguerra S, Gavina A, da Graça Rasteiro M, Rocha-Santos T, Ksibi M, Pereira R. Deriviation of Terrestrial Predicted No-Effect Concentration (PNEC) for Cobalt Oxide Nanomaterial. InEuro-Mediterranean Conference for Environmental Integration 2017 Nov 20 (pp. 405-407). Springer, Cham.

Alshybany RD. Comparison Study on the Effect of Nano and Bulk Titanium Dioxide Particles on Seeds Germination, Growth and Chemical Composition of Wheat Invitro and Invivo. Al-Mustansiriyah Journal of Science. 2018 Jul 28;28(3):85-101.

Odat N. Genotypic variation in germination and some growth parameters of wheat (Triticum turgidum spp. durum) in response to the toxic effect of aluminum oxide (Al 2 O 3) nanoparticles. Research on Crops. 2020 Sep 1;21(3).

Garg D, Payasi DK. Nanomaterials in agricultural research: an overview. Environmental Nanotechnology Volume 3. 2020:243-75.

Dash SR, Kundu CN. Promising opportunities and potential risk of nanoparticle on the society. IET nanobiotechnology. 2020 May 28;14(4):253-60.

Wang W, Liu J, Ren Y, Zhang L, Xue Y, Zhang L, He J. Phytotoxicity Assessment of Copper Oxide Nanoparticles on the Germination, Early Seedling Growth, and Physiological Responses in Oryza sativa L. Bulletin of environmental contamination and toxicology. 2020 Jun;104(6):770-7.

Nath A, Molnár MA, Albert K, Das A, Bánvölgyi S, Márki E, Vatai G. Agrochemicals from nanomaterials—Synthesis, mechanisms of biochemical activities and applications. InComprehensive Analytical Chemistry 2019 Jan 1 (Vol. 84, pp. 263-312). Elsevier.

Ahmadi M, Alipour ZT, Farrokhian Firuzi A. Investigation of the Possibility of Phytoremediating a Soil Contaminated with Anthracene. Journal of Chemical Health Risks. 2013 Sep 1;3(3).

Sable SV, Ranade S, Joshi S. Role of AgNPs in the enhancement of seed germination and its effect on plumule and radicle length of Pennisetum glaucum. IET nanobiotechnology. 2018 Sep 27;12(7):922-6.

???, ???, ???. ?? ??? ?? Pseudomonas tolaasii 6264 ??? ?? ?? ??. Journal of Applied Biological Chemistry. 2018;61(4):405-10.

Guerra AD. Metagenômica de consórcios microbianos para biorremediação de resíduos de perfuração.

Šimšová BV, Weiter M. Zadání diplomové práce.

Nešpor T, Sedlá?ek P, Weiter M. Zadání bakalá?ské práce.