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Environmental & Analytical Toxicology

ISSN: 2161-0525

Open Access

Citations Report

Environmental & Analytical Toxicology : Citations & Metrics Report

Articles published in Environmental & Analytical Toxicology have been cited by esteemed scholars and scientists all around the world.

Environmental & Analytical Toxicology has got h-index 37, which means every article in Environmental & Analytical Toxicology has got 37 average citations.

Following are the list of articles that have cited the articles published in Environmental & Analytical Toxicology.

  2022 2021 2020 2019 2018

Year wise published articles

70 60 28 14 48

Year wise citations received

834 802 848 809 674
Journal total citations count 6818
Journal impact factor 1.3
Journal 5 years impact factor 19.22
Journal cite score 20.87
Journal h-index 37
Journal h-index since 2018 30
Important citations

Kannan N, Thirunavukkarasu N, Suresh A, Rajagopal K (2016) Analysis of Heavy Metals Accumulation in Mangroves and Associated mangroves Species of Ennore Mangrove Ecosystem, East Coast India. Indian Journal of Science and Technology 9.

Bisht G, Neupane S, Makaju R (2016) Supercritical CO2 Assisted Synthesis of EDTA-Fe3O4 Nanocomposite with High Adsorption Capacity for Hexavalent Chromium. Journal of Nanomaterials 2016.

Al Rashdi S, Arabi AA, Howari FM, Siad A (2015) Distribution of heavy metals in the coastal area of Abu Dhabi in the United Arab Emirates. Marine pollution bulletin 97: 494-498.

Ali ME (2016) Synthesis and adsorption properties of chitosan-CDTA-GO nanocomposite for removal of hexavalent chromium from aqueous solutions. Arabian Journal of Chemistry.

Sonde CU, Odoemelam SA, Onwu FK (2015) Isotherm Studies of Equilibrium Sorption of Cu2+ and Cd2+ from Aqueous Solutions by Modified and Unmodified Breadfruit Seed Hull. Orbital-The Electronic Journal of Chemistry 7: 215-225.

Olazabal E (2015) Soluciones Actuales para Disminuir el Impacto Ambiental de los Cosméticos.

Gautami J (2016) An Overview of Organoleptic Additives. Nano Science & Nano Technology: An Indian Journal 10.

Shojaei Z, Iravani E, Moosavian MA, Torab-Mostaedi M (2016) Amino phosphate on the surface of nanotitania as attractive group to improve the adsorptive properties for lanthanides removal: adsorption, kinetic, equilibrium, and thermodynamic studies. Desalination and Water Treatment 57: 27754-27767.

Trabelsi D, Cherni A, Zineb AB, Dhane SF, Mhamdi R (2017) Fertilization of Phaseolus vulgaris with the Tunisian rock phosphate affects richness and structure of rhizosphere bacterial communities. Applied Soil Ecology 114: 1-8.

Muntean SG, Nistor MA, Andelescu AA, Radulescu-Grad ME, Ianos R. Magnetite Nanocomposites, Application for Decontamination of Wastewaters.

Ahmed KI. Monitoring the hygienic quality of underground water in different localities in Egypt and Libya.

Narayana AV (2016) History of Chemistry from 17th Century to 19th Century-Review.

Anjum M, Miandad R, Waqas M, Gehany F, Barakat MA (2016) Remediation of wastewater using various nano-materials. Arabian Journal of Chemistry.

Mâamri AJ, Abbassi L, Batis HN (2016) Characterization of the Oum El Khacheb phosphorites (South Tunisia) and enrichment of big rejections by grinding. International Journal of Mining Science and Technology 26: 833-842.

Linardatos G, Zamparas M, Bekiari V, Bokias G, Hotos G (2015) Sorption of Charged Organic Dyes from Anionic Hydrogels. World Academy of Science, Engineering and Technology, International Journal of Chemical, Molecular, Nuclear, Materials and Metallurgical Engineering 9:1272-1275.

Jamhour RM, Ababneh TS, Al-Rawashdeh AI, Al-Mazaideh GM, Al Shboul TM,et al. (2016) Adsorption Isotherms and Kinetics of Ni (II) and Pb (II) Ions on New Layered Double Hydroxides-Nitrilotriacetate Composite in Aqueous Media. Advances in Analytical Chemistry 6:17-33.

Kumar SR, Gopinath P (2016) Chapter 2 Nano-Bioremediation Applications of Nanotechnology for Bioremediation. InRemediation of Heavy Metals in the Environment CRC Press 27-48.

Esmaeili A, Khoshnevisan N (2016) Optimization of process parameters for removal of heavy metals by biomass of Cu and Co-doped alginate-coated chitosan nanoparticles. Bioresource Technology 218: 650-658.

Amuda OS, Alade AO, Hung YT, Wang LK, Sung Wang MH (2016) Chapter 1 Toxicity, Sources, and Control of Copper (Cu), Zinc (Zn), Molybdenum (Mo), Silver (Ag), and Rare Earth Elements in the Environment. InRemediation of Heavy Metals in the Environment 1-26.

HEMIJU FZ. Adsorpcija jona teških metala iz vodenih rastvora na kompozitu montmorionit/kaolinit glina-titan (IV) oksid.

Relevant Topics

Google Scholar citation report
Citations: 6818

Environmental & Analytical Toxicology received 6818 citations as per Google Scholar report

Environmental & Analytical Toxicology peer review process verified at publons

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