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Journal of Microbial & Biochemical Technology

Articles published in Journal of Microbial & Biochemical Technology have been cited by esteemed scholars and scientists all around the world. Journal of Microbial & Biochemical Technology has got h-index 43, which means every article in Journal of Microbial & Biochemical Technology has got 43 average citations.

Following are the list of articles that have cited the articles published in Journal of Microbial & Biochemical Technology.

  2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014

Total published articles

31 56 60 61 32 18 22 55 87 90 95

Research, Review articles and Editorials

3 6 6 3 13 16 20 52 72 79 64

Research communications, Review communications, Editorial communications, Case reports and Commentary

28 50 54 77 4 2 2 3 17 12 3

Conference proceedings

0 0 0 0 0 0 71 156 180 115 0

Citations received as per Google Scholar, other indexing platforms and portals

886 1187 1339 1443 1287 1193 994 886 729 522 249
Journal total citations count 11133
Journal impact factor 5.89
Journal 5 years impact factor 22.34
Journal cite score 32.11
Journal h-index 43
Important citations

Karthikeyan R, Wang B, Xuan J, Wong JW, Lee PK, et al. (2015)  Interfacial electron transfer and bioelectrocatalysis of carbonized plant material as effective anode of microbial fuel cell. Electrochimica Acta 157:314-23.

Laxman K, Myint MT, Al Abri M, Sathe P, Dobretsov S, et al. (2015)  Desalination and disinfection of inland brackish ground water in a capacitive deionization cell using nanoporous activated carbon cloth electrodes. Desalination 362:126-32.

Kataki R, Chutia RS, Bordoloi NJ, Saikia R, Sut D, et al. (2017)  Biohydrogen Production Scenario for Asian Countries. InBiohydrogen Production: Sustainability of Current Technology and Future Perspective  (pp. 207-235). Springer India.

Singh R, Singh A, Rathore D (2017)  Biohydrogen: Global Trend and Future Perspective. InBiohydrogen Production: Sustainability of Current Technology and Future Perspective  (pp. 291-315). Springer India.

Reddy CN, Modestra JA, Kumar AN, Mohan SV (2015) Waste Remediation Integrating with Value Addition: Biorefinery Approach Towards Sustainable Bio-based Technologies. InMicrobial Factories  (pp. 231-256). Springer India.

Mohan SV, Velvizhi G, Krishna KV, Babu ML (2014)  Microbial catalyzed electrochemical systems: a bio-factory with multi-facet applications. Bioresource technology 165:355-64.

Kokabian B, Gude VG (2015) Role of membranes in bioelectrochemical systems. Membr Water Treat 6: 53-75.  

Hou D, Lu L, Ren ZJ (2016) Microbial fuel cells and osmotic membrane bioreactors have mutual benefits for wastewater treatment and energy production. Water research 98:183-9.

Huggins TM, Haeger A, Biffinger JC, Ren ZJ (2016) Granular biochar compared with activated carbon for wastewater treatment and resource recovery. Water research 94:225-32.

Borjas Z, Ortiz JM, Aldaz A, Feliu J, Esteve-Núñez A (2015)  Strategies for reducing the start-up operation of microbial electrochemical treatments of urban wastewater. Energies 8:14064-77.

Ewing T, Babauta JT, Atci E, Tang N, Orellana J, et al. (2014) Self-powered wastewater treatment for the enhanced operation of a facultative lagoon. Journal of Power Sources 269:284-92.

Alatraktchi FA, Zhang Y, Angelidaki I (2014)  Nanomodification of the electrodes in microbial fuel cell: impact of nanoparticle density on electricity production and microbial community. Applied Energy 116:216-22.

Selvaratnam T, Pegallapati AK, Montelya F, Rodriguez G, Nirmalakhandan N, et al. (2014)  Evaluation of a thermo-tolerant acidophilic alga, Galdieria sulphuraria, for nutrient removal from urban wastewaters. Bioresource technology 156:395-9.

Huggins T, Wang H, Kearns J, Jenkins P, Ren ZJ (2014) Biochar as a sustainable electrode material for electricity production in microbial fuel cells. Bioresource technology 157:114-9.

Wang H, Ren ZJ (2014)  Bioelectrochemical metal recovery from wastewater: a review. Water research 66:219-32.

Wang H, Ren ZJ (2013)  A comprehensive review of microbial electrochemical systems as a platform technology. Biotechnology advances 31:1796-807.

Pastrana Camacho N. Evaluación de la actividad antibacterial y antifúngica de actinobacterias cultivables aisladas de las riberas del río Guaviare (Bachelor's thesis, Universidad de La Sabana).

Madanmohan G, Vijaybhasker A, Singaracharya MA (2012)  CHARACTERIZATION AND ANALYSIS OF ANTIBACTERIAL ACTIVITY OF TWO FRESH WATER ACTINOBACTERIA. Journal of Cell and Tissue Research 12:3029.

Mazinani Z, Zamani M, Sardari S (2016)  Isolation and Identification of Phyllospheric Bacteria Possessing Antimicrobial Activity from Astragalus obtusifolius, Prosopis juliflora, Xanthium strumarium and Hippocrepis unisiliqousa. Avicenna Journal of Medical Biotechnology 9:31-7.

Solanki R, Das P, Khanna M (2013)  Metabolic profiling of actinomycetes having antimicrobial properties. Int. J. Adv. Biotechnol. Res. 4: 444: 459.