Journal of Water Resource and Protection

Journal of Water Resource and Protection

ISSN Print: 1945-3094
ISSN Online: 1945-3108
www.scirp.org/Journal/jwarp
E-mail: jwarp@scirp.org
"Zinc and Lead Biosorption by Delftia tsuruhatensis: A Bacterial Strain Resistant to Metals Isolated from Mine Tailings"
written by Dorian A. Bautista-Hernández, Landy I. Ramírez-Burgos, Enrique Duran-Páramo, Luis Fernández-Linares,
published by Journal of Water Resource and Protection, Vol.4 No.4, 2012
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Developing a biocatalyst showcasing the synergistic effect of rice husk biochar and bacterial cells for the removal of heavy metals
New Journal of Chemistry, 2023
[2] Biogenic selenium nanoparticles with antifungal activity against the wood-rotting fungus Oligoporus pelliculosus
Biotechnology …, 2023
[3] Heavy Metal Tolerance of Microorganisms Isolated from Coastal Marine Sediments and Their Lead Removal Potential
Campo, M Quintero, B Cuadrado-Cano… - Microorganisms, 2023
[4] Isolasi dan Seleksi Bakteri Penghasil Antioksidan Dari Air Kolam Primer Reaktor Nuklir Kartini Yogyakarta
2023
[5] Study of the influence of heavy metals on the microbiocenosis of Peter the Great bay of the Sea of Japan on the example of microalgae and bacteria under the …
Izvestiya of Samara …, 2023
[6] Compound Screening and Growth Curves
2023
[7] Bioadsorptive Removal of the Pollutant Zn(II) from Wastewater by Delftia tsuruhatensis Biomass
Mijalli - Applied and Environmental Soil Science, 2022
[8] Immobilization of Pb and Cd by two strains and their bioremediation effect to an iron tailings soil
Process Biochemistry, 2022
[9] Enhanced Pb (II) removal from water using conductive carbonaceous nanomaterials as bacterial scaffolds: An experimental and modelling approach
Journal of Hazardous Materials, 2022
[10] Zinc essentiality, toxicity, and its bacterial bioremediation: A comprehensive insight
Frontiers in …, 2022
[11] Correlations between root metabolomics and bacterial community structures in the phragmites australis under acid mine drainage-Polluted wetland …
Current …, 2022
[12] Lead pollution and bacterial bioremediation: a review
Environmental Chemistry Letters, 2021
[13] Lead metal biosorption and isotherms studies by metal‐resistant Bacillus strain MRS‐2 bacterium
Journal of Basic …, 2021
[14] Isolation and identification of Delftia lacustris Strain-MS3 as a novel and efficient adsorbent for lead biosorption: Kinetics and thermodynamic studies, optimization of …
Moghadam - Biochemical Engineering Journal, 2021
[15] Microbial Community Diversity Dynamics in Acid Mine Drainage and Acid Mine Drainage-Polluted Soils: Implication on Mining Water Irrigation Agricultural …
Frontiers in Sustainable Food …, 2021
[16] Genomic Analysis of Delftia tsuruhatensis Strain TR1180 Isolated From A Patient From China With In4-Like Integron-Associated Antimicrobial Resistance
2021
[17] Screening of synergistic and antimicrobial effect of Cr (VI) and Ni (II) tolerant bacteria Bacillus cereus
Journal of Applied Biology and …, 2021
[18] Uranium Removal from Contaminated Environments Using Bacillus Species and Investigation of Mechanism Through Proteomic Studies
2021
[19] Identifikacija i karakterizacija biogenih utišivača međućelijske komunikacije vrste Pseudomonas aeruginosa
2020
[20] An experimental and modeling study of carbon nanomaterial membranes, bacterial growth, and their interactions towards Pb (II) removal from wastewater
2020
[21] Bacteria; An Efficient Bioremediator of Heavy Metals
Journal of Bio …, 2020
[22] Potentiality of living Bacillus pumilus SWU7-1 in biosorption of strontium radionuclide
2020
[23] Understanding Stress Response to High-Arsenic Gold-Bearing Sulfide Concentrate in Extremely Metal-Resistant Acidophile Sulfobacillus thermotolerans
2020
[24] Impact of zinc oxide nanoparticles on the bacterial community of Hydra magnipapillata
2019
[25] Study of the Optimal Conditions for [Zn]^(+ 2) Removal Using the Biomass of Isolated Bacteria from Ravang Mine
2019
[26] Metagenomics of microbial diversity in both active and closed landfills and their tolerance towards selected heavy metals/Mohamad Yusof Zainun
2019
[27] Study of the Optimal Conditions for 𝒁 𝒏+ 𝟐 Removal Using the Biomass of Isolated Bacteria from Ravang Mine
2019
[28] Active and passive biosorption of Pb (II) using live and dead biomass of marine bacterium Bacillus xiamenensis PbRPSD202: Kinetics and isotherm studies
2019
[29] بررسی شرایط بهینه حذف Zn+ 2 با استفاده از زیست‌توده باکتری‌های جداسازی شده ازمعدن راونج‎
2019
[30] Study of the Optimal Conditions for 𝒁𝒏 Removal Using the Biomass of Isolated Bacteria from Ravang Mine
2019
[31] Zinc biosorption, biochemical and molecular characterization of plant growth-promoting zinc-tolerant bacteria
2019
[32] Extreme Environments and High-Level Bacterial Tellurite Resistance
2019
[33] A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb (III) and Pb (II): Thermodynamics and Application Strategy
International Journal of Environmental Research and Public Health, 2018
[34] Bacterial diversity associated with mineral substrates and hot springs from caves and tunnels of the Naica Underground System (Chihuahua, Mexico)
2018
[35] A comparative study of the wild and mutated heavy metal resistant Klebsiella variicola generated for cadmium bioremediation
Bioremediation Journal, 2018
[36] Effects and Mechanisms of Microbial Remediation of Heavy Metals in Soil: A Critical Review
Applied Sciences, 2018
[37] Inoculation of soil with cadmium-resistant bacterium Delftia sp. B9 reduces cadmium accumulation in rice (Oryza sativa L.) grains
Ecotoxicology and Environmental Safety, 2018
[38] Isolation and Characterization of Zinc Tolerant Bacteria from Contaminated Sediments and Soils in Egypt
4th International Conference on Biotechnology Applications in Agriculture (ICBAA), Benha University, Moshtohor and Hurghada, 2018
[39] Biosorption of zinc from aqueous solution by cyanobacterium Fischerella ambigua ISC67: optimization, kinetic, isotherm and thermodynamic studies
2018
[40] Bio Removal Potential of Nickel (II) by Different Bacterial Species
International Journal of Recent Development in Engineering and Technology, 2018
[41] A Novel Pb-Resistant Bacillus subtilis Bacterium Isolate for Co-Biosorption of Hazardous Sb(III) and Pb(II): Thermodynamics and Application Strategy
International Journal of …, 2018
[42] Bioaugmentation and phytoremediation of heavy metal from leachate contaminated soil/Jayanthi Barasarathi
2018
[43] Bioaugmentation and Phytoremediation of Heavy Metal from Leachate Contaminated Soil
2018
[44] Biosorptive Removal of Toxic Contaminant Lead from Wastewater
Asian Journal of Chemistry, 2017
[45] Kinetics and mechanisms of mercury biosorption by an exopolysaccharide producing marine isolate Bacillus licheniformis
3 Biotech, 2017
[46] Isolation and identification of bacteria from rotary drum compost of water hyacinth
International Journal of Recycling of Organic Waste in Agriculture, 2017
[47] Thermodynamic, equilibrium and kinetic studies on biosorption of Pb+ 2 from aqueous solution by Bacillus pumilus sp. AS1 isolated from soil at abandoned lead mine
Journal of the Taiwan Institute of Chemical Engineers, 2017
[48] A qualitative approach to nickel and lead uptake by heavy metal resistant bacteria Klebsiella sp. 10KN
International Journal of Applied Research, 2017
[49] The Sustainable Use of Delftia in Agriculture, Bioremediation, and Bioproducts Synthesis
Microbial Models: From Environmental to Industrial Sustainability, 2016
[50] Isolation and Identification of Heavy Metal-Tolerant Bacteria from an Industrial Site as a Possible Source for Bioremediation of Cadmium, Lead, and Nickel
Advances in Environmental Biology, 2016
[51] Heavy Metal Pollution from Gold Mines: Environmental Effects and Bacterial Strategies for Resistance
International Journal of Environmental Research and Public Health, 2016
[52] Biosorption of Pb (II) by Bacillus badius AK strain originating from rotary drum compost of water hyacinth
2016
[53] بررسی جذب زیستی سرب توسط باکتری های مقاوم به سرب جداشده از پساب کارخانجات شهرک صنعتی آق قلا‎
2016
[54] Study on lead biosorption by lead resistant bacteria isolated from AqQala industrial park wastewater
Journal of Microbial World, 2016
[55] Biosorption of Pb(II) by Bacillus badius AK strain originating from rotary drum compost of water hyacinth
2016
[56] Study on lead biosorption by lead resistant bacteria isolated from industrial wastewater of plants in AqQala industrial park
2016
[57] Heavy metal removal through bacterial biomass isolated from various contaminated sites
2015
[58] Isolation and characterization of zinc resistant bacteria from a coil coating industrial wastewater treatment plant
INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCES, 2015
[59] Genome sequencing reveals mechanisms for heavy metal resistance and polycyclic aromatic hydrocarbon degradation in Delftia lacustris strain LZ-C
Ecotoxicology, 2015
[60] Biosorption of Pb(II) ions from aqueous solution by inactive biomass of Bacillus megaterium
Journal of Environmental and Applied Bioresearch, 2015
[61] Mechanism of zinc resistance in a plant growth promoting Pseudomonas fluorescens strain
World Journal of Microbiology and Biotechnology, 2014
[62] The study of Nickel Resistant Bacteria (NiRB) isolated from wastewaters polluted with different industrial sources
Journal of Environmental Health Science and Engineering, 2014
[63] RESEARCH ARTICLE BIOSORPTION OF PB (II) IONS FROM AQUEOUS SOLUTION ONTO FREE AND IMMOBILIZED CELLS OF BACILLUS MEGATERIUM
2014
[64] Biosorption of Zn (II) by Pseudomonas aeruginosa isolated from a site contaminated with petroleum
Desalination and Water Treatment, 2014
[65] RESEARCH ARTICLE BIOSORPTION OF PB (II) IONS FROM AQUEOUS SOLUTION ONTO FREE AND IMMOBILIZED CELLS OF BACILLUS …
2014
[66] Biosorption of Zn (II) from aqueous solutions by Acinetobacter sp. isolated from petroleum spilled soil
Journal of Environmental Chemical Engineering, 2013
[67] Biosorption of Zn (II) from aqueous solutions by Acinetobacter sp. isolated from petroleum spilled soil
Journal of Environmental Chemical Engineering, 2013
Free SCIRP Newsletters
Copyright © 2006-2025 Scientific Research Publishing Inc. All Rights Reserved.
Top