1,350
Views
22
CrossRef citations to date
0
Altmetric
Technical Papers

Biosorption properties of zinc(II) from aqueous solutions by Pseudevernia furfuracea (L.) Zopf

, , , &
Pages 1112-1121 | Received 10 Jan 2014, Accepted 08 May 2014, Published online: 16 Sep 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Zeynep Mine Şenol. (2022) Effective biosorption of Allura red dye from aqueous solutions by the dried-lichen (Pseudoevernia furfuracea) biomass. International Journal of Environmental Analytical Chemistry 102:16, pages 4550-4564.
Read now
Gustavo Bordon Sia, Laís Gimenes Vernasqui, Nelson Consolin-Filho, Morgana Suszek Gonçalves & Flávia Vieira da Silva Medeiros. (2022) Zinc adsorption from aqueous solution on biosorbent from urban pruning waste. Environmental Technology 43:5, pages 728-736.
Read now
Ramesh Duraisamy, Mihretu Mechoro, Tolera Seda & Masood Akhtar Khan. (2020) Potential of Mangifera indica activated carbon for removal of chromium and iron. Cogent Engineering 7:1.
Read now

Articles from other publishers (19)

Hemant Kumar Joshi, Mahesh Chandra Vishwakarma, Rajesh Kumar, Harish Sharma, Narendra Singh Bhandari & Sushil Kumar Joshi. (2023) The biosorption of Zn2+ by various biomasses from wastewater: A review. Journal of Water Process Engineering 56, pages 104389.
Crossref
Dinkar Parashar & R. Gandhimathi. (2022) Zinc Ions adsorption from aqueous solution using raw and acid-modified orange peels: Kinetics, Isotherm, Thermodynamics, and Adsorption mechanism. Water, Air, & Soil Pollution 233:10.
Crossref
Melkamu Birlie Genet, Addis Lemessa Jembere & Gedefaw Asmare Tafete. (2022) Economical Adsorbent Developed from Sugarcane Bagasse for Zinc (II) Removal from Wastewater. Water, Air, & Soil Pollution 233:8.
Crossref
Michał Łach, Agnieszka Grela, Kinga Pławecka, Martin Duarte Guigou, Janusz Mikuła, Norbert Komar, Tomasz Bajda & Kinga Korniejenko. (2022) Surface Modification of Synthetic Zeolites with Ca and HDTMA Compounds with Determination of Their Phytoavailability and Comparison of CEC and AEC Parameters. Materials 15:12, pages 4083.
Crossref
Patrycja Miros-Kudra, Paulina Sobczak & Ewa Kopania. (2022) Removal of Heavy Metals from Aqueous Solutions with the Use of Lignins and Biomass. Fibres & Textiles in Eastern Europe 30:2, pages 99-111.
Crossref
Saraei FOROUGH, Amini KUMARSS, Haddadi AZAM & Larypoor MOHADDESEH. (2022) Application of Saccharomyces cerevisiae isolated from industrial effluent for zinc biosorption and zinc-enriched SCP production for human and animal. Food Science and Technology 42.
Crossref
Ankita H. Tripathi, Somya Mehrotra, Amrita Kumari, Rajesh Bajpai, Yogesh Joshi, Penny Joshi, Lalit M. Tewari, Ramesh C. Rai & Santosh K. Upadhyay. 2022. Synergistic Approaches for Bioremediation of Environmental Pollutants : Recent Advances and Challenges. Synergistic Approaches for Bioremediation of Environmental Pollutants : Recent Advances and Challenges 289 312 .
Zeynep Mine Şenol, Ülküye Dudu Gül, Rafig Gurbanov & Selçuk Şimşek. (2021) Optimization the removal of lead ions by fungi: Explanation of the mycosorption mechanism. Journal of Environmental Chemical Engineering 9:2, pages 104760.
Crossref
Alireza Fathollahi, Nazanin Khasteganan, Stephen J. Coupe & Alan P. Newman. (2021) A meta-analysis of metal biosorption by suspended bacteria from three phyla. Chemosphere 268, pages 129290.
Crossref
A. Agarwal, M. Sen & M. Kant. (2021) Effective Bioremediation of Zinc(II) with Fusarium sp. in Batch and Continuous Studies. Asian Journal of Chemistry 34:1, pages 245-250.
Crossref
Zeynep Mine ŞENOL, Ülküye Dudu GÜL & Ramazan GÜRKAN. (2020) Bio-sorption of bisphenol a by the dried- and inactivated-lichen (Pseudoevernia furfuracea) biomass from aqueous solutions. Journal of Environmental Health Science and Engineering 18:2, pages 853-864.
Crossref
Hülya Koyuncu & Ali Rıza Kul. (2020) Biosorption study for removal of methylene blue dye from aqueous solution using a novel activated carbon obtained from nonliving lichen (Pseudevernia furfuracea (L.) Zopf.). Surfaces and Interfaces 19, pages 100527.
Crossref
Hülya Koyuncu & Ali Rıza Kul. (2020) Removal of methylene blue dye from aqueous solution by nonliving lichen (Pseudevernia furfuracea (L.) Zopf.), as a novel biosorbent. Applied Water Science 10:2.
Crossref
Ülküye Dudu Gül, Zeynep Mine Şenol, Nevcihan Gürsoy & Selçuk Şimşek. (2019) Effective UO22+ removal from aqueous solutions using lichen biomass as a natural and low-cost biosorbent. Journal of Environmental Radioactivity 205-206, pages 93-100.
Crossref
Zeynep Mine Şenol, Ülküye Dudu Gül & Selçuk Şimşek. (2019) Assessment of Pb2+ removal capacity of lichen (Evernia prunastri): application of adsorption kinetic, isotherm models, and thermodynamics. Environmental Science and Pollution Research 26:26, pages 27002-27013.
Crossref
Mohammed Ngabura, Siti Aslina Hussain, Wan Azlina W.A. Ghani, Mohammed Saedi Jami & Yen Ping Tan. (2018) Utilization of renewable durian peels for biosorption of zinc from wastewater. Journal of Environmental Chemical Engineering 6:2, pages 2528-2539.
Crossref
Muhammad Balal Arain, Erkan Yilmaz & Mustafa Soylak. (2016) Deep eutectic solvent based ultrasonic assisted liquid phase microextraction for the FAAS determination of cobalt. Journal of Molecular Liquids 224, pages 538-543.
Crossref
Naba Kumar Mondal & Monalisa Kundu. (2016) Biosorption of Fluoride from Aqueous Solution Using Lichen and Its Ca-Pretreated Biomass. Water Conservation Science and Engineering 1:3, pages 143-160.
Crossref
Demet Cansaran-Duman & Sümer Aras. 2015. Phytoremediation. Phytoremediation 233 241 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.