126
Views
29
CrossRef citations to date
0
Altmetric
Articles

Parametric study on degradation of fungicide carbendazim in dilute aqueous solutions using nano TiO2

, &
Pages 122-131 | Received 26 Jul 2013, Accepted 17 Dec 2013, Published online: 10 Jan 2014

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

Read on this site (6)

Pijushkanti Purkait, Arijita Bhattacharyya, Sankhajit Roy, Saikat Maitra, Gopes Chandra Das & Mahua Ghosh Chaudhuri. (2023) Green synthesis of ZnO nanoparticle using Trema orientalis (L) leaf: an efficient photocatalyst for degradation of zoxamide fungicide in aqueous organic media under UV light irradiation. International Journal of Environmental Analytical Chemistry 103:2, pages 307-325.
Read now
Junjun Dai, Rui Shu, Jian Liu, Jiafeng Xia, Xiasen Jiang & Ping Zhao. (2021) Transcriptome analysis of Apis mellifera under benomyl stress to discriminate the gene expression in response to development and immune systems. Journal of Environmental Science and Health, Part B 56:6, pages 594-605.
Read now
Amanjit Singh, Anoop Verma, Palak Bansal, Kashish Aggarwal, Taranjeet Kaur, Amrit Pal Toor & Vikas Kumar Sangal. (2018) Catalyst-coated cement beads for the degradation and mineralization of fungicide carbendazim using laboratory and pilot-scale reactor: catalyst stability analysis. Environmental Technology 39:4, pages 424-432.
Read now
Abhishek Sraw, Amrit Pal Toor & R.K. Wanchoo. (2016) Adsorption kinetics and degradation mechanism study of water persistent insecticide quinalphos: for heterogeneous photocatalysis onto TiO2. Desalination and Water Treatment 57:36, pages 16831-16842.
Read now
H.R. Pouretedal & B. Afshari. (2016) Preparation and characterization of Zr and Sn doped TiO2 nanocomposite and photocatalytic activity in degradation of tetracycline. Desalination and Water Treatment 57:23, pages 10941-10947.
Read now
Taranjeet Kaur, Amrit Pal Toor & Ravinder Kumar Wanchoo. (2015) UV-assisted degradation of propiconazole in a TiO2 aqueous suspension: identification of transformation products and the reaction pathway using GC/MS. International Journal of Environmental Analytical Chemistry 95:6, pages 494-507.
Read now

Articles from other publishers (23)

Anna Gabriela Drummond Xavier Teles, Eduardo Michel Vieira Gomes, Juan Carlos Pokrywiecki, Ana Paula de Oliveira Schmitz, Ticiane Sauer Pokrywiecki & Elisângela Düsman. (2024) Characterization and Ecotoxicity of Raw and Treated Liquid Effluent from the Washing of Soybean Seed Treatment Machines. Water, Air, & Soil Pollution 235:1.
Crossref
Pijush Kanti Purkait, Sambrita Majumder, Sankhajit Roy, Saikat Maitra, Gopes Chandra Das & Mahua Ghosh Chaudhuri. (2023) Enhanced heterogeneous photocatalytic degradation of florasulam in aqueous media using green synthesized TiO2 nanoparticle under UV light irradiation. Inorganic Chemistry Communications 155, pages 111017.
Crossref
Manish Kumar, Zainab Mufarreh Elqahtani, Z. A. Alrowaili, M. S. Al-Buriahi, Imen Kebaili, Imed Boukhris & Rahul Vaish. (2023) Photocatalytic BiVO4-Cement Composites for Dye Degradation. Journal of Electronic Materials 52:7, pages 4672-4685.
Crossref
Tangrong Zhou, Tao Guo, Yan Wang, Andong Wang & Manyun Zhang. (2023) Carbendazim: Ecological risks, toxicities, degradation pathways and potential risks to human health. Chemosphere 314, pages 137723.
Crossref
Yu Li & Hefa Cheng. (2022) Efficient Degradation of Carbendazim by Ferrate(VI) Oxidation under Near-Neutral Conditions. Sustainability 14:20, pages 13678.
Crossref
Muhammad Zeshan, Ijaz A. Bhatti, Muhammad Mohsin, Munawar Iqbal, Nyla Amjed, Jan Nisar, Najla AlMasoud & Taghrid S. Alomar. (2022) Remediation of pesticides using TiO2 based photocatalytic strategies: A review. Chemosphere 300, pages 134525.
Crossref
Liliya Altynbaeva, Murat Barsbay, Nurgulim Aimanova, Zhanar Jakupova, Dinara Nurpeisova, Maxim Zdorovets & Anastassiya Mashentseva. (2022) A Novel Cu2O/ZnO@PET Composite Membrane for the Photocatalytic Degradation of Carbendazim. Nanomaterials 12:10, pages 1724.
Crossref
R.M. Machado, S.W. da Silva, A.M. Bernardes & J.Z. Ferreira. (2022) Degradation of carbendazim in aqueous solution by different settings of photochemical and electrochemical oxidation processes. Journal of Environmental Management 310, pages 114805.
Crossref
Mostafa Hadei, Alireza Mesdaghinia, Ramin Nabizadeh, Amir Hossein Mahvi, Shahram Rabbani & Kazem Naddafi. (2021) A comprehensive systematic review of photocatalytic degradation of pesticides using nano TiO2. Environmental Science and Pollution Research 28:11, pages 13055-13071.
Crossref
Doaa A. El-Nagar, Sanaa A. Massoud & Sameh H. Ismail. (2020) Removal of some heavy metals and fungicides from aqueous solutions using nano-hydroxyapatite, nano-bentonite and nanocomposite. Arabian Journal of Chemistry.
Crossref
Chanitsara Ngamsakpasert, Achariya Suriyawong, Sitthisuntorn Supothina & Paradee Chuaybamroong. (2020) Post-harvest treatment of carbendazim in Chinese chives using TiO2 nanofiber photocatalysis with different anatase/rutile ratios. Journal of Nanoparticle Research 22:7.
Crossref
Pankaj Chawla, S. K. Sharma & A. P. Toor. (2018) Techno-economic evaluation of anatase and p25 TiO2 for treatment basic yellow 28 dye solution through heterogeneous photocatalysis. Environment, Development and Sustainability 22:1, pages 231-249.
Crossref
Jayesh Bhatt, Monika Jangid, Neha Kapoor, Rakshit Ameta & Suresh C. Ameta. 2020. Biogenic Nano-Particles and their Use in Agro-ecosystems. Biogenic Nano-Particles and their Use in Agro-ecosystems 431 455 .
Elizângela Pinheiro da Costa, Sue Ellen C. Bottrel, Maria Clara V. M. Starling, Mônica M. D. Leão & Camila Costa Amorim. (2018) Degradation of carbendazim in water via photo-Fenton in Raceway Pond Reactor: assessment of acute toxicity and transformation products. Environmental Science and Pollution Research 26:5, pages 4324-4336.
Crossref
Abhishek Sraw, Taranjeet Kaur, Yamini Pandey, Amit Sobti, Ravinder K. Wanchoo & Amrit Pal Toor. (2018) Fixed bed recirculation type photocatalytic reactor with TiO2 immobilized clay beads for the degradation of pesticide polluted water. Journal of Environmental Chemical Engineering 6:6, pages 7035-7043.
Crossref
Taranjeet Kaur, Abhishek Sraw, R.K. Wanchoo & Amrit Pal Toor. (2018) Solar assisted degradation of carbendazim in water using clay beads immobilized with TiO2 & Fe doped TiO2. Solar Energy 162, pages 45-56.
Crossref
Wenjuan Tan, Jose R. Peralta-Videa & Jorge L. Gardea-Torresdey. (2018) Interaction of titanium dioxide nanoparticles with soil components and plants: current knowledge and future research needs – a critical review. Environmental Science: Nano 5:2, pages 257-278.
Crossref
Kishore K. Nair, Neha Srivastava, Supriya Kumari, Samsul Alam & Syed K. Raza. 2018. Impact of Nanoscience in the Food Industry. Impact of Nanoscience in the Food Industry 217 276 .
Yingkun Zhang, Hui Wang, Xiang Wang, Bo Hu, Chenfei Zhang, Wen Jin, Shijun Zhu, Gang Hu & Qing Hong. (2017) Identification of the key amino acid sites of the carbendazim hydrolase (MheI) from a novel carbendazim-degrading strain Mycobacterium sp. SD-4. Journal of Hazardous Materials 331, pages 55-62.
Crossref
María Luisa Alvarado-Gutiérrez, Nora Ruiz-Ordaz, Juvencio Galíndez-Mayer, Fortunata Santoyo-Tepole, Everardo Curiel-Quesada, Jaime García-Mena & Deifilia Ahuatzi-Chacón. (2016) Kinetics of carbendazim degradation in a horizontal tubular biofilm reactor. Bioprocess and Biosystems Engineering 40:4, pages 519-528.
Crossref
Priyanka Verma, Kamalpreet Kaur, Ravinder Kumar Wanchoo & Amrit Pal Toor. (2017) Esterification of acetic acid to methyl acetate using activated TiO2 under UV light irradiation at ambient temperature. Journal of Photochemistry and Photobiology A: Chemistry 336, pages 170-175.
Crossref
Simranjeet Singh, Nasib Singh, Vijay Kumar, Shivika Datta, Abdul Basit Wani, Damnita Singh, Karan Singh & Joginder Singh. (2016) Toxicity, monitoring and biodegradation of the fungicide carbendazim. Environmental Chemistry Letters 14:3, pages 317-329.
Crossref
Taranjeet Kaur, Abhishek Sraw, Amrit Pal Toor & R.K. Wanchoo. (2016) Utilization of solar energy for the degradation of carbendazim and propiconazole by Fe doped TiO2. Solar Energy 125, pages 65-76.
Crossref

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.