Register      Login
Soil Research Soil Research Society
Soil, land care and environmental research

Articles citing this paper

Remedial options for copper-contaminated vineyard soils

U. Pietrzak A C and N. C. Uren B
+ Author Affiliations
- Author Affiliations

A School of Geography and Environmental Science, Monash University, Vic. 3800, Australia.

B Department of Agricultural Sciences, La Trobe University, Vic. 3086, Australia.

C Corresponding author. Email: Ursula.Pietrzak@arts.monash.edu.au

Soil Research 49(1) 44-55 https://doi.org/10.1071/SR09200
Submitted: 4 November 2009  Accepted: 5 July 2010   Published: 4 February 2011



31 articles found in Crossref database.

Trichoderma asperellum ameliorates phytotoxic effects of copper in onion (Allium cepa L.)
Téllez Vargas Jaqueline, Rodríguez-Monroy Mario, López Meyer Melina, Montes-Belmont Roberto, Sepúlveda-Jiménez Gabriela
Environmental and Experimental Botany. 2017 136 p.85
A Review: Soil Management, Sustainable Strategies and Approaches to Improve the Quality of Modern Viticulture
Cataldo Eleonora, Fucile Maddalena, Mattii Giovan Battista
Agronomy. 2021 11(11). p.2359
Remediation of heavy metal(loid)s contaminated soils – To mobilize or to immobilize?
Bolan Nanthi, Kunhikrishnan Anitha, Thangarajan Ramya, Kumpiene Jurate, Park Jinhee, Makino Tomoyuki, Kirkham Mary Beth, Scheckel Kirk
Journal of Hazardous Materials. 2014 266 p.141
Phytoremediation (2017)
Alori Elizabeth Temitope, Fawole Oluyemisi Bolajoko
Copper-induced oxidative stress, initiation of antioxidants and phytoremediation potential of flax (Linum usitatissimum L.) seedlings grown under the mixing of two different soils of China
Saleem Muhammad Hamzah, Fahad Shah, Khan Shahid Ullah, Din Mairaj, Ullah Abid, Sabagh Ayman EL, Hossain Akbar, Llanes Analía, Liu Lijun
Environmental Science and Pollution Research. 2020 27(5). p.5211
Sorption–bioavailability nexus of arsenic and cadmium in variable-charge soils
Bolan Nanthi, Mahimairaja Santiago, Kunhikrishnan Anitha, Naidu Ravi
Journal of Hazardous Materials. 2013 261 p.725
Soil Science: Agricultural and Environmental Prospectives (2016)
Amanullah Mahar, Ali Amjad, Ping Wang, Quan Wang, Feng Shen, Lahori Altaf Hussain, Ronghua Li, Awasthi Mukesh Kumar, Zengqiang Zhang, Öztürk Münir
Comparative Activation Process of Pb, Cd and Tl Using Chelating Agents from Contaminated Red Soils
Liu Lirong, Luo Dinggui, Yao Guangchao, Huang Xuexia, Wei Lezhang, Liu Yu, Wu Qihang, Mai Xiaotao, Liu Guowei, Xiao Tangfu
International Journal of Environmental Research and Public Health. 2020 17(2). p.497
Copper and zinc in rhizospheric soil of wild plants growing in long-term acid vineyard soils. Insights on availability and metal remediation
Campillo-Cora C., Fernández-Calviño D., Pérez-Rodríguez P., Fernández-Sanjurjo M.J., Núñez-Delgado A., Álvarez-Rodríguez E., Arias-Estévez M., Nóvoa-Muñoz J.C.
Science of The Total Environment. 2019 672 p.389
Copper environmental toxicology, recent advances, and future outlook: a review
Rehman Muzammal, Liu Lijun, Wang Qin, Saleem Muhammad Hamzah, Bashir Saqib, Ullah Sana, Peng Dingxiang
Environmental Science and Pollution Research. 2019 26(18). p.18003
Remediation of copper in vineyards – A mini review
Mackie K.A., Müller T., Kandeler E.
Environmental Pollution. 2012 167 p.16
Industry Wide Risk Assessment: A Case Study of Cu in Australian Vineyard Soils
Wightwick Adam M., Reichman Suzanne M., Menzies Neal W., Allinson Graeme
Water, Air, & Soil Pollution. 2013 224(12).
Effects of Chelating Agents Addition on Ryegrass Extraction of Cadmium and Lead in Artificially Contaminated Soil
Dong Wen, Wang Ruichen, Li Huaien, Yang Xiao, Li Jiake, Wang Hui, Jiang Chunbo, Wang Zhe
Water. 2023 15(10). p.1929
Advantages and limits to copper phytoextraction in vineyards
Cornu Jean-Yves, Waterlot Christophe, Lebeau Thierry
Environmental Science and Pollution Research. 2022 29(20). p.29226
Exogenous abscisic acid mediates ROS homeostasis and maintains glandular trichome to enhance artemisinin biosynthesis in Artemisia annua under copper toxicity
Zehra Andleeb, Choudhary Sadaf, Wani Kaiser Iqbal, Naeem M., Khan M. Masroor A., Aftab Tariq
Plant Physiology and Biochemistry. 2020 156 p.125
Soil contamination in landfills: a case study of a landfill in Czech Republic
Adamcová D., Vaverková M. D., Bartoň S., Havlíček Z., Břoušková E.
Solid Earth. 2016 7(1). p.239
Soil application of P can mitigate the copper toxicity in grapevine: physiological implications
Baldi E., Miotto A., Ceretta C.A., Brunetto G., Muzzi E., Sorrenti G., Quartieri M., Toselli M.
Scientia Horticulturae. 2018 238 p.400
Immobilization of Lead and Cadmium in Contaminated Soil Using Amendments: A Review
MAHAR Amanullah, WANG Ping, LI Ronghua, ZHANG Zengqiang
Pedosphere. 2015 25(4). p.555
Remediation Performance and Mechanism of Heavy Metals by a Bottom Up Activation and Extraction System Using Multiple Biochemical Materials
Xiao Kemeng, Li Yunzhen, Sun Yang, Liu Ruyue, Li Junjie, Zhao Yun, Xu Heng
ACS Applied Materials & Interfaces. 2017 9(36). p.30448
Copper Accumulation and Availability in Sandy, Acid, Vineyard Soils
Miotto Alcione, Ceretta Carlos Alberto, Girotto Eduardo, Trentin Gustavo, Kaminski João, De Conti Lessandro, Moreno Toselli, Elena Baldi, Brunetto Gustavo
Communications in Soil Science and Plant Analysis. 2017 48(10). p.1167
Soil-applied phosphorous is an effective tool to mitigate the toxicity of copper excess on grapevine grown in rhizobox
Baldi Elena, Miotto Alcione, Ceretta Carlos Alberto, Quartieri Maurizio, Sorrenti Giovambattista, Brunetto Gustavo, Toselli Moreno
Scientia Horticulturae. 2018 227 p.102
Effect of soil P addition on growth, nutritional status and photosynthesis of potted grapevine plants grown under soil copper excess
Baldi E., Miotto A., Sorrenti G., Quartieri M., Brunetto G., Ceretta C.A., Toselli M.
Acta Horticulturae. 2018 (1217). p.69
Nickel phytomining from industrial wastes: Growing nickel hyperaccumulator plants on galvanic sludges
Tognacchini Alice, Rosenkranz Theresa, van der Ent Antony, Machinet Gaylord Erwan, Echevarria Guillaume, Puschenreiter Markus
Journal of Environmental Management. 2020 254 p.109798
Plant–microbe–metal interactions for heavy metal bioremediation: a review
Islam Md. Saiful, Kormoker Tapos, Idris Abubakr M., Proshad Ram, Kabir Md. Humayun, Ustaoğlu Fikret
Crop and Pasture Science. 2021 73(2). p.181
Phytoremediation (2015)
Karczewska Anna, Mocek Andrzej, Goliński Piotr, Mleczek Mirosław
Amelioration of heavy metal stress by endophytic Bacillus amyloliquefaciens RWL-1 in rice by regulating metabolic changes: potential for bacterial bioremediation
Shahzad Raheem, Bilal Saqib, Imran Muhammad, Khan Abdul Latif, Alosaimi Areej Ahmed, Al-Shwyeh Hussah Abdullah, Almahasheer Hanan, Rehman Suriya, Lee In-Jung
Biochemical Journal. 2019 476(21). p.3385
Agromining: Farming for Metals (2021)
Tognacchini Alice, Buteri Aurelien, Machinet Gaylord Erwan, Morel Jean Louis, Puschenreiter Markus, Saad Ramez F., Simonnot Marie-Odile
A Study of Heavy Metal Pollution in China: Current Status, Pollution-Control Policies and Countermeasures
Hu Hui, Jin Qian, Kavan Philip
Sustainability. 2014 6(9). p.5820
Copper accumulation in vineyard soils: Rhizosphere processes and agronomic practices to limit its toxicity
Brunetto Gustavo, Bastos de Melo George Wellington, Terzano Roberto, Del Buono Daniele, Astolfi Stefania, Tomasi Nicola, Pii Youry, Mimmo Tanja, Cesco Stefano
Chemosphere. 2016 162 p.293
Soil Abandonment as a Trigger for Changes in Zn Fractionation in Afforested Former Vineyard Acidic Soils
Pérez-Rodríguez Paula, Nóvoa-Muñoz Juan Carlos, Arias-Estévez Manuel, Fernández-Calviño David
Horticulturae. 2023 9(10). p.1121
Temporal Changes in the Efficiency of Biochar- and Compost-Based Amendments on Copper Immobilization in Vineyard Soils
Pump Christina, Keiblinger Katharina M., Scheiblauer Elisabeth, Johnen Simone, Lehto Niklas J., Soja Gerhard, Zehetner Franz
Soil Systems. 2019 3(4). p.78

Committee on Publication Ethics


Abstract Export Citation Get Permission