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

Articles citing this paper

Acid neutralising capacity of two different bauxite residues (red mud) and their potential applications for treating acid sulfate water and soils

Chuxia Lin A B C , Greg Maddocks A , Jing Lin A , Graham Lancaster A and Chengxing Chu B
+ Author Affiliations
- Author Affiliations

A School of Environmental Science and Management, Southern Cross University, Lismore, NSW 2480, Australia.

B College of Resources and Environment, South China Agricultural University, Guangzhou 510642, China.

C Corresponding author; email: cxlin@scau.edu.cn

Australian Journal of Soil Research 42(6) 649-657 https://doi.org/10.1071/SR03080
Submitted: 16 May 2003  Accepted: 10 March 2004   Published: 17 September 2004



30 articles found in Crossref database.

Neutralization of Bayer bauxite residue (red mud) by various brines: A review of chemistry and engineering processes
Kannan Pravin, Banat Fawzi, Hasan Shadi W., Abu Haija Mohammud
Hydrometallurgy. 2021 206 p.105758
Removal of alkali in the red mud by SO2 and simulated flue gas under mild conditions
Wang Xinke, Zhang Yihe, Lv Fengzhu, An Qi, Lu Rongrong, Hu Pan, Jiang Shaobin
Environmental Progress & Sustainable Energy. 2015 34(1). p.81
Competitive removal of water-borne copper, zinc and cadmium by a CaCO3-dominated red mud
Ma Yingqun, Lin Chuxia, Jiang Yuehua, Lu Wenzhou, Si Chunhua, Liu Yong
Journal of Hazardous Materials. 2009 172(2-3). p.1288
Capping hazardous red mud using acidic soil with an embedded layer of zeolite for plant growth
Ma Yingqun, Si Chunhua, Lin Chuxia
Environmental Technology. 2014 35(18). p.2314
Managing soils of environmental significance: A critical review
Niu Anyi, Lin Chuxia
Journal of Hazardous Materials. 2021 417 p.125990
Insights into active and passive carbon sequestration and causticity reduction in hazardous red mud slurry
Qin Junhao, Ying Jidong, Wang Yunji, Niu Anyi, Lin Chuxia, Qiu Rongliang, Lim Jun Wei
Carbon Research. 2023 2(1).
The effect of high concentrations of calcium hydroxide in neutralised synthetic supernatant liquor—Implications for alumina refinery residues
Palmer Sara J., Smith Matthew K., Frost Ray L.
Journal of Industrial and Engineering Chemistry. 2011 17(1). p.56
Novel polyaluminum ferric chloride composite coagulant from Bayer red mud for wastewater treatment
Lu Rongrong, Zhang Yihe, Zhou Fengshan, Wang Xinke, An Qi, Meng Zilin
Desalination and Water Treatment. 2014 52(40-42). p.7645
Characterization of red mud derived from a combined Bayer Process and bauxite calcination method
Liu Yong, Lin Chuxia, Wu Yonggui
Journal of Hazardous Materials. 2007 146(1-2). p.255
Thermal characterization of a Spanish red mud
Pascual J., Corpas F. A., López-Beceiro J., Benítez-Guerrero M., Artiaga R.
Journal of Thermal Analysis and Calorimetry. 2009 96(2). p.407
Bioaccumulation of metals in Eisenia fetida after exposure to a metal‐loaded bauxsol™ reagent
Maddocks Greg, Reichelt‐Brushett Amanda, McConchie David, Vangronsveld Jaco
Environmental Toxicology and Chemistry. 2005 24(3). p.554
Composite plates utilizing dealkalized red mud, acid leaching slag and dealkalized red mud-fly ash: Preparation and performance comparison
Wang Xinke, Zhang Na, Zhang Yihe, Liu Jingang, Wang Chengshan, Chu Paul K.
Construction and Building Materials. 2020 261 p.120495
Acid Mine Drainage Treatment Using Bayer Precipitates Obtained from Seawater Neutralization of Bayer Liquor
Kaur Gurkiran, Couperthwaite Sara J., Millar Graeme J.
Global Challenges. 2018 2(12).
Trends in research on characterization, treatment and valorization of hazardous red mud: A systematic review
Niu Anyi, Lin Chuxia
Journal of Environmental Management. 2024 351 p.119660
Monitoring the Acid Neutralisation Capacity and Options for Leaching Iron from Waste Mud from the Production of Al2O3
Hroncová Emília, Ladomerský Juraj, Ďuricová Anna, Puskajler Jozef
Advanced Materials Research. 2014 1001 p.94
Molecular insights into the chemodiversity of dissolved organic matter and its interactions with the microbial community in eco-engineered bauxite residue
Luo Youfa, Chen Yulu, Wan Zuyan, Zhou Dongran, He Yu
Chemosphere. 2023 330 p.138755
Minimising reversion, using seawater and magnesium chloride, caused by the dissolution of tricalcium aluminate hexahydrate
Palmer Sara J., Frost Ray L., Smith Matthew K.
Journal of Colloid and Interface Science. 2011 353(2). p.398
Phosphogypsum stabilization of bauxite residue: Conversion of its alkaline characteristics
Xue Shengguo, Li Meng, Jiang Jun, Millar Graeme J., Li Chuxuan, Kong Xiangfeng
Journal of Environmental Sciences. 2019 77 p.1
Red mud as an amendment for pollutants in solid and liquid phases
Liu Yanju, Naidu Ravi, Ming Hui
Geoderma. 2011 163(1-2). p.1
Manufacturing new ceramic materials from clay and red mud derived from the aluminium industry
Pérez-Villarejo L., Corpas-Iglesias F.A., Martínez-Martínez S., Artiaga R., Pascual-Cosp J.
Construction and Building Materials. 2012 35 p.656
Life cycle assessment of seawater neutralised red mud for treatment of acid mine drainage
Tuazon D., Corder G.D.
Resources, Conservation and Recycling. 2008 52(11). p.1307
Bauxite residue issues: III. Alkalinity and associated chemistry
Gräfe M., Power G., Klauber C.
Hydrometallurgy. 2011 108(1-2). p.60
Effect of High Concentrations of Calcium Hydroxide in Neutralized Synthetic Supernatant Liquor − Implications for Alumina Refinery Residues
Palmer Sara J., Smith Matthew K., Frost Ray L.
Industrial & Engineering Chemistry Research. 2011 50(4). p.1853
Agronomic and environmental effects of land application of residues in short-rotation tree plantations: A literature review
Marron Nicolas
Biomass and Bioenergy. 2015 81 p.378
Enhanced adsorption of uranium by modified red muds: adsorption behavior study
Wu Wanying, Chen Diyun, Li Jinwen, Su Minhua, Chen Nan
Environmental Science and Pollution Research. 2018 25(18). p.18096
Electroacoustic Isoelectric Point Determinations of Bauxite Refinery Residues: Different Neutralization Techniques and Minor Mineral Effects
Freire Tiago S. S., Clark Malcolm W., Comarmond M. Josick, Payne Timothy E., Reichelt-Brushett Amanda J., Thorogood Gordon J.
Langmuir. 2012 28(32). p.11802
Comparison of Copper Scavenging Capacity between Two Different Red Mud Types
Ma Yingqun, Si Chunhua, Lin Chuxia
Materials. 2012 5(9). p.1708
Awaso bauxite red mud-cement based composites: Characterisation for pavement applications
Dodoo-Arhin David, Nuamah Rania A., Agyei-Tuffour Benjamin, Obada David O., Yaya Abu
Case Studies in Construction Materials. 2017 7 p.45
Red mud as a carbon sink: Variability, affecting factors and environmental significance
Si Chunhua, Ma Yingqun, Lin Chuxia
Journal of Hazardous Materials. 2013 244-245 p.54
Study on the physical and mechanical properties of bauxite residue by laboratory and field in-situ tests
Jiang Jie, Su Jian, Ou Xiaoduo, Weng Mengsen, Lü Xilin
Environmental Earth Sciences. 2021 80(10).

Committee on Publication Ethics


Abstract Export Citation Get Permission