The effect of heavy metals on the viability of Tetraselmis marina AC16-MESO and an evaluation of the potential use of this microalga in bioremediation
暂无分享,去创建一个
[1] F. Martínez-Jerónimo,et al. Nickel has biochemical, physiological, and structural effects on the green microalga Ankistrodesmus falcatus: An integrative study. , 2015, Aquatic toxicology.
[2] Jo‐Shu Chang,et al. Enhanced removal of Zn(2+) or Cd(2+) by the flocculating Chlorella vulgaris JSC-7. , 2015, Journal of hazardous materials.
[3] Kamalesh Kumar,et al. Microalgae - A promising tool for heavy metal remediation. , 2015, Ecotoxicology and environmental safety.
[4] Changwei Hu,et al. Ecotoxicological effects of perfluorooctanoic acid on freshwater microalgae Chlamydomonas reinhardtii and Scenedesmus obliquus , 2014, Environmental toxicology and chemistry.
[5] Guangce Wang,et al. Effect of Fe3+ on the growth and lipid content of Isochrysis galbana , 2014, Chinese Journal of Oceanology and Limnology.
[6] Yanyou Wu,et al. Biosorption of trace metals from aqueous multimetal solutions by green microalgae , 2013, Chinese Journal of Geochemistry.
[7] N. Mallick,et al. Effects of calcium, magnesium and sodium chloride in enhancing lipid accumulation in two green microalgae , 2013, Environmental technology.
[8] Ackmez Mudhoo,et al. Removal of heavy metals by biosorption , 2012, Environmental Chemistry Letters.
[9] Robert H. Davis,et al. Sedimentation of algae flocculated using naturally-available, magnesium-based flocculants , 2012 .
[10] G. Ying,et al. Biosorption of zinc and copper from aqueous solutions by two freshwater green microalgae Chlorella pyrenoidosa and Scenedesmus obliquus , 2012, Environmental Science and Pollution Research.
[11] E. Torres,et al. Dunaliella salina as marine microalga highly tolerant to but a poor remover of cadmium. , 2009, Journal of hazardous materials.
[12] D. Goyal,et al. Microbial and plant derived biomass for removal of heavy metals from wastewater. , 2007, Bioresource technology.
[13] Graziella Chini Zittelli,et al. Productivity and photosynthetic efficiency of outdoor cultures of Tetraselmis suecica in annular columns , 2006 .
[14] P. K. Hepler,et al. Calcium: A Central Regulator of Plant Growth and Development , 2005, The Plant Cell Online.
[15] M. El-sheekh,et al. Effect of cobalt on growth, pigments and the photosynthetic electron transport in Monoraphidium minutum and Nitzchia perminuta , 2003 .
[16] N. Irha,et al. Effect of heavy metals and PAH on soil assessed via dehydrogenase assay. , 2003, Environment international.
[17] L. Hong,et al. Elucidation of Interactions between Metal Ions and Ca Alginate-Based Ion-Exchange Resin by Spectroscopic Analysis and Modeling Simulation , 2002 .
[18] B. Volesky. Detoxification of metal-bearing effluents: biosorption for the next century , 2001 .
[19] A. A. Hamdy. Biosorption of Heavy Metals by Marine Algae , 2000, Current Microbiology.
[20] T. Ramachandra,et al. BIOSORPTION OF HEAVY METALS , 2003 .
[21] J. C. Goldman,et al. Steady state growth and ammonium uptake of a fast‐growing marine diatom 1 , 1978 .
[22] G. Acién,et al. Overall development of a bioprocess for the outdoor production of Nannochloropsis gaditana for aquaculture , 2018 .
[23] Jinshui Yang,et al. Lipid production combined with biosorption and bioaccumulation of cadmium, copper, manganese and zinc by oleaginous microalgae Chlorella minutissima UTEX2341. , 2015, Bioresource technology.
[24] Meng Chen,et al. Effect of nutrients on growth and lipid accumulation in the green algae Dunaliella tertiolecta. , 2011, Bioresource technology.
[25] A. Ray,et al. Bioaccumulation of Heavy Metals by Green Algae , 2007, Current Microbiology.
[26] Z. Aksu,et al. A comparative study of various biosorbents for removal of chromium(VI) ions from industrial waste waters , 1994 .
[27] J. Benemann,et al. Bioremoval of heavy metals by the use of microalgae. , 1993, Biotechnology advances.
[28] T. Fujita,et al. Adsorption of Metal Ions by River Algae. , 1992 .