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Pretreatment of caulerpa lentillifera with NaOH for biosorption of Cu, Cd, Pb and Zn. by Series: Volesky, B ; | Matheickal, J.T. and Yu Q. Bioresource Technology. Biosorption of Pb(II) and Cu(II) from aqueous solution by pre-treated biomass of Australian marine algae. ; 69: 223-229. | Kaewsarn, P. and Yu, Q. Environmental Pollution. Cadmium(II) removal from aqueous solutions by pre-treated biomass of marine alga Padina sp. ; 112: 209-213. | Kaewsarn, P. Chemosphere. Biosorption of Cu(II) from aqueous solutions by pre-treated biomass of marine algae Padina sp. ; 47: 1081-1085. | Sungkhum, V ; | Bai, R.S. and Abraham, T.E. Water research. Studies on enhancement of Cr(VI) biosorption by chemically modified biomass of Rhizopus nigricans. ; 36: 1224-1236. | Mameri, N., Boudries, N., Addour, L., Belhocine, D., Lounici, H., Grib, H., and Pauss, A. Water research. Batch Zinc biosorption by a bacterial nonliving Streptomyces Rimosus biomass. ; 33: 1347-1354. | Puranik, P.R. and Paknikar, K.M. Biotechnology progress. Biosorption of Pb, Cd, Zn by Citrobacter Strain MCM B-181. ; 15: 228-237. | Yan, G. and Viraraghavan, T. Water SA. Effect of pretreatment on the biosorption of heavy metals on Mucor rouxii. ; 26: 119-123. | Kapoor, A., Viraraghavan, T. Bioresource Technology. Biosorption of heavy metals on Aspergillus niger: Effect of pretreatment. ; 63: 109-113. | Puranik, P.R., Paknikar, K.M. Journal of biotechnology. Biosorption of Lead and Zinc from solutions using Streptoverticillium cinnamoneum waste biomass. ; 55: 113-124. | Ahuja, P., Gupta, R., and Saxena R.K. Process biochemistry. Zn2+ biosorption by Oscillatoria anguistissima. ; 34: 77-85. | Kratochvil, D., Volesky, B., Demopoulos, G. Water Resource. Optimizing Cu removal/recovery in biosorption column. ; 31: 2327-2339. | Sar, P. Kazy, S.K., Asthana, R.K., Singh, S.P. International Biodeterioration & Biodegradation. Metal adsorption and desorption by lyophilized Pseudomonas aeruginosa. ; 44: c101-110. | Yu, Q., Matheickal, J. T., Yin, P. and Kaewsarn, P. Water research. Heavy metal uptake capacities of common marine macro algal biomass. ; 33: 1534-1537. | Yin, P., Yu, O., Lin, Z., Kaewsarn P. Environment technology. Biosorption and desorption of Cd by biomass of Laminaria japonica. ; 509-514. | Schmitt, D., Muller, A., Csogor, Z., Fritz, H., Frimmel, F.H. and Posten, C. Water research. The adsorption kinetics of metal ions onto different microalgae and siliceous earth. ; 35: 779-785. | Jalali, R., Ghafourian, H., Asef, Y., Davarpanah, S.J., Sepehr, S. Journal of hazardous materials. Removal and recovery of lead usign nonliving biomass of marine algae. ; B92: 253-262.
Material type: Continuing resource Continuing resource; Format: print
Language: English Summary language: Thai, English
Publication details: 2549 [2006]
Other title:
  • การปรับปรุงคุณภาพสาหร่ายช่อพริกไทยเพื่อการดูดซับทองแดง แคดเมียม สังกะสี และตะกั่ว
In: วารสารวิศวกรรมสิ่งแวดล้อมไทย 20, 1 (ม.ค.-เม.ย. 2549) 11-23 :ตาราง, ภาพประกอบ.
Availability: Thammasat Library, Rangsit Campus (1)

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