EXTRACTION AND RECOVERY OF SILVER FROM LOW-GRADE LIQUORS USING MICROALGAE

被引:23
|
作者
CORDERY, J [1 ]
WILLS, AJ [1 ]
ATKINSON, K [1 ]
WILLS, BA [1 ]
机构
[1] UNIV COLL SWANSEA,DEPT MARINE BIOL,SWANSEA SA2 8PP,W GLAM,WALES
关键词
ALGAE; CHLORELLA-VULGARIS; FROTH FLOTATION; BIOSORPTION; SILVER; PHOTO-PROCESSING SOLUTIONS;
D O I
10.1016/0892-6875(94)90029-9
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
The silver-binding properties of two strains of the alga Chlorella vulgaris (211/11b and 211/12) have been investigated. Rapid Ag+ uptake from an aqueous solution has been proven. The relative affinity of the strains based on varying silver concentrations has been measured. Over a silver concentration range of 10 mg/l to 200 mg/l strain 211/11b had the greater affinity for the Ag+ ion, reaching a maximum loading of 56.7 mg/g of algae when contacted with 200 mg/l AgNO3 solutions. The binding of the Ag+ ion is largely pH-independent when present in a low concentration but pH-dependent when present in a high concentration. When contacted with a simulated photoprocessing effluent, over 80% of the silver can be removed by strain 11b. Froth flotation can be an efficient technique in the removal of silver-bound Chlorella vulgaris from a reaction solution with efficiencies of recovery attaining 97.5% for Ag+ bound strain 211/11b and 89% for silver thiosulphate-bound strain 211/11b. The flocculant aluminium sulphate was usually required for most efficient flotation; however when floating the algae from the growth medium the presence of Al3+ ions actually inhibited flotation. All the flotation experiments were carried out in a Hallimond tube using the amine collector ARMAC-T. The optimum concentration for this collector was 0.4 g/l. Owing to the alga's high sorbtive capacity for the silver thiosulphate complex at low concentrations, retrieval systems based on Chlorella vulgaris would be best applied for final cleansing of effluents from existing silver recovery systems.
引用
收藏
页码:1003 / 1015
页数:13
相关论文
共 50 条
  • [41] Improving leaching recovery of copper from low-grade chalcopyrite ores
    J. M. Ekenes
    C. A. Caro
    Mining, Metallurgy & Exploration, 2013, 30 : 180 - 185
  • [42] RECOVERY OF PRECIOUS METALS FROM LOW-GRADE ORES BY HEAP LEACHING
    MCCOLL, IG
    DAHYA, AS
    CIM BULLETIN, 1983, 76 (851): : 56 - 56
  • [43] LITHIUM AND ITS RECOVERY FROM LOW-GRADE NEVADA CLAYS.
    Crocker, L.
    Lien, R.H.
    Bulletin - United States, Bureau of Mines, 1988, (691):
  • [44] Extraction of Copper from Malanjkhand Low-Grade Ore by Bacillus stearothermophilus
    Singh, Sradhanjali
    Sukla, Lala Behari
    Mishra, Baroda Kanta
    INDIAN JOURNAL OF MICROBIOLOGY, 2011, 51 (04) : 477 - 481
  • [45] GOLD EXTRACTION FROM LOW-GRADE ORES - ECONOMIC EVALUATION OF PROCESSES
    BHAPPU, RB
    LEWIS, FM
    MINING CONGRESS JOURNAL, 1975, 61 (01): : 38 - 40
  • [46] Extraction of Copper from Malanjkhand Low-Grade Ore by Bacillus stearothermophilus
    Sradhanjali Singh
    Lala Behari Sukla
    Baroda Kanta Mishra
    Indian Journal of Microbiology, 2011, 51 : 477 - 481
  • [47] Improving leaching recovery of copper from low-grade chalcopyrite ores
    Ekenes, J. M.
    Caro, C. A.
    MINERALS & METALLURGICAL PROCESSING, 2013, 30 (03) : 180 - 185
  • [48] Recovery of vanadium and carbon from low-grade stone coal by flotation
    Wang, Li
    Sun, Wei
    Zhang, Qing-peng
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2015, 25 (11) : 3767 - 3773
  • [49] MN-2+ RECOVERY FROM A LOW-GRADE ORE BY MICROORGANISMS
    PAPONETTI, B
    TORO, L
    ABBRUZZESE, C
    MARABINI, A
    DUARTE, MY
    MICROBIOLOGY OF EXTREME ENVIRONMENTS AND ITS POTENTIAL FOR BIOTECHNOLOGY, 1989, 49 : 395 - 395
  • [50] RECOVERY OF METAL VALUES FROM LOW-GRADE COPPER SULFIDE ORES
    WADSWORTH, ME
    SEPARATION SCIENCE AND TECHNOLOGY, 1981, 16 (09) : 1081 - 1112