• Title/Summary/Keyword: 중금속 구리 결합능

Search Result 3, Processing Time 0.017 seconds

Heavy-Metal Adsorption by Recombinant Saccharomyces cerevisiae Harboring Multiple Copies of the CUP1 Gene (구리흡착 단백질 유전자를 함유하는 재조합 효모의 중금속 흡착)

  • 서진호;박상옥;김명동;한기철;전영석;안장우;한남수
    • KSBB Journal
    • /
    • v.17 no.1
    • /
    • pp.38-43
    • /
    • 2002
  • Characteristics of cell growth and heavymetal adsorption by recombinant Saccharomyus cerevisiae strains harboring multiple copies of the CUP1 gene encoding metallothione (MT) protein were studied in batch cultures. Recombinant S. cerevisiae strains harboring multiple copies of the CUP1 gene were superior to the host and wild-type yeast strains in terms of cell growth and heavy metal removal, indicating that the copy number of the CUP1 gene for MT expression played an important role in the adsorption of heavy metals. It was suggested that the CUP1 promoter for the MT expression is induced by manganese and zinc as well as copper An optimum copper concentration for MT expression and concomitant adsorption of heavy metals by recombinant S. cerevisiae was found to be 0.31 mM. A nonionic surfactant Triton X-100 enhanced cell growth by 17.7% and removal of zinc by 6.1% compared with the control case.

Changes in the Characteristics of Dissolved Organic Matter by Microbial Transformation and the Subsequent Effects on Copper Binding (생분해에 따른 용존 유기물질 성상 및 중금속 구리와의 결합특성 변화)

  • Jung, Ka-Young;Hur, Jin
    • Journal of Korean Society of Environmental Engineers
    • /
    • v.34 no.1
    • /
    • pp.49-54
    • /
    • 2012
  • Microbial changes in the characteristics of dissolved organic matter (DOM) and the subsequent effects on the conditional stability constants of copper were investigated using 14 day-incubations of Pony Lake fulvic acid (PLFA), Suwannee River fulvic acid (SRFA) and the mixtures of the humic substances and glucose. After incubation, dissolved organic carbon (DOC) concentrations were diminished, and specific UV absorbance values and DOC-normalized fluorescence intensities increased. The microbial changes were minimal for the samples contaning humic substances only whereas they were much pronounced for the mixtures with glucose. The extent of the changes increased with a higher content of glucose in the mixtures. The same trend was observed even for glucose solution. Our results suggest that labile organic moieties may be transformed into more chromophoric and humidified components by biodegradation. For the mixture samples, the copper binding stability constants did not change or even decreased after incubation. Therefore, microbially induced enrichment of the fulvic- and humic-like carbon structures in DOM appears to result in little change or the decrease of the copper binding coefficients.

Competitive Adsorption of Cd and Cu on Surface of Humic Acid Extracted from Peat (피트에서 추출한 부식산 표면에 대한 카드뮴과 구리의 경쟁 흡착)

  • Lim, Soo-Kil;Chung, Chang-Yoon;Ok, Yong-Sik;Kim, Jeong-Gyu
    • Korean Journal of Soil Science and Fertilizer
    • /
    • v.35 no.6
    • /
    • pp.344-351
    • /
    • 2002
  • Chemical speciation and transport of heavy metals in soil environment could be controlled by humic acid. In order to understand the mechanism on competitive adsorption of Cd and Cu on the surface of humic acid extracted from peat, the charge development of humic acid were investigate through a batch adsorption experiment with a series of different background electrolytes levels. The competitive adsorption of Cd and Cu to the humic acid were estimated according to the model using the proton binding constant obtained from the above batch test. The affinity of Cu to the carboxyl group on the humic acid was higher than that of Cd, but the affinity to the phenolic group was lower than to the carboxyl group. It seems that the amount of adsorbed Cd and Cu could be estimated using the proton binding constant obtained from a solution with single background ion. However, it is difficult to interpret the competitive adsorption of Cd and Cu with the constant for single background ion.