Bioreduction of Selenite and Tellurite by Phanerochaete Chrysosporium
暫譯: 白腐菌對亞硒酸鹽和亞碲酸鹽的生物還原研究

Erika Jimena Espinosa-Ortiz

  • 出版商: CRC
  • 出版日期: 2016-07-28
  • 售價: $3,220
  • 貴賓價: 9.5$3,059
  • 語言: 英文
  • 頁數: 180
  • 裝訂: Paperback
  • ISBN: 113803004X
  • ISBN-13: 9781138030046
  • 海外代購書籍(需單獨結帳)

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商品描述

Selenium (Se) and tellurium (Te) are metalloids of commercial interest due to their physicochemical properties. The water soluble oxyanions of these elements (selenite, selenate, tellurite and tellurate) exhibit high toxicities; hence, their release in the environment is of great concern.
This study demonstrates the potential use of fungi as Se- and Te-reducing organisms. The response of Phanerochaete chrysosporium to the presence of selenite and tellurite was evaluated, as well as its potential application in wastewater treatment and production of nanoparticles. Growth stress and morphological changes were induced in P. chrysosoporium when exposed to selenite and tellurite. Synthesis of Se0 and Te0 nanoparticles entrapped in the fungal biomass was observed, as well as the formation of unique Se0-Te0 nanocomposites when the fungus was cultivated concurrently with Se and Te. The response of P. chrysosporium to selenite exposure was investigated in different modes of fungal growth (pellets and biofilm). A bioprocess for selenite removal and Se0 nanoparticles recovery using an up-flow fungal pelleted reactor was developed. 70% selenite removal (10 mg Se L-1 d-1) was achieved under continuous mode. The use of Se0 nanoparticles immobilized in P. chrysosporium pellets as a new sorbent material for the removal of heavy metals from wastewater was demonstrated.

商品描述(中文翻譯)

Selenium (Se) 和 tellurium (Te) 是因其物理化學性質而具有商業價值的類金屬。這些元素的水溶性氧陰離子(亞硒酸鹽、硒酸鹽、亞碲酸鹽和碲酸鹽)具有高毒性,因此它們在環境中的釋放引起了極大的關注。本研究展示了真菌作為 Se 和 Te 還原生物的潛在應用。評估了 Phanerochaete chrysosporium 對亞硒酸鹽和亞碲酸鹽存在的反應,以及其在廢水處理和納米顆粒生產中的潛在應用。在暴露於亞硒酸鹽和亞碲酸鹽時,P. chrysosporium 產生了生長壓力和形態變化。觀察到在真菌生物量中合成了 Se0 和 Te0 納米顆粒,並且當真菌與 Se 和 Te 同時培養時,形成了獨特的 Se0-Te0 奈米複合材料。研究了 P. chrysosporium 對亞硒酸鹽暴露的反應,並在不同的真菌生長模式(顆粒和生物膜)中進行了評估。開發了一種使用上流真菌顆粒反應器進行亞硒酸鹽去除和 Se0 納米顆粒回收的生物過程。在連續模式下實現了 70% 的亞硒酸鹽去除(10 mg Se L-1 d-1)。展示了將固定在 P. chrysosporium 顆粒中的 Se0 納米顆粒作為去除廢水中重金屬的新吸附材料的應用。