Bioleaching of pyrite by extreme thermophilic ThiobaciUus
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摘要:
為了探討極端嗜熱菌在高鐵、高酸和高溫條件下生物脫硫的可行性,采用從騰沖熱海酸性溫泉分離出的一株新型極端嗜熱硫桿菌開展了四組不同初始pH值條件下的黃鐵礦生物柱浸實驗.該菌株能耐受pH值為0.58、全鐵質量濃度為38.9 g·L-1的高酸高鐵環境,同時維持580~640 mV的較低電位.初始pH值為2時,浸出28 d后黃鐵礦浸出率達到最高為17.8%.生物浸出時,菌株生長依次表現出較明顯的遲緩期、對數期和穩定期,且降低初始pH值會延長其到達穩定期的時間.此外,70℃高溫和全鐵質量濃度為38.9 g·L-1的高鐵體系能促進生成黃鉀鐵礬和少量單質硫沉淀,而菌株能在pH值小于0.9時將大部分S0氧化為SO42-.
Abstract:In order to investigate the feasibility of biodesulfurization by an extreme thermophile in high iron concentration, high acidity and elevated temperature environment, four groups of pyrite column bioleaching experiments at variable initial pH values were carried out by using a novel strain of extreme thermophilic Thiobacillus which was isolated from Rehai acidic hot spring in Tengchong in southwestern China. It is found that the new strain is resistant to high acid and high iron environment in which the pH value is 0.58 and the soluble iron concentration is 38.9 g·L-1, while the redox potential maintains at a low level from 580 to 640 mV. The highest value of iron recovery can reach up to 17.8% after leaching for 28 d when the initial pH value is 2. The bacterial growth evidently represents a lag phase, a logarithmic phase and a stationary phase sequentiMly in the traditional bioleaching route, while reducing the initial pH value can prolong the time of reaching the steady periodical. In addition, precipitation formation of jarosite and a little sulfur is promoted in the high iron system of which the total iron concentration is 38.9 g·L-1 and the temperature is 70℃. The novel strain can oxidize the majority of SO to SO42- even when the pH value is lower than 0.9.
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Key words:
- pyrites /
- bioleaching /
- biodesulfurization /
- acidity /
- surface morphology
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