工程科学学报
工程科學學報
공정과학학보
Journal of University of Science and Technology Beijing
2015年
11期
1410-1414
,共5页
胡凯建%王洪江%李广泽%吴爱祥%黄明清
鬍凱建%王洪江%李廣澤%吳愛祥%黃明清
호개건%왕홍강%리엄택%오애상%황명청
铜矿处理%微生物浸矿%细菌%驯化%诱变%菌种改良
銅礦處理%微生物浸礦%細菌%馴化%誘變%菌種改良
동광처리%미생물침광%세균%순화%유변%균충개량
copper ore treatment%microbial leaching%bacteria%domestication%mutagenesis%strain improvement
碱性浸矿细菌是处理碱性脉石矿物的新型高效菌株. 为提高碱性浸矿细菌( Providencia sp. )的浸矿适应性和浸出率,首次对其进行铜矿浆驯化和紫外诱变改良. 使用Design Expert-8软件对改良菌株进行三因素三水平Box-Behnken试验设计与结果分析,考察矿浆中固相质量浓度、接种量和温度三个因素与浸出率之间的关系,利用Design Expert-8软件对试验条件进行优化,确定改良菌株最佳浸出条件,并得到浸出率预测模型. 在最佳浸出条件下对改良菌株与原始菌株别进行浸出试验,比较二者在改良前后生长及浸出率的变化情况. 结果显示:改良菌株能更好适应矿浆环境,细菌浓度最高时可达6. 5 × 108 mL-1左右,浸出率达到了50. 57%;而改良前细菌浓度最高只有3 × 108 mL-1 ,浸出率也只有29. 03%.
堿性浸礦細菌是處理堿性脈石礦物的新型高效菌株. 為提高堿性浸礦細菌( Providencia sp. )的浸礦適應性和浸齣率,首次對其進行銅礦漿馴化和紫外誘變改良. 使用Design Expert-8軟件對改良菌株進行三因素三水平Box-Behnken試驗設計與結果分析,攷察礦漿中固相質量濃度、接種量和溫度三箇因素與浸齣率之間的關繫,利用Design Expert-8軟件對試驗條件進行優化,確定改良菌株最佳浸齣條件,併得到浸齣率預測模型. 在最佳浸齣條件下對改良菌株與原始菌株彆進行浸齣試驗,比較二者在改良前後生長及浸齣率的變化情況. 結果顯示:改良菌株能更好適應礦漿環境,細菌濃度最高時可達6. 5 × 108 mL-1左右,浸齣率達到瞭50. 57%;而改良前細菌濃度最高隻有3 × 108 mL-1 ,浸齣率也隻有29. 03%.
감성침광세균시처리감성맥석광물적신형고효균주. 위제고감성침광세균( Providencia sp. )적침광괄응성화침출솔,수차대기진행동광장순화화자외유변개량. 사용Design Expert-8연건대개량균주진행삼인소삼수평Box-Behnken시험설계여결과분석,고찰광장중고상질량농도、접충량화온도삼개인소여침출솔지간적관계,이용Design Expert-8연건대시험조건진행우화,학정개량균주최가침출조건,병득도침출솔예측모형. 재최가침출조건하대개량균주여원시균주별진행침출시험,비교이자재개량전후생장급침출솔적변화정황. 결과현시:개량균주능경호괄응광장배경,세균농도최고시가체6. 5 × 108 mL-1좌우,침출솔체도료50. 57%;이개량전세균농도최고지유3 × 108 mL-1 ,침출솔야지유29. 03%.
Alkaline leaching bacteria are new efficient strains for processing alkaline minerals. Slurry gradient domestication and ultraviolet mutagenesis were introduced to improve the adaptive capacity to environment and leaching rate of the strains. With the help of Design Expert-8 software, a three-factor three-level Box-Behnken experiment was conducted to investigate the influence of pulp density, initial bacteria inoculation and temperature on the leaching rate. The optimal experimental condition was determined by Design Expert-8 software and a prediction model was proposed in this paper. Comparative experiment was conducted to investigate the differences before and after this improvement experiment under the optimal conditions. The results show that the improved strain can adapt to the pulp condition better. The population of the improved strain can up to 6. 5 × 108 mL-1 and the leaching rate reaches to 50. 57%, while the population of the original strain can up to 3 × 108 mL-1 and the leaching rate reaches only to 29. 03%.