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Relationships among bioleaching performance, additional elemental sulfur, microbial population dynamics and its energy metabolism in bioleaching of chalcopyrite 被引量:11
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作者 XIA Le-xian TANG Lu +6 位作者 XIA Jin-lan YIN Chu cai li-yuan ZHAO Xiao-juan NIE Zhen-yuan LIU Jian-she QIU Guan-zhou 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第1期192-198,共7页
To estimate the relationships among bioleaching performance, additional elemental sulfur (S0), microbial population dynamics and its energy metabolism, bioleaching of chalcopyrite by three typical sulfur- and/or iro... To estimate the relationships among bioleaching performance, additional elemental sulfur (S0), microbial population dynamics and its energy metabolism, bioleaching of chalcopyrite by three typical sulfur- and/or iron-oxidizing bacteria, Acidithiobacillus ferrooxidans, Leptospirillum ferriphilum and Acidithiobacillus thiooxidans with different levels of sulfur were studied in batch shake flask cultures incubated at 30 °C. Copper dissolution capability (71%) was increased with the addition of 3.193 g/L S0, compared to that (67%) without S0. However, lower copper extraction was obtained in bioleaching with excessive sulfur. Microbial population dynamics during chalcopyrite bioleaching process was monitored by using PCR-restriction fragment length polymorphism (PCR-RFLP). Additional S0 accelerated the growth of sulfur-oxidizing bacteria, inhibited the iron-oxidizing metabolism and led to the decrease of iron-oxidizing microorganisms, finally affected iron concentration, redox potential and bioleaching performance. It is suggested that mixed iron and sulfur-oxidizing microorganisms with further optimized additional S0 concentration could improve copper recovery from chalcopyrite. 展开更多
关键词 BIOLEACHING sulfur oxidization iron oxidization microbial community CHALCOPYRITE
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PC-40超分子表面活性剂制备与室内评价
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作者 蔡丽媛 吴景春 +1 位作者 石芳 张淼鑫 《化学工程师》 CAS 2020年第5期10-13,共4页
为改善表面活性剂驱油过程中的表面活性损失及聚驱后储层残余聚合物的再利用,本文利用分子间的共价键作用,进行分子自组装,研制出一种具有高表面活性低损耗的新型表面活性剂PC-40。并对这种新型超分子表面活性剂在界面张力、润湿角、动... 为改善表面活性剂驱油过程中的表面活性损失及聚驱后储层残余聚合物的再利用,本文利用分子间的共价键作用,进行分子自组装,研制出一种具有高表面活性低损耗的新型表面活性剂PC-40。并对这种新型超分子表面活性剂在界面张力、润湿角、动态吸附量及乳化性等方面进行了室内评价试验。当PC-40浓度达到较高浓度时,油水界面张力达到10-2mN·m-1,同时表观粘度有所增大,可通过增稠作用携带注聚后孔道中残余的聚合物增强驱油效率。PC-40溶液具有一定的乳化作用,可使原油充分乳化形成稳定的乳状液;当动态吸附达到平衡,吸附量趋于稳定状态,表面活性损失量相对较低;随着浓度上升,润湿性逐渐向亲油转变,界面张力随之降低,适用于聚驱后进一步提高采收率。 展开更多
关键词 超分子 表面活性剂 聚驱后 提高采收率
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