覃朝科,奚小双,张静,等. 广西某露采锰矿废弃地主要地质环境问题及综合治理对策. 中国锰业,2009,27(2):37-41 Tan C. K., Xi X. S., Zhang J., et al. open-air manganese mining wasteland in Guangxi geological environment problems and comprehensive treatment measures. China\'s Manganese Industry,2009,27(2):37-41(in Chinese)
[2]
荆俊杰,谢吉民. 微量元素锰污染对人体的危害.广东微量元素科学,2008,15(2):6-9 Jing J. J., Xie J. M. Hazards of manganese pollution to health. Guangdong Trace Elements Science,2008,15(2):6-9(in Chinese)
[3]
李小燕,张卫民,高曙光,等. 微生物浸矿技术在处理低品位铜矿中的现状及发展趋势. 中国矿业,2007,16(7):91-97 Li X. Y.,Zhang W. M.,Gao S. G.,et al. Present situation and developing trend in low-grade copper ore with bioleaching. China Mining Magazine,2007,16(7):91-97(in Chinese)
[4]
Silverman M. P., Ehrlich H. L. Microbial formation and degradation of minerals. Advances in Applied Microbiology,1964,6(1):153-206
[5]
Chartier M., Couillard D. Biological processes:The effects of initial pH,percentage inoculum and nutrient enrichment on the solubilization of sediment bound metals. Water,Air,& Soil Pollution,1997,96(1/4):249-267
[6]
张再利,贾晓珊. 两种硫杆菌对河涌底泥重金属的生物沥滤. 中国环境科学,2008,28(7):624-629 Zhang Z. L.,Jia X. S. Bioleaching of heavy metals from brooklet sediment by Thiobacillus ferrooxidans and Thiobacillus thiooxidans. China Environmental Science,2008,28(7):624-629(in Chinese)
[7]
和苗苗,俞一统,华玉妹,等. 生物淋滤法对污泥中Zn Cu的去除效果及污泥养分损失研究. 农业环境科学学报,2006,25(5):1359-1364 He M. M., Yu Y. T., Hua Y. M., et al. Removal of heavy metals in sewage sludge and losses of nutrition during bioleaching. Journal of Agro-Environment Science,2006,25(5):1359-1364(in Chinese)
[8]
Lan Z. Y., Hu Y. H., Qin W. Q. Effect of surfactant OPD on the bioleaching of marmatite. Minerals Engineering,2009,22(1):10-13
[9]
邬思丹,刘云国,曾光明,等. 表面活性剂强化污泥生物淋滤Cu、Zn的研究. 中国环境科学,2010,30(6):791-795 Wu S. D., Liu Y. G., Zeng G. M., et al. Surfactant-enhanced bioleaching of Cu and Zn from sewage sludge. China Environmental Science,2010,30(6):791-795(in Chinese)
[10]
柳建设,王兆慧,耿梅梅,等. 微生物浸出中微生物-矿物多相界面作用的研究进展. 矿冶工程,2006,26(1):40-44 Liu J. S., Wang Z. H., Geng M. M., et al. Progress in the study of polyphase interfacial interactions between microorganism and mineral in bio-hydrometallurgy. Mining And Metallurgical Engineering,2006,26(1):40-44(in Chinese)
[11]
李进中,钱宏. 氧化锰矿还原浸出工艺技术研究进展. 中国锰业,2011,29(4):1-6 Li J. Z., Qian H. Research situation in the reduction leaching of oxidation manganese ore. China\'s Manganese Industry,2011,29(4):1-6(in Chinese)
[12]
施雯,颜文斌,熊邵峰. 铁屑还原浸出低品位软锰矿工艺研究. 矿冶工程,2012,32(1):84-86 Shi W.,Yan W. B.,Xiong S. F. Technical study on leaching low-grade pyrolusite using scrap iron as reductant.Mining and Metallurgical Engineering, 2012,32(1):84-86(in Chinese)
[13]
Smaranika Mohapatra,Chandan Sengupta, Bansi Dhar Nayak, et al. Biological leaching of nickel and cobalt from lateritic nickel ore of Sukinda mines. Korean J. Chem.Eng.,2009,26(1):108-114
[14]
Hari Krishnan K., Mohanty D. B., Sharma K. D. The effect of microwave irradiations on the leaching of zinc from bulk sulphide concentrates produced from Rampura-Agucha tailings. Hydrometallurgy,2007,24(3):332-336
[15]
柴立元,陈丽娟,黄燕,等. 表面活性剂对Achromobacter sp.CH-1解毒铬渣的影响. 中南大学学报,2009,40(1):41-47 Chai L. Y.,Chen. L. J.,Huang Y., et al. Influence of surfactants on detoxification of chromium-containing slag by Achromobacter sp.CH-1. Journal of Central South University,2009,40(1):41-47(in Chinese)
[16]
姜霞,高学晟,应佩峰,等. 表面活性剂的增溶作用及在土壤中的行为. 应用生态学报,2003,14(11):2072-2076 Jiang X., Gao X. Y., Ying P. F., et al. Solubilization and behavior of surfactants in soil. Chinese Journal of Applied Ecology,2003,14(11):2072-2076(in Chinese)
[17]
李小燕,张卫民,谷士飞. 微生物浸出技术在处理低品位原生硫化铜矿中的应用及研究进展. 湿法冶金,2006,25(2):61-64 Li X. Y., Zhang W. M., Gu S. F. Research progress on bioleaching of low-grade copper sulphide ores. Hydrometallurgy of China,2006,25(2):61-64(in Chinese)
[18]
Seidel H., Ondruschka J., Morgenstern P., et al. Bioleaching of heavy metal-contaminated sediments by indigenous Thiobacillus spp:Metal solubilization and sulfur oxidation in the presence of surfactants. Appl. Microbiol. Biotechnol.,2000,54(6):854-857
[19]
Sharma S. D., Singh M. Effect of surfactant on leaching of pendimethalin in Florida candler fine sand. Bulletin of Environmental Contamination and Toxicology,2007,78(1):91-94