bio-leaching 生物浸出 ; 细菌浸出
bio-leaching bed 生物沥滤床
Bio-leaching Methods 生物浸出法
heap bio leaching oxidation 堆式细菌氧化
bio leaching agent of gold 生物浸金剂
bio-heap leaching 生物堆浸
Based on foregoing results, sampled with nonferrous tailings, the expectation of electroremediation technique to dispose tailings are conducted using electrokinetic’s, middle recycle washing technology, bioleaching-electroremediation technology, respectively.
本研究在前面的基础上,以铅锌选矿尾砂为样品,分别用电修复技术、阴极酸化技术和生物淋滤-电修复联合基础处理样品,探索电修复技术在处理污泥中重金属的应用前景。
参考来源 - 电动修复技术机理及去除污泥和尾砂中重金属的研究Bioleaching is cost-effective and promising solution for reducing the content of heavy metals in sludge.
生物沥滤是—种富有前景、经济高效的降低污泥中重金属含量的途径。
参考来源 - 污泥中Cu、Pb和Zn的生物沥滤研究Based on the solidification effect, the cement admixing amount of 0.2kg/kg is more appropriate for practical application. Based on the results mentioned above, we can conclude that bioleaching is an effcetive technology in removing heaby metals from contaminated sediments.
基于以上结果,可以看出生物沥浸技术可有效去除污染底泥中重金属,具有较好的应用前景。
参考来源 - 污染底泥中重金属生物沥浸去除的工艺优化研究With the development of technology and because of the long leaching period and low leaching rate,the traditional bioleaching process needs to be reformed.
传统的生物浸出工艺由于浸出周期长,浸出率低等因素,已经越来越不能满足冶金工业发展的需要。
参考来源 - 氧化亚铁硫杆菌的生化两极循环反应浸出硫化矿Acidithiobacillus ferrooxidans(abbreviation:A. f) is one of the bacteria that are applied in bioleaching industry. It can oxidize ferrous、sulfure and partially oxidized sulfur compounds.
嗜酸氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans,简称A.f)是生物浸矿应用最广泛的菌种之一,它能氧化亚铁、硫和还原态的硫化物。
参考来源 - 嗜酸氧化亚铁硫杆菌比较蛋白质组学研究Acidithiobacillus ferrooxidans, as an important microorganism in bioleaching industry, is also one of the most studied organisms in the bioleaching microbial community.
嗜酸氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans)是生物冶金工业中十分重要的一种细菌,也是目前生物冶金的微生物菌群中研究得最多的细菌之一。
参考来源 - 嗜酸氧化亚铁硫杆菌铜抗性相关基因的鉴定及分析·2,447,543篇论文数据,部分数据来源于NoteExpress
以上来源于: WordNet
In this paper, the electrochemical theory about the bacteria culture in sulfide bio-leaching system and, sulfide oxidation mechanism in the presence of bacteria were elucidated systematically.
系统阐述了硫化矿细菌浸出体系细菌生长及细菌存在时硫化矿氧化的电化学理论。
The method and result of leaching of gold ore heap bio oxidation cyanidation CIL process was introduced.
介绍了难浸金矿石堆式细菌氧化—氰化炭浸提金的基本试验方法和结果。
The research content included the slope-directive variation of soil bio-accumulations properties and related nutrient status, base cation leaching, the quantity of microorganism etc.
研究内容主要包括土壤生物积累及相关养分状况、盐基淋溶作用和微生物数量等方面的坡向性分异,并探讨其对山地土壤资源开发利用和生态环境建设的意义。
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