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41.
胺萃取法处理含氰废水工艺的研究   总被引:10,自引:3,他引:7  
对黄金选冶过程中排放的含氰废水用N235作萃取剂从含氰废水中萃取铜、锌进行了研究,探讨了预处理有机相、温度条件、相比、平衡pH、相接触时间和萃取级数等因素对萃取的影响。试验结果表明,在选定的条件下,铜的萃取率达99%以上,从负载有机相中反萃铜,反萃率可达99%。同时还可以回收氰化物,根据试验结果,提出了处理含氰废水的工艺流程   相似文献   
42.
用电解法从富集氰化废液中回收铜的研究   总被引:11,自引:4,他引:7       下载免费PDF全文
叙述了从富集氰化废液中电解回收铜的试验研究结果。通过电极材料、电流密度、离子共沉积、游离氰、电解时间、温度和极间距等一系列试验,探索电解过程中各项最佳条件,为工业电解提供可靠的工艺参考。   相似文献   
43.
连续流动分析仪法测定水中总氰化物   总被引:1,自引:0,他引:1  
采用连续流动分析仪测定水中总氰化物。通过各类实际样品和标准样品的分析 ,该方法的检出限为0 0 0 2mg L ,相对标准偏差为 0 7%~ 3 0 % ,加标回收率为 96 0 %~ 10 6 0 %。实验表明 ,该方法具有灵敏度、准确度高 ,精密度和回收率好 ,节省试样、试剂等特点 ,并提高了操作的安全性、方便性及工作效率。适用于水质中总氰化物的测定。  相似文献   
44.
通过对"浮选+氰化浸出"工艺回收锑锍渣中金的试验研究,确锍渣中金的综合回收率可达80%-85%,既减少了污染,又回收了有价资源,有明显的经济和环境效益.  相似文献   
45.
Cunningham SA 《Disasters》2005,29(2):99-128
It has been described as the worst disaster since Chernobyl. In January 2000, a retaining wall failed at the Aurul gold processing plant in Romania, releasing a wave of cyanide and heavy metals that moved quickly from one river to the next through Romania, Hungary, the Federal Republic of Yugoslavia and Bulgaria, killing tens of thousands of fish and other forms of wildlife and poisoning drinking-water supplies. This paper examines how and why the chemical spill at Baia Mare occurred and how responses to it emerged from circumstances at the global, local and immediate levels. The spill demonstrates the importance of the flow of information in framing and interpreting disasters, suggesting that such an event can go unnoticed or be viewed as catastrophic, depending on the political, historical and personal struggles that lead to its publicity. The paper offers a framework for understanding why the spill was alternately perceived as an incident, an accident and a catastrophe based on changing perceptions of culpability.  相似文献   
46.
水样预蒸馏后,经分段流动分析仪自动进样器进入分析模块对水中的总氰化物进行分析。通过试验,确定了最佳测定参数,方法检测限为0 002mg/L,对高低两个不同浓度的标准样品分析,测定值均在其保证值范围内,相对标准差<2 %,准确度和精密度均较好。循环周期约70s,每小时可测定50个样品,分析速度快,尤适于大批量样品的测定。  相似文献   
47.
近年来,氰化物污染问题日益严重,冶金工业、电镀工业中含有大量氰化物.采用常规的物化法难以对Cu(CN)_3~(2-)中的CN~-达到很好的去除效果,因此探索高效、环保的氰化物处理方法迫在眉睫.过硫酸钾作为一种绿色清洁氧化剂,目前被广泛应用于有机污染物废水的处理.采用均相过硫酸钾对Cu(CN)_3~(2-)中CN~-进行降解,并分析其降解机制,详细研究过硫酸钾投加量、铜氰络合比对CN~-去除率的影响.CN~-的去除率随着过硫酸钾量的增加而升高,当过硫酸钾量为2 mmol·L~(-1),反应时间为60 min时,CN~-的去除率可达89.6%;铜氰络合比的增加促进CN~-的降解.Cu~+被氧化为Cu~(2+)并且以氧化铜的形式存在于沉淀中.采用电子自旋共振波谱仪和自由基猝灭实验对反应过程中可能的自由基进行研究,结果表明在过硫酸钾氧化去除CN~-的过程中,既存在硫酸根自由基氧化途径,又存在非自由基氧化途径.  相似文献   
48.
Ferrate(VI) was employed for the oxidation of cyanide (CN) and simultaneous removal of copper or nickel in the mixed/complexed systems of CN-Cu, CN-Ni, or CN-Cu-Ni. The degradation of CN (1.00 mmol/L) and removal of Cu (0.095 mmol/L) were investigated as a function of Fe(VI) doses from 0.3–2.00 mmol/L at pH 10.0. It was found that Fe(VI) could readily oxidize CN and the reduction of Fe(VI) into Fe(III) might serve e ciently for the removal of free copper ions. The increase in Fe(VI) dose apparently favoured the CN oxidation as well as Cu removal. Moreover, the pH dependence study (pH 10.0–13.0) revealed that the oxidation of CN was almost una ected in the studied pH range (10.0–13.0), however, the maximum removal e ciency of Cu was obtained at pH 13.0. Similarly, treatment was carried out for CN-Ni system having the initial Ni concentration of 0.170 mmol/L and CN concentration of 1.00 mmol with Fe(VI) dose 2.00 mmol at various pH values (10.0–12.0). Results showed a partial oxidation of CN and partial removal of Ni. It can be observed that Fe(VI) can partially degrade the CN-Ni complex in this pH range. Further, Fe(VI) was applied for the treatment of simulated industrial waste/e uent waters treatment containing CN, Cu, and Ni.  相似文献   
49.
Some fish‐kills in Basque rivers were studied by gill tissue analysis: Samples were wet digested and the solution was analyzed by atomic absorption spectroscopy. In three cases, the cause was linked to the effluents of an aluminium anodizing factory, cyanide caused one kill and copper wastes were related with another. Three cases were attributed to natural reasons and one of the kills was of unknown origin.  相似文献   
50.
Carp fingerlings exposed to a sublethal concentration (0.5?mg?L?1) of sodium cyanide showed a steady decrement over a 7-day period in respiratory rate, rise in lactate dehydrogenase (LDH), and fall in succinate dehydrogenase (SDH) activities followed by variations in lactic and pyruvate levels. Changes in these enzyme activities might be due to impaired oxidative metabolism and severe cellular damage leading to the release of these enzymes. Decline in the activities of SDH and LDH clearly represents a shift from aerobic to anaerobic metabolism as evidenced by elevated lactate and decline in pyruvate levels. The shift to anaerobic metabolism is also reflected by severe drop in the respiratory rate of the fish. This may be a consequence of the blockage of electron transfer from cytochrome c oxidase to molecular oxygen, thus ceasing cellular respiration and it can lead to cellular hypoxia even in the presence of normal hemoglobin oxygenation. Hence, we indirectly reconfirm the inhibition of oxidative metabolism by sodium cyanide. Alterations in behavioral pattern induced by sublethal sodium cyanide exposure may be due to the combination of cytotoxic hypoxia with lactate acidosis, which depresses the central nervous system (CNS); as the brain is the most sensitive site to anoxia, it results in impaired CNS function.  相似文献   
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