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锰矿浸渣中可溶锰离子的稳定化处理研究 被引量:5
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作者 盘俊 谢能银 +2 位作者 明宪权 王雨红 粟海锋 《广西大学学报(自然科学版)》 CAS 北大核心 2015年第3期551-557,共7页
为了解决日益严重的锰矿浸渣污染问题,采用在锰矿浸渣中添加硅酸钠为固化剂,研究锰矿浸渣中可溶锰离子的稳定化效果。通过正交实验和单因素实验,考察了反应温度、反应时间、液固比、p H值、硅酸钠添加量等因素对可溶锰离子稳定化效果的... 为了解决日益严重的锰矿浸渣污染问题,采用在锰矿浸渣中添加硅酸钠为固化剂,研究锰矿浸渣中可溶锰离子的稳定化效果。通过正交实验和单因素实验,考察了反应温度、反应时间、液固比、p H值、硅酸钠添加量等因素对可溶锰离子稳定化效果的影响。结果表明:硅酸钠的用量对可溶锰离子稳定化效果的影响最大,较适宜的稳定化条件为:反应温度30℃,反应时间15 min,液固比5∶1,p H值8,硅酸钠用量0.5 g。在此条件下,20.00 g锰矿浸渣中的可溶锰离子固化率达96.80%,通过浸出毒性测试得到滤液中锰残余浓度为0.99 mg/L,完全符合GB8978-96《污水综合排放标准》。 展开更多
关键词 矿浸渣 可溶锰 硅酸钠 稳定化处理
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洗锰废水中可溶锰含量的理论分析
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作者 银瑰 蒋克奇 吴胜云 《中国锰业》 1997年第3期30-33,共4页
通过化学平衡计算,对洗锰废水中的可溶锰含量进行了理论分析,确定了可溶锰含量T[Mn]的表达式,并绘制了LgT[Mn]-pH图。分析结果表明,洗锰废水在555<pH<1245时,也就是在通常的生产条件下,其中可溶锰... 通过化学平衡计算,对洗锰废水中的可溶锰含量进行了理论分析,确定了可溶锰含量T[Mn]的表达式,并绘制了LgT[Mn]-pH图。分析结果表明,洗锰废水在555<pH<1245时,也就是在通常的生产条件下,其中可溶锰含量符合排放标准;超过此pH值范围,可溶锰含量将超过排放标准。 展开更多
关键词 废水 可溶锰含量 理论分析
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Iron and Manganese in Groundwater of Rrogozhina Aquifer, Western Albania 被引量:1
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作者 Suada Luzati Arjan Beqiraj +1 位作者 Enkeleida Beqiraj Goga Olgert Jaupaj 《Journal of Environmental Science and Engineering(B)》 2016年第6期276-285,共10页
This paper aims to advance previous studies on the iron and manganese content in groundwater of Rrogozhina aquifer (western Albania) and to show the factors which control the content of both iron and manganese in gr... This paper aims to advance previous studies on the iron and manganese content in groundwater of Rrogozhina aquifer (western Albania) and to show the factors which control the content of both iron and manganese in groundwater of this aquifer. Rrogozhina aquifer represents an important groundwater source of the country whose relevance was highly increased during recent years because of the demographic expansion in this region. This is a typically multi-layered artesian aquifer which consists of sandstone and conglomerate with high heterogeneous permeability. The groundwater mostly belongs to HCO3-Mg-Ca hydrochemical type. The content of soluble iron and manganese in groundwater ranges from 0.004 mg/L to 0.7 mg/L, and from 0.0 mg/L to 1.147 mg/L, respectively. Deeper the groundwater occurs and longer the distance from the recharge zone, higher is the content of Fe2+ in groundwater due to gradual depletion of Oe in groundwater. The content of iron is higher than that WHO and EU recommended, which were 21% and 25% respectively, while the content of manganese were 17% and 23%, respectively. Abstraction of groundwater with high quantities by deeper wells would be accompanied by increase of dissolved iron and manganese content in groundwater which should be treated (with aeration) in order to decrease the content of these two elements in the water before using it. 展开更多
关键词 Generalized Rrogozhina IRON MANGANESE AQUIFER groundwater.
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