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芬顿–活性炭处理钾长石反浮选废水的研究 被引量:4
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作者 张群英 黄红军 +1 位作者 王盼 彭姣 《矿山工程》 2020年第2期165-172,共8页
本文研究Fenton-活性炭联合使用处理钾长石矿反浮选废水的高浓度COD值,并对处理条件进行优化,最终确定Fenton试剂的H2O2投加量为15 ml/L,n(H2O2):n(Fe2+) = 20,反应时间为70 min,溶液初始pH值为3。同时加入2.5活性炭。结果表明:Fenton... 本文研究Fenton-活性炭联合使用处理钾长石矿反浮选废水的高浓度COD值,并对处理条件进行优化,最终确定Fenton试剂的H2O2投加量为15 ml/L,n(H2O2):n(Fe2+) = 20,反应时间为70 min,溶液初始pH值为3。同时加入2.5活性炭。结果表明:Fenton试剂与活性炭分别单独使用能够降低COD值,去除率不高,但Fenton-活性炭联合使用会显著降低COD值,去除率可达97.35%。 展开更多
关键词 FENTON氧化 活性炭吸附 钾长石反浮选 高浓度COD
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Benzohydroxamic acid to improve iron removal from potash feldspar ores 被引量:6
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作者 CAO Zhan-fang QIU Pei +1 位作者 WANG Shuai ZHONG Hong 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2190-2198,共9页
The technological mineralogy of the potash feldspar was investigated and a new collector named Yb105 was adopted to remove iron from potash feldspar ores.The technological mineralogy results indicate that the main com... The technological mineralogy of the potash feldspar was investigated and a new collector named Yb105 was adopted to remove iron from potash feldspar ores.The technological mineralogy results indicate that the main components of the ore were feldspar,sericite,quartz and kaolinite,and iron mainly existed in limonite and hematite,most of which can be removed by beneficiation.The results show the benzohydroxamic acid can not only increase the recovery of iron and reduce the consumption of oleic acid collector,but also enhance the collecting performance of oleic acid at low temperature,which can realize the flotation of the ores at a low temperature and play an important role in saving energy to some extent.Compared with oleic oil,the benzohydroxamic acid had a great advantage in removing iron from potash feldspar,a potash feldspar concentrate with Fe grade of 0.23%,K2O grade of 12.59%and Na2O grade of 0.26%was obtained by flotation with Yb105 as collector,and the yield of the concentrate was 82.55%. 展开更多
关键词 potash feldspar iron removal reverse flotation benzohydroxamic acid
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