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NaOH和机械搅拌对锂辉石表面及浮选行为的影响 被引量:6
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作者 郑海涛 王毓华 +3 位作者 赵悦豪 朱广丽 卢东方 郑霞裕 《有色金属工程》 CAS 北大核心 2019年第6期61-68,共8页
NaOH和机械搅拌在锂辉石浮选预处理过程中发挥着重要的作用,为了探明其作用机理,开展了锂辉石单矿物和实际矿石浮选试验,进行了X光电子能谱(XPS)和电感耦合等离子体光谱(ICP)检测分析。结果表明,经过3000mg/LNaOH用量并施以相应时长和... NaOH和机械搅拌在锂辉石浮选预处理过程中发挥着重要的作用,为了探明其作用机理,开展了锂辉石单矿物和实际矿石浮选试验,进行了X光电子能谱(XPS)和电感耦合等离子体光谱(ICP)检测分析。结果表明,经过3000mg/LNaOH用量并施以相应时长和速度的搅拌预处理,可使-0.15+0.074mm粒级的锂辉石单矿物回收率提升70%左右;在相同的3000mg/LNaOH用量下,静置浸泡和施加叶轮线速度3.93m/s的搅拌。检测分析结果表明,固液分离液中的Si离子浓度增大且矿物表面Al和Li原子相对含量均增大;说明锂辉石矿物表面发生了溶蚀现象,且机械搅拌可以促进其表面的溶蚀,暴露更多的金属阳离子为油酸根在锂辉石表面的吸附提供更多的吸附位点;但表面溶蚀后产生的硅酸盐阴离子组分具有较强的亲水性,吸附于矿物表面,致使单矿物可浮性提升而强化机械搅拌后实际矿石浮选试验中Li2O回收率下降。该研究对锂辉石及硅酸盐矿物浮选预处理的研究具有重要的意义。 展开更多
关键词 浮选预处理 naoh作用 机械搅拌 锂辉石 表面溶蚀 浮选
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Efficient removal of chlorophenols from water with a magnetic reduced graphene oxide composite 被引量:1
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作者 Han Yan Qing Du +2 位作者 Hu Yang Aimin Li Rongshi Cheng 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第3期350-359,共10页
A magnetic reduced graphene oxide composite(MRGO) was successfully prepared by a simple and green method. MRGO was then used as an adsorbent and found to exhibit enhanced removal efficiency for various chlorophenols(C... A magnetic reduced graphene oxide composite(MRGO) was successfully prepared by a simple and green method. MRGO was then used as an adsorbent and found to exhibit enhanced removal efficiency for various chlorophenols(CPs) from water compared with its precursors, graphene oxide(GO) and reduced graphene oxide. The CPs were o-chlorophenol, p-chlorophenol, 2,4-dichlorophenol, and 2,4,6-trichlorophenol. Among them, 2,4,6-trichlorophenol, which exhibited the lowest water solubility and highest molecular weight, most easily bound to MRGO. The preferential interactions between MRGO and CPs were hydrophobic interactions(?-? stacking and hydrophobic effect). This result was confirmed by the equilibrium adsorption behavior in which isotherms were all well described by Freudlich model, indicating heterogeneous and multilayer adsorption. Therefore, CP adsorption was more favored under neutral and acidic conditions, and the decreased removal efficiency of MRGO at higher p H levels was due to the improved hydrophilicity of CPs for deprotonation effect. Moreover, MRGO showed fast removal of each CP, achieving adsorption equilibrium within 10.0 min, presented efficient separation from water under an external magnetic field, and was easily regenerated using dilute Na OH aqueous solution after reaching saturated adsorption. Adsorption capacity of the regenerated MRGO had almost no loss until after five cycles. In summary, MRGO was an efficient adsorbent for the removal of various CPs and had considerable application potential in water treatment. 展开更多
关键词 magnetic reduced graphene oxide composite green preparation method CHLOROPHENOL adsorption mechanism
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