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团聚-分散行为对悬浮液Zeta电位的影响 被引量:18
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作者 彭昌盛 张倩 +2 位作者 徐兴永 于洪军 马蕾 《中国海洋大学学报(自然科学版)》 CAS CSCD 北大核心 2010年第10期121-126,共6页
试验研究了NaCl和CaCl22种电解质加入量对不同粒径玻璃微珠(S1,S2,S3)和蒙脱石(M0)悬浮液Zeta电位的影响,以考察颗粒性质、颗粒粒径和电解质对Zeta电位和悬浮液稳定性(分散或团聚)的影响。试验结果表明,粒径较大的玻璃微珠S1和S2悬浮液Z... 试验研究了NaCl和CaCl22种电解质加入量对不同粒径玻璃微珠(S1,S2,S3)和蒙脱石(M0)悬浮液Zeta电位的影响,以考察颗粒性质、颗粒粒径和电解质对Zeta电位和悬浮液稳定性(分散或团聚)的影响。试验结果表明,粒径较大的玻璃微珠S1和S2悬浮液Zeta电位随电解质的增加而逐渐增加,与文献中的描述基本一致;但粒径较小的玻璃微珠S3和蒙脱石M0悬浮液的Zeta电位随电解质的增加呈现出一些异常的变化,特别是在零电点附近发生了剧烈波动。分析S3和M0悬浮液Zeta电位出现异常变化的原因,可能是微细颗粒在零电点附近发生了较为明显的分散-团聚-再分散过程,团聚或分散过程又反过来影响到悬浮液的Zeta电位和粒度分布。 展开更多
关键词 悬浮液zeta电位 电解质 团聚和分散过程 粒度分布
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Effect of surfactant on zeta potential and rheology behavior of methylene bis (thiocyanate) suspension concentrate 被引量:1
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作者 Jianfeng Hu Yan Cai +5 位作者 Shan Lu Jiezhen Xu Zhongrun Yun Jianheng Huang Yuliang Wen Jinqing Qu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2017年第5期541-546,共6页
Methylene bis(thiocyanate)(MBT) is insoluble in water, so suspension concentrate(SC) of MBT is extremely relied on surfactants. In this paper, SC of MBT was prepared with wet-grinding technology, and the effect of sur... Methylene bis(thiocyanate)(MBT) is insoluble in water, so suspension concentrate(SC) of MBT is extremely relied on surfactants. In this paper, SC of MBT was prepared with wet-grinding technology, and the effect of surfactants,such as Morwet D425(D425) and Morwet EFW(EFW)(two kinds of dispersant), on the Zeta potential and rheology behavior of MBT SC were investigated. The results showed that the Zeta potential absolute value of MBT SC increased with the increasing content of D425, and it decreased with the increasing content of EFW at acidic solution(pH = 4.5). In the combination system of D425 and EFW, Zeta potential of MBT SC decreased first and then increased with the increasing content of EFW. The relationship between shear rate(γ) and viscosity(η) was studied according to Herschel–Bulkley model: η = η0+ k/γ, and the relationship between shear rate(γ) and shear force(τ) was investigated according to:τ = τ0+Kγ~n. It was revealed that the mixed fluid belonged to Yield Pseudoplastic Fluid. 展开更多
关键词 Methylene bis(thiocyanate) Rheology Shear rate Shear force
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