疏浚泥浆泥水快速分离的复合絮凝试验研究*
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国家自然科学基金资助项目(52179061);浙江省交通运输厅科技计划项目(2020015);河海大学创新性教学实验资助项目(2021024)


Compound flocculation experiment for rapid separation of dredged mud and water
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    摘要:

    为了对港口航道建设和维护产生的大量疏浚泥浆进行减量化处理,通过添加聚丙烯酰胺(APAM)和聚合氯化铝(PAC)的方法,进行疏浚泥浆泥水快速分离的复合絮凝试验研究,探究了复合絮凝对泥浆的沉积时间、底泥含水率和渗透系数的影响。结果表明:1)APAM和PAC复合絮凝泥浆的泥水分离效果优于单一APAM或PAC,其中APAM对泥浆沉积时间起控制作用,PAC对上液清澈度起控制作用;2)APAM和PAC复合絮凝能够有效降低底泥含水率,但随着APAM和PAC添加量的增大,底泥含水率呈上升趋势,较小的APAM和PAC添加量更有利于底泥含水率的降低;3)APAM与PAC复合絮凝泥浆能够提高底泥的渗透系数,并存在APAM的最佳添加量;4)在减小泥浆沉积时间、降低底泥含水率和提高底泥渗透系数方面,APAM优于PAC。当粉土与黏土比为2.4时,复合絮凝剂的适宜添量为1 600 gt的PAC与240 gt的APAM,研究结果可为工程提供参考。

    Abstract:

    The study is focused on the minimization of dredged mud produced by construction and maintenance of port and waterway engineering.By adding polyacrylamide (APAM) and polyaluminum chloride (PAC) to dredged mud,the composite flocculation test of rapid separation of solid particles from dredged mud was studied.The effects of composite flocculation on the sedimentation time of mud,sediment moisture content and sediment permeability were investigated.The results show as follows:1) Compound flocculation effect of APAM and PAC is better than that of single APAM or PAC.Among the test,the APAM plays a key role in the mud sedimentation time while the PAC plays a key role in the clarity of the upper liquid of mud.2) Compound flocculation of APAM and PAC can reduce sediment moisture content effectively.While with the increase of the addition of APAM or PAC,the sediment moisture content maintains an upward trend.Namely,small amount of APAM and PAC is more beneficial to the reduction of sediment moisture content.3) Compound flocculation of APAM and PAC can enhance sediment permeability,and there exists an optimal addition amount of APAM.4) APAM is superior to PAC in reducing mud sedimentation time,decreasing sediment moisture content and increasing sediment permeability.For 2.4 ratio of silt to clay content of dredged mud,the suitable addition amounts of compound flocculation is 1 600 gt PAC and 240 gt APAM.The research results can provide reference for engineering.

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王瑞彩,吴 腾,诸裕良,等.疏浚泥浆泥水快速分离的复合絮凝试验研究*[J].水运工程,2023(3):35-40.

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  • 在线发布日期: 2023-03-14
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