化工学报
化工學報
화공학보
JOURNAL OF CHEMICAL INDUSY AND ENGINEERING (CHINA)
2010年
3期
725-731
,共7页
金余其%王彬全%万嘉瑜%麻红磊%池涌
金餘其%王彬全%萬嘉瑜%痳紅磊%池湧
금여기%왕빈전%만가유%마홍뢰%지용
介观尺度模拟%絮凝%Gaussian链%污泥脱水
介觀呎度模擬%絮凝%Gaussian鏈%汙泥脫水
개관척도모의%서응%Gaussian련%오니탈수
mesoscopic simulation%flocculation%Gaussian chain%sludge dewatering
用介观动力学的方法对胶体颗粒与高分子链的絮凝过程进行了模型研究,并根据模型结果对污泥和阳离子聚丙烯酰胺的絮凝过程和污泥脱水机理进行有针对性的探讨.通过建立粗粒化模型和经验势函数力场有效模拟了负电性的胶体颗粒与阳离子型高分子链的絮凝过程;模拟得出了絮凝的外观形态,证明了高分子链对胶体颗粒的桥接作用以及表面电荷的中和作用对絮凝的影响;并对絮凝反应过程的体系势能变化进行了研究.对实际污泥胶体颗粒和阳离子聚丙烯酰胺溶液拍摄了电镜图片并观察了其吸附过程;最后研究了高分子链离子度对溶液体系絮凝的影响,验证了离子度的增加有利于絮凝体的形成,但同时也由于絮凝体结构的复杂而对污泥脱水造成了一定的不利影响.
用介觀動力學的方法對膠體顆粒與高分子鏈的絮凝過程進行瞭模型研究,併根據模型結果對汙泥和暘離子聚丙烯酰胺的絮凝過程和汙泥脫水機理進行有針對性的探討.通過建立粗粒化模型和經驗勢函數力場有效模擬瞭負電性的膠體顆粒與暘離子型高分子鏈的絮凝過程;模擬得齣瞭絮凝的外觀形態,證明瞭高分子鏈對膠體顆粒的橋接作用以及錶麵電荷的中和作用對絮凝的影響;併對絮凝反應過程的體繫勢能變化進行瞭研究.對實際汙泥膠體顆粒和暘離子聚丙烯酰胺溶液拍攝瞭電鏡圖片併觀察瞭其吸附過程;最後研究瞭高分子鏈離子度對溶液體繫絮凝的影響,驗證瞭離子度的增加有利于絮凝體的形成,但同時也由于絮凝體結構的複雜而對汙泥脫水造成瞭一定的不利影響.
용개관동역학적방법대효체과립여고분자련적서응과정진행료모형연구,병근거모형결과대오니화양리자취병희선알적서응과정화오니탈수궤리진행유침대성적탐토.통과건립조립화모형화경험세함수력장유효모의료부전성적효체과립여양리자형고분자련적서응과정;모의득출료서응적외관형태,증명료고분자련대효체과립적교접작용이급표면전하적중화작용대서응적영향;병대서응반응과정적체계세능변화진행료연구.대실제오니효체과립화양리자취병희선알용액박섭료전경도편병관찰료기흡부과정;최후연구료고분자련리자도대용액체계서응적영향,험증료리자도적증가유리우서응체적형성,단동시야유우서응체결구적복잡이대오니탈수조성료일정적불리영향.
The mesoscopic dynamics model was built to study the flocculation between colloidal particles and adsorbing linear polymer chains.The model was investigated especially for the flocculation of sludge and polyacrylamide and the dewatering of sludge.The flocculation model of colloidal particles with the negative electricity and positively charged polymer chains was built by establishing a coarse-grained model and using the force field of empirical potential function.The appearance of the aggregate structures was obtained by simulation and bridging of colloidal particles and neutralizing the charge on the surface of particles by polymer chains, leading to flocculation was proved by the model.The variation of the potential energy during flocculation as a function of normalized time was also studied.The morphology of aggregates was observed directly by the use of transmission electron microscope.At last, the influence on flocculation created by the variations of the exponent A and B of polymer chains showed that higher ionic degree facilitated flocculation.But the floc was more complex at the same time, which was unfavorable for sludge dewatering.