欢迎来到图海文库! | 帮助中心 分享价值,成长自我!
图海文库
全部分类
  • 机械模具>
  • 机电控制>
  • 工艺夹具>
  • 车辆工程>
  • 化工环保>
  • 土木建筑>
  • 采矿通风>
  • CAD图纸>
  • 三维模型>
  • 数控编程>
  • 文档资料>
  • ImageVerifierCode 换一换
    首页 图海文库 > 资源分类 > DOCX文档下载
    分享到微信 分享到微博 分享到QQ空间

    外文原文-pH值对于用含铁混凝剂处理黄河水的混凝表现及絮状物特性的影响.docx

    • 资源ID:16807       资源大小:31.92KB        全文页数:7页
    • 资源格式: DOCX        下载积分:10金币
    微信登录下载
    验证码下载 游客一键下载
    账号登录下载
    三方登录下载: QQ登录
    二维码
    微信扫一扫登录
    下载资源需要10金币
    邮箱地址:
    验证码: 获取验证码
    温馨提示:
    支付成功后,系统会自动生成账号(用户名为邮箱地址,密码是验证码),方便下次登录下载和查询订单;
    支付方式: 支付宝    微信支付   
    验证码:   换一换

     
    账号:
    密码:
    验证码:   换一换
      忘记密码?
        
    友情提示
    2、PDF文件下载后,可能会被浏览器默认打开,此种情况可以点击浏览器菜单,保存网页到桌面,就可以正常下载了。
    3、本站不支持迅雷下载,请使用电脑自带的IE浏览器,或者360浏览器、谷歌浏览器下载即可。
    4、本站资源下载后的文档和图纸-无水印,预览文档经过压缩,下载后原文更清晰。
    5、试题试卷类文档,如果标题没有明确说明有答案则都视为没有答案,请知晓。

    外文原文-pH值对于用含铁混凝剂处理黄河水的混凝表现及絮状物特性的影响.docx

    1、外文资料Effects of pH on coagulation behavior and floc properties in YellowRiver water treatment using ferric based coagulantsCAO BaiChuan1, GAO BaoYu1*, XU ChunHua1, FU Ying2 & LIU Xin11Shandong Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineerin

    2、g, Shandong University,Jinan 250100, China;2School of Civil and Architecture, Jinan University, Jinan 250022, ChinaReceived June 13, 2009; accepted October 19, 2009Enhanced coagulation is one of the major methods to control disinfection by-products(DBPs) in water treatment process. Coagulation pH is

    3、 an important factor that affects the enhanced coagulation. Recently, many studies focus on the coagulation effects andmechanisms, and few researchers studied the properties of flocs formed under different coagulation pH. Two inorganic polymercoagulants, polyferric silicate sulphate (PFSS) and polyf

    4、erric sulphate (PFS), were used in Yellow River water treatment. The influence of pH on coagulation effect was investigated under the optimum dosage, and the results show that both coagulants gave excellent organism removal efficiency when pH was 5.50. According to the variation of zeta potential in

    5、 coagulation process, coagulation mechanisms of the coagulants were analyzed. An on-line laser scatter instrument was used to record the development of floc sizes during the coagulation period. For PFSS, pH exerted great influence on floc growth rates but little influence on formed floc sizes. In PF

    6、S coagulation process, when pH was 4.00, PFS flocs did not reach the steady-state during the whole coagulation period, while little difference was observed in floc formation when pH was 5.50 and above. The preformed flocs were exposed to strong shear force, and the variation of floc sizes was determ

    7、ined to evaluate the influence of pH on floc strength andre-growth capability. In comparison of the two coagulants, PFS flocs had higher floc strength and better recovery capability when pH was 4.00, while PFSS flocs had higher floc strength but weaker recovery capability when pH was 5.50 and above.

    8、ferric based inorganic polymer coagulants, pH, coagulation effect, floc formation, floc breakage and re-growthbehavior and floc properties in Yellow River water treatment using ferric based coagulants.Chinese Sci Bull, 2010, 55: 13821387, doi: 10.1007/s11434-010-0087-5Enhanced coagulation is one of

    9、the processes recommended by USEPA to remove natural organic matters (NOM) in surface water and to control disinfection by-products (DBPs) 1. The development of new types of coagulants with high coagulation effect is one of the hot topics in the field of enhanced coagulation 2. In the field of drink

    10、ing water treatment, many studies focus on ferric based inorganic polymer coagulants, because of their advantages in removing dissolvedorganic compounds, such as high removal efficiency, low bio-toxicity, high coagulation rate and large flocs, excellent sedimentation and dewatering abilities 3. Poly

    11、ferric silicate sulphate (PFSS) and polyferric sulphate (PFS) are two kinds of typical coagulants 4,5, which can achieve good removal of natural organic compounds. As the ferric coagulants are dosed, the organic compounds in surfacewater are removed in the following ways 6. The coagulants may react

    12、with the functional groups of organic compounds to form complexes or chelates, and part of the organic compounds could be captured by absorption and sweep flocculation. The coagulation pH is one of the main factors that influence the removal effect of enhanced coagulation, and for ferric coagulants

    13、the optimum pH range is 5.56.5 7.Floc breakage is accompanied with the growth and transmission of flocs in coagulation process, and the fragCAOBaiChuan, et al. Chinese Sci Bull May (2010) Vol.55 No.14 1383 mentation of flocs influences the efficiency of solid/liquid separation and follow-up treatmen

    14、t processes 8. The degree of floc breakage is related to the applied shear force, shear period and floc strength. Under smaller hydrodynamic conditions, the broken flocs have certain capability for re-growth.The extent of re-growth depends on the mechanism of floc formation 9,10.Recently, many studi

    15、es focused on the breakage and re-growth capability of flocs formed by traditional inorganic coagulants 11,12, and there have been reports about researcheson the floc properties of organic flocculants and polyaluminum chloride 10,13. For ferric based inorganic polymer coagulants, Wei et al. 14 studi

    16、ed the size distributionand fractal of flocs of polyferric chloride and different polyferric-cationic polymer dual-coagulant in humic acid solution. Fu et al. 15 quantitatively studied the sizedistribution of residual particles and the influence of turbulent shear on the flocs in the poly-silicic-ferric coagulation process. There has been no report about the influence of pH on floc formation, floc breakage and re-growth capabi


    注意事项

    本文(外文原文-pH值对于用含铁混凝剂处理黄河水的混凝表现及絮状物特性的影响.docx)为本站会员主动上传,图海文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知图海文库(点击联系客服),我们立即给予删除!




    关于我们 - 网站声明 - 网站地图 - 资源地图 - 友情链接 - 网站客服 - 联系我们

    网站客服QQ:2356858848

      客服联系电话:18503783681

    copyright@ 2008-2022 thwenku.com网站版权所有

    ICP备案:豫ICP备2022023751号-1