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爱游戏,光伏废水二级处理除氟剂选型试验及工程应用 作者:陈宁1, 董明甫1, 孔海霞2, 张林1, 何文光1, 尹天平1, 陈春梅1, 赵茂杰1(1.四川安州发展集团有限公司,四川 绵阳 622651;2.

发布时间:2024-01-02

焦点提醒:首 页期刊引见编委会投稿须知文章查询学术会议告白合作刊行定阅在线留言English上一篇下一篇[1]陈宁,董明甫,孔海霞,等.光伏废水二级处置除氟剂选型实验和项目利用[J].中国给水排水,2023,39(18):100-106. CHENNing,DONGMing-fu,KONGHai-xia,et al.Selection Test of Defluorination Agents for Secondary Treatment of Photov中国给水排水2023年中国污水中国给水排水2023年城镇污泥处理处置技术与应用高级研讨会(第十四届)邀请函处理厂提标改造(污水处理提质增效)高级研讨会(第七届)邀请函暨征稿启事中国给水排水2023年中国污水处理厂中国给水排水2023年城镇污泥处理处置技术与应用高级研讨会(第十四届)邀请函提标改造(污水处理提质增效)高级研讨会(第七届)邀请函暨征稿启事光伏废水二级处置除氟剂选型实验和项目利用作者:陈宁1, 董明甫1, 孔海霞2, 张林1, 何文光1, 尹天平1, 陈春梅1, 赵茂杰1(1.湖南安州成长团体无限公司,湖南 绵阳 622651;2.中国市政项目华北设想研究总院无限公司 西安分公司,陕西 西安 710016)[1]陈宁,董明甫,孔海霞,等.光伏废水二级处置除氟剂选型实验和项目利用[J].中国给水排水,2023,39(18):100-106. CHENNing,DONGMing-fu,KONGHai-xia,et al.Selection Test of Defluorination Agents for Secondary Treatment of Photovoltaic Wastewater and Engineering Application[J].China Water & Wastewater,2023,39(18):100-106.点击复制光伏废水二级处置除氟剂选型实验和项目利用中国给水排水[ISSN:1000-4062/CN:12-1073/TU] 卷: 第39卷 期数: 2023年第18期 页码: 100-106 栏目: 出书日期: 2023-09-17Title:Selection Test of Defluorination Agents for Secondary Treatment of Photovoltaic Wastewater and Engineering Application作者:陈宁1, 董明甫1, 孔海霞2, 张林1, 何文光1, 尹天平1, 陈春梅1, 赵茂杰1(1.湖南安州成长团体无限公司,湖南 绵阳 622651;2.中国市政项目华北设想研究总院无限公司 西安分公司,陕西 西安 710016)Author(s):CHEN Ning1, DONG Ming-fu1, KONG Hai-xia2, ZHANG Lin1, HE Wen-guang1, YIN Tian-ping1, CHEN Chun-mei1, ZHAO Mao-jie1(1. Sichuan Anzhou Development Group Co. Ltd., Mianyang 622651, China; 2. Xi’an Branch,North China Municipal Engineering Design & Research Institute Co. Ltd., Xi’ an 710016, China)要害词:光伏废水; 除氟剂; 絮凝沉淀法; 项目利用Keywords:photovoltaic wastewater; defluorination agent; flocculation sedimentation method; engineering application摘要:某污水处置厂按照除氟出产工艺需要,对4种除氟剂进行了选型对照实验,认为此中2种(GMS-F3和YYHBL-Ⅱ)知足利用要求。经由过程除氟剂用量、pH和PAM添加量等身分节制,可将光伏废水中的F-浓度下降到1.5 mg/L以下,到达《城镇污水处置厂污染物排放尺度》(GB 18918—2002)的一级A尺度。经由过程小试能较好地进行除氟剂选型,且所选除氟剂能知足出产达标排放要求,同时该实验数据也能较好地指点出产实践Abstract:In accordance with the requirements of the fluoride removal production process at a wastewater treatment plant, four new types of defluorination agents were evaluated systematically. Two of them, GMS-F3 and YYHBL-Ⅱ, meet the usage requirements of the wastewater treatment plant. By controlling factors such as the amount of defluorination agent, pH, and PAM addition, the fluoride ion concentration can be reduced to below 1.5 mg/L, meeting the level A standard of the Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant (GB 18918-2002). Through experimental research and engineering application data analysis, it has been found that small experiments can effectively select defluorination agents in a wastewater treatment plant, and the selected agents can meet production discharge standards. At the same time, this experimental data can also provide good guidance for production practice.类似文献/References:[1]刘云洲,刘洁涛,宫徽.反硝化厌氧颗粒污泥手艺处置光伏废水[J].中国给水排水,2022,38(10):166. LIUYun-zhou,LIUJie-tao,GONGHui.Treatment of Photovoltaic Wastewater by Denitrification Anaerobic Granular Sludge[J].China Water & Wastewater,2022,38(18):166.更新日期/Last Update: 2023-09-17

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  • English上一篇下一篇[1]陈宁,董明甫,孔海霞,等.光伏废水二级处置除氟剂选型实验和项目利用[J].中国给水排水,2023,39(18):100-106. CHENNing,DONGMing-fu,KONGHai-xia,et al.Selection Test of Defluorination Agents for Secondary Treatment of Photovoltaic Wastewater and Engineering Application[J].China Water & Wastewater,2023,39(18):100-106.点击复制

    光伏废水二级处置除氟剂选型实验和项目利用中国给水排水[ISSN:1000-4062/CN:12-1073/TU]卷:第39卷期数:2023年第18期页码:100-106栏目:出书日期:2023-09-17
    Title:
    Selection Test of Defluorination Agents for Secondary Treatment of Photovoltaic Wastewater and Engineering Application
    作者:
    陈宁1, 董明甫1, 孔海霞2, 张林1, 何文光1, 尹天平1, 陈春梅1, 赵茂杰1
    (1.湖南安州成长团体无限公司,湖南 绵阳 622651;2.中国市政项目华北设想研究总院无限公司 西安分公司,陕西 西安 710016)
    Author(s):
    CHEN Ning1, DONG Ming-fu1, KONG Hai-xia2, ZHANG Lin1, HE Wen-guang1, YIN Tian-ping1, CHEN Chun-mei1, ZHAO Mao-jie1
    (1. Sichuan Anzhou Development Group Co. Ltd., Mianyang 622651, China; 2. Xi’an Branch,North China Municipal Engineering Design & Research Institute Co. Ltd., Xi’ an 710016, China)
    要害词:
    光伏废水;除氟剂;絮凝沉淀法;项目利用
    Keywords:
    photovoltaic wastewater;defluorination agent;flocculation sedimentation method;engineering application
    摘要:
    某污水处置厂按照除氟出产工艺需要,对4种除氟剂进行了选型对照实验,认为此中2种(GMS-F3和YYHBL-Ⅱ)知足利用要求。经由过程除氟剂用量、pH和PAM添加量等身分节制,可将光伏废水中的F-浓度下降到1.5 mg/L以下,到达《城镇污水处置厂污染物排放尺度》(GB 18918—2002)的一级A尺度。经由过程小试能较好地进行除氟剂选型,且所选除氟剂能知足出产达标排放要求,同时该实验数据也能较好地指点出产实践
    Abstract:
    In accordance with the requirements of the fluoride removal production process at a wastewater treatment plant, four new types of defluorination agents were evaluated systematically. Two of them, GMS-F3 and YYHBL-Ⅱ, meet the usage requirements of the wastewater treatment plant. By controlling factors such as the amount of defluorination agent, pH, and PAM addition, the fluoride ion concentration can be reduced to below 1.5 mg/L, meeting the level A standard of the Discharge Standard of Pollutants for Municipal Wastewater Treatment Plant (GB 18918-2002). Through experimental research and engineering application data analysis, it has been found that small experiments can effectively select defluorination agents in a wastewater treatment plant, and the selected agents can meet production discharge standards. At the same time, this experimental data can also provide good guidance for production practice.

    类似文献/References:

    [1]刘云洲,刘洁涛,宫徽.反硝化厌氧颗粒污泥手艺处置光伏废水[J].中国给水排水,2022,38(10����Ϸapp):166.LIUYun-zhou,LIUJie-tao,GONGHui.Treatment of Photovoltaic Wastewater by Denitrification Anaerobic Granular Sludge[J].China Water & Wastewater,2022,38(18):166.

    更新日期/Last Update:2023-09-17


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