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水环境敏感地区大型微电子园区废水处理工程实例 被引量:3
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作者 王磊 《工业水处理》 CAS CSCD 北大核心 2023年第7期202-206,共5页
位于太湖流域的江苏某大型微电子产业园区排放的废水主要含有胺类、有机溶剂、氟化物、重金属等特征污染物。针对这些污染物,采用了高密度沉淀、生物滤池辅以碳源投加强化脱氮、臭氧-生物活性炭联用及膜处理的组合工艺流程。污水处理厂... 位于太湖流域的江苏某大型微电子产业园区排放的废水主要含有胺类、有机溶剂、氟化物、重金属等特征污染物。针对这些污染物,采用了高密度沉淀、生物滤池辅以碳源投加强化脱氮、臭氧-生物活性炭联用及膜处理的组合工艺流程。污水处理厂投产运营后,通过对聚合氯化铝(PAC)和碳源投加的良好控制,高密度沉淀池除磷(去除率84.4%)、除氟(去除率57.6%)以及硝化反硝化滤池脱氮(氨氮去除率96.4%、总氮去除率88.8%)均取得了理想的效果。根据当地水环境容量要求,出水主要污染物CODCr、BOD5、NH3-N、F-执行《地表水环境质量标准》(GB 3838—2002)中Ⅲ类水限值要求并稳定达标,TN及TP排放标准按TN≤5mg/L,TP≤0.15mg/L执行并稳定达标。工程总投资45600万元,每日运维成本约1.22元/t,其中电费约0.30元/t,药剂费约0.87元/t,污泥外运处置费约0.05元/t。 展开更多
关键词 微电子废水 园区废水 含氟含氮废水 地表Ⅲ类水
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用于微电子废水预处理的过滤式阴极电芬顿工艺中试 被引量:2
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作者 查文桂 王雪野 王志伟 《环境工程》 CAS CSCD 北大核心 2022年第4期153-158,208,共7页
以钢丝网膜组件为阴极构建了过滤式阴极电芬顿工艺,针对微电子废水再生回用预处理开展中试研究。考察了过滤式阴极电芬顿工艺有机物处理潜能,研究了曝气/不曝气、外加电压、Fe^(2+)投加量等运行参数对污染物去除效果及运行费用的影响,... 以钢丝网膜组件为阴极构建了过滤式阴极电芬顿工艺,针对微电子废水再生回用预处理开展中试研究。考察了过滤式阴极电芬顿工艺有机物处理潜能,研究了曝气/不曝气、外加电压、Fe^(2+)投加量等运行参数对污染物去除效果及运行费用的影响,在最优工况下开展了连续流中试,并与传统芬顿工艺进行对比。结果表明:过滤式阴极电芬顿工艺能够稳定产生·OH,具备难降解有机物处理潜能。在HRT=120 min条件下,过滤式阴极电芬顿工艺最佳运行工况为:曝气量0.6 m^(3)/h,外加电压3 V,Fe^(2+)投加量0.3 mmol/L。在该工况下处理微电子废水COD、TOC、HO去除率分别为(73.6±18.3)%、(51.2±12.7)%和(83.7±13.0)%,单位COD处理费用为1.93元/g COD,有机物去除效果和运行费用较传统芬顿具有显著优势。 展开更多
关键词 电芬顿 微电子废水 高级氧化 预处理 废水回用
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Mechanism for Cu^(2+) Sorption on Palygorskite 被引量:6
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作者 CHENTian-Hu PENGShu-Chuan +2 位作者 XUHui-Fang SHIXiao-Li HUANGChuan-Hui 《Pedosphere》 SCIE CAS CSCD 2005年第3期334-340,共7页
A single-factor experiment of copper ion adsorption on pure palygorskite was carried out to understand the Cu2+ sorption of palygorskite—an important clay mineral in soil and sedimentary rock. In addition, pH of the ... A single-factor experiment of copper ion adsorption on pure palygorskite was carried out to understand the Cu2+ sorption of palygorskite—an important clay mineral in soil and sedimentary rock. In addition, pH of the solution and the surface microstructure of palygorskite were investigated before and after adsorption. The experimental results indicated that efficiency of Cu2+ removal was related to the oscillation rate of the specimen shaker, sorption time, initial pH value and the amount of adsorbent added. Palygorskite induced Cu2+ hydrolysis and interaction between copper hydroxide colloids and palygorskite surfaces, as observed with transmission electron microscopy (TEM), were the main contributions to palygorskite removal of Cu2+. This mechanism was different from adsorption at the mineral-water interface. It was proposed that surface hydrolysis of palygorskite raised the alkalinity of the palygorskite-water interface and suspension system. Thus, the induced pH of the solution was then high enough for Cu2+ hydrolysis on the mineral surface and in solution. 展开更多
关键词 copper ion PALYGORSKITE sorption mechanism transmission electron microscopy (TEM)
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Purification of Organic Wastewater Containing Cu^(2+) and Cr^(3+) by a Combined Process of Micro Electrolysis and Biofilm 被引量:16
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作者 李天成 姜斌 +3 位作者 冯霞 王大为 袁绍军 李鑫钢 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2003年第2期146-150,共5页
A complex process of micro electrolysis and biofilm was developed to continuously treat organic wastew-aters containing heavy metal ions such as Cu2+ and Or3+, and the relevant purifying mechanism was also addressed. ... A complex process of micro electrolysis and biofilm was developed to continuously treat organic wastew-aters containing heavy metal ions such as Cu2+ and Or3+, and the relevant purifying mechanism was also addressed. In detail, organic materials in wastewater could be consumed as nutritious source by biofilm composed of aerobes and anaerobes. However, for heavy metal ions (Cu2+, Cr3+), part was removed by electrodeposition, and some was adsorbed on biofilm. In order to compare with the combined process of micro electrolysis and biofilm, the experimental data of micro electrolysis process (intermittent) or biofilm process (continuous) were provided, and the kinetic data of C6H12O6 (glucose) biodegradation by cultured microbes or acclimated microbes were also obtained. These experimental results indicated that for wastewater initially consisted of CeH12O6 (500mg-L-1), Cu2+ and Cr3+ (10mg-L-1), after treatment, its concentrations of C6H12O6, Cu2+ and Cr3+ were lowered to the level of 55-65mg.L^1, and less than 1mg-L-1, respectively. And the industrial reused water standards could be met by treated wastewater. 展开更多
关键词 ELECTRODEPOSITION BIOFILM heavy metal ions organic materials BIODEGRADATION
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