Citation: | HU Yuanxiang, LI Yongli, ZHANG Hongjiang, CAO Yinhuan, GONG Yanzhe, CHEN Xi. ANALYSIS OF ORGANIC COMPOUNDS CONTENT AND BIOTOXICITY DURING TREATMENT PROCESS OF FLUE GAS DESULFURIZATION WASTEWATER IN A COAL-FIRED POWER PLANT[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(6): 17-24. doi: 10.13205/j.hjgc.202406003 |
[1] |
ZHENG L B,JIAO Y Y,ZHONG H, et al. Insight into the magnetic lime coagulation-membrane distillation process for desulfurization wastewater treatment: from pollutant removal feature to membrane fouling[J]. Journal of Hazardous Materials, 2020, 391:122202.
|
[2] |
王锐,李永立,张洪江,等.海藻酸钠强化脱硫废水石灰软化SO2-4去除的研究[J].环境工程,2023,41(3):26-33.
|
[3] |
刘召平.某电厂脱硫废水处理系统的设计与运行[J].中国给水排水, 2011, 27(2):65-67.
|
[4] |
李亚娟,卢剑,余耀宏,等.某电厂废水零排放系统污堵分析[J].热力发电,2023, 52(1):177-182.
|
[5] |
国家能源局.燃煤电厂石灰石—石膏湿法脱硫废水水质控制指标:DL/T 997—2020[S].北京:中国电力出版社,2020.
|
[6] |
吴琼,明强,卢卫,等.基于脱硫废水零排放的膜法深度处理工艺研究[J].水处理技术,2022,48(8):102-106.
|
[7] |
孙振宇,沈明忠.燃煤电厂脱硫废水零排放工程案例研究[J].工业水处理,2018, 38(10):102-105.
|
[8] |
彭足仁,高然.燃煤电厂脱硫废水零排放处理工程实例研究[J].中国设备工程,2021, 7(13):22-23.
|
[9] |
卢卫,明强,吴琼,等.纳滤膜处理脱硫废水过程膜污染特性分析[J].膜科学与技术,2022, 42(1):138-144.
|
[10] |
张婷婷,李仁威,卢可馨,等.两种典型RO浓缩液中污染物的去除效果及机理研究[J].水处理技术, 2022, 48(11):121-130.
|
[11] |
伊学农,王玉琳,闫志华,等.反渗透特种膜处理湿法脱硫废水中试研究[J].中国给水排水, 2016, 32(1):67-70.
|
[12] |
国家环保局保护总局,水和废水监测分析方法编委会.水和废水监测分析方法[M]. 4版. 北京:中国环境科学出版社, 2002.
|
[13] |
国家市场监督管理总局,中国国家标准化管理委员会.锅炉用水和冷却水分析方法 硬度的测定:GB/T 6909—2018[S].北京:中国标准出版社, 2018.
|
[14] |
WEN G, WANG T, LI K, et al. Aerobic denitrification performance of strain Acinetobacter johnsonii WGX-9 using different natural organic matter as carbon source: effect of molecular weight[J]. Water Research, 2019,164:114956.
|
[15] |
CHEN W, WESTERHOFF P, LEENHEER J A, et al. Fluorescence excitation-emission matrix regional integration to quantify spectra for dissolved organic matter[J]. Environmental Science & Technology, 2003, 37:5701-5710.
|
[16] |
马晓妍,陈文凤,成芳德,等.两种分子量分级下 DOM 的组分特征及其生物毒性[J].中国环境科学, 2021, 41(12):5885-5895.
|
[17] |
张攀.新型脱硫废水的高效絮凝处理工艺[J].化学工程与装备, 2020(9):255-258.
|
[18] |
LV M, LIU T T, CHEN F, et al. Interactions between magnetic particles and polyaluminum chloride on the coagulation behavior in humic acid-kaolin synthetic water treatment[J]. Environmental Research, 2021, 197:111093.
|
[19] |
张华,全桂军,黄健,等.废水DOM荧光强度与COD总氮的相关分析[J].环境科学与技术, 2017, 40(10):157-162.
|
[20] |
SUKSAROJ C, RATTANAMANEE P, MUSIKAVONG C, et al. The Determination of tryptophan and humic and fulvic acid-like substances reduction in raw water from U-TAPAO Basin Thailand with alum coagulation[J]. Water Practice & Technology, 2009, 4(2):1-9.
|
[21] |
郭永晖,李永国,王坚,等.不同截留分子量超微滤膜处理地表水中膜污染的对比研究[J].膜科学与技术, 2022, 42(5):139-153.
|
[22] |
YANG X J, LIVINGSTON A G, FREITAS SANTOS L. Experimental observations of nanofiltration with organic solvents[J]. Journal of Membrane Science, 2001, 190:45-55.
|
[23] |
SONG Q Y, GRAHAM N, TANG Y N, et al. The role of medium molecular weight organics on reducing disinfection by-products and fouling prevention in nanofiltration[J]. Water Research, 2022, 215:118263.
|
[24] |
TANG S J, WANG Z W, WU Z C, et al. Role of dissolved organic matters (DOM) in membrane fouling of membrane bioreactors for municipal wastewater treatment[J]. Journal of Hazardous Materials, 2010,178:377-384.
|
[25] |
张松,李菲菲,史晨,等.生活污水的臭氧深度处理及其急性毒性[J].环境工程学报, 2017, 11(6):3468-3474.
|
[26] |
董晓丹.葡萄糖碳源下焦化纳滤浓水脱氮性能及微生物机理分析[J].水处理技术, 2022, 48(3):79-87.
|
[27] |
聂春梅,牛春革,方新湘,等.高级氧化法降解纳滤浓水COD的技术研究[J].炼油与化工, 2020, 31(6):15-19.
|