Page 251 - 《环境工程技术学报》2023年第1期
P. 251
第 1 期 杜明辉等:O -PAC-陶瓷膜耦合技术处理苯酚废水性能研究 · 247 ·
3
率,反应速率常数是投 加 GA C 时 的 2. 倍,其中, 与O -PAC工艺的处理效能[J]. 给水排水,2020,56(2):14-19.
5
3
SHI Z Y, GUO L, YU S L, et al. Odor-related amino acids in
PA 对于污染物 和 O 的高吸附速率 是 O -PA 具
3
C
C
3
East Tai Lake and its treatment technology[J]. Water &
备良好氧化效果的重要因素。 Wastewater Engineering,2020,56(2):14-19.
(2)采用陶瓷膜分 离 PAC,当操作压力超 过 0.06 [ 8 ] WANG H, LIN X Z, HUANG Y X, et al. Two advanced
MP 时,出现不可逆污染,且不可逆污染程度随压力 oxidation pathways of modified iron-shavings participation in
a
ozonation[J]. Separation and Purification Technology,2020,
的增加而继续增加,可逆污染向不可逆污染转化是
244:116838.
造成这一现象的主要原因;在膜表面提供一定的流 [ 9 ] 马亚敏, 陈英杰, 袁海明, 等.厌氧陶瓷膜反应器-双膜法回用汽
速 能 够 提 高 分 离 过 程 中 的 通 量 , 恒 压 条 件 下的 车零配件生产废水[J]. 水处理技术,2021,47(8):128-131.
Hermans-Brede 一般判断方程分析表明,膜污染是 MA Y M, CHEN Y J, YUAN H M, et al. Application of
e
anaerobic ceramic membrane bioreactor and double membrane
完全堵塞向滤饼堵塞转化的过程,而施加一定的表
method in automobile spare parts manufacturing wastewater
面流速可以有效破坏滤饼层的形成。 recycling project[J]. Technology of Water Treatment,2021,
(3)连续进行试 验 6 个周期后,40 mi 时模拟废 47(8):128-131.
n
水的 CO D 去除率依然保持在 95 % 以上,吸附在 [10] LEE S J, DILAVER M, PARK P K, et al. Comparative analysis
of fouling characteristics of ceramic and polymeric
PA 上 的 污 染 物 被 有 效 去 除 , 但 是 该 过程 R 和
t
C
microfiltration membranes using filtration models[J]. Journal of
R 出现了缓慢增加的现象,总体来说,O -PAC-陶瓷
r
i 3 Membrane Science,2013,432:97-105.
膜耦合体系 在 CO 去除效果 和 PA 分离方面都具 [11] 王培良, 钱锋, 宋永会, 等.臭氧氧化降解水中磺胺嘧啶的机理
C
D
有较好的稳定性。 研究[J]. 环境工程技术学报,2017,7(4):451-456.
WANG P L, QIAN F, SONG Y H, et al. Degradation
mechanisms of sulfadiazine in aqueous solution by ozonation[J].
参考文献 Journal of Environmental Engineering Technology,2017,7(4):
[ 1 ] JAHANBAN-ESFAHLAN A, JAHANBAN-ESFAHLAN R, 451-456.
TABIBIAZAR M, et al. Recent advances in the use of walnut [12] 孙丽华, 刘烨辉, 贺宁, 等.粉末活性炭-超滤组合工艺对二级出
(Juglans regia L. ) shell as a valuable plant-based bio-sorbent for 水中污染物的去除及膜污染机制研究[J]. 环境污染与防治,
the removal of hazardous materials[J]. RSC Advances,2020, 2020,42(7):801-806.
10(12):7026-7047. SUN L H, LIU Y H, HE N, et al. Removal of pollutants in
[ 2 ] LI S, ZENG Z X, XUE W L. Adsorption of lead ion from secondary effluent by PAC-UF combined process and membrane
aqueous solution by modified walnut shell: kinetics and fouling mechanism[J]. Environmental Pollution & Control,
thermodynamics[J]. Environmental Technology,2019,40(14):
2020,42(7):801-806.
1810-1820. [13] HO C C, ZYDNEY A L. A combined pore blockage and cake
[ 3 ] 钟楚娴.臭氧-活性炭工艺污水处理厂深度处理中试研究[J].
filtration model for protein fouling during microfiltration[J].
水处理技术,2021,47(10):117-120.
Journal of Colloid and Interface Science,2000,232(2):389-399.
ZHONG C X. Pilot-scale study on advanced treatment of
[14] YUAN W, KOCIC A, ZYDNEY A L. Analysis of humic acid
wastewater treatment plant by ozone and activated carbon
fouling during microfiltration using a pore blockage-cake
process[J]. Technology of Water Treatment,2021,47(10):117-
filtration model[J]. Journal of Membrane Science,2002,198(1):
120.
51-62.
[ 4 ] 贾鼎, 高媛媛, 牛志远, 等.生物氧化臭氧活性炭联用工艺处理
[15] 马琳, 秦国彤.膜污染的机理和数学模型研究进展[J]. 水处理
微染污水[J]. 水处理技术,2016,42(11):73-77.
技术,2007,33(6):1-4.
JIA D, GAO Y Y, NIU Z Y, et al. Process of ozonation with the
MA L, QIN G T. Mechanism and mathematical models of
bio-oxidation and biological activated carbon in micro-polluted
membrane fouling[J]. Technology of Water Treatment,2007,
water treatment[J]. Technology of Water Treatment,2016,
33(6):1-4.
42(11):73-77.
[16] GRANZOTO M R, SEABRA I, MALVESTITI J A, et al.
[ 5 ] 陈斌, 唐晶, 叶青徽, 等.改良型AAO-磁混凝沉淀-臭氧-活性炭
Integration of ozone, UV/H O and GAC in a multi-barrier
工艺在城镇污水处理厂中的应用实例[J]. 工业用水与废水, 2 2
treatment for secondary effluent polishing: reuse parameters and
2021,52(4):81-84.
micropollutants removal[J]. Science of the Total Environment,
CHEN B, TANG J, YE Q H, et al. An application example of
improved AAO-magnetic coagulation sedimentation-ozone- 2021,759:143498.
[17] KIM J, BRUGGEN R V D. The use of nanoparticles in polymeric
activated carbon process in urban sewage treatment plant[J].
Industrial Water& Wastewater,2021,52(4):81-84. and ceramic membrane structures: review of manufacturing
[ 6 ] 殷祺, 郭小龙, 桂波, 等.超滤-臭氧生物活性炭深度工艺处理太 procedures and performance improvement for water treatment[J].
湖水的中试研究[J]. 给水排水,2019,55(11):9-12. Environmental Pollution,2010,158(7):2335-2349.
YIN Q, GUO X L, GUI B, et al. Pilot experiment of [18] 刘彦伶, 李天玉, 王小毛, 等.高压膜表面性质对膜污染的影响
ultrafiltration-ozone-biological activated carbon advanced 机制[J]. 环境工程,2021,39(7):46-53.
process for treatment of Taihu Lake[J]. Water & Wastewater LIU Y L, LI T Y, WANG X M, et al. Influence mechanism of
Engineering,2019,55(11):9-12. surface properties on fouling behaviors of high-pressure mem-
[ 7 ] 史之源, 郭铃, 于水利, 等.东太湖水源水致嗅氨基酸以及常规 branes[J]. Environmental Engineering,2021,39(7):46-53. ⊗