[1] 沈剑虹,王菊萍. 纺织厂退浆废水的预处理[J]. 沙洲职业工学院学报,2003,6(2):21-22.
[2] 邱咏梅. 高级氧化预处理及生物法联合降解PVA的研究[D]. 青岛:青岛科技大学,2009.
[3] 王世琴. 印染退浆废水中聚乙烯醇的降解研究[D]. 兰州:西北师范大学,2010.
[4] 张文文,鞠烨. 基于传统湿式氧化技术处理难降解高有机废水的应用研究[J]. 建筑与预算,2017(3):42-44.
[5] Debellefontaine H,Chakchouk M,Foussard J N,et al. Treatment of organic aqueous wastes:wet air oxidation and wet peroxide oxida-tion[J]. Environmental Pollution,1996,92(2):155-164.
[6] 聂冬,金明姬,董微巍,等. 高级氧化法在水处理领域中的应用研究[J]. 延边大学农学学报,2014,36(2):179-185.
[7] Zimmermann F J. New waste disposal process[J]. Chemical Engin-eering,1958,65(8):117-121.
[8] Debellefontaine H,Foussard J N. Wet air oxidation for the treatment of industrial wastes. Chemical aspects,reactor design and industrial applications in Europe[J]. Waste Management,2000,20(1):15-25.
[9] 村上幸夫. 合成有机化合物废水的湿式酸化处理的研究[J]. 水处理技术,1978,19(10):901-909.
[10] Bhargava S K,Tardio J,Prasad J,et al. Wet oxidation and catalytic wet oxidation[J]. Industrial & Engineering Chemistry Research, 2006,45(4):1221-1258.
[11] 刘俊,官春芬,曾旭,等. 催化湿式氧化技术中催化剂的研究进展[J]. 广东化工,2016,43(12):88-89.
[12] 龙辉. 均相催化湿式空气氧化连续处理高含盐高浓度有机废水[D]. 杭州:浙江大学,2015.
[13] 柏亚成,陈晔. 高浓度苯酚废水的均相催化湿式氧化研究[J]. 现代化工,2015(6):136-138.
[14] Fu D,Zhang F,Wang L,et al. Simultaneous removal of nitrobenzene and phenol by homogenous catalytic wet air oxidation[J]. Chinese Journal of Catalysis,2015,36(7):952-956.
[15] Miller M K. Wet air oxidation of oily sludge using Ni2+ catalyst[J]. Environmental Progress & Sustainable Energy,2013,32(1):99-102.
[16] 黄瑞琦,徐宁,周海云. 催化湿式氧化技术及其工艺进展[J]. 科技展望,2016,26(9):42-45.
[17] 段元东. 非均相Co3O4/GO/PMS体系催化氧化降解PVA废水的研究[D]. 上海:东华大学,2015.
[18] 郭绍义. Cu-Ce/Al2O3湿式氧化催化焦化废液的工艺条件探讨[J]. 广东化工,2017,44(3):36-37.
[19] Yadav B R,Garg A. Performance assessment of activated carbon su-pported catalyst during catalytic wet oxidation of simulated pulping effluents generated from wood and bagasse based pulp and paper mills[J]. RSC Advances,2017,7(16):9754-9763.
[20] Liu Y,Wu D,Chen M,et al. Wet air oxidation of fracturing flowback fluids over promoted bimetallic Cu-Cr catalyst[J]. Catalysis Com-munications,2017,90:60-64.
[21] 孙琛. 超临界水氧化法处理养殖废水的研究[D]. 太原:太原理工大学,2014.
[22] 闫泽,张敏卿,韩优,等. 超临界水氧化法降解废水中的对叔丁基邻苯二酚[J]. 化学工程,2016,44(5):70-74.
[23] 龚为进,魏永华,赵亮,等. 生活垃圾填埋场渗滤液超临界水氧化试验研究[J]. 水资源保护,2017,33(2):59-62.
[24] Zhang J,Wang S,Li Y,et al. Supercritical water oxidation treat-ment of textile sludge[J]. Environmental technology,2016,38(15):1949-1960.
[25] 官春芬,张秀云,黎彬. 湿式氧化法处理高浓度染料废水的研究[J]. 广东化工,2016,43(16):120-121.
[26] 吴志敏,张丽. 过氧化氢湿式氧化法处理偶氮染料废水的动力学及可生化性影响研究[J]. 印染助剂,2016(2):17-21.
[27] Zeng Xu,Liu Jun,Zhao Jianfu. Wet oxidation of an industrial high concentration pharmaceutical wastewater using hydrogen peroxide as an oxidant[J]. Journal of Advanced Oxidation Technologies, 2017,20(1):98-103.
[28] Samoila P,Cojocaru C,Sacarescu L,et al. Remarkable catalytic pro-perties of rare-earth doped nickel ferrites synthesized by sol-gel auto-combustion with maleic acid as fuel for CWPO of dyes[J]. App-lied Catalysis B Environmental,2016,202:21-32.
[29] 李晓祎. 湿式催化氧化/膜过滤组合工艺处理染料废水研究[D]. 北京:北京林业大学,2013.
[30] 王硕. FePc-TiO2与PVDF膜耦合处理染料废水[D]. 大连:大连理工大学,2016.
[31] Dhale A D,Mahajani V V. Studies in treatment of disperse dye wa-ste:membrane-wet oxidation process[J]. Waste Management,2000, 20(1):85-92.
[32] Gutiérrez-Arzaluz M,Norena-Franco L,Angel-Cuevas S,et al. Cata-lysts with cerium in a membrane reactor for the removal of formal-dehyde pollutant from water effluents[J]. Molecules,2016,21(6):668.
[33] 张占梅. 基于超声辐射的高级氧化技术处理偶氮染料酸性绿B的试验研究[D]. 重庆:重庆大学,2009.
[34] 董德明,曹珍,闫征楚,等. 臭氧-超声联用处理聚乙烯醇废水[J]. 吉林大学学报:地球科学版,2016,46(4):1191-1198.
[35] Ingale M N,Mahajani V V. A novel way to treat refractory waste:Sonication followed by wet oxidation(SONIWO)[J]. Journal of Ch-emical Technology & Biotechnology,2010,64(1):80-86. |