GB 4287-2012,纺织染整工业水污染物排放标准[S]. GB 4287-2012, Discharge standard of water pollutants for textile dyeing and finishing industry[S](in Chinese).
徐文英,周荣丰,马鲁铭,等. 催化铁内电解处理难降解废水的方法:CN 1382649A[P].[2002-12-04]. XU W Y, ZHOU R F, MA L M, et al. Method for treating refractory wastewater by catalytic iron internal electrolysis:CN 1382649A[P].[2002-12-04] (in Chinese).
许海辉,赵贤广,刘志英,等. 催化铁内电解法处理印染废水的研究[J]. 工业水处理,2017,37(4):25-28. XU H H, ZHAO X G, LIU Z Y, et al. Study on the treatment of dyeing industrial wastewater by catalyzed iron inner electrolysis process[J]. Industrial Water Treatment, 2017, 37(4):25-28(in Chinese).
张俊琪,樊金红,马鲁铭,等. 催化铁内电解法处理酸性化工废水后混合印染废水进行混凝处理的研究[J]. 水处理技术,2012,38(9):88-92. ZHANG J Q, FAN J H, MA L M, et al. Coagulation treatment of printing and dyeing wastewater mixed with acid chemical wastewater after catalyzed iron internal electrolysis treatment[J]. Technology of Water Treatment, 2012, 38(9):88-92(in Chinese).
赵梦君,樊金红,马鲁铭. 行业废水预处理前后两两混合COD的消减效应[J]. 环境工程学报,2011,5(3):499-502. ZAHO M J, FAN J H, MA L M. Reduction effect of in industrial wastewater 2-2 before and after pretreatment[J]. Chinese Journal of Environmental Engineering, 2011, 5(3):499-502(in Chinese).
张英,任国栋,唐秀华,等. 铁催化内电解法预处理染料中间体废水的研究[J]. 中国给水排水,2010,26(23):86-90. ZHANG Y, REN G D, TANG X H, et al. Iron catalyzed internal electrolysis for pretreatment of dyeing intermediate wastewater[J]. China Water & Wastewater, 2010, 26(23):86-90(in Chinese).
吴德礼,马鲁铭,王红武. 表面改性催化铁还原脱氯处理水中含氯有机物的方法:CN 101085690A[P].[2007-12-12]. WU D L, MA L M, WANG H W. Dechlorination of chlorinated organics in water by surface modified catalyzed iron internal electrolysis method:CN 101085690A[P].[2007-12-12] (in Chinese).
陈孟林,宿程远,王剑,等. 增强型内电解-光催化处理活性艳兰染料废水研究[J]. 广西师范大学学报-自然科学版,2012,30(3):224-228. CHEN M L, SU C Y, WANG J, et al. Treatment of reactive brilliant blue K-3R dye waste water by improved inner electrolytic-photocatalytic[J]. Journal of Guangxi Normal University:Natural Science Edition, 2012, 30(3):224-228(in Chinese).
刘霞,卢毅明,马鲁铭. 催化铁内电解反应床对水中酸性红B的脱色研究[J]. 环境工程学报,2009,3(1):98-102. LIU X, LU Y M, MA L M. Study on decolorization of acidic red B from water by catalyzed iron inner electrolysis reaction bed[J]. Chinese Journal of Environmental Engineering, 2009, 3(1):98-102(in Chinese).
刘烈炜,卢波兰,吴曲用,等. 化学置换镀铜研究进展[J]. 材料保护,2004,37(12):36-38. LIU L W, LU B L, WU Q Y, et al. Research progress of electroless replacement copper plating[J]. Materials Protection, 2004, 37(12):36-38(in Chinese).
鞠传伟. 化学镀铜替代氰化镀铜新工艺[J]. 电镀与保护,2002,22(2):31-32. JU C W. New technology of electroless copper plating replacing cyanide copper plating[J]. Electroplating & Pollution Control, 2002, 22(2):31-32(in Chinese).
FARID H, HAMID Z A, ABDEL A. Controlling factors affecting the stability and rate of electroless copper plating[J]. Mater Lett, 2004, 58(1):104-109.
王昕,张春丽. 钢铁件酸性镀铜前的预镀工艺研究[J]. 当代化工,2003,32(1):15-17. WANG X, ZHANG C L. Investigation on preplating technology of acidic copper plating for iron and steel[J]. Contemporary Chemical Industry, 2003, 32(1):15-17(in Chinese).
FARNDON E, WALSH F C, CAMPBELL S A, et al. Effect of thiourea, benzotriazole and 4,5-dithiaoctane-1,8-disulphonic acid on the kinetics of copper deposition from dilute acid sulphate solutions[J]. J Appl Electrochem, 1995, 25(6):574-583.
吴臣,王建刚,朱毅暋,等. 经典铁置换铜反应的研究和工业应用[J]. 高等学校化学学报,1996,17(7):1093-1095. WU C, WANG J G, ZHU Y M, et al. A study and industry application of classical replacement reaction[J]. Chemical Journal of Chinese Universities, 1996, 17(7):1093-1095(in Chinese).
GB/T 5270-2005/ISO 2819:1980,金属基体上的金属覆盖层电沉积和化学沉积层附着强度试验方法评述[S]. GB/T 5270-2005/ISO 2819:1980, Review of test methods for adhesion strength of metal coating electrodeposition and chemical deposition on metal substrates[S](in Chinese).
徐文英,高廷耀,周荣丰,等. 氯代烃在铜电极上的电还原特性和pH值的影响[J]. 环境化学,2005,24(3):318-321. XU W Y, GAO T Y, ZHOU R F, et al. The electrochemical reduction characteristics of chlorinated hydrocarbons at the copper electrode and the influence of pH[J]. Environmental Chemistry, 2005, 24(3):318-321(in Chinese).
徐文英,樊金红,高廷耀. 硝基苯类化合物在铜电极上的电还原特性和还原机理[J]. 环境化学,2005,24(1):17-21. XU W Y, FAN J H, GAO T Y. The electrochemical reduction characteristics and reduction mechanism of nitro-benzene compounds in the catalyzed Fe-Cu process[J]. Environmental Chemistry, 2005, 24(1):17-21(in Chinese).
黄礼辉,马鲁铭,张波,等. Fe-Cu预处理印染废水技术研究[J]. 工业水处理,2006,26(4):56-58 ,90. HUANG L H, MA L M, ZHANG B, et al. Study on the pretreatment of printing and dyeing wastewater by using Fe-Cu method[J]. Industrial Water Treatment, 2006, 26(4):56-58, 90(in Chinese).
张海臣,刘藏者,赵建国. 曝气催化铁内电解法对印染废水预处理的试验[J]. 工业水处理,2007,27(6):35-37. ZHANG H C, LIU Z Z, ZHAO J G. Treating dyeing wastewater by catalytic iron inner electrolysis process with aeration[J]. Industrial Water Treatment, 2007, 27(6):35-37(in Chinese).
曾小勇,王红武,马鲁铭,等. 微曝气催化铁内电解法预处理化工废水[J]. 中国给水排水,2005,21(12):1-4. ZENG X Y, WANG H W, MA L M, et al. Pretreatment of chemical wastewater by micro-aeration catalyzed iron internal electrolysis process[J]. China Water & Wastewater, 2005, 21(12):1-4(in Chinese).
王亭杰,金涌,汪展文,等. 针状羟基氧化铁的成核与生长过程[J]. 化工学报,1998,49(2):201-207. WANG T J, JIN Y, WANG Z W, et al. Nucleation and growth process of the needle-like goethite crystals[J]. Journal of Chemical Industry and Engineering (China), 1998, 49(2):201-207(in Chinese).
程爱华,郑蕾. 生物铁修复Cr(Ⅵ)污染土壤的性能与机理[J]. 环境工程学报,2018,12(10):2892-2898. CHENG A H, ZHENG L. Performance and mechanism of Cr(Ⅵ) contaminated soil remediation by bio-iron[J]. Chinese Journal of Environmental Engineering, 2018, 12(10):2892-2898(in Chinese).