文章摘要
朱世妮,徐 颖,华 刚,叶正芳.纳米铁还原TNT红水中二硝基甲苯磺酸(钠)的影响因素研究Journal of Water Resources and Water Engineering[J].,2012,23(1):124-128
纳米铁还原TNT红水中二硝基甲苯磺酸(钠)的影响因素研究
Impacting factors of dinitrotoluene sulfonates reduction by nanoscale zero-valent iron particles in TNT red water
Received:September 13, 2011  Revised:October 03, 2011
DOI:
中文关键词: 纳米铁  二硝基甲苯磺酸钠  TNT红水  影响因素
英文关键词: nanoscale zero-valent iron  dinitrotoluene sulfonates  TNT red water  impact factors
基金项目:
Author NameAffiliation
ZHU Shini College of Resource and Environment Engineering, Liaoning Technical University, Fuxin 123000, China 
XU Ying College of Resource and Environment Engineering, Liaoning Technical University, Fuxin 123000, China 
HUA Gang Dongfang Chemical Corporation, Xiangyang 441404, China 
YE Zhengfang The Key Laboratory of Water and Sediment Sciences, Ministry of Education, Department of Environmental Engineering, Beijing University, Beijing 100871, China 
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中文摘要:
      考察了纳米铁的投加量、二硝基甲苯磺酸钠(DNTS)初始浓度、初始pH、纳米铁超声、干燥处理等因素对纳米铁还原TNT红水中DNTS效果的影响。结果表明:考察范围内,纳米铁/DNTS质量比越大,DNTS的去除率越高,单位质量纳米铁去除DNTS总质量越小;当初始pH<10时,去除率受pH影响不大,但准一级反应速率常数随pH上升而接近直线下降,酸性条件下还原更彻底,碱性条件下吸附沉淀作用更明显;干燥处理使纳米铁被部分氧化,还原能力下降;超声有助于促进纳米铁的充分分散和表面氧化层的剥离,提高反应活性。去除率随时间变化曲线表明,2,4-DNT-5-SO3Na(H) 比2,4-DNT-3-SO3Na(H)容易被还原。
英文摘要:
      Batch experiments were conducted in the system to investigate the factors affecting the removal of dinitrotoluene sulfonates (DNTS), including nanoscale zero-valent iron (NZVI) dosage, initial concentration of DNTS, initial pH value of solution and ultrasonication and drying process of NZVI. The removal efficiencies of DNTS increased with the rising of weight ratio of NZVI and DNTS, when the reduction capacity of NZVI was decreasing. When initial pH ranged from 1 to 10, the removal decreased little, however, the pseudo-first-order rate constants decreased almost linearly with initial pH. In addition, DNTS was more likely removed by adsorption and co-precipitation effect than reduction of NZVI at alkaline condition. After undergoing drying process, the reaction activity of prepared NZVI particles decreased by 2/3 compared with fresh ones owing to partly oxidation of NZVI. Ultrasonication was helpful for breaking agglomerate NZVI clusters into small NZVI particles and denuding the Fe0 in the core of the particles and ultimately improving the reactivity. Time-dependent removal of DNTS revealed that 2,4-DNT-5-SO3Na(H) was easier reduced than 2,4-DNT-3-SO3Na(H).
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