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新型绿色溶剂--室温离子液体 总被引:5,自引:0,他引:5
室温离子液体是一种具有特殊性质的液体,具有较低的熔点、良好的导电性和可以忽略的蒸气压等优点,已被应用到诸多领域。作为一种高效绿色溶剂,室温离子液体在化学分离、催化、电化学等方面发挥着重要的作用。对离子液体的种类、性质、制备方法及其在绿色化学中的应用进行了介绍。 相似文献
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Marcos A. dos Santos Cynthia F. Illanes Adalgiza Fornaro Jairo J. Pedrotti 《Water, Air, & Soil Pollution: Focus》2007,7(1-3):85-92
During the period from July 2002 to June 2004, the chemical characteristics of the rainwater samples collected in downtown São Paulo were investigated. The analysis of 224 wet-only precipitation samples included pH and electrical conductivity, as well as major ions (Na+, $ \rm NH^{ + }_{4} During the period from July 2002 to June 2004, the chemical characteristics of the rainwater samples collected in downtown
S?o Paulo were investigated. The analysis of 224 wet-only precipitation samples included pH and electrical conductivity, as
well as major ions (Na+, , K+, Ca2+, Mg2+, Cl−, , ) and carboxylic acids (acetic, formic and oxalic) using ion chromatography. The volume weighted mean, VWM, of the anions
, and Cl− was, respectively, 20.3, 12.1 and 10.7 μmol l−1. Rainwater in S?o Paulo was acidic, with 55% of the samples exhibiting a pH below 5.6. The VWM of the free H+ was 6.27 μmol l−1), corresponding to a pH of 5.20. Ammonia (NH3), determined as (VWM = 32.8 μmol l−1), was the main acidity neutralizing agent. Considering that the H+ ion is the only counter ion produced from the non-sea-salt fraction of the dissociated anions, the contribution of each anion
to the free acidity potential has the following profile: (31.1%), (26.0%), CH3COO− (22.0%), Cl− (13.7%), HCOO− (5.4%) and (1.8%). The precipitation chemistry showed seasonal differences, with higher concentrations of ammonium and calcium during
autumn and winter (dry period). The marine contribution was not significant, while the direct vehicular emission showed to
be relevant in the ionic composition of precipitation. 相似文献
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Marí a Fernanda HORST Veró nica LASSALLE Marí a Lujá n FERREIRA 《Frontiers of Environmental Science & Engineering》2015,9(5):746
Nanosized magnetite has emerged as an adsorbent of pollutants in water remediation. Nanoadsorbents include magnetic iron oxide and its modifiers/stabilizers, such as carbon, silica, clay, organic moieties (polymers, aminoacids, and fatty acids) and other inorganic oxides. This review is focused on the recent developments on the synthesis and use of magnetic nanoparticles and nanocomposites in the treatment of contaminated water. The emphasis is on the influence of the iron oxide modifiers on some properties of interest such as size, BET area, and magnetization. The characteristics of these nanomaterials are related to their ability to eliminate heavy metal ions and dyes from wastewater. Comparative analysis of the actual literature was performed aiming to present the magnetic material, its preparation methodology and performance in the elimination of the selected pollutants. Vast information has been properly summarized according to the materials, their properties and preferential affinity for selected contaminants. The mechanisms governing nanomaterial’s formation as well as the interactions with heavy metals and dyes have been carefully analyzed and associated to their efficiency. 相似文献
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Yanan Bai Xiuning Wang Fang Zhang Raymond Jianxiong Zeng 《Frontiers of Environmental Science & Engineering》2022,16(3):34
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对偶氮染料废水厌氧-好氧生物处理中的高盐度抑制生物活性和芳香胺自氧化问题,通过多种强化策略,考察了NaCl为100g/L时酸性橙7(AO7)的生物降解特性.结果表明,加入葡萄糖(0.5g/L)、蛋白胨(1g/L)和酵母粉(0.5g/L)有利于高盐条件下AO7的生物降解.进水中加入酸性红B对AO7的脱色有加速作用.耐盐污泥中加入蒽醌形成的蒽醌-污泥自固定化体系可以促进AO7脱色,当蒽醌浓度为100mg/L时,AO7最大脱色率约为92%.以活性炭毡作为生物载体,厌氧和好氧体系均可实现稳定运行,且体系污泥沉降性良好,脱色速率达26.67mg/(L×h),且可有效抑制脱色中间产物1-氨基-2-萘酚的好氧自氧化,使COD去除率始终保持在90%以上. 相似文献
79.
阳离子染料废水的脱色方法及其机理的研究 总被引:18,自引:2,他引:18
本文以阳离子染料碱性品红为代表,采用PFAS混凝剂对其水溶液进行脱色处理,在处理过程加入适量的十二烷基苯磺酸钠做助剂,脱色率最高可达99%以上。本文还研究pH值及盐效应对脱色率的影响。脱色机理的研究结果表明:阳离子染料在水溶液中与十二烷基苯磺酸钠之间发生化学作用,靠氢键及静电键结合,使原来带正电荷的阳离子染料粒子转变为带负电荷的粒子,再与带正电荷的PFAS混凝剂的胶体作用产生絮凝沉淀。 相似文献
80.