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71.
本研究首先通过批量实验考察了氢氧化镁对水中磷酸盐的吸附性能,再通过底泥模拟释放实验考察了氢氧化镁覆盖和添加控制底泥中磷向上覆水体释放的效果及机制.结果表明,氢氧化镁对水中磷酸盐具有良好的吸附能力,其投加量的增加有利于水中磷酸盐被其所吸附去除,与Langmuir模型相比,其对水中磷酸盐的等温吸附行为更适合采用Freundlich和Dubinin-Radushkevitch (D-R)模型加以描述.氢氧化镁覆盖可以有效地控制底泥中磷向上覆水体的释放,使得上覆水中SRP浓度处于较低的水平,即使覆盖层的结构完整性受到扰动破坏而导致覆盖材料与表层底泥的混合,氢氧化镁仍然可以有效地控制底泥中磷向上覆水体的释放.氢氧化镁覆盖和添加均可以有效地降低最上层(0~10 mm)底泥间隙水中SRP的浓度,这对于其覆盖和添加有效控制底泥中磷向上覆水体的释放是至关重要的.人工合成的氢氧化镁对水中磷酸盐的吸附性能优于商业购买的氢氧化镁,前者控制水体内源磷向上覆水体释放的效果也优于后者.以上结果显示,氢氧化镁是一种有希望用于控制水体底泥内源磷释放的活性覆盖和改良材料.  相似文献   
72.
The highly e cient inorganic polymer flocculants (IPFs) of the ferric-silica system is a new and promising coagulant. Interactions between ferric species and silica play a large part in the coagulation of suspensions. These e ects are quite distinct from those associated with polymeric or colloid silica. However, although these species are key to coagulation e ciency, they have not been comprehensively discussed. A new type of coagulant, poly-silica-ferric-chloride (PFSC), was synthesized by co-polymerization and characterized by time complexation spectroscopy and photon correlation spectroscopy. Compared with traditional ferric salt, the results indicated that PFSC had a higher molecular weight, lesser positive charge, lower Feb and higher Fec. The higher the Si/Fe ratio, the higher the silica and lower the silicac found. The PFSC with appropriate polysilica acid not only obtained better coagulation/flocculation e ciency in turbidity removal, enhanced the flocculation index (FI) and provided less residual ferric, it also lowered water treatment costs compared to traditional ferric salt. Results showed that PFSC could remove colloid particles in water by charge neutralization and sweeping, adsorption bridging mechanism.  相似文献   
73.
• New method of mineralizing PFCs was proposed. • Activated carbon was regenerated while mineralizing PFCs. • Molten NaOH has good mineralization effect on PFOS and PFBS. Current study proposes a green regeneration method of activated carbon (AC) laden with Perfluorochemicals (PFCs) from the perspective of environmental safety and resource regeneration. The defluorination efficiencies of AC adsorbed perfluorooctanesulfonate (PFOS), perfluorooctanoic acid (PFOA) and perfluorobutanesulfonate (PFBS) using three molten sodium salts and one molten alkali were compared. Results showed that defluorination efficiencies of molten NaOH for the three PFCs were higher than the other three molten sodium salts at lower temperature. At 700°C, the defluorination efficiencies of PFOS and PFBS using molten NaOH reached to 84.2% and 79.2%, respectively, while the defluorination efficiency of PFOA was 35.3%. In addition, the temperature of molten salt, the holding time and the ratio of salt to carbon were directly proportional to the defluorination efficiency. The low defluorination efficiency of PFOA was due to the low thermal stability of PFOA, which made it difficult to be captured by molten salt.The weight loss range of PFOA was 75°C–125°C, which was much lower than PFOS and PFBS (400°C–500°C). From the perspective of gas production, fluorine-containing gases produced from molten NaOH-treated AC were significantly reduced, which means that environmental risks were significantly reduced. After molten NaOH treatment, the regenerated AC had higher adsorption capacity than that of pre-treated AC.  相似文献   
74.
彭健  朱印  姚雯  张登峰 《化工环保》2012,40(4):401-405
钢材在深加工过程中通常使用盐酸对其表面进行酸洗除锈,从而产生大量废液。为了实现盐酸酸洗废液的资源化处理,以氯酸钠作为氧化剂制备聚氯化铁,考察了氧化剂加入量、浓盐酸加入量、反应时间、反应温度等因素对Fe2+转化率的影响。实验得到的最佳工艺条件为:每处理100 mL废液需加入7.0 g氯酸钠、12 mL浓盐酸(12 mol/L)、0.3 g磷酸二氢钾,反应温度30 ℃,反应时间30 min,搅拌转速5 r/s。该条件下,Fe2+转化率可达98.51%,得到的聚氯化铁产品符合《水处理剂 聚氯化铁》(HG/T 4672—2014)标准。  相似文献   
75.
聚合氯化铝铁(PAFC)絮凝剂污水除磷的研究   总被引:2,自引:0,他引:2  
用聚合氯化铝铁(PAFC)絮凝剂对城镇生活污水除磷处理效果进行研究,研究内容包括:PAFC用量对模拟污水和实际生活污水除磷效果的影响,污水经PAFC处理后pH值的变化情况,污水酸度对除磷效果的影响,PAFC用量对模拟污水和实际生活污水除浊效果的影响.结果表明:铝铁复合絮凝剂有良好的除磷效果,除磷处理后磷含量可低于0.5mg·l-1,能达到生活污水国家一级排放标准;污水处理后pH值较稳定;除浊效果好,除浊率可达到95%以上.  相似文献   
76.
铝镁氢氧化物溶胶吸附脱色性能的研究   总被引:3,自引:0,他引:3  
李玉江  隗娜  吴涛  曹楠  毕研俊 《环境化学》2005,24(2):179-182
对染料在具有永久正电荷的铝镁氢氧化物上的吸附,考察了铝镁比、染料类型、pH值等因素对吸附效果的影响,并进行了动力学、热力学研究结果表明,铝镁氢氧化物溶胶具有良好的脱色效果,铝镁比为1∶3的溶胶处理效果最佳;溶胶对大多数阴离子型染料的脱色率明显大于其它类型;染料的吸附量随pH值的增大而减小;溶胶对实验的各种阴离子型染料的饱和吸附量在961—3319mg·g-1之间;吸附量随温度升高而减小,说明吸附是放热过程  相似文献   
77.
用改性赤泥吸附废水中的六价铬   总被引:12,自引:0,他引:12  
韩毅  王京刚  唐明述 《化工环保》2005,25(2):132-136
用国内烧结法产生的赤泥作主要原料,以氯化铁为改性剂制得改性赤泥,用其吸附含铬废水中的重铬酸根阴离子。当废水中六价铬的质量浓度为80mg/L时,在环境温度为30℃、改性赤泥投加量为10g/L、pH为2左右的酸性环境中,2h达到吸附平衡,去除率可达96.18%。并且利用Langmuir等温式和Freundlich等温式对其吸附机理进行了探讨,结果表明,氯化铁改性赤泥对重铬酸根阴离子的吸附是通过物理吸附和化学吸附的协同作用来进行的。  相似文献   
78.
散射光下铁(Ⅲ)-丙酮酸盐配合物还原铬(Ⅵ)的研究   总被引:1,自引:0,他引:1  
研究了在散射光下铁(Ⅲ)-丙酮酸盐配合物对铬(Ⅵ)的光还原反应;考察了溶液pH、铁(Ⅲ)、丙酮酸钠、铬(Ⅵ)浓度对反应的影响;分析了铬(Ⅵ)光还原反应的动力学。实验结果表明:铁(Ⅲ)-丙酮酸盐配合物体系能在较弱的散射光下还原铬(Ⅵ)。在铬(Ⅵ)浓度为19.2μmol/L、铁(Ⅲ)浓度为10.0μmol/L、丙酮酸钠浓度为240μmol/L、pH为3.0、光照240min的条件下,铬(Ⅵ)的还原率达到99.7%。从表观动力学方程的反应级数看,铁(Ⅲ)的级数(0.83)最高,铁(Ⅲ)浓度是影响铬(Ⅵ)光还原反廊速率的主要因素.铁(Ⅱ)是铬(Ⅵ)光还原的主要还原剂。  相似文献   
79.
高锰酸钾强化三氯化铁共沉降法去除亚砷酸盐的效能与机理   总被引:12,自引:1,他引:11  
研究了不同水质条件下KMnO4强化FeCl3共沉降去除亚砷酸盐[As(Ⅲ)]的效能与机理.考察了pH值、天然有机物(NOM)等因素对As去除效能的影响.结果表明,投加KMnO4显著提高了FeCl3共沉降除砷(FCP)工艺对As(Ⅲ)的去除效能.随着Fe(Ⅲ)投量由2.0mg/L增大到8.0mg/L,对于FCP工艺,As去除率由41.3%提高到75.4%;而对于KMnO4-FeCl3共沉降除砷(POFCP)工艺,As去除率则由61.2%提高至99.3%.FCP及POFCP工艺对As的去除率均随着pH值的升高而升高;与FCP工艺比较,pH值对POFCP工艺除As效果影响较小;NOM降低了FCP工艺对As的去除率,而对POFCP工艺无明显影响.KMnO4的氧化作用是强化As(Ⅲ)去除效能的主要因素,而KMnO4的还原产物水合MnO2(s)对As(Ⅲ)也具有一定的去除能力.POFCP工艺是强化去除水中As(Ⅲ),以保障安全饮用水供给的有效方法.  相似文献   
80.
A novel nanocomposite was synthesized by incorporating three different types of flame-retardants and its extinguishing performance was tested for gaseous fires. The nanocomposite consists of the inorganic magnesium hydroxide (MH) nanoparticles as the dominant component, the nitrogen-based melamine cyanurate (MCA), and the phosphorus-based ODOPB. The wet mixing, dry mixing, and ultrasonic agitation were employed in the preparation process to enhance the homogeneity of the nanocomposite. The prepared powders were characterized using a series of analytical instruments including X-ray diffraction (XRD), scanning electron microscopy (SEM), thermal gravity analyzer (TGA), and differential scanning calorimeter (DSC). The efficiency of various samples in extinguishing gaseous fires was investigated in a lab-scale extinguishing system. The fire extinguishing tests indicated that the nanocomposite is considerably more effective in fire extinguishing than other powders in terms of extinction time and agent mass consumed. The fire extinction time of nanocomposite was 45.2% shorter than that of commercial ABC-MAP powder. Furthermore, the consumed amount of nanocomposite was 63.2% less than that of commercial powder. In addition, the order of extinguishing mass concentrations was as follows: the novel nanocomposite (103.7 g/m3) < MH/MCA (148.1 g/m3) < MH/ODOPB (155.6 g/m3) < MH (170.4 g/m3) < commercial ABC powder (281.5 g/m3) < MCA/ODOPB (384.1 g/m3). The fire suppression mechanisms of the nanocomposite were also discussed. It was inferred that the extinguishing mechanism of nanocomposite comprised of simultaneous chemical and physical inhibition actions involving chemical inhibition action, cooling action, and asphyxiation action. This study provides a promising attempt to gain benefits from the striking features of nanotechnology and flame-retardants in extinguishing gaseous fires.  相似文献   
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