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761.
In this study, a high-efficiency cationic flocculant, P(DAC-MAPTAC-AM), was successfully prepared using UV-induced polymerization technology. The monomer Acrylamide (AM): Acryloxyethyl Trimethyl ammonium chloride (DAC): methacrylamido propyl trimethyl ammonium chloride (MAPTAC) ratio, monomer concentration, photoinitiator concentration, urea content, and cationic monomer DAC:MAPTAC ratio, light time, and power of high-pressure mercury lamp were studied. The characteristic groups, characteristic diffraction peaks, and characteristic proton peaks of P(DAC-MAPTAC-AM) were confirmed by fourier transform infrared spectroscopy (FTIR), X-Ray diffraction (XRD), 1H nuclear magnetic resonance spectrometer (1H NMR), and scanning electron microscopy (SEM). The effects of dosage, pH value, and velocity gradient (G) value on the removal efficiencies of turbidity, COD, ammonia nitrogen, and total phenol by poly aluminum ferric chloride (PAFC), P(DAC-MAPTAC-AM), and PAFC/P(DAC-MAPTAC-AM) in the flocculation treatment of coal chemical wastewater were investigated. Results showed that the optimal conditions for the flocculation of coal chemical wastewater using P(DAC-MAPTAC-AM) alone are as follows: dosage of 8–12 mg/L, G value of 100–250 s ? 1, and pH value of 4–8. The optimal dosage of PAFC is 90–150 mg/L with a pH of 2–12. The optimal dosage for PAFC/P(DAC-MAPTAC-AM) is as follows: PAFC dosage of 90–150 mg/L, P(DAC-MAPTAC-AM) dosage of 8–12 mg/L, and pH range of 2–6. When P(DAC-MAPTAC-AM) was used alone, the optimal removal efficiencies of turbidity, COD, ammonia nitrogen, and total phenol were 81.0%, 35.0%, 75.0%, and 80.3%, respectively. PAFC has good tolerance to wastewater pH and good pH buffering. Thus, the flocculation treatment of coal chemical wastewater using the PAFC/P(DAC-MAPTAC-AM) compound also exhibits excellent resistance and buffering capacity. 相似文献
762.
763.
2株苯胺降解的分离鉴定及其降解特性研究 总被引:8,自引:0,他引:8
从处理印染废水的活性污泥中分离得到2株苯胺降解菌,从菌落、细胞形态、生理生化及16S rRNA基因扩增测序等方面对2株菌进行了鉴定,并比较分析2株菌在好氧与缺氧条件下的苯胺降解、偶氮染料脱色及苯胺脱氨氧化酶基因tdnQ和黄素还原酶基因(fre)的携带情况.结果表明,2株菌属于Pseudomonas属和Shewanella属,分别命名为Pseudomonas sp.AN30和Shewanella sp.DN425.AN30菌株在振荡好氧条件下72h内对250mg/L苯胺的降解率为96.1%,DN425菌株的降解率为13.8%;在静置缺氧条件下AN30菌株的苯胺降解率为39.6%,DN425菌株的降解率仅为8.6%.DN425菌株在静置缺氧条件下4h内可将初始浓度为50 mg/L的偶氮染料酸性大红彻底脱色,而AN30菌株对酸性大红不具有脱色能力.以总DNA为模板,分别用tdnQ基因和fre基因特异性引物进行扩增,2株菌均能扩增出大小分别为380bp和630bp左右的目标条带,显示2菌株均携带有苯胺脱氨氧化酶基因和黄素还原酶基因. 相似文献
764.
765.
Historical trends of heavy metal contamination and their sources in lacustrine sediment from Xijiu Lake, Taihu Lake Catchment, China 总被引:2,自引:1,他引:2
Concentrations of Cd, Cr, Cu, Pb, Zn and Hg in Xijiu Lake sediment from the Taihu Lake catchment, China, were analyzed. Their contamination state was investigated based on the geoaccumulation index and enrichment factors. Statistical analysis was used to differentiate the anthropogenic versus natural sources of heavy metals (HMs), and the anthropogenic accumulation fluxes were calculated to quantify anthropogenic contribution to HMs. The results indicated that the lake sediment had been heavily contaminated by Cd, enrichment of Zn and Hg was at a relatively high level, while that of Cu and Pb was in the lower-to-moderate level and Cr was in the low enrichment level. Sources of Cr in the sediment were mainly from natural inputs, while other metals, especially Cd, were predominantly derived from anthropogenic sources. In the past century, anthropogenic accumulation fluxes of Pb, Zn and Hg increased by 0.1-47.3 mg/(cm2.yr), 2.4-398.1 mg/(cm2.yr), and 3.7-110.3 ng/(m2.yr), respectively, accounting for most inputs of HMs entering the sediment. The contamination state of HMs varied with industrial development of the catchment, which demonstrated that contamination started in the early 20th century, reached the maximal level between the mid-1970s and mid-1990s, and decreased a little after the implementation of constraints on high contamination industries, although the contamination of some HMs, such as Cd, Zn and Hg, is still at high levels. 相似文献
766.
767.
Xiaolong Li Congcong Ding Jiali Liao Liang Du Qun Sun Jijun Yang Yuanyou Yang Dong Zhang Jun Tang Ning Liu 《环境科学学报(英文版)》2017,29(3):9-15
The microbial reduction of U(VI) by Bacillus sp. dwc-2, isolated from soil in Southwest China, was explored using transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and X-ray absorption near edge spectroscopy (XANES). Our studies indicated that approximately 16.0% of U(VI) at an initial concentration of 100 mg/L uranium nitrate could be reduced by Bacillus sp. dwc-2 at pH 8.2 under anaerobic conditions at room temperature. Additionally, natural organic matter (NOM) played an important role in enhancing the bioreduction of U(VI) by Bacillus sp. dwc-2. XPS results demonstrated that the uranium presented mixed valence states (U(VI) and U(IV)) after bioreduction, which was subsequently confirmed by XANES. Furthermore, the TEM and high resolution transmission electron microscopy (HRTEM) analysis suggested that the reduced uranium was bioaccumulated mainly within the cell and as a crystalline structure on the cell wall. These observations implied that the reduction of uranium may have a significant effect on its fate in the soil environment in which these bacterial strains occur. 相似文献
768.
活性炭纤维去除水中有机微污染物的效果 总被引:14,自引:0,他引:14
采用 4种活性炭纤维 (ACF)作为吸附剂 ,对水中 CHCl3、CCl4、高锰酸钾指数 CODMn、紫外吸光值 EUV254等有机微污染物的去除进行了初步研究 ,并与 ZJ-15型颗粒活性炭 (GAC)进行了对比 .吸附等温线的结果表明 ,ACF3对 CHCl3的去除效果最好 ,当 CHCl3的平衡浓度为 60μg· L-1 时 ,ACF3对 CHCl3的吸附容量为 212μg·g-1 ;GAC对 CCl4的去除效果最好 ,当 CCl4的平衡浓度为 3μg· L-1时 ,GAC对 CCl4的吸附容量为 0.83μg·g-1;GAC及 ACF1对 CODMn、EUV254有较好的去除效果 ,当CODMn的平衡浓度为 2.5mg·L-1 时 ,GAC及 ACF1对 CODMn的吸附容量分别为 2.16mg·g-1 和 1.98mg·g-1 ,当 EUV254的平衡浓度为 0.05时 ,GAC及 ACF1对 EUV254的吸附容量分别为 0.32 g-1和 0.15g-1. 相似文献
769.
地聚合物是一类新型的高性能无机聚合物材料,是碱激活胶凝材料中最具前途的一类。由于其特殊的无机缩聚三维氧化物网络结构,使得地聚合物材料在众多方面具有比高分子材料、水泥、陶瓷和金属更高的高温性能和机械性能;另一方面,地聚合物材料制造过程中的能耗和三废排放量都非常低,材料对环境友好并且可以很好地被回收再年利用,是一种可持续发展的“绿色环保材料”。在比较全面地论述地聚合物材料的发展历史、生产工艺的基础上分析目前存在的问题,提出开发地聚合物材料是兼顾社会发展和减轻环境污染问题的一个较理想的对策。 相似文献
770.
为了了解镍氢电池和锂离子电池在生产、使用、废弃或回收过程中的环境影响,建立了一种简单快速的二次电池环境影响机制分析方法。通过生命周期评价(LCA)方法,采用Eco-indicator99体系,综合考虑电池循环容量衰减和循环次数的影响,建立了二次电池环境影响机制分析模型,并运用此模型对两种实验用二次电池(镍氢电池和锂离子电池)的环境影响机制进行了研究。结果表明:1)在所选取的两种二次电池当中,锂离子(Li-ion)电池的环境影响明显比镍氢(Ni-MH)电池的低;2)随着循环次数的增加Li-ion电池环境影响衰减比Ni-MH电池的明显,即随着使用循环次数的增加,Li-ion电池对环境的影响会降低到更多。综合来说,所选取的Li-ion电池比Ni-MH电池更具环境可持续性。文中所提出的环境影响机制分析模型同样可以应用于其他二次电池,以期为环境友好型二次电池的开发提供帮助。 相似文献