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Analysis of trace dicyandiamide in stream water using solid phase extraction and liquid chromatography UV spectrometry 总被引:1,自引:0,他引:1
An improved method for trace level quantification of dicyandiamide in stream water has been developed. This method includes sample pretreatment using solid phase extraction. The extraction procedure (including loading, washing, and eluting) used a flow rate of 1.0 mL/min, and dicyandiamide was eluted with 20 mL of a methanol/acetonitrile mixture (V/V = 2:3), followed by pre-concentration using nitrogen evaporation and analysis with high performance liquid chromatography–ultraviolet spectroscopy (HPLC–UV). Sample extraction was carried out using a Waters Sep-Pak AC-2 Cartridge (with activated carbon). Separation was achieved on a ZIC®-Hydrophilic Interaction Liquid Chromatography (ZIC-HILIC) (50 mm × 2.1 mm, 3.5 μm) chromatography column and quantification was accomplished based on UV absorbance. A reliable linear relationship was obtained for the calibration curve using standard solutions (R2 > 0.999). Recoveries for dicyandiamide ranged from 84.6% to 96.8%, and the relative standard deviations (RSDs, n = 3) were below 6.1% with a detection limit of 5.0 ng/mL for stream water samples. 相似文献
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Huy Thanh Vo Tsuyoshi Imai Truc Thanh Ho Thanh-Loc Thi Dang Son Anh Hoang 《环境科学学报(英文版)》2015,36(10):38-47
Recently emerging disadvantages in conventional disinfection have heightened the need for finding a new solution. Developments in the use of high pressure carbon dioxide for food preservation and sterilization have led to a renewed interest in its applicability in wastewater treatment and water disinfection. Pressurized CO2 is one of the most investigated methods of antibacterial treatment and has been used extensively for decades to inhibit pathogens in dried food and liquid products. This study reviews the literature concerning the utility of CO2 as a disinfecting agent, and the pathogen inactivation mechanism of CO2 treatment is evaluated based on all available research. In this paper, it will be argued that the successful application and high effectiveness of CO2 treatment in liquid foods open a potential opportunity for its use in wastewater treatment and water disinfection. The findings from models with different operating conditions (pressure, temperature, microorganism, water content, media …) suggest that most microorganisms are successfully inhibited under CO2 treatment. It will also be shown that the bacterial deaths under CO2 treatment can be explained by many different mechanisms. Moreover, the findings in this study can help to address the recently emerging problems in water disinfection, such as disinfection by-products (resulting from chlorination or ozone treatment). 相似文献
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利用PLC控制系统,实现在钢渣热焖工艺中的恒压供水和钢渣热焖定时定量喷水的自动控制要求,具有国际先进水平,取得了良好的经济效益、社会效益和环境效益. 相似文献
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在序批式反应器(SBR)中接种污水厂厌氧池污泥和深层水稻土的1∶1混合污泥,在阶段性提升基质NO_2~--N浓度的条件下,考察静压条件对亚硝酸盐依赖型甲烷厌氧氧化(nitrite-dependent anaerobic methane oxidation,N-DAMO)反应快速启动过程的影响,并对N-DAMO反应的主导微生物的丰度变化进行分析.结果表明运行120 d后,常压(R1)和0.3 MPa静压(R2)条件下,都观测到了明显的N-DAMO现象,并且R2的NO_2~--N去除速率达到了36.90 mg·(L·d)~(-1),较R1提高了24%;其4 h内平均脱氮速率(以NO_2~--N计)达到0.10 mmol·(L·h)~(-1),比R1提高了186%.R2中富集得到的污泥粒径约为R1的2倍,比表面积更大,优化了污泥中甲烷的传质情况,有助于N-DAMO反应的进行,且R2污泥的N-DAMO比活性(以N/VSS计)达到了0.29 mg·(g·h)~(-1),是R1的2倍.此外,静压有助于N-DAMO功能微生物Candidatus Methylomirabilish oxyfera(M.oxyfera)的生长,实验结束时R2中M.oxyfera细菌16S rRNA基因的丰度比接种初期提高了22倍,是同阶段R1中的10倍.可见,提高静压能够有效促进N-DAMO反应的启动. 相似文献
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考察了高温条件下(70℃)牛粪堆肥、土壤、厌氧污泥、腐烂秸秆种接种物利用玉米秸秆水解液的产氢行为。结果表明:牛粪堆肥接种时达到最大的产气量(1355.7mL/L)和氢气产量(608.4mL/L),随后依次为腐烂秸秆、厌氧污泥和土壤。修改的Gompertz方程可以较好描述产氢量随时间变化趋势(R2>0.99)。牛粪堆肥接种时达到最大的产氢潜力(676.0mL/L),而土壤接种时的迟滞时间最小(9.8h)。DGGE图谱显示:不同接种物对应不同的微生物群落结构。Bacillus thermozeamaize,Enterobacter sp.JDM-19和Thermoanaerobacterium polysaccharolyticum strain,KMTHCJT和可能分别是牛粪堆肥,厌氧污泥和腐烂秸秆接种条件下的关键产氢微生物。 相似文献
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