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171.
制备了Aroclor1242,1248,1254和1260四种多氯苯标准样品,利用DB-1毛细管柱气相色谱/电子捕获检测器对样品进行了分析,根据相对保留时间确定了所分离的同系物及其百分含量。检验了各样品的均匀性和稳定性,并对样品进行了定值,计算了不确定值。国际比对结果良好。该PCBs标准样品可应用于PCBs的环境监测、污染控制、质量保证、质量控制和仪器校准等。  相似文献   
172.
Fracturing, either pneumatic or hydraulic, is a method to improve the performance of soil vapor extraction (SVE) in relatively low permeability soils (< 10(-5) cm/s). A two-dimensional model is presented to simulate trichloroethylene (TCE) soil vapor extraction modified by fracturing. Flow and transport is modeled using mobile macropore and micropore networks, which also have been identified in the literature as dual porosity, dual permeability, or heterogeneous flow models. In this model, fluids can flow in both the macropore and micropore networks. This represents a more general model compared to immobile micropore, mobile macropore models presented thus far in the literature for vapor flow and transport in two dimensions. The model considers pressure- and concentration-driven exchange between the macropore and micropore networks, concentration-driven exchange between the gas and sorbed phases within each network, and equilibrium exchange between the gas and water and a sorbed phase within each network. The parameters employed in an example simulation are based on field measurements made at a fractured site. Considered in the simulations were the influence of the volume percentage of fractures, the length of fractures, the relative location of the water table, and the influence of pulsed pumping. For these simulations, internetwork concentration-driven exchange most significantly affected mass removal. The volume percentage of fractures more significantly influence flow and mass removal than the length of fractures. The depth of the water table below the contamination plume only significantly influenced flow and mass removal when the water table was within 60 cm of the bottom of the contaminated soil in the vadose zone for the parameters considered in this study. Pulsed pumping was not found to increase the amount of mass removed in this study.  相似文献   
173.
It is known that many kinds of fermentative antibiotics can be removed by temperature-enhanced hydrolysis from production wastewater based on their easy-to-hydrolyze characteristics. However, a few aminoglycosides are hard to hydrolyze below 100°C because of their stability expressed by high molecular energy gap (ΔE). Herein, removal of hard-to-hydrolyze kanamycin residue from production wastewater by hydrothermal treatment at subcritical temperatures was investigated. The results showed the reaction temperature had a significant impact on kanamycin degradation. The degradation half-life (t1/2) was shortened by 87.17-fold when the hydrothermal treatment temperature was increased from 100°C to 180°C. The t1/2 of kanamycin in the N2 process was extended by 1.08-1.34-fold compared to that of the corresponding air process at reaction temperatures of 140-180°C, indicating that the reactions during hydrothermal treatment process mainly include oxidation and hydrolysis. However, the contribution of hydrolysis was calculated as 75%-98%, which showed hydrolysis played a major role during the process, providing possibilities for the removal of kanamycin from production wastewaters with high-concentration organic matrices. Five transformation products with lower antibacterial activity than kanamycin were identified using UPLC-QTOF-MS analysis. More importantly, hydrothermal treatment could remove 97.9% of antibacterial activity (kanamycin EQ, 1,109 mg/L) from actual production wastewater with CODCr around 100,000 mg/L. Furthermore, the methane production yield in anaerobic inhibition tests could be increased about 2.3 times by adopting the hydrothermal pretreatment. Therefore, it is concluded that hydrothermal treatment as a pretreatment technology is an efficient method for removing high-concentration hard-to-hydrolyze antibiotic residues from wastewater with high-concentration organic matrices.  相似文献   
174.
175.
以多巴胺(DA)、1,3-二氨基胍盐酸盐(DAG)、氨基化氧化石墨烯(NGO)为改性剂,将氧化沉积和表面接枝法联用于聚偏氟乙烯(PVDF)原膜表面改性,得到NGO/PDA-DAG改性膜,研究改性膜的制备条件及其抗污染性能.结果表明:①改性膜最佳制备条件为DA浓度1.5mg/mL,DA氧化沉积时间4h,DAG质量浓度1wt%,NGO浓度2mg/mL,NGO接枝时间1h;②改性膜的亲水性能改善明显.改性剂向膜面引入了-NH2、C=N、-OH、C=O等亲水性官能团,使静态接触角由68.7°(原膜)下降到38.7°(改性膜);③改性膜比原膜具有更高的机械强度.改性层改善了原膜表面应力传递盲区,使改性膜表面粗糙度由原膜的46.5nm下降到18.3nm.改性膜的拉伸强度和杨氏模量分别为22.83和376.25Mpa,比原膜提高了39.72%和13.57%;④改性膜的选择透过性和抗有机污染性能显著提高.与原膜相比,改性膜对牛血清白蛋白(BSA)的截留率提高18.64%、纯水通量恢复率提高34.08%、膜总污染率下降20.67%(可逆污染率提高13.41%、不可逆污染率下降34.08%);⑤改性膜抗菌性能强,且抗菌效果稳定持久.改性膜连续4次抗菌测试(38℃下接触2h)的平均抗菌率分别为92.3%、88.5%、87.9%、85.6%,能有效防止生物膜污染发生,而原膜无任何抗菌特性.  相似文献   
176.
针对污水处理系统混合菌形成的生物膜,比较了两种传统抗菌剂(银离子和氯)及3种小分子物质,包括双(3-氨基丙基)胺、(Z-)-4-溴-5-(溴乙烯)-2(5H)-呋喃酮(BBF)和香兰素对生物膜形成的抑制效应.结果表明,本研究所选用的传统抗菌剂中,0.05~10 mg·L-1Ag+对生物膜形成的抑制率为23%~70%,0.01~20 mg·L-1氯对生物膜形成的抑制率为23%~53%.而在3种小分子物质中,500~2000μmol·L-1双(3-氨基丙基)胺对生物膜形成的抑制率为16%~68%,0.1~200 mg·L-1香兰素对生物膜形成的抑制率为20%~37%,1~20 mg·L-1BBF对生物膜形成的抑制率为11%~18%.高浓度的Ag+(0.1~10 mg·L-1)会显著抑制混合菌的生长,且浓度越高,抑制效果越显著.1000μmol·L-1以下的双(3-氨基丙基)胺基本不会抑制混合菌的生长,但高浓度(2000μmol·L-1)的双(3-氨基丙基)胺会显著抑制混合菌的生长.  相似文献   
177.
基于石墨烯具有优异的物理化学特性,石墨烯修饰电极能有效提升微生物燃料电池(Microbial Fuel Cell,简称MFC)产电性能并降低制备成本,而成为MFC研究发展的重要方向.本文系统介绍了石墨烯及石墨烯复合材料修饰阳极和阴极MFC、石墨烯材料的抗菌性等方面的研究进展,提出深入探讨石墨烯修饰电极与MFC微生物的相互作用关系,协调MFC石墨烯修饰电极抗菌性及强化产电是今后石墨烯电极MFC研究的重要内容.  相似文献   
178.
Highly exothermic materials have caused many serious accidents involving storage and transportation, due to being thermally reactive. The safe storage and management of these materials is still a critical problem in many countries. Our aim was to study the thermal hazard of thermal reactive materials, such as a propellant, by employing differential scanning calorimetry (DSC) non-isothermal tests and isothermal tests, and then comparing the kinetic parameters by isothermal and non-isothermal of kinetics. The chosen approach was to obtain reliable thermal decomposition by a safe and effective method, which acquired the kinetic and safety parameters of storage conditions that could be applied as highly exothermic materials' reduction of loss prevention and energy potential for safer design during storage transport and processing operations.  相似文献   
179.
目的制备一种新型功能化离子液体修饰层状复合材料,研究其对L-酪氨酸(L-Tyr)的电催化氧化行为。方法通过静电自组装方式将氮氧自由基功能化离子液体(TEMPO-IL)与钙铌酸钾(KCa_2Nb_3O_(10))进行复合,并运用XRD,FTIR,SEM,HRTEM等测试手段对所作材料的微观形貌和结构进行分析表征。另外,将其作为电极修饰剂修饰于电极表面通过电化学工作站测试其电化学性质。结果该修饰电极对于电催化氧化L-Tyr有着较高的电化学活性。同时实验还表明,当L-Tyr的浓度在1×10~(-4)~1.16×10~(-2) mol/L之间时,峰电流值与L-Tyr浓度呈良好的线性相关,检测下限为6.2×10~(-5) mol/L(信噪比为3)。结论静电自组装是一种能够快捷、高效的制备层状复合材料方法,且得到的复合材料显示出在生物传感器方面的应用前景。  相似文献   
180.
Dense nonaqueous phase liquids (DNAPLs) are immiscible with water and can give rise to highly fingered fluid distributions when infiltrating through water-saturated porous media. In this paper, a conceptual mobile–immobile–zone (MIZ) model is presented to describe the structure of a DNAPL finger in water-saturated porous media and the velocity of finger propagation. A finger is composed of a finger body and a tip. The finger body has a mobile core and an immobile sheath. All the DNAPL within the tip of a finger is mobile. Lab experiments utilizing image analyses of a DNAPL (PCE) penetrating into water-saturated homogeneous glass beads were carried out in a two-dimensional transparent chamber. The results show that the fingers elongated almost linearly with time. The fingers did not grow laterally after the tip of the finger had passed. The average finger diameters were between 3.9 and 5.4 mm for PCE propagation in water-saturated glass bead porous media with mean particle diameters from 0.32 to 1.36 mm. The estimated mobile core diameters were 51–60% of the average finger diameters.  相似文献   
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