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651.
中国汞污染的来源、成因及控制技术路径分析   总被引:8,自引:0,他引:8  
汞是一种能长期存在于环境且具有全球迁移性的污染物.汞污染防治是一个复杂的系统工程,涉及多部门、多领域、多行业,国家需要在政策、管理和技术等方面采取综合的战略措施推进汞污染防治.本文基于汞污染的环境和社会影响,分析了中国汞污染的来源、成因并评估了中国汞管理体系,结合中国参加全球汞公约谈判的特定背景,识别出汞污染防控的优先行业,包括汞的无意排放优先控制行业:燃煤、有色金属冶炼、汞矿开采和含汞废物处理;汞的有意使用优先控制行业:电石法聚氯乙烯生产,医疗产品、荧光灯和电池生产.本文也进一步提出了汞污染控制技术路径,包括构建汞风险管理和识别平台、完善汞管理体系、加强环境技术研发、推进绿色转型、保护环境和公众健康等.  相似文献   
652.
Drinking water sources are highly valued by authorities for safeguarding the life of a city. Models are widely applied as important and effective tools in the management of water sources. However, it is difficult to apply models in water source management because water managers are often not equipped with the professional knowledge and operational skills necessary for making use of the models. This paper introduces a drinking water source simulation and prediction system that consists of a watershed model, a hydrological model and a water quality model. This system provides methods and technical guidance for the conventional management of water sources and emergency water event response. In this study, the sub-models of the system were developed based on the data of the Jiangdong Reservoir in Xiamen, and the model validation was based on local monitoring data. The hydrological model and water quality model were integrated by computer programming, and the watershed model was indirectly integrated into the system through a network platform. Furthermore, three applications for Jiangdong Reservoir water protection utilizing the system were introduced in this paper, including a conventional simulation, an emergency simulation, and an emergency measures evaluation.  相似文献   
653.
为探讨咪唑类离子液体氯化1-辛基-3-甲基咪唑([C8mim][Cl])对酵母细胞的增殖生长和细胞膜通透性的影响,以不同浓度的[C8mim][Cl]处理酵母细胞,研究离子液体对酵母细胞增殖和菌落形成的影响,通过测定酵母细胞外液蛋白质和核酸的含量,判断膜通透性的大小和[C8mim][Cl]对细胞膜性结构的损伤。结果显示,0.1 mmol·L-1的[C8mim][Cl]延长了酵母细胞到达对数生长期的时间,在6~9 h之间对酵母细胞的增殖存在明显的抑制作用。1 mmol·L-1的[C8mim][Cl]使酵母细胞增殖不能到达对数生长期,对酵母细胞的增殖一直具有较强的抑制作用。随着离子液体浓度的增加,小菌落的数量增多。当平板内[C8mim][Cl]浓度达到10 mmol·L-1时,完全抑制了菌落的形成。[C8mim][Cl]处理酵母细胞后,细胞外液中OD280、OD260的值显著升高。研究表明,细胞膜等膜性结构通透性的增加是离子液体[C8mim][Cl]抑制酵母细胞增殖生长的原因之一。  相似文献   
654.
为研究沉积物中十溴联苯醚(BDE-209)的生物有效性,将淡水生态系统中常见的底栖动物中华圆田螺(Cipangopaludina cahayensis)暴露于商品DE-83(主要包含92%的BDE-209、6%的BDE-206、1.5%的BDE-207和0.5%的BDE-208)染毒的沉积物,进行60 d养殖实验。根据暴露期间中华圆田螺体内PBDEs含量与同系物组成的变化,探讨了田螺对DE-83的富集动力学、积累常数以及可能发生的生物转化。实验结果显示,DE-83主要同系物均能够被中华圆田螺积累,但是生物有效性非常低,BDE-209、BDE-207和BDE-206的吸收速率常数(ks)为0.029~0.042 d-1,BDE-207 > BDE-206 > BDE-209。依据动力学参数推算的生物-沉积物积累因子(BSAF)非常低,分别为0.05(BDE-209)和0.02(BDE-206和BDE-207)。暴露20 d后,中华圆田螺体内有低溴代同系物检出,其含量随暴露时间延长而增加,说明BDE-209在中华圆田螺体内发生了生物转化。  相似文献   
655.
In this study, microorganisms (named B111) were immobilized on polyvinyl alcohol microspheres prepared by the inverse suspension crosslinked method. The biodegradation of bisphenol A (BPA) and 4-hydro- xybenzaldehyde, a degradation product of BPA, by free and immobilized B lll was investigated. The BPA degradation studies were carried out at initial BPA concentrations ranging from 25 to 150 mg·L^-1. The affinity constant Ks and maximum degradation rate Rmax were 98.3 mg·L^-1 and 19.7mg·mg^-1VSS·d^-1 for free B111, as well as 87.2mg·L^-1 and 21.1mg·mg^-1VSS·d^-1 for immobilized B 111, respectively. 16S rDNA gene sequence analyses confirmed that the dominant genera were Pseudomonas and Brevundimonas for BPA biodegradation in microorganisms B 111.  相似文献   
656.
The adsorption of sulfadiazine onto kaolinite clay as an alternative adsorbent was examined in aqueous solution, hnpacts of the contact time, pH, temperature, ionic strength and coexistent surfactants on the adsorption process were evaluated. The pH significantly influenced the adsorption process, with adsorption being promoted at lower pH due to the cation exchange mechanism. Decreasing ionic strength in the solution was favorable for adsorption, and the addition of cationic and anionic surfactants had negative effects on the adsorption capacity of sulfadiazine on kaolinite. Kinetic experiments showed that the adsorption followed the pseudo-second-order model. The equilibrium adsorption was well described by both Freundlich and Dubinin-Radushkevich (DR) models. According to the DR model, the adsorption mechanism was determined by cationic exchange and weak physical forces. The thermodynamic study showed that sulfadiazine adsorption onto kaolinite was a sponta- neous and endothermic reaction.  相似文献   
657.
以壳聚糖(CTS)、聚乙烯吡咯烷酮(PVP)、活性炭(C)为基材,Cu(Ⅱ)为印迹离子,制备了CTS/PVP共混印迹球[Cu(Ⅱ)-IICP]和CTS/PVP/C共混印迹球[Cu(Ⅱ)-IICPC].以Cu(Ⅱ)的吸附量作为评价指标,对两种共混印迹球的制备条件进行了优化.研究结果表明,当CTS/PVP的质量比为6∶4,活性炭质量分数为0.6%,Cu(Ⅱ)模板剂质量分数为0.05%,所制备的两种共混印迹球吸附性能较佳,且对Cu(Ⅱ)有较好的选择吸附性.物理吸附分析结果表明,与未印迹相比印迹材料的比表面积明显增大.FTIR谱图分析,Cu(Ⅱ)模板主要与CTS和PVP中的—NH2和—OH发生了配位作用.XRD谱图分析结果表明,CTS与PVP、C、Cu(Ⅱ)之间发生了相互作用,改变了CTS原有的晶体结构,使其结晶度降低.  相似文献   
658.
不同加热方式下催化氧化甲苯的性能研究   总被引:1,自引:0,他引:1  
研究考察了微波单模腔、多模腔与传统电炉三种不同加热方式下甲苯的催化氧化性能,分析不同加热方式下进出口气体温度和固定床反应温度的变化,并对实验前后的Cu-Mn-Ce/TiO2-分子筛催化剂进行了扫描电镜、X射线衍射和比表面积等表征测试.研究表明,相同工艺条件下电炉加热、微波多模腔与单模腔加热对甲苯的去除效率分别为77%、83%和94%,对应的床层反应温度为265℃、215℃和145℃,微波加热的选择性、"热点效应"和偶极极化作用提高了甲苯的降解效率并降低其氧化温度和工艺处理能耗,微波单模腔内高的能量密度显著提高了甲苯的氧化效率并降低反应温度.催化剂表征发现,微波加热对催化剂结构与活性组分的分布几乎没有影响,而电炉加热则导致催化剂表面烧结与活性组分团聚,微波加热下催化剂更大的比表面积有利于甲苯的吸附与氧化降解.  相似文献   
659.
A low pH, ethanol-type fermentation process was evaluated for wastewater treatment and bio-hydrogen production from acidic beet sugar factory wastewater in a continuous stirred tank reactor (CSTR) with an effective volume of 9.6 L by anaerobic mixed cultures in this present study. After inoculating with aerobic activated sludge and operating at organic loading rate (OLR) of 12 kgCOD?m-3·d-1, HRT of 8h, and temperature of 35°C for 28 days, the CSTR achieved stable ethanol-type fermentation. When OLR was further increased to 18 kgCOD?m-3·d-1 on the 53rd day, ethanol-type fermentation dominant microflora was enhanced. The liquid fermentation products, including volatile fatty acids (VFAs) and ethanol, stabilized at 1493 mg·L-1 in the bioreactor. Effluent pH, oxidation-reduction potential (ORP), and alkalinity ranged at 4.1–4.5, -250–(-290) mV, and 230–260 mgCaCO3?L-1. The specific hydrogen production rate of anaerobic activated sludge was 0.1 L?gMLVSS-1·d-1 and the COD removal efficiency was 45%. The experimental results showed that the CSTR system had good operation stability and microbial activity, which led to high substrate conversion rate and hydrogen production ability.  相似文献   
660.
ABSTRACT

Refrigerant pressure drop and temperature change in pipes are normally ignored in the thermodynamic analysis of traditional vehicle air conditioning system, this will result in serious errors. In this Paper, pressure drop and temperature difference are simulated in different pipes of electric vehicle (EV) heat pump system to analysis the effects of pipes in the actual EV heat pump system. The results indicate that the greater the mass flow, the faster pressure drop increases, the temperature difference decreases. Pressure drop of saturated liquid refrigerant is smaller than that of saturated gas refrigerant at the same saturation pressure and mass flow rate. The higher the refrigerant pressure (no phase change), the slower pressure drop decreases, the faster the temperature difference decreases. Pressure drop decreases with the increment of bending angle of the pipe. For EV heat pump system, suitable valves and less branches are helpful for energy saving of the system. Shortening the pipe between compressor and condenser can reduce temperature change obviously. Pressure drop per unit length in the pipe between evaporator and compressor is large especially in heating mode because of lower refrigerant density. It even reaches to over 100 times of that in the pipe between condenser and throttle valve in heating mode and has negative effects on the performance of the system. If the evaporator is closer to the compressor and the number of branches is less, then pressure drop will decrease a lot, which will be advantageous for energy saving of the heat pump system.  相似文献   
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