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211.
垃圾焚烧炉飞灰的低温玻璃固化初步研究   总被引:34,自引:1,他引:34  
在研究我国城市生活垃圾焚烧炉飞灰的毒性特征和高温灼烧特性的基础上,试验了几种常用玻璃熔制助溶剂、烟气净化产物中的成分对飞灰的溶融温度和熔融减量的影响,以实现低温玻璃固化。实验发现受热温度越高、时间越长,飞灰减量越大;B2O3、硼砂、CaF2对飞灰助溶效果明显,而废玻璃、CaO、CaCl2能使悄灰溶融后形成的玻璃态物质地均匀、少孔。按一定比例同时加入硼砂、CaF2、废玻璃、CaO、CaCl2于飞灰中,混合物的熔融温度降到1000℃以下,大大低于飞灰自身的熔融温度(1200℃)。对该熔融物在空气中淬火形成的玻璃态物质按标准方法浸沥,选择测量了浸出液中铅、汞、镉、砷的浓度,初步发现低温玻璃态物质对重金属铅和镉具有较好的固化效果,而对汞有砷的固化效果尚不确定。  相似文献   
212.
研究了废弃含溴化阻燃剂的电子塑料在超临界异丙醇中的液化特性.研究结果表明塑料在超临界异丙醇中发生了解聚,产生油、气以及固体残渣,塑料中的溴化阻燃剂发生了脱溴降解.反应时间、固/液比、溶剂填充度对塑料解聚及阻燃剂脱溴降解影响较大,在最佳工艺条件(温度:400℃,反应时间:60min,固/液比:1/10,溶剂填充度:50%)下获得60%的产油率及95.3%的脱溴率.油以苯系物及酚类物质为主要组成物质,其热值为37.5MJ/kg.超临界异丙醇处理含溴化阻燃剂塑料主要包括溴化阻燃剂的萃取、脱溴降解和塑料高温解聚等过程.  相似文献   
213.
区域水环境污染预警系统的建立   总被引:16,自引:0,他引:16  
深入分析水环境污染预警系统的目的,结构,实现以及各子系统的耦合,提出区域水环境污染预警系统应由区域内多个主要预警中心组成,每个预警中心包括通讯子系统,技术支持子系统,应急风险分析和决策支持子系统等。区域水环境污染预警系统的实现由实时处理和离线处理2个部分组成,前者包括现场流量,蒸发,降雨实时信息的收集,数据的传递和接收,预警模型计算和输出,决策管理,后者包括历史数据和区域特征输入,预警模式选择;参数率定等。目前建立预警系统面临的主要困难在于实时信息的获取和系统不确定性分析方法,相应地,对系统的持续改进也就是要加强信息交流,提高模型的识别能力,扩展系统的评价与决策功能等。  相似文献   
214.
为了研究天津市中心城区集中供应管网末梢水的抗生素耐药基因(antibiotic resistance genes,ARGs)污染特征,采集了天津市中心城区6个采样点的管网末梢水样,分别采用微孔滤膜正压过滤法及核酸吸附-洗脱法富集水中细菌和胞外核酸后,利用实时定量PCR技术对15种胞内ARGs和胞外ARGs进行定量检测....  相似文献   
215.
白洋淀由于长期受人类活动影响,部分区域内源污染严重.针对该类区域,"十三五"水专项开展了生态清淤试点工程以实现内源治理.在清淤过程中底栖生物容易遭到严重破坏,与之密切联系的食物网受到影响.在沉水植物补种成功后,如何科学地恢复底栖动物群落并维持长效稳定,急需寻求解决方案.本研究于2018年对白洋淀大型底栖动物群落进行调查...  相似文献   
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218.
Pollution from urban highway runoff has been identified as one of the major causes of the deterioration of receiving water quality. The purpose of this study is to assess the toxicity of urban storm water samples in Shanghai using the zebrafish (Danio rerio) embryo test and the bacterial luminescence (Vibrio qinghaiensis) assay. The toxicity of highway runoff from seventeen storm events was investigated in both grab and composite samples. Zebrafish embryos were exposed to the runoff samples and development parameters including lethality, spontaneous movements in 20 s, heart beat rate, hatching rate, and abnormality of zebrafish embryos were observed after 24, 48, 72, and 96 h of exposure. Inhibition rates of luminescence intensity were also recorded. The results showed that in the zebrafish embryo toxicity tests, both grab and composite samples increased the lethality, reduced the percentage with spontaneous movements and heart beats, inhibited the hatching of embryos, and induced morphological abnormalities. In the Vibrio qinghaiensis toxicity test, all the grab samples inhibited the luminescence, while some of the composite samples promoted it, which indicated that different types of toxicants might have been affecting the species. The multivariate statistics analysis indicated that heavy metal (zinc, manganese, and copper) and PAHs might mainly contribute to the toxicity of runoff samples.  相似文献   
219.

A campaign was conducted to assess and compare the personal exposure in L3 of Tianjin subway, focusing on PM2.5 levels, chemical compositions, morphology analysis, as well as the health risk of heavy metal in PM2.5. The results indicated that the average concentration of the PM2.5 was 151.43 μg/m3 inside the train of the subway during rush hours. PM2.5 concentrations inside car under the ground are higher than those on the ground, and PM2.5 concentrations on the platform are higher than those inside car. Regarding metal concentrations, the highest element in PM2.5 samples was Fe; the level of which is 17.55 μg/m3. OC is a major component of PM2.5 in Tianjin subway. Secondary organic carbon is the formation of gaseous organic pollutants in subway. SEM–EDX and TEM–EDX exhibit the presence of individual particle with a large metal content in the subway samples. For small Fe metal particles, iron oxide can be formed easily. With regard to their sources, Fe-containing particles are generated mainly from mechanical wear and friction processes at the rail–wheel–brake interfaces. The non-carcinogenic risk to metals Cr, Ni, Cu, Zn and Pb, and carcinogenic hazard of Cr and Ni were all below the acceptable level in L3 of Tianjin subway.

  相似文献   
220.
Currently, according to Taiwan’s Water Pollution Control Act, the environmental control of waterbodies and water quality depends on the effluent standards and the standard of water quality in the rivers. The Act demands that each stationary pollution source comply with the effluent standard before being discharged into the rivers, and that the overall water quality in the river shall not exceed the declared standard of water quality. To improve the condition of the waterbodies and water quality of the rivers, the Environmental Protection Administration (EPA) in Taiwan has made stricter regulations concerning the discharge standard. Such regulations will help to reduce the weight of individual pollutants discharged; the discharged wastewater, however, will still gradually worsen the water quality of the rivers even after complying with the effluent standard since some of the pollutant dischargers may decrease the concentration of pollutants by diluting the water before discharging; thus, the total weight of metals discharged in the rivers will not be reduced, and the water quality in the areas where the pollutant sources are concentrated will not thereby be significantly improved. To protect the irrigation water and farmlands from being polluted by discharged heavy metals in industrial wastewater, the EPA started controlling the sources in accordance with the total quantity control (TQC) as defined in the Water Pollution Control Act, in the hope of perfecting the environmental protection of waterbodies and water quality, as well as ensuring clean water sources without any pollution for the rivers, land, and people.  相似文献   
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