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91.
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
92.
为评估2010—2019年成都市机动车防控措施的减排效果,以2010年为基准年,采用排放清单法计算了各减排措施下2019年的减排量,对比分析了4种控制措施的减排效益。结果表明:成都市机动车排污总量逐年下降,2019年PM2.5、NOx、VOCs、CO、SO2和NH3的排放量分别为0.27×104、4.63×104、1.70×104、28.99×104、0.21×104和0.45×104 t,主要分布在中心城区,其中重型货车对PM2.5和NOx贡献最大,小型客车对VOCs、CO、SO2和NH3贡献最大;措施中加严标准的综合减排量最大,重点减排车型为小型客车、轻型货车、公交车等,2019年6种污染物减排量分别为0.14×104、2.27×104、1.29×104、6.77×104、0.07×104和0.38×104 t;优化城市交通管理对小型客车和摩托车的减排效果显著,2019年6种污染物减排量分别为0.04×104、0.81×104、0.38×104、2.55×104、0.05×104和0.04×104 t;淘汰高排放车辆对小型客车、轻型货车等的减排较明显,2019年6种污染物减排放量分别为0.13×104、0.98×104、0.34×104、2.62×104、0.01×104和0.007×104 t;推广清洁能源汽车的重点减排车型为出租车和公交车,虽然可有效减少PM2.5、NOx的排放,但VOCs却有小幅增加,2019年6种污染物减排放量分别为0.12×104、0.62×104、−0.13×104、0.30×104、0.004×104和0.000 5×104 t。 相似文献
93.
基于对高浓度含氰废水处理的重大需求和现有破氰技术的共性缺点,采用管式电化学反应器工艺对西部某化工厂生产过程的高浓度含氰废水进行预处理的中试研究,并与次钠氯碱法和ClO2氧化法进行了对比。以Ti/RuO2为阳极的管式电化学反应器相比于其他工艺有最佳的处理效果,在20 mA·cm−2处理4 h后,对废水中TCN、COD和间苯二腈的去除率分别可以达到81.74%、57.71%和81.33%,长期运行效果也处于最佳。此外,尽管管式电化学反应器的建设成本较高,单位能耗高,但由于该工艺无需加药,其运行成本低廉,仅为次钠氯碱法的13.10%,故总体运行成本较低。同时,还对管式电化学反应器的运行过程进行了参数优化及机理探究。在综合考虑建设、运行和折旧,管式电化学反应器具有良好的应用前景。 相似文献
94.
对原位热修复场地表层土壤采用有效的隔热措施,有助于实现节能降耗。纳米中空陶瓷微珠水性隔热涂料是一种新型隔热材料,导热系数低,可作为原位热修复修复场地的表面阻隔材料。通过现场实验,探究了该涂料的隔热性能及其受施工方法、实验区域尺寸等因素的影响。结果表明,在加热井热影响区域内,新型隔热材料的温度梯度最高可达13 600 ℃·m−1;加热井热影响区域半径至少为0.53 m,在影响区域敷设新型隔热材料可以显著减少修复区域的表层散热。新型隔热材料的温度梯度均高于传统泡沫混凝保温材料,在影响区域外最高可达1 560 ℃·m−1;在晴天环境条件下,新型隔热材料的温度梯度高于雨天和夜晚环境条件。新型隔热材料对原位热修复场地具有良好的隔热保温效果。 相似文献
95.
Different effects of foliar application of silica sol on arsenic translocation in rice under low and high arsenite stress 总被引:1,自引:0,他引:1
Foliar application of Si can generally reduce As translocation from roots to shoots in rice; however, it does not always work, particularly under high As stress. Here, the effects of foliar application of nanoscale silica sol on As accumulation in rice were investigated under low (2 μmol/L) and high (8 μmol/L) arsenite stress. The results revealed that foliar Si application significantly decreased the As concentration in shoots under low arsenite stress, but showed different effects under high arsenite stress after 7 days of incubation. The reduction in root-to-shoot As translocation under the 2As+Si treatment was related to the down-regulation of OsLsi1 and OsLsi2 expression and up-regulation of OsABCC1 expression in roots. In the 8As+Si treatment, the expressions of OsLsi1, OsLsi2, and OsABCC1 were significantly promoted, which resulted in substantially higher As accumulation in both the roots and shoots. In the roots, As predominantly accumulated in the symplasts (90.6%–98.3%), in which the majority of As was sequestered in vacuoles (79.0%–94.0%) under both levels of arsenite stress. Compared with that of the 8As treatment, the 8As+Si treatment significantly increased the As concentration in cell walls, but showed no difference in the vacuolar As concentration, which remained constant at approximately 69.1–71.7 mg/kg during days 4–7. It appeared that the capacity of root cells to sequester As in the vacuoles had a threshold, and the excess As tended to accumulate in the cell walls and transfer to the shoots via apoplasts under high arsenite stress. This study provides a better understanding of the different effects of foliar Si application on As accumulation in rice from the view of arsenite-related gene expression and As subcellular distribution in roots. 相似文献
96.
Zhao Long Zhao Xinbo Li Yuanze Shi Yi Zhou Hanmi Li Xiuzhen Wang Xiaodong Xing Xuguang 《Environmental science and pollution research international》2023,30(9):22396-22412
Environmental Science and Pollution Research - The accurate prediction of daily reference crop evapotranspiration (ETO) enables effective management decision-making for agricultural water... 相似文献
97.
Study on phosphorus loadings in ten natural and agricultural watersheds in subtropical region of China 总被引:3,自引:0,他引:3
Yuyuan Li Cen Meng Ru Gao Wen Yang Junxia Jiao Yong Li Yi Wang Jinshui Wu 《Environmental monitoring and assessment》2014,186(5):2717-2727
Water eutrophication in subtropical regions of southern China threatens watershed health and is of major concern. However, annual phosphorus (P) loading and its dominant causes are still unclear, especially at the watershed scale. In this study, we investigated dynamic P loadings and associated factors (e.g., land use, livestock production, and runoff depth) in ten watersheds that varied in area from 9 to 5,212 ha in a hilly area of Hunan Province, China. A flowmeter was installed at the outlet of each watershed, and total P (TP) and soluble P (SP) concentrations were monitored periodically from June 2010 to October 2012. The results showed that annual P loadings (APLs) in the ten watersheds ranged from 22.8 to 247.8 kg P/km2 and that P loss primarily occurred from April to June of each year during the main rainfall season in the study area. In addition, the average eutrophication (>0.05 mg P/L) ratio for stream waters was 86.7 % during the study period, which was indicative of a potentially serious condition for the local water environments. Annual P loadings were linearly related to livestock density (LD; R?=?0.92, p?<?0.01), whereas the eutrophication ratio of stream water was significantly (p?<?0.05) correlated with LD (R?=?0.61), percentage cropland (R?=?0.71), and percentage forest cover (R?=??0.68). Thus, it is concluded that the control of livestock production has the greatest potential for reducing P loadings in watersheds in this subtropical area. This will be beneficial to the amelioration and protection of local environment. 相似文献
98.
Chen Yonglin Cui Jian Gong Yaqi Wei Shuang Wei Yuanyun Yi Lan 《Environmental science and pollution research international》2021,28(13):15584-15596
Environmental Science and Pollution Research - Ionizing radiation (IR) is a form of high energy. It poses a serious threat to organisms, but radiotherapy is a key therapeutic strategy for various... 相似文献
99.
Bottom ash is the major by-product of municipal solid waste incineration(MSWI), and is often reused as an engineering material, such as road-base aggregate. However, some metals(especially aluminum) in bottom ash can react with water and generate gas that could cause expansion and failure of products containing the ash; these metals must be removed before the ash is utilized. The size distribution and the chemical speciation of metals in the bottom ash from two Chinese MSWI plants were examined in this study, and the recovery potential of metals from the ash was evaluated. The metal concentrations in these bottom ashes were lower than that generated in other developed countries. Specifically, the contents of Al,Fe, Cu and Zn were 18.9–29.2, 25.5–32.3, 0.7–1.0 and 1.6–2.5 g/kg, respectively. Moreover,44.9–57.0 wt.% of Al and 55.6–75.4 wt.% of Fe were distributed in bottom ash particles smaller than 5 mm. Similarly, 46.6–79.7 wt.% of Cu and 42.9–74.2 wt.% of Zn were concentrated in particles smaller than 3 mm. The Fe in the bottom ash mainly existed as hematite, and its chemical speciation was considered to limit the recovery efficiency of magnetic separation. 相似文献
100.
Pyridine, an important chemical raw material, is widely used in industry, for example in textiles,leather, printing, dyeing, etc. In this research, a dielectric barrier discharge(DBD) system was developed to remove pyridine, as a representative type of nitrogen heterocyclic compound in drinking water. First, the influence of the active species inhibitors tertiary butanol alcohol(TBA),HCO_3~-, and CO_3~(2-)on the degradation rate of pyridine was investigated to verify the existence of active species produced by the strong ionization discharge in the system. The intermediate and final products generated in the degradation process of pyridine were confirmed and analyzed through a series of analytical techniques, including liquid chromatography–mass spectrometry(LC–MS), high performance liquid chromatography(HPLC), ion chromatography(IC), total organic carbon(TOC) analysis, ultraviolet(UV) spectroscopy, etc. The results showed that the degradation of pyridine was mainly due to the strong oxidizing power of ozone and hydroxyl radical produced by the DBD system. Several intermediate products including 3-hydroxyl pyridine, fumaric acid, 2, 3-dihydroxypyridine, and oxalic acid were detected. Nitrogen was removed from the pyridine molecule to form nitrate. Through analysis of the degradation mechanism of pyridine, the oxidation pathway was deduced. The study provided a theoretical and experimental basis for the application of DBD strong ionization discharge in treatment of nitrogen heterocyclic compounds in drinking water. 相似文献