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161.
基于三角随机模拟和ArcGIS的河流水环境健康风险评价模型 总被引:1,自引:0,他引:1
基于河流水环境系统中随机性、模糊性等多种不确定性共存或交叉存在的特性,将三角模糊数与随机模拟方法相耦合,构建了三角随机模拟模型,并将其应用到湘江(长沙段)的健康风险评价中。通过将各参数浓度进行三角模糊化和随机模拟,结果表明,各断面污染物造成的健康风险的变化趋势,总体沿湘江上游至下游逐步降低,表现为昭山 > 猴子石 > 五一桥 > 橘子洲 > 乔口 > 三汊矶,且昭山、三汊矶断面和乔口断面均有恶化趋势。相对于常规的确定性方法,本模型能够得出评价区域健康风险的可能值区间及其相应的概率水平等定量信息,更加客观、全面地表征评价区域的风险状态及其空间分布差异,为决策者提供更多有用的信息。 相似文献
162.
Cadmium (Cd) distribution and contamination in Chinese paddy soils on national scale 总被引:5,自引:0,他引:5
Xiaojuan Liu Guangjin Tian Dong Jiang Chi Zhang Lingqiang Kong 《Environmental science and pollution research international》2016,23(18):17941-17952
Rice is a staple food by an increasing number of people in China. As more issues have arisen in China due to rice contaminated by cadmium (Cd), Cd contamination in arable soils has become a severe problem. In China, many studies have examined Cd contamination in arable soils on a national scale, but little studies have focused on the distribution of Cd in paddy fields. This study explored the spatial pattern of Cd in paddy soils in China, made a preliminary evaluation of the potential risk, and identified the most critically contaminated regions based on the domestic rough rice trade flow. The results showed that Cd concentrations in paddy soils in China ranged from 0.01 to 5.50 mg/kg, with a median value of 0.23 mg/kg. On average, the highest Cd concentrations were in Hunan (0.73 mg/kg), Guangxi (0.70 mg/kg), and Sichuan (0.46 mg/kg) provinces. Cd concentrations in paddy soils in central and western regions were higher than those in eastern regions, especially the southeastern coastal regions. Of the administrative regions, Cd standard exceedance rate was 33.2 %, and the heavy pollution rate was 8.6 %. Regarding to Cd of paddy soil, soil environmental quality was better in Northeast China Plain than in Yangtze River Basin and southeastern coastal region. Mining activities were the main anthropogenic pollution source of Cd in Chinese paddy soil. Based on rice trade, more of the Chinese population would be exposed to Cd through intake of rice produced in Hunan province. Certain regions that output rice, especially Hunan province, should be given priority in the management and control of Cd contamination in paddy soil. 相似文献
163.
Shaonan Hao Xuyong Li Yan Jiang Hongtao Zhao Lei Yang 《Environmental science and pollution research international》2016,23(18):17953-17968
The rapid growth of urbanization and industrialization, along with dramatic climate change, has strongly influenced hydrochemical characteristics in recent decades in China and thus could cause the variation of pH and general total hardness of a river. To explore such variations and their potential influencing factors in a river of the monsoon climate region, we analyzed a long-term monitoring dataset of pH, SO4 2?, NOx, general total hardness (GH), Mg2+, Ca2+, and Cl? in surface water and groundwater in the Luan River basin from 1985 to 2009. The nonparametric Seasonal Kendall trend test was used to test the long-term trends of pH and GH. Relationship between the affecting factors, pH and GH were discussed. Results showed that pH showed a decreasing trend and that GH had an increasing trend in the long-term. Seasonal variation of pH and GH was mainly due to the typical monsoon climate. Results of correlation analysis showed that the unit area usage amounts of chemical fertilizer, NO3 ?, and SO4 2? were negatively correlated with pH in groundwater. In addition, mining activity affected GH spatial variation. Acid deposition, drought, and increasing the use of chemical fertilizers would contribute to the acidification trend, and mining activities would affect the spatial variation of GH. Variations of precipitation and runoff in semi-arid monsoon climate areas had significant influences on the pH and GH. Our findings implied that human activities played a critical role in river acidification in the semi-arid monsoon climate region of northern China. 相似文献
164.
Su-fen Yuan Ze-hua Liu Hai-Xian Lian Chuangtao Yang Qing Lin Hua Yin Zhi Dang 《Environmental science and pollution research international》2016,23(19):19116-19125
A simple online headspace solid-phase microextraction (HS-SPME) coupled with the gas chromatography-mass spectrometry (GC-MS) method was developed for simultaneous determination of trace amounts of nine estrogenic odorant alkylphenols and chlorophenols and their derivatives in water samples. The extraction conditions of HS-SPME were optimized including fiber selection, extraction temperature, extraction time, and salt concentration. Results showed that divinylbenzene/Carboxen/polydimethylsiloxane (DVB/CAR/PDMS) fiber was the most appropriate one among the three selected commercial fibers, and the optimal extraction temperature, time, and salt concentration were 70 °C, 30 min, and 0.25 g/mL, respectively. The developed method was validated and showed good linearity (R 2?>?0.989), low limit of detection (LOD, 0.002–0.5 μg/L), and excellent recoveries (76–126 %) with low relative standard deviation (RSD, 0.7–12.9 %). The developed method was finally applied to two surface water samples and some of these target compounds were detected. All these detected compounds were below their odor thresholds, except for 2,4,6-TCAS and 2,4,6-TBAS wherein their concentrations were near their odor thresholds. However, in the two surface water samples, these detected compounds contributed to a certain amount of estrogenicity, which seemed to suggest that more attention should be paid to the issue of estrogenicity rather than to the odor problem. 相似文献
165.
采用过硫酸钾(K2S2O8)-偶氮二异丁咪唑啉盐酸盐(VA-044引发剂)复合引发体系合成了聚硫氯化铝-聚丙烯酰胺(PACS-PAM)杂化高分子絮凝剂。以特性黏度为指标,考察了引发剂配比、引发剂总用量、单体质量浓度、总铝浓度(AlT)、反应温度和反应时间等因素对杂化絮凝剂PASC-PAM的合成影响,结果表明,杂化絮凝剂PACS-PAM的最佳合成条件为引发剂K2S2O8与偶氮VA-044质量比为3:1、引发剂总用量为单体总质量的0.2%、单体质量浓度为0.21 g/mL、总铝浓度(AlT)为0.15 mol/L、反应温度为50 ℃、反应时间为3 h,在最佳条件下合成的杂化高分子的特性黏度为14.70 dL/g。电导率分析、红外光谱(FTIR)分析和热重-差热(DTA-TGA)分析表明,杂化絮凝剂中有机组分同无机组分是通过PAM分子链端的硫酸根离子(—SO42-)的桥连作用以离子键形式连接的。对黄泥悬浊液的絮凝效果研究表明,杂化絮凝剂PASC-PAM的絮凝效果优于复配絮凝剂PASC-PAM。 相似文献
166.
以某电镀厂水回用系统产生的高盐有机废水为对象,对比研究了Fenton、UV-Fenton等工艺去除COD性能,考察了初始pH、H2O2投加量、Fe2+与H2O2摩尔比、反应时间等参数对处理效果的影响。结果表明:UV-Fenton工艺的最佳条件为初始pH=3.0,H2O2的投加量3 mmol/L,RFe2+:H2O2=1:1,反应时间30 min;在此条件下,COD去除率可达到60%以上,分别较Fenton和UV-H2O2工艺提高23.0%和39.3%。UV-Fenton工艺中,Fenton与UV表现出良好的协同效果,其处理效果较单独Fenton和单独UV处理效果之和高14.7%。UV的引入促进Fe(II)/Fe(Ⅲ)循环,可以提高·OH生成量以及Fe2+与H2O2利用率。UV-Fenton是处理高盐有机废水的可行工艺之一。 相似文献
167.
有机膨润土负载纳米零价铁还原-类芬顿氧化降解2,4-二氯苯酚 总被引:1,自引:0,他引:1
目前,虽然有很多关于纳米零价铁(NZVI)通过吸附、还原和氧化作用去除各种污染物的报道,但关于如何联合这些方法来提高污染物的去除率仍然不是很清楚。本实验研究了联合有机膨润土DK1(十六烷基三甲基铵盐改性,d(001)=2.2 nm)吸附、NZVI还原、类芬顿氧化作用来去除溶液中2,4-二氯苯酚(2,4-DCP)的方法。在反应前30分钟,有机膨润土DK1负载NZVI(NZVI/DK1)通过吸附还原作用去除溶液中2,4-DCP,2,4-DCP和COD的去除率分别为16.1%和7.8%,说明了吸附还原作用对2,4-DCP的去除效果是有限的。接着向溶液中滴加适量的H2O2,在5 min内2,4-DCP的去除率由16.1%提高到了99%以上,COD的去除率达到了64.1%,这可能是由于NZVI腐蚀形成铁的氧化物缓慢释放出Fe2+和Fe3+,增强了芬顿反应对2,4-DCP和降解产物的氧化去除效果。通过SEM,EDS,UV-Vis和GC-MS等分析方法佐证了上面的结果。最后提出了联合吸附、还原和Fenton氧化去除2,4-DCP的机制。 相似文献
168.
采用缺氧/好氧膜生物反应器(A/O-MBR)处理合成的生活污水,考察了投加不同浓度的聚合氯化铝(PAC)对该工艺在除磷效能及运行稳定性方面的影响。结果表明,投加PAC可以有效降低出水TP的浓度;在投加量为150 mg/L时,TP的去除率达到最优,为90.1%,出水浓度维持0.48 mg/L左右,达到《城镇污水处理厂污染物排放标准》(GB18918-2002)的一级A标准。投加一定量的PAC可以有效提高微生物的活性;此外,可以降低污泥絮体的Zeta电位,增大污泥絮体的粒径,降低胞外聚合物(EPS)中多糖的浓度,进而有效延缓膜污染的速率。 相似文献
169.
以聚醚砜为原料制备了一种具有多孔道的小球载体,负载睾丸酮丛毛单孢菌(bdq06)降解水中喹啉。制备的小球直径约3 mm,表面光滑,存在厚度约20μm的致密层。经过浸蚀去掉致密层后,露出粗糙表面,有助于细菌粘附和生殖。同时出现大量直径约1.5μm的孔道,且由外向内,孔径逐渐增大,细菌可以通过表层孔进入球内生殖。在pH为5、10和温度为40℃的条件下,负载菌的小球对水中喹啉的降解效果优于游离菌。小球具有良好的溶胀性和机械强度,经过多次重复使用后,球形完整而未破裂,细菌在球表面大量生殖形成生物膜,显著提高降解效率,能够在1 h内完全降解100 mg/L喹啉。以聚醚砜为原料制备的小球在废水处理中具有潜在应用前景。 相似文献
170.
铁屑耦合生物麦饭石的PRB系统修复含铬酸根与硝酸根地下水 总被引:1,自引:0,他引:1
针对污染地下水中铬酸根和硝酸根迁移速度快,可渗透反应墙(PRB)常规活性材料修复效果差等问题,以铁屑、麦饭石和硫酸盐还原菌(SRB)为活性材料,构建4组耦合PRB动态柱修复地下水中Cr(Ⅵ)和NO3--N。结果表明,4#(铁屑、麦饭石和SRB)柱修复效果较1#(麦饭石)、2#(铁屑、麦饭石)和3#(麦饭石和SRB)柱好,且稳定,对Cr(Ⅵ)和NO3--N平均去除率分别是97.7%和97.34%,可见,以铁屑、麦饭石和硫酸盐还原菌为活性材料的耦合PRB系统修复地下水中Cr(Ⅵ)和NO3--N具有有效性与可行性。 相似文献