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21.
基于鱼类完整性指数的滦河流域生态系统健康评价   总被引:1,自引:0,他引:1       下载免费PDF全文
生物完整性指数作为评价河流健康的重要工具,对流域管理有明确的指导作用.为全面掌握滦河流域生态系统健康状况,构建F-IBI(鱼类完整性指数),开展滦河流域生态系统健康评价.于2016年10-11月对滦河流域58个采样点收集了鱼类与环境数据,根据栖息地质量评分与水质等级来确定参考点(12个)和受损点(7个).利用分布范围检验、敏感性分析及冗余检验对20个候选指标进行筛选,以获得构建F-IBI的核心指标.采用1、3、5赋分法对核心指标进行赋分,并计算F-IBI最终得分.利用分位数法将F-IBI划分为"健康" "亚健康" "一般" "差" "极差"5个等级.利用非参数检验对F-IBI的适用性进行校验.结果表明:①鱼类物种数、个体数、Shannon-Wiener多样性指数、底栖食性鱼类个体百分比、耐受性鱼类个体百分比、产黏性卵鱼类个体百分比、产沉性卵鱼类个体百分比、上层鱼类个体百分比和广布种鱼类个体百分比等9个指标被筛选出,其适合作为构建F-IBI的核心指标.②F-IBI计算结果表明滦河流域58个采样点中,"健康"和"亚健康"等级采样点有22个,"一般"等级采样点22个,"差"和"极差"等级采样点14个.滦河干支流上游地区健康状况较好,干流中下游及部分独流入海河流健康状况较差,这主要受到不同地区社会经济发展的影响.③Mann-Whitney U检验发现,F-IBI在参考点与非参考点之间有显著差异,栖息地综合得分随F-IBI评价等级降低而下降,在"健康"与除"亚健康"外的其他等级以及"极差"与除"差"外的其他等级之间有显著差异.研究显示,构建的F-IBI适用于滦河流域生态系统健康评价.   相似文献   
22.
O3/H2O2降解Atrazine效能研究   总被引:1,自引:0,他引:1  
利用O3/H2O2降解莠去津,对氧化产物进行了色谱分析,以评价该体系降解莠去津效能.莠去津初始浓度2 mg/L,7.5mg/L的O3单独氧化去除率为27.2%;相同O3投量下,H2O2/O3摩尔比0.75时,5 min莠去津的去除率最高可达96.5%,表明H2O2/O3体系对莠去津的去除效果良好,降解速度快.以离子色谱对产物的离子进行分析,莠去津浓度下降的同时,硝酸根和氯离子浓度增高.GC-MS检测的产物和对LC-MS谱图的分析表明,有机产物中存在脱乙基、脱异丙基和脱氯莠去津,说明H2O2/O3并不能彻底氧化莠去津,因此工程中作为主要去除单元或突发性污染事件的应急手段可能还需要与活性炭等单元联用.  相似文献   
23.
成都经济区土壤中HCH和DDT含量及其分布特点   总被引:2,自引:0,他引:2  
通过对成都经济区土壤中HCH各异构体、DDT及其衍生物的含量及分布特点研究,得出成都经济区土壤中HCH和DDT都有较高的检出率,含量变化幅度也很大,含量较高点主要分布在化工厂附近。对比其他地区研究结果,成都经济区HCH含量较低,DDT含量较高。以西藏地区作为背景值,HCH有一定的污染,DDT污染较为严重。  相似文献   
24.
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   
25.

Nanoplastics are widely distributed in freshwater environments, but few studies have addressed their effects on freshwater algae, especially on harmful algae. In this study, the effects of polystyrene (PS) nanoplastics on Microcystis aeruginosa (M. aeruginosa) growth, as well as microcystin (MC) production and release, were investigated over the whole growth period. The results show that PS nanoplastics caused a dose-dependent inhibitory effect on M. aeruginosa growth and a dose-dependent increase in the aggregation rate peaking at 60.16% and 46.34%, respectively, when the PS nanoplastic concentration was 100 mg/L. This caused significant growth of M. aeruginosa with a specific growth rate up to 0.41 d?1 (50 mg/L PS nanoplastics). After a brief period of rapid growth, the tested algal cells steadily grew. In addition, the increase in PS nanoplastics concentration promoted the production and release of MC. When the PS nanoplastic concentration was 100 mg/L, the content of the intracellular (intra-) and extracellular (extra-) MC increased to 199.1 and 166.5 μg/L, respectively, on day 26, which was 31.4% and 31.1% higher, respectively, than the control. Our results provide insights into the action mechanism of nanoplastics on harmful algae and the potential risks to freshwater environments.

  相似文献   
26.
Environmental Science and Pollution Research - Groundwater has been recognized as one of the most critical and vulnerable natural sources which is utilized in potable water supply, agricultural...  相似文献   
27.
Environmental Science and Pollution Research - The international community has generally recognized the key role of developing countries’ cities in reducing carbon emissions, an elemental way...  相似文献   
28.
This work investigates the effects of lubricant sulfur contents on the morphology, nanostructure, size distribution and elemental composition of diesel exhaust particle on a light-duty diesel engine. Three kinds of lubricant (LS-oil, MS-oil and HS-oil, all of which have different sulfur contents: 0.182%, 0.583% and 1.06%, respectively) were used in this study. The morphologies and nanostructures of exhaust particles were analyzed using high-resolution transmission electron microscopy (TEM). Size distributions of primary particles were determined through advanced image-processing software. Elemental compositions of exhaust particles were obtained through X-ray energy dispersive spectroscopy (EDS). Results show that as lubricant sulfur contents increase, the macroscopic structure of diesel exhaust particles turn from chain-like to a more complex agglomerate. The inner cores of the core-shell structure belonging to these primary particles change little; the shell thickness decreases, and the spacing of carbon layer gradually descends, and amorphous materials that attached onto outer carbon layer of primary particles increase. Size distributions of primary particles present a unimodal and normal distribution, and higher sulfur contents lead to larger size primary particles. The sulfur content in lubricants directly affects the chemical composition in the particles. The content of C (carbon) decreases as sulfur increases in the lubricants, while the contents of O (oxygen), S (sulfur) and trace elements (including S, Si (silicon), Fe (ferrum), P (phosphorus), Ca (calcium), Zn (zinc), Mg (magnesium), Cl (chlorine) and Ni (nickel)) all increase in particles.  相似文献   
29.
The impact of Fe concentrations on the growth of Microcystisaeruginosa in aquatic systems under high nitrate and low chlorophyll conditions was studied. The responses of cell density, total and cell chlorophyll-a intracellular Fe content and organic elemental composition of M. aeruginosa to different concentration gradients of Fe(III) in the solutions were analysed. The results showed that the proliferation speeds of M. aeruginosa were: (1) decelerated when the Fe(III) concentration was lower than 50 μg/L in the solutions, (2) promoted and positively related to the increase of Fe(III) concentration from 100 to 500 μg/L in the solutions over the experimental period, and (3) promoted in the early stage but decelerated in later stages by excess adsorption of Fe by cells when the Fe(III) concentration was higher than 500 μg/L in the solutions. The maximum cell density, total and cell chlorophyll-a were all observed at 500 μg Fe(III)/L concentration. The organic elemental composition of M. aeruginosa was also affected by the concentration of Fe(III) in the solutions, and the molecular formula of M. aeruginosa should be expressed as C7–7.5H14O0.8–1.3N3.5–5 according to the functions for different Fe(III) concentrations. Cell carbon and oxygen content appeared to increase slightly, while cell nitrogen content appeared to decrease as Fe(III) concentrations increased from 100 to 500 μg/L in the solutions. This was attributed to the competition of photosynthesis and nitrogen adsorption under varying cell Fe content.  相似文献   
30.
结合实例分析,介绍如何将HAZOP分析方法引入到操作规程的编写过程当中,从而提升操作规程的有效性。  相似文献   
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