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1.
刘钰  曾妍妍  周金龙  闫志雲  白凡 《环境科学》2023,44(12):6778-6789
开展地下水污染风险评价研究是地下水污染防控的重要环节.以巴里坤-伊吾盆地平原区地下水为研究对象,构建DRSTIW模型进行地下水脆弱性评价;根据污染场地调查资料和土地利用类型划分点源和面源污染,进行地下水污染荷载评价;考虑地下水的原生价值、经济价值和生态价值进行地下水功能价值评价;利用ArcGIS的地图代数功能生成地下水污染风险评价图,采用ROC曲线验证地下水污染风险评价结果,通过计算G指数得到地下水污染风险空间冷热点分布,结合重心和标准差椭圆对热点变动情况进行定量分析.结果表明,研究区地下水污染风险整体较低,高污染风险区和较高污染风险区仅占研究区总面积的6.8%,主要位于伊吾县的淖毛湖镇、盐池镇,巴里坤县的奎苏镇、石人子乡、花园乡和兵团红山农场,该区域内地下水埋深较浅,土壤表层和包气带介质透水性能较强,吸附能力较差,加之污染源分布较集中,使得污染物易于迁移富集,在地下水高脆弱性和高污染荷载的双重作用下导致局部区域地下水污染风险升高.受人类活动影响,地下水污染风险在空间上存在一定的集聚现象,整体表现为由西北向东南演变的趋势.地下水污染风险评价结果为划分地下水污染防治区提供重要参考.  相似文献   
2.
庞晓蝶  陈来国  高博  王硕  赵伟  刘明  陆海涛  梁小明 《环境科学》2023,44(10):5418-5430
关中地区大气臭氧污染近年呈加剧趋势,研究城市不同功能区VOCs污染特征及其健康风险至关重要.夏季在宝鸡市交通区、综合区、工业区和风景区(对照点)设置4个采样点,利用气相色谱-质谱/氢火焰离子检测器联用(GC-MS/FID)和高效液相色谱(HPLC)检测了115种挥发性有机物(VOCs),分析了不同功能区的污染特征,通过臭氧生成潜势(OFP)、·OH消耗速率(L·OH)和二次气溶胶生成潜势(SOAFP)评估其环境影响,并计算毒性VOCs的危害指数(HI)和终生致癌概率(LCR).结果表明,采样期间交通区、综合区、工业区和风景区的φ(TVOCs)平均值分别为(59.63±23.85)×10-9、(42.92±11.88)×10-9、(60.27±24.09)×10-9和(55.54±7.44)×10-9,其中交通区烷烃占比最高,其它功能区均为含氧挥发性有机物(OVOCs)占比最高;不同功能区乙醛、丙酮、正丁烷和异戊烷等均较为丰富.交通区、综合区、工业区和风景区的甲苯与苯比值(T/B)的均值分别为1.84、2.39、1.28和1.64,同时还存在较多低于1的时段,异戊烷与正戊烷比值(i/n)多数集中在1~4之间,表明宝鸡市VOCs受到机动车尾气和油气挥发、生物质和煤燃烧以及工业涂装和铸造等工业源的影响较大.4个功能区的间/对-二甲苯与乙苯的比值(X/E)均低于2,风景区最小为1.79,表明宝鸡市VOCs一定程度上受到区域传输的影响;根据甲醛与乙醛比值(C1/C2)和乙醛与丙醛比值(C2/C3),表明醛酮类VOCs存在较明显的人为排放源且受到光化学反应的影响.各功能区OFP为:工业区>风景区>交通区>综合区,OVOCs和烯烃贡献大;各功能区L·OH的范围为8.77~15.82 s-1,工业区乙醛贡献最大,其它功能区异戊二烯贡献大;各功能区SOAFP为:风景区>综合区>交通区>工业区,甲苯、间/对-二甲苯和异戊二烯为关键物种.根据EPA的健康风险评价方法,各功能区的毒性VOCs的危害指数(HI)均低于1,处于可接受水平,但工业区HI>1的天数占总采样天数的42.86%,存在较大风险;交通区、综合区、工业区和风景区的终生致癌风险(LCR)分别为1.83×10-5、1.21×10-5、1.85×10-5和1.63×10-5,均处于评价体系的第Ⅲ等级,表明有较大可能的致癌风险,LCR超过10-6的物种有:甲醛、乙醛、1,2-二溴乙烷、1,2-二氯乙烷、1,2-二氯丙烷和氯仿.  相似文献   
3.
浮游植物是水生态系统中最重要的组成部分,因其对水环境变化敏感而常被用于指示水环境状态,但其对环境的响应受分类方法的影响.为了解洞庭湖浮游植物种群(门、属)和功能群(FG)两种分类法对环境的驱动响应特征和适用性,于2019年3~12月分水期对该湖共进行了4次采样,比较分析了浮游植物种群和功能群的分布特征及其与环境因子的响应关系,并对比了TLI指数、 Shannon-Wiener指数、Q指数等评价方法在洞庭湖的适用性.结果表明,洞庭湖共检出浮游植物6门61属,可划分为23个功能群和9个优势功能群,功能群演替趋势为P/MP/D(3月)■月)■月)■(12月).层次分割结果表明,洞庭湖浮游植物的种群分布与变化受环境因子的驱动大于空间驱动;影响浮游植物种群和功能群的主要环境因子为水温(WT)、高锰酸盐指数、溶解氧(DO)、电导率(Cond)、水位(WL)和总磷(TP),环境因子对两者的独立解释性排序相差不大.RDA分析表明,浮游植物功能群对环境因子的响应要优于浮游植物种群.综合对比分析发现,利用Q指数进行水质评价在洞庭湖水体有较好的适用性.  相似文献   
4.
Although experiences with ecological restoration continue to accumulate, the effectiveness of restoration for biota remains debated. We complemented a traditional taxonomic analysis approach with information on 56 species traits to uncover the responses of 3 aquatic (fish, macroinvertebrates, macrophytes) and 2 terrestrial (carabid beetles, floodplain vegetation) biotic groups to 43 hydromorphological river restoration projects in Germany. All taxonomic groups responded positively to restoration, as shown by increased taxonomic richness (10–164%) and trait diversity (habitat, dispersal and mobility, size, form, life history, and feeding groups) (15–120%). Responses, however, were stronger for terrestrial than aquatic biota, and, contrary to our expectation, taxonomic responses were stronger than those of traits. Nevertheless, trait analysis provided mechanistic insights into the drivers of community change following restoration. Trait analysis for terrestrial biota indicated restoration success was likely enhanced by lateral connectivity and reestablishment of dynamic processes in the floodplain. The weaker response of aquatic biota suggests recovery was hindered by the persistence of stressors in the aquatic environment, such as degraded water quality, dispersal constraints, and insufficient hydromorphological change. Therefore, river restoration requires combined local- and regional-scale approaches to maximize the response of both aquatic and terrestrial organisms. Due to the contrasting responses of aquatic and terrestrial biota, the planning and assessment of river restoration outcomes should consider effects on both components of riverine landscapes.  相似文献   
5.
采用聚乙二醇(PEG)和海藻酸钠(SA)作为混合固定化载体材料对硝化细菌进行包埋固定化.结果表明,PEG和SA质量分数分别为6%和4%时,其溶液黏稠度、成球效果及机械强度、传质性能等方面都均为最佳.另外,固定化小球扫描电镜显示球体为外密内疏的结构,这满足体内细胞泄漏少、外面细胞难以进入的条件.将所得最佳性能的固定化小球与游离菌体进行模拟废水降解对比试验,经过7d处理后废水中氨氮和亚硝态氮质量浓度都明显下降,且固定化颗粒的降解率要明显高于游离菌株,此时氨氮的去除率为90%,亚硝态氮去除率为80%.  相似文献   
6.
Maintenance of biodiversity through seed banks and botanical gardens, where the wealth of species’ genetic variation may be preserved ex situ, is a major goal of conservation. However, challenges can persist in optimizing ex situ collections if trade-offs exist among cost, effort, and conserving species evolutionary potential, particularly when genetic data are not available. We evaluated the genetic consequences of population preservation informed by geographic (isolation by distance [IBD]) and environmental (isolation by environment [IBE]) distance for ex situ collections for which population provenance is available. We used 19 genetic and genomic data sets from 15 plant species to assess the proportion of population genetic differentiation explained by geographic and environmental factors and to simulate ex situ collections prioritizing source populations based on pairwise geographic distance, environmental distance, or both. Specifically, we tested the impact prioritizing sampling based on these distances may have on the capture of neutral, functional, or putatively adaptive genetic diversity and differentiation. Individually, IBD and IBE explained limited population genetic differences across all 3 genetic marker classes (IBD, 10–16%; IBE, 1–5.5%). Together, they explained a substantial proportion of population genetic differences for functional (45%) and adaptive (71%) variation. Simulated ex situ collections revealed that inclusion of IBD, IBE, or both increased allelic diversity and genetic differentiation captured among populations, particularly for loci that may be important for adaptation. Thus, prioritizing population collections based on environmental and geographic distance data can optimize genetic variation captured ex situ. For the vast majority of plant species for which there is no genetic information, these data are invaluable to conservation because they can guide preservation of genetic variation needed to maintain evolutionary potential within collections.  相似文献   
7.
Ecologically relevant traits of organisms in an assemblage determine an ecosystem's functional fingerprint (i.e., the shape, size, and position of multidimensional trait space). Quantifying changes in functional fingerprints can therefore provide information about the effects of diversity loss or gain through time on ecosystem condition and is a promising approach to monitoring ecological integrity. This, however, is seldom possible owing to limitations in historical surveys and a lack of data on organismal traits, particularly in diverse tropical regions. Using data from detailed bird surveys from 4 periods across more than a century, and morphological and ecological traits of 233 species, we quantified changes in the avian functional fingerprint of a tropical montane forest in the Andes of Colombia. We found that 78% of the variation in functional space, regardless of period, was described by 3 major axes summarizing body size, dispersal ability (indexed by wing shape), and habitat breadth. Changes in species composition significantly altered the functional fingerprint of the assemblage and functional richness and dispersion decreased 35–60%. Owing to species extirpations and to novel additions to the assemblage, functional space decreased over time, but at least 11% of its volume in the 2010s extended to areas of functional space that were unoccupied in the 1910s. The assemblage now includes fewer large-sized species, more species with greater dispersal ability, and fewer habitat specialists. Extirpated species had high functional uniqueness and distinctiveness, resulting in large reductions in functional richness and dispersion after their loss, which implies important consequences for ecosystem integrity. Conservation efforts aimed at maintaining ecosystem function must move beyond seeking to sustain species numbers to designing complementary strategies for the maintenance of ecological function by identifying and conserving species with traits conferring high vulnerability such as large body size, poor dispersal ability, and greater habitat specialization. Article impact statement: Changes in functional fingerprints provide a means to quantify the integrity of ecological assemblages affected by diversity loss or gain.  相似文献   
8.
叶片的有机组分特征不仅是植物光合产物分配策略和养分回收的重要参数,而且是衡量凋落叶分解难易程度的重要指标.为探究不同植物群落叶片间有机组分的差异,以华西雨屏区人工林的优势乔、灌、草植物作为对象,收集其成熟叶及凋落叶,研究其水溶性组分(water soluble component,WSC)、有机溶性组分(organic solvent soluble component,OSC)、酸溶性组分(acid-soluble extractive,ASE)和酸不溶性组分(acid-insoluble residue,AIR)含量特征.结果显示:植物叶片整体的WSC、OSC、ASE和AIR的平均相对含量为分别为25.05%、6.56%、34.30%和35.05%,表现为AIR> ASE> WSC> OSC.成熟叶和凋落叶同种组分的相对含量存在差异,成熟叶中ASE的相对含量(36.34%)最高,凋落叶中AIR含量(39.63%)最高.乔、灌、草层植物成熟叶的WSC、OSC、ASE的相对含量高于凋落叶,而AIR的相对含量低于凋落叶,其中WSC的相对含量在成熟叶和凋落叶间差异显著.不同植物功能群的同一组分间存在差异,木本植物WSC、ASE的相对含量低于草本植物,而OSC、AIR的相对含量高于草本植物.因此,植物叶片的有机组分特征不仅受到叶类型的影响,也受到不同植物功能群的影响;结果可为理解亚热带人工林植物的养分利用效率和凋落物分解机制提供重要理论依据.(图5表1参50)  相似文献   
9.
为有效克服FRAM事故分析中无法进行定量分析的缺陷,提出结合模糊推理技术的Fuzzy FRAM模型。此改进模型基于FRAM识别系统运行状态;依据功能输出要素的时间/精度属性利用Matlab构建2阶模糊推理系统量化功能输出质量;根据通用性能条件(CPC)及功能输入耦合端口构建功能评价体系,针对评价体系中存在的不确定性信息融合及建模问题,采用模糊证据推理技术,通过模糊信度结构建立、数据处理、信息融合测度后获得功能的风险指数;以既有铁路危险品运输事故为例,验证方法的可行性。结果表明:Fuzzy FRAM模型的评估结果较为精确,是FRAM分析方法的有效补充。  相似文献   
10.
Scientific insights into what it means to manage on-farm trees by local farmers, is an essential step towards documenting local ecological knowledge for sustainable landscape management. A study was therefore conducted in the Kumawu Forest District in the Ashanti Region of Ghana to assess how farmers conceptualise on-farm tree management and develop local knowledge for it. Using a case study approach, data were collected through informal interviews and focus group discussions with 120 farmers drawn from 15 communities who were involved in the management of three cropping systems; cocoa, maize and cassava-cocoyam-plantain mix. It was observed that the farmers regard on-farm tree management as a continuous process which occurs in three phases of the farming cycle; land preparation, crop cultivation and fallow management. For each of the three phases, farmers are guided by specific principles that ensure enough light penetration in-between tree crowns in the land preparation phase, suitable spacing between trees and crops in the crop cultivation phase and adequate tree regeneration in the fallow phase. The decisions made during the selection of tree species, spacing of trees adjudged suitable for any particular cropping system and recruitment of saplings prior to the fallow phase of farming constitute tree management. Farmers develop tree management knowledge by studying the physical characteristics of species, matching them to ecological functions they could perform and how they are likely to respond to treatments meant to control or enhance their development. Species are then subjected to trial and recommended or otherwise.  相似文献   
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