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61.
采用气体循环序批式生物膜反应器(gcSBBR),构建反硝化型甲烷好氧氧化(AME-D)系统.考察了进水氮负荷的影响,发现氮负荷为0.075kg/(m3·d)时,硝酸盐氮去除率达到98.93%,其反硝化速率为74.25mg/(L·d),系统的甲烷日平均消耗量为35.91%(初期为50%);扫描电子显微镜(SEM)分析结果显示,系统中的微生物主要以短杆菌(12~18 μm)为主,并存在少量的丝状菌(长150~200μm);16S rRNA高通量测序结果显示,该系统中的甲烷氧化菌为Methylocaldum、Methylomonas、Methylococcus和Methylococcaceae_unclassified,反硝化菌为Denitratisoma、Hydrogenophaga、Azoarcus、Thiobacillus和Rhodobacter,其中主要的功能微生物为Methylocaldum、Denitratisoma和Hydrogenophaga,系统对氮的去除是由好氧甲烷氧化菌与反硝化菌协同实现.此外,系统中存在大量以甲醇和甲基胺类物质为生长基质的Methylophilaceae_uncultured(30.4%).  相似文献   
62.
呼伦贝尔沙区土壤细菌群落结构与功能预测   总被引:2,自引:0,他引:2  
以呼伦贝尔沙区裸沙地、草地、沙地樟子松(Pinus sylvestris var. mongolica)人工林和沙地樟子松天然林四种生境土壤为研究对象,采用野外调查、16S rRNA基因高通量测序和PICRUSt功能预测相结合的研究方法比较分析不同生境土壤细菌群落结构和潜在功能组成特征.结果显示:呼伦贝尔沙区沙地樟子松天然林土壤细菌多样性最高,人工林土壤细菌多样性最低,Shannon指数分别为(8.623±0.193)和(7.432±0.028),不同生境土壤细菌alpha和beta多样性存在显著差异.草地、沙地樟子松人工林和天然林土壤中变形菌门(Proteobacteria)相对丰度最高,均值分别为29.83%±1.14%、34.73%±1.99%、31.95%±0.21%,裸沙地土壤放线菌门(Actinobacteria)相对丰度最高,均值为26.13%±0.43%.不同生境土壤细菌主要优势属为慢生根瘤菌属(Bradyrhizobium)、RB41,其相对丰度在四种生境中的均值分别为5.29%±2.24%、4.22%±1.23%.PICRUSt功能预测共得到6个一级功能层,40个二级功能层,土壤细菌功能较为丰富,土壤细菌群落在环境信息处理、代谢、遗传信息处理和有机系统方面功能活跃.沙地樟子松天然林核苷酸代谢、酶家族、氨基酸代谢、碳水化合物代谢功能基因较为丰富,保证了沙地樟子松天然林土壤细菌的存活,使其具有较高的多样性.呼伦贝尔沙区不同生境土壤细菌功能基因丰度波动,反映了四种生境的土壤细菌群落组成及多样性的变化,指示了不同生境功能基因对土壤细菌群落的影响规律,可为预测和理解沙区土壤细菌代谢潜力和功能提供参考借鉴.  相似文献   
63.
The increasing production and usage of chlorinated paraffins(CPs) correspondently increase the amount of CPs that experience thermal processes. Our previous study revealed that a significant amount of medium-chain chlorinated paraffins(MCCPs), short-chain chlorinated paraffins(SCCPs) as well as aromatic and chlorinated polycyclic aromatic hydrocarbons(Cl-PAHs) were formed synergistically during the thermal decomposition of CP-52(a class of CP products).However, the transformation mechanisms of CP-52 to these compounds are still not very clear.This article presents a mechanistic analysis on the decomposition of CP-52 experimentally and theoretically. It was found that CP-52 initially undergoes dehydrochlorination and carbon chain cleavage and it transformed into chlorinated and unsaturated hydrocarbons. Cyclization and aromatization were the most accessible pathways at low temperatures(200–400°C), both of which produce mostly aromatic hydrocarbons. As the temperature exceeds 400°C, the hydrocarbons could decompose into small molecules, and the subsequent radical-induced reactions become the predominant pathways, leading to the formation of Cl-PAHs. The decomposition of CP-52 was investigated by using density functional theory and calculations demonstrating the feasibility and rationality of PCB and PCN formation from chlorobenzene. The results improve the understanding of the transformation processes from CP-52 to SCCPs and Cl-PAHs as well as provide data for reducing their emissions during thermal-related processes.  相似文献   
64.
1995-2015年江苏省土地利用功能转型特征及其协调性分析   总被引:13,自引:3,他引:10  
土地利用功能转型可实现土地利用功能协调,是实施区域可持续发展的重要路径。从功能协调角度构建土地利用功能转型分析框架,利用江苏省1995年、2000年、2005年、2010年和2015年5期遥感影像及相关资源利用和社会经济数据,构建三级土地利用功能评价体系,以县域为评价单元,通过三角模型和空间相关分析等方法,定量解析江苏省土地利用功能时空演变特征及其与土地可持续利用目标的协调状况。研究结果显示:(1)研究期内,江苏省土地利用功能总水平提升减慢,其中生产、生活功能不同程度提升,生态功能明显下降。(2)生产、生活功能空间集聚不突出,生态功能的热点、冷点区域呈“Y”型集聚分布。(3)不同功能区功能协调性态势不一,重点开发区和限制开发区可持续发展态势总体良好,优化开发区可持续发展程度较弱并持续恶化。建议江苏省在落实发展蓝图和空间规划的过程中,应优先推进苏南现代化示范区建设,重点实施重点开发区生活功能转型、Ⅰ类限制开发区生产功能转型策略,并严格落实禁止开发区的生态保护责任等差别化管理策略。  相似文献   
65.
在缺氧/好氧/好氧串联运行的移动床生物膜反应器(MBBR)系统中考察了温度和好氧反应器中溶解氧(DO)水平对生物膜硝化和反硝化过程氮素去除的影响,并通过高通量测序技术探究温度和DO的变化造成的MBBR系统中脱氮功能菌群结构的差异,从而在微观水平解释硝化和反硝化受温度和DO影响的生物学机理.结果表明,系统温度的升高可以同时强化生物膜硝化和反硝化过程,且好氧反应器中DO水平的提高对硝化过程有利,从而提高系统的脱氮效果.本研究中,在系统连续运行阶段,当系统温度和好氧O1反应器的DO浓度为本研究范围内的最高水平时(即温度=20~22℃、DO=5~8mg O2/L),比硝化负荷可达1.60g NH4+-N/(m2·d)以上,而相同温度范围内比反硝化负荷可高达2.84g NO3--N/(m2·d),从而使MBBR系统在该工况条件下获得了最佳的NH4+-N和TN去除率(分别达到了98.7%和85.7%).温度和DO影响硝化和反硝化的根本原因是温度和DO变化引起了脱氮功能菌群数量和群落结构的改变:当好氧反应器的DO水平下降时,硝化功能细菌的OTUs比例显著降低,尤其是异养硝化细菌的生长受到了严重的抑制;而温度的变化对反硝化细菌的影响主要体现在群落结构的变化.  相似文献   
66.
人居环境的可控性   总被引:2,自引:0,他引:2  
针对人居环境的复杂性、动态性以及纷繁复杂的影响因素,试图以系统论的观点考查人居环境的可能性发展空间,提出了人居环境大系统的观点,阐述了人工系统、人文系统和自然系统的构成和关系,提出并论述了通过结构优化、功能模拟、反馈控制等方法促使人居环境系统得到合理发展的观点。  相似文献   
67.
Molecular mechanics, molecular dynamics and quantum mechanical tools have been used to explore the conformational space of (+)(3S,4S)-multifidene bioactive compounds. All the computations have been performed in the absence and presence of the solvent, simulated by the explicit introduction of a number of water molecules or by the polarized continuum model (PCM). Three conformational minima, both in vacuo and in water (simulated by PCM tool), have been confirmed at ab initio level of theory (B3LYP and MP2). All minima lie in a very narrow range of energy, and the interconversion between them is possible with a small amount of energy expense.  相似文献   
68.
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   
69.
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   
70.
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   
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