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991.
溶解氧对人工湿地处理受污染城市河流水体效果的影响 总被引:8,自引:3,他引:5
研究了溶解氧在人工湿地中的分布对受污染城市河流水体处理效果的影响规律及其意义,为城市受污染景观水体处理或雨水处理人工湿地的工程设计提供有效的自然复氧估算方法和设置措施.结果表明,由于自然复氧不利引起的溶解氧不足(<2 mg/L)是导致人工湿地出水水质恶化的主要原因.自然跌水是一种有效的人工湿地充氧方式,其充氧效果可用氧亏比r根据水温、水质以及充氧形式等外部条件参数进行估算.推流态的湿地床内,溶解氧分布与生物量分布以及有机物的去除规律呈现明显的相关性,而对TP沿程去除速率影响不大.设置多级多段跌水有利于均衡湿地床填料内的溶解氧分布,促进硝化反应,保证出水水质. 相似文献
992.
A novel inverse technique is proposed to quantitatively characterize macroscopic variability in aquifer reactivity in a Lagrangian representation. Reactivity heterogeneity is expressed in terms of distributions of flux over cumulative time of exposure of the solution to reactive surface area, termed here 'cumulative reactivity'. In cases involving single aqueous species the combined effects of physical and reactivity heterogeneity on reactive solute transport can often be established and further investigated through joint distributions of flux over travel time and cumulative reactivity. The inverse technique requires the breakthrough curve of a passive tracer to determine the distribution of flux over travel time, and additional breakthrough curves of reactive tracers provide additional moments of the distribution of flux over cumulative reactivity given travel time. Thus breakthroughs of one passive and two reactive tracers can provide the mean and variance of the distribution of flux over cumulative reactivity. This Lagrangian characterization is achieved with knowledge of the types of reactive surfaces present, but not their spatial locations. The distributions can subsequently be applied via forward modeling using the same technique to predict breakthrough curves of other solutes undergoing first-order reactions in similar physically and chemically heterogeneous configurations. 相似文献
993.
Background Aquatic environments are often exposed to various pollutants like heavy metals that are released from industrial, agricultural
and domestic wastes. Emissions of heavy metals can then enter all ecosystems and bring about severe problems in plants, especially
algae depending on the concentrations of a given element. The objective of the investigation presented is to detect toxic
effects due to some heavy metals in the biomass of green alga Scenedesmus quadricauda.
Methods All experiments were conducted with axenic cultures of the green alga Scenedesmus quadricauda (Turp.) de Brebisson (Chlorococcales,
Chlorophyta). The cultures were grown in Chu-no.10 medium, and optimum physical and chemical growth conditions were provided
to get higher growth rates and lower doubling times of cells. Growth of the micro algal cultures was measured on a daily schedule
by counting cultures and determination of chlorophyll-a. The sterile-filtered heavy metal concentration solutions (Cd, Pb
and Cu) were prepared and added as stock solutions of their salts (CdCl2*2.5 H2O, Pb(NO3)2*H2O and CuSO4*5 H2O).
Results and Discussion The growth decreased gradually with the alga exposed to Cd at 0.05, 0.1, and 0.5 mg/L in comparison with the control whereas
1 mg/L Cd2+ had a clearly destructive effect. The growth was decreased with Pb at 15, 20 and 25 mg/L gradually, while at 30
mg/L the effect was more pronounced. When Cu was used, the growth was increased gradually at 0.5, 1 and 1.5 mg/L and vice
versa at 2 mg/L.
Conclusion There were differences in toxic effects of the metals with different metal as well as their concentrations and the time of
exposure. 相似文献
994.
我国耕地资源数量安全的时空差异分析 总被引:6,自引:0,他引:6
耕地资源数量安全是耕地资源安全非常重要的组成部分,它受到资源禀赋、经济发展水平、管理和政策等因素的影响。本文在分析耕地资源数量安全影响因素的基础上,构建其评价指标体系,并对我国耕地资源数量安全的时空差异规律进行了分析,结果表明。自改革开放以来,我国耕地资源数量安全状况呈先增后减的变化趋势;从安全水平的区域分布来看,北部和西部省份的安全水平普遍高于东部和南部省份,同时发现,区域安全水平与经济发展水平呈负相关关系。 相似文献
995.
传统的区域二氧化硫控制优化都是基于损害函数法和环境标准化法的。本文在分析比较了传统二氧化硫污染控制战略优化中的损害函数法和环境标准化法各自的优点与局限的基础上。建立了基于时间序列决策的整数规划优化模型。这一理论模型更好地描述了控制战略实施的过程。把时间作为模型优化的一个因子。这种基于时间序列的过程充分考虑了货币的时间价值。并能分析这些时间价值对二氧化硫污染控制战略的动态过程影响。本文的模型是更加符合现实的情况。它对于区域二氧化硫控制的中长期决策优化显得更为有效和准确。 相似文献
996.
997.
Wenxiu Zhang Anthony K. Lau Zhiping S. Wen 《Journal of environmental science and health. Part. B》2013,48(5):496-505
Better understanding of the effects of key operational parameters or environmental factors on odor emission is of critical importance for minimizing the generation of composting odors. A series of laboratory experiments was conducted to examine the effects of various operating conditions on odor emissions. The results revealed that airflow rates that were too high or too low could result in higher total odor emissions. An optimal flowrate for odor control would be approximately 0.6 L/min.kg dry matter with intermittent aeration and a duty cycle of 33%. Temperature setpoint at 60°C appeared to be a turning point for odor emission. Below this point, odor emissions increased with increasing temperature setpoint; conversely, odor emissions decreased with increasing temperature setpoint above this point. With regard to the composting material properties, odor emissions were greatly affected by the initial moisture content of feedstock. Both peak odor concentration and emission rate generally increased with higher initial moisture content. Odor emission was significant only at moisture levels higher than 65%. An initial moisture level below 45% is not recommended due to concern with the resulting lower degree of biodegradation. Biodegradable volatile solids content (BVS) of feedstock had pronounced effect on odor emissions. Peak odor concentration and emission rate increased dramatically as BVS increased from 45% to 65%, thus, total odor emission increased exponentially with BVS. 相似文献
998.
《环境科学学报(英文版)》2023,35(7):174-188
Reservoirs have been served as the major source of drinking water for dozens of years. The water quality safety of large and medium reservoirs increasingly becomes the focus of public concern. Field test has proved that water-lifting and aeration system (WLAS) is a piece of effective equipment for in situ control and improvement of water quality. However, its intrinsic bioremediation mechanism, especially for nitrogen removal, still lacks in-depth investigation. Hence, the dynamic changes in water quality parameters, carbon source metabolism, species compositions and co-occurrence patterns of microbial communities were systematically studied in Jinpen Reservoir within a whole WLAS running cycle. The WLAS operation could efficiently reduce organic carbon (19.77%), nitrogen (21.55%) and phosphorus (65.60%), respectively. Biolog analysis revealed that the microbial metabolic capacities were enhanced via WLAS operation, especially in bottom water. High-throughput sequencing demonstrated that WLAS operation altered the diversity and distributions of microbial communities in the source water. The most dominant genus accountable for aerobic denitrification was identified as Dechloromonas. Furthermore, network analysis revealed that microorganisms interacted more closely through WLAS operation. Oxidation-reduction potential (ORP) and total nitrogen (TN) were regarded as the two main physicochemical parameters influencing microbial community structures, as confirmed by redundancy analysis (RDA) and Mantel test. Overall, the results will provide a scientific basis and an effective way for strengthening the in-situ bioremediation of micro-polluted source water. 相似文献
999.
1000.
人口统计的时空分析 总被引:26,自引:0,他引:26
陈述彭 《中国人口.资源与环境》2002,12(4):3-7
本文以国际和国内人口统计的空间分析实验和动态分析为案例 ,阐述人口统计的科学分析方法及其在国民经济建设、城市化建设与国家安全等诸多方面的重要意义 ;指出“格网”数据库作为一种中间载体 ,有利于卫星遥感象元与人口数据的空间数据融合 ,有利于认识人口动态变迁的规律 相似文献