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941.
松花江流域水生态环境质量评价研究 总被引:3,自引:2,他引:3
采用生物完整性指数(IBI)法评价松花江流域的水生态环境质量。对25个候选生物参数进行敏感度分析、Pearson相关性分析,最终筛选出由总分类单元数、EPT分类单元数、EPT密度、敏感种分类单元比例、敏感物种数量、Hilsenhoff生物指数(HBI)6个核心参数构成的IBI评价指标。采用95%分位数法建立了IBI评价标准,将IBI评价结果划分为5个等级:大于35.84为优,26.88~35.84为良好,17.92~26.88为一般,8.96~17.92为较差,小于8.96为很差。结果表明,建立的IBI评价方法适用于松花江流域水生态环境质量评价,松花江流域各位点30.0%生物状况为优和良好,23.3%为一般;46.7%为较差和很差,说明流域内近一半区域的水生态质量存在不同程度的受损。流域生境质量主要处于一般-良好的状态;水质处于轻度污染。 相似文献
942.
943.
944.
通过对我国辐射环境监测相关法规的调研,在深入分析当前辐射环境监测法规框架结构和突出问题的基础上,构建我国辐射环境监测法规体系,重点关注辐射环境质量监测、核与辐射监督性监测及应急监测等方面的工作需求,提出完善部门规章、健全核安全导则及规范性文件的建议。 相似文献
945.
欧盟空气质量监测现状及加强我国空气质量监测体系建设的建议 总被引:2,自引:0,他引:2
从欧盟空气质量监测政策和监测网络建设现状两个方面描述了欧盟空气质量监测发展现状。分析了我国空气污染现状和空气质量监测体系中存在的问题,并借鉴欧盟的经验,提出了加大政策支持和财政保障力度、逐步健全空气质量监测网络体系、加强空气质量监测技术研究、完善空气质量监测数据库、开展能力建设、提高公众参与度等加强我国空气质量监测体系建设的建议。 相似文献
946.
简述了水污染物排放总量核算与评价的基本概念。结合实际工作经验,对新建项目水污染物排放总量核算与评价、改扩建项目水污染物排放总量核算与评价分别进行分析与探讨,并提出了核算与评价方法和建议。 相似文献
947.
948.
Enhanced biological nutrient removal by the alliance of a heterotrophic
nitrifying strain with a nitrogen removing ecosystem 总被引:3,自引:0,他引:3
Nitrogen removal from synthetic wastewater was investigated in an airlift bioreactor (ALB), augmented with a novel heterotrophic nitrifier Pseudonocardia ammonioxydans H9^T under organic carbon to nitrogen ratios (Corg/N) ranging from 0 to 12. Effect of the inoculated strain was also determined on the settling properties and the removal of chemical oxygen demand (COD). Two laboratory scale reactors were set up to achieve a stable nitrifying state under the same physicochemical conditions of hydraulic retention time (HRT), temperature, pH and dissolved oxygen (DO), and operated under the sequencing batch mode. The level of DO was kept at 0.5- 1.5 mg/L by periodic stirring and aeration. Each specific Corg/N ratio was continued for duration of 3 weeks. One of the reactors (BR2) was inoculated with P ammonioxydans H9^T periodically at the start of each Corg/N ratio. Sludge volumetric index (SVI) improved with the increasing Corg/N ratio, but no significant difference was detected between the two reactors. BR2 showed higher levels of nitrogen removal with the increasing heterotrophic conditions, and the ammonia removal reached to the level of 82%-88%, up to10% higher than that in the control reactor (BR1) at Corg/N ratios higher than 6; however, the ammonia removal level in experimental reactor was up to 8% lower than that in control reactor at Corg/N ratios lower than 2. The COD removal efficiency progressively increased with the increasing Corg/N ratios in both of the reactors. The COD removal percentage up to peak values of 88%-94% in BR2, up to 11% higher than that in BR1 at Corg/N ratio higher than 4. The peak values of ammonia and COD removal almost coincided with the highest number (18%-27% to total bacterial number) of the exogenous bacterium in the BR2, detected as colony forming units (CFU). Furthermore, the removal of ammonia and COD in BR2 was closely related to the number of the inoculated strain with a coefficient index (R2) up to 0.82 and 0.85 for ammonia and 相似文献
949.
真菌-细菌协同修复石油污染土壤的场地试验 总被引:14,自引:3,他引:14
采用真菌-细菌微生物制剂对中原油田不同类型石油污染土壤进行原位修复小试和中试.第1期场地试验从2004-11-05~2005-03-07,共122 d,柴油、润滑油和石油的TPH降解率分别为61.0%、48.3%和38.3%.中试从2005-05-18~2005-11-03,共历时161 d.人工污染土壤、新鲜型石油污染土壤和陈旧型污染土壤的石油烃降解率分别达到75.0%、46.0%和56.6%,而对照组的降解率分别为15.7%、20.0%和28.0%.分析了修复过程中土壤中石油烃各组分含量的变化,结果表明真菌-细菌微生物制剂对饱和烃、芳烃、沥青胶质及非烃化合物均具有较好地降解能力.分别在修复后的人工污染、新鲜型污染和陈旧型污染地块种植小麦,产量分别为当地正常耕地产量的100%、57.2%和70.3%.本研究进一步证实了真菌-细菌协同修复石油烃污染耕地的可行性及其良好的应用前景. 相似文献
950.
Ping ZHONG Zhifeng YANG Baoshan CUI Jingling LIU 《Frontiers of Environmental Science & Engineering in China》2008,2(1):73-80
In recent years, the hydrological characters of Baiyangdian Wetland have changed greatly, which, in turn, influence the biotic
component, the structure and function of the wetland ecosystem. In order to determine the demands for water resources of ecological
wetland system, a method of ecological water level coefficient was suggested to calculate the water resources demands for
wetland environment use. This research showed that the minimum coefficient is 0.94 and the optimal coefficient is more than
1.10. According to these two coefficients, the ecological water level and water quantity can be estimated. The results indicate
that the amount of the minimal and optimal eco-environmental water requirements are 0.87 × 108 and 2.78 × 108 m3 in average monthly, respectively, with the maximum eco-environmental water requirement in summer and the minimum in winter.
The annual change of eco-environment water demand is in according with the climate change and hydrological characters. The
method of ecological water level emphasizes that wetland ecosystem adapts to the hydrological conditions, so it can be used
in practice well.
__________
Translated from Acta Scientiae Circumstantiae, 2005, 25(8): 1,119–1,126 [译自: 环境科学学报] 相似文献