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11.
基于层次分析法的再生水补给型城市河湖水生态修复技术评价指标体系及其应用 总被引:1,自引:0,他引:1
由于城市水资源严重紧缺,再生水作为补给城市河湖景观水体的重要水源,用量逐年加大,随之带来的水环境问题也引起关注,往往需要采用适宜的技术和工程改善水质。然而对于现有的生态修复技术和工程,缺少相应的评价方法和指标体系对其修复效果和工程技术进行综合有效的评估。通过大量的文献及实地调研,结合再生水补给型城市河湖的特点,构建了包含环境效益、技术管理与维护及社会经济功能3个系统、7个准则和19个指标的再生水补给型城市河湖水生态修复技术评价指标体系,采用群组决策的层次分析法(AHP)确定各指标的权重,重要性排序前5位的指标依次是:藻类多样性、水生植物覆盖度、DO、TLI、PI(COD)。以北京市陶然亭湖水生态修复工程为例进行综合评价,研究结果表明,现阶段陶然亭湖水生态修复工程综合评分为3.35分,评价结果属于良。陶然亭湖经过水体生态修复后,水生态系统结构较好恢复;所选工程技术适宜;人员及经济投入适中;对周边环境产生较大正面影响;工程可优后进行推广 相似文献
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以农业废弃物秸秆和绿色植物种子为主要原料,辅以少量淀粉、表面活性剂、碱等助剂,研制出一种常温下即可快速配制的生态修复型环保抑尘剂。通过对抑尘剂粘度、渗透性等性能的评价,确定抑尘剂制备原料秸秆、淀粉、表面活性剂和碱的最佳质量比为20∶7∶2∶5。抑尘剂的制备工艺简单、成本低廉,且抗风蚀抗雨淋效果较好。在5级风蚀条件下,抑尘剂的抗风蚀率大于99%。经过中雨 (降雨量20 mm·d−1) 雨淋后,喷洒抑尘剂的壳体依旧紧实,且结壳厚度未发生变化;对喷洒抑尘剂的场地进行生态修复效果表征,场地中所选种子生长茂盛,这表明其修复效果显著。进一步地,便携式风洞(PI-SWERL)测试结果表明,在抑尘剂喷洒60 d后,经过风速17.2 m·s−1的风力侵蚀,抑尘剂的抑尘效率仍可保持在90%以上。本研究可为开发绿色、可持续的抑尘技术提供参考。 相似文献
14.
针对感潮平原中心城区河道存在往复流现象带来的水质波动、生态岸线差、生态系统稳定性不足等问题,开展以基于生物屏障技术耦合水生动植物生态系统构建为主的全面系统的近自然生态修复集成技术及示范研究。注重源头削减和末端综合治理,通过集成构建河道水质稳定技术、海绵设施生态岸线、优化水生态系统措施等技术体系,并选取上海市中心城区典型河道进行示范应用及效果跟踪。结果表明,修复后河道水质和感官效果得到了极大提升,化学需氧量(COD)、氨氮、总磷、浊度/悬浮物(SS)各均值较未处理河道水质均值分别降低约23%、41%、35%、51%/52%,5大类抗生素除了洁霉素、克林霉素和磺胺吡啶外均未检出,河道水质从在地表水IV类水质上下波动稳定达到IV类(总氮指标除外)。 相似文献
15.
Use of Microbial Community to Evaluate Performance of a Wetland System in Treating Pb/Zn Mine Drainage 总被引:2,自引:0,他引:2
The performance of a wetland system in treating lead (Pb)/zinc (Zn) mine drainage was evaluated by using the polyurethane
foam unit (PFU) microbial community (method), which has been adopted by China as a standardized procedure for monitoring water
quality. The wetland system consisted of four cells with three dominant plants: Typha latifolia, Phragmites australis and Paspalum distichum. Physicochemical characteristics [pH, EC, content of total suspended solid (TSS) and metals (Pb, Zn, Cd, and Cu)] and PFU
microbial community in water samples had been investigated from seven sampling sites. The results indicated that the concentrations
of Pb, Zn, Cd, Cu, and TSS in the mine drainage were gradually reduced from the inlet to the outlet of the wetland system
and 99%, 98%, 75%, 83%, and 68% of these metals and TSS respectively, had been reduced in concentration after the drainage
passed through the wetland system. A total of 105 protozoan species were identified, the number of protozoa species and the
diversity index (DI) gradually increased, while the heterotrophic index (HI) gradually decreased from the inlet to the outlet
of the wetland system. The results indicated that DI, HI, and total number species of protozoa could be used as biological
indicators indicating the improvement of water quality. 相似文献
16.
Improving the Urban Stream Restoration Effort: Identifying Critical Form and Processes Relationships 总被引:1,自引:0,他引:1
Stream restoration projects are often based on morphological form or stream type and, as a result, there needs to be a clear tie established between form and function of the stream. An examination of the literature identifies numerous relationships in naturally forming streams that link morphologic form and stream processes. Urban stream restoration designs often work around infrastructure and incorporate bank stabilization and grade control structures. Because of these imposed constraints and highly altered hydrologic and sediment discharge regimens, the design of urban channel projects is rather unclear. In this paper, we examine the state of the art in relationships between form and processes, the strengths and weaknesses of these existing relationships, and the current lack of understanding in applying these relationships in the urban environment. In particular, we identify relationships that are critical to urban stream restoration projects and provide recommendations for future research into how this information can be used to improve urban stream restoration design. It is also suggested that improving the success of urban restoration projects requires further investigation into incorporating process-based methodologies, which can potentially reduce ambiguity in the design and the necessity of using an abundant amount of in-stream structures. 相似文献
17.
Vellidis G Smith MC Leibowitz SG Ainslie WB Pruitt BA 《Environmental management》2003,31(2):0301-0312
In a climate of limited resources, it is often necessary to prioritize restoration efforts geographically. The synoptic approach
is an ecologically based tool for geographic prioritization of wetland protection and restoration efforts. The approach was
specifically designed to incorporate best professional judgment in cases where information and resources are otherwise limited.
Synoptic assessments calculate indices for functional criteria in subunits (watersheds, counties, etc.) of a region and then
rank the subunits. Ranks can be visualized in region-scale maps which enable managers to identify areas where efforts optimize
functional performance on a regional scale. In this paper, we develop a conceptual model for prioritizing watersheds whose
wetlands can be restored to reduce total sediment yield at the watershed outlet. The conceptual model is designed to rank
watersheds but not individual wetlands within a watershed. The synoptic approach is valid for applying the sediment yield
reduction model because there is high demand for prioritizing disturbed wetlands for restoration, but there is limited, quantitative,
accurate information available with which to make decisions. Furthermore, the cost of creating a comprehensive database is
prohibitively high. Finally, because the model will be used for planning purposes, and, specifically, for prioritizing based
on multiple decisions rather than optimizing a single decision, the consequence of prioritization errors is low. Model results
cannot be treated as scientific findings. The conclusions of an assessment are based on judgement, but this judgement is guided
by scientific principles and a general understanding of relevant ecological processes. The conceptual model was developed
as the first step towards prioritizing of wetland restoration for sediment yield reduction in US EPA Region 4. 相似文献
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19.
典型的农牧交错带——岱海流域是我国“两屏三带”生态安全战略格局中北方防沙带的重要组成部分,也是京津冀地区生态屏障的重要组成部分,其生态环境保护意义重大。针对岱海流域独特的地理特征和生境状况,围绕着水量减小和生态退化两大核心问题,梳理了其水量、水质、水生态等方面的优先问题清单;以保障岱海流域生态安全为核心目标,按照优化生态空间管控与分区分类精准修复相结合的思路,构建了“一湖三区”的国土空间管控体系和“两增、两减、三平衡”的山水林田湖草生态保护修复工程体系,以期增强岱海流域生态服务功能,促进农牧交错带生态脆弱区域经济社会发展。 相似文献
20.
何舸 《环境工程技术学报》2023,13(3):1234-1241
为探索系统性、大尺度的山体国土空间生态修复新路径,以南宁市为例,通过构建山体生态系统服务功能评价指标体系并开展山体生态功能评价,划分山体生态功能分区,制定山体生态修复与提升方案,建立了以“本底评价—功能分区—修复提升”为一体的区域山体国土空间生态修复规划方法。结果显示,研究区主要山体面积占比约37.26%,在空间上集中连片分布;山体生态功能高度和中度重要区占比达85%,是山体生态保护修复的核心区域;研究区可划分为山体生态保育区、水源地保护区、生态游憩协调区等8类分区,分别执行相应的管控措施;统筹保护与发展需求,制定了速生桉种植调整、山体群落结构优化、生态游憩带构建、受损山体生态修复等山体修复提升规划方案。区域山体国土空间生态修复规划应协调生态保护修复与城市发展需求,统筹山体资源的保护、修复和利用,分区、分类制定方案。
相似文献