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1.
This paper is amongst the first to examine coopetition strategy for sustainable development at the network level. Companies who want to successfully implement complex innovative technologies that support sustainable development need to collaborate with other actors of the innovation ecosystem, including their competitors, so that they can develop standards, interoperable products, pool knowledge, and resources and bundle forces to compete against other technologies. Collaboration with competitors brings benefits, but also many risks. We investigated how firms cope with these risks when establishing an innovation ecosystem to implement a new technology in society. We conducted research in the Dutch smart grids sector and explored how these firms minimize inherent risks of coopetition. We found that system‐building actors in the Dutch smart grid field not only minimize inherent risks, but from the start of their collaboration they implement so‐called enablers to prevent these risks upfront.  相似文献   
2.
The physical, chemical, and biological dynamics under changing atmospheric conditions of Laguna Lake, Philippines were analyzed from intensive observations. Diel measurements were conducted for 48 continuous hours for both dry and wet tropical seasons in addition to fine resolution long-term monitoring. Results revealed significant vertical and diel variations of lake variables in spite of a shallow water depth (2.5 m) caused by the intense surface heating from solar irradiance (~800 W m?2) and accentuated by the lake's high turbidity (16–32 ftu). Late afternoon land-lake breeze (~5–7 m s?1) regularly breaks daytime thermal stratification, and convective cooling at night maintains isothermal condition until dawn of the next day. The stratified condition demonstrated a wind-driven, density-induced 2-layer current pattern with a windward moving epilimnion (~4 folds faster) and a compensating hypolimnetic flow in the general lake circulation direction. Laguna Lake was observed to have a dominating diel cycle but also undergoes significant seasonal limnological variations brought primarily by climate, hydrology, and its interaction with the adjacent sea. Significantly correlated variations of pH, chlorophyll-a and DO in the dry season were indicative of the higher biological activity associated with the intrusion of polluted waters from Metro Manila. The non-occurrence of thermal over-turn was observed to be regularly followed by bottom hypoxic conditions (2–4 mg L?1), indicative of the eutrophic condition of the lake and the importance of diel wind-induced mixing in the bottom supply of DO. Laguna Lake was found to be predominantly net heterotrophic (GPP:R < 1, NEP < 0).  相似文献   
3.
矿区生态系统健康评价理论与方法初探   总被引:2,自引:0,他引:2  
总结国内外有关生态系统健康理论与评价方法的研究现状及最新成果,界定矿区生态系统健康的内涵,分析影响矿区生态系统健康的原因,论述矿区生态系统健康评价指标体系与评价方法。  相似文献   
4.
为了明确不同区域和不同社会身份受益者对湿地生态系统服务的关注程度,为今后湿地生态系统服务的管理和政策制定提供依据,以吉林省莫莫格国家级自然保护区为研究对象,运用层次分析法从当地受益者、省域受益者、全国受益者和全球受益者四个层次以及年龄、收入、职业和教育背景等社会属性对莫莫格湿地的物质生产、调蓄洪水、固碳、气候调节、大气调节、水质净化、科研教育和休闲旅游等8项服务进行比较并打分,得出权重结果。结果表明:当地受益者和省域受益者最关注湿地的调蓄洪水服务,其权重值分别为0.276 1和0.266 7;全国受益者最关注湿地的气候调节服务,其权重值为0.223 8;全球受益者最关注湿地的固碳服务,其权重值为0.203 0。年龄越高的受益者更为关注水质净化和调蓄洪水等服务;文化程度越高的受益者对于湿地的科研教育的关注程度相对较高;生态相关职业的受益者更为关注生态相关的调蓄洪水、固碳、气候调节和科研教育服务。  相似文献   
5.
变化环境下河流健康评价研究进展   总被引:1,自引:0,他引:1       下载免费PDF全文
全球以温度升高为主要特征的气候变化耦合人类活动影响,造成了全球性变化环境背景下大范围的水资源危机、水环境污染和水生态退化问题,威胁河流健康,已成为当今世界各国急需解决的难题。针对变化环境背景,分别从河流健康的概念和内涵、河流健康评价的内容、方法及应用等方面,评述近年来国内外河流健康评价的研究进展。将河流健康定义为,特定时期一定的社会公众价值体系下,在保障河流自身基本生存需求的前提下,能够持续地为人类社会提供高效合理的生态服务功能,并实现服务功能综合价值最大化。在前人研究基础上,指出变化环境下河流健康评价研究存在的主要问题,如河流健康概念及内涵仍存在争议,河流健康变化的驱动机制尚不明确,河流健康评价的理论及方法有待完善,河流健康评价实践滞后及评价结果未能有效指导河流管理等。提出变化环境下河流健康评价的发展趋势:以流域为基本空间尺度结合多时间尺度开展河流健康评价与调控研究,因地制宜开展河流健康评价指标体系及评价标准研究,开展基于3S等技术的河流健康评价研究,建立长期且全面的河流健康监测网络,科学界定河流健康的"基准点",以及开展河流健康评价与水资源调控的集成研究等。  相似文献   
6.
Fine particle clogging and faunal bioturbation are two key processes co-occurring in the hyporheic zone that potentially affect hyporheic exchange through modifications in the sediment structure of streambeds. Clogging results from excessive fine sediment infiltration and deposition in rivers, and it is known to decrease matrix porosity and potentially reduce permeability. Faunal bioturbation activity may compensate for the negative effect of clogging by reworking the sediment, increasing porosity, and preventing further infiltration of fines. Although both processes of clogging and bioturbation have received significant attention in the literature separately, their combined effects on streambed sediment structure are not well understood, mostly due to the lack of a standard methodology for their assessment. Here, we illustrate a novel methodology using X-ray computed tomography (CT), as proof of concept, to investigate how, together, clogging and bioturbation affect streambed porosity in a controlled flow-through flume. By visualising gallery formations of an upward conveyor macroinvertebrate; Lumbriculus variegatus as a model species, we quantified bioturbation activity in a clogged streambed, focusing on orientation, depth, and volume at downwelling and upwelling areas of the flume. Gallery creation increased the porosity of the streambed sediment, suggesting a potential improvement in permeability and a possible offset of clogging effects. We illustrate the promising use of X-ray CT as a tool to assess bioturbation in clogged streambeds, and the potential role of bioturbation activity supporting hyporheic exchange processes in streambeds, warranting further studies to understand the extent of bioturbation impacts in natural systems.  相似文献   
7.
River management based solely on physical science has proven to be unsustainable and unsuccessful, evidenced by the fact that the problems this approach intended to solve (e.g., flood hazards, water scarcity, and channel instability) have not been solved and long‐term deterioration in river environments has reduced the capacity of rivers to continue meeting the needs of society. In response, there has been a paradigm shift in management over the past few decades, towards river restoration. But the ecological, morphological, and societal benefits of river restoration have, on the whole, been disappointing. We believe that this stems from the fact that restoration overrelies on the same physical analyses and approaches, with flowing water still regarded as the universally predominant driver of channel form and structural intervention seen as essential to influencing fluvial processes. We argue that if river restoration is to reverse long‐standing declines in river functions, it is necessary to recognize the influence of biology on river forms and processes and re‐envisage what it means to restore a river. This entails shifting the focus of river restoration from designing and constructing stable channels that mimic natural forms to reconnecting streams within balanced and healthy biomes, and so levering the power of biology to influence river processes. We define this new approach as biomic river restoration.  相似文献   
8.
Construction activities within the wetted‐perimeter of rivers, referred to as in‐stream construction, are prevalent economically and environmentally motivated activities having direct interactions with sensitive lotic environments. Currently, there is a paucity of research related to in‐stream construction activities and their effects on aquatic ecosystems. In‐stream construction‐induced suspended sediment may result in harmful effects to aquatic flora and fauna. Regulatory frameworks worldwide focus primarily on concentration, with limited consideration for duration and no consideration for spatial extents of suspended sediment exposures. This research develops theoretical concentration, duration, and spatial extent exposure risk relationships for riverine ecosystems to demonstrate the influence of each mechanism during typical in‐stream construction activities. To reduce exposure risk, concentration and duration may be considered pragmatically, based on anticipated activity characteristics and site conditions. Spatial exposure characteristics are important to consider, as illustrated by our finding that activities located near the channel centerline may result in greater exposure risk than similar activities conducted near the streambank. Current regulatory frameworks worldwide do not sufficiently consider all exposure risk mechanisms present during in‐stream construction‐induced suspended sediment releases, possibly inhibiting efforts to reduce adverse environmental effects. This research improves our understanding of suspended sediment in lotic environments and may help environmental managers better evaluate and manage in‐stream construction activities.  相似文献   
9.
建湖县运用生态学原理,充分发挥资源潜力,建立了几种林─农复合生态系统,结构合理,能流物流流通合理、利用充分,取得了很好的生态效益与经济效益。  相似文献   
10.
We study contracts designed to remunerate a farmer for the production of an ecosystem service with the payment dependent on the results of the farmer’s actions and on weather conditions. Two contracts are proposed: the first takes into account both the results of the farmer’s actions and a weather variable that reflects the actual atmospheric conditions during the life of the contract; the second bases the payment on the results alone incorporating only the average effect of weather. Social welfare is optimal when both the results and the specific atmospheric conditions are taken into account; however, this type of contract may be less acceptable to the farmer due to his perception of the level of risk involved.We thank two referees for valuable comments.  相似文献   
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