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441.
Progress of the Indian economy is threatened by the impact of climate change. Generation of urban heat islands (UHIs), waning of urban green cover, increase in carbon emissions and air pollution deteriorate the living environment. Rise in urban temperatures and heat stress induced mortality remain major concerns. Although the National Action Plan on Climate Change emphasises the national missions of ‘enhanced energy efficiency’, and ‘green India’, little research has been devoted to explore the passive cooling potential of urban greenery in India, thus lending uniqueness to this study. The manifestations of unplanned urban development (UHIs, escalated carbon emissions, air pollution) are discussed and corroborated with identification of contributory factors. Contemporary greening practices and bye-laws in four major Indian cities (New Delhi, Pune, Chennai, and Visakhapatnam) are analysed and compared with global best practices. The findings are used to propose planning guidelines which are expected to assist in consolidating natural sustainability of emerging economies. 相似文献
442.
分布式认知理论框架下农户土地转出意愿影响因素研究——基于SEM模型的武汉城市圈典型地区实证分析 总被引:3,自引:0,他引:3
基于分布式认知理论,从"个人力"、"地域力"、"文化力"三个层次构建农户土地流转认知的影响因素理论框架,利用"武汉城市圈"典型地区土地流转调查数据构建结构方程模型(Structural Equation Model,SEM),定量分析各影响因素在农户土地流转认知中的作用。研究证实:不同农户认知群体之间存在不同流转认知偏好,"无文化的老农民"相对于"有文化的年轻职业者"在土地流转认知中更加保守;农户对土地的需求普遍偏向土地的资产属性和财产权利,农村土地流转具备内在动力;然而,出于对土地社会保障功能的需求,农户不会因为其家庭生产方式和经济来源明显脱离土地而产生强烈的土地转出愿意,农户的家庭生计条件及"土地情节"在一定程度上制约了土地流转;村镇干部"取信于民"是农户获得"安全感",克服风险规避心理促进土地流转认知的最重要因素;流转价格是对农户在土地流转中物质与精神"双重损失"的资金补偿,两者的匹配程度对农户的认知具有重要作用。在此基础上,得出要规范流转程序、健全流转监督机制、保护农民利益,加强农村社会保障制度建设以确保农民获得公平的社会保障,加快推进和支持农村教育以提高农村劳动力素质,建立和完善土地流转制度保障和农业经营扶持机制等政策启示。 相似文献
443.
Balancing urban growth and ecological conservation: A challenge for planning and governance in China
China has high biodiversity and is rapidly urbanizing. However, there is limited understanding of how urban expansion in the country is likely to affect its habitats and biodiversity. In this study, we examine urban expansion patterns and their likely impacts on biodiversity in China by 2030. Our analysis shows that most provinces are expected to experience urban expansion either near their protected areas or in biodiversity hotspots. In a few provinces such as Guangdong in the south, urban expansion is likely to impinge on both protected areas and biodiversity hotspots. We show that policies that could facilitate the integration of natural resource protection into urban planning exist on paper, but the prevailing incentives and institutional arrangements between the central and local governments prevent this kind of integration. Removing these obstacles will be necessary in order to safeguard the country’s rich biodiversity in light of the scale of urbanization underway. 相似文献
444.
Whether a city develops into a more compact one with a higher density or a more sprawling one may affect multiple aspects of the urban environment, including ecosystem health, greenhouse gas emissions, and quality of life. Using panel data gathered from China's cities from 2000 to 2010, we take advantage of the significant variation in the temporal change of density across cities to estimate the relationship between gross urban population density and multiple indicators of urban greenness. Fixed‐effects estimates support the widely held belief that density improves air quality and reduces the per capita carbon footprint. Results also suggest that higher density reduces the growth of road infrastructure and vehicle ownership and promotes walking. While density often translates into proximity and accessibility, higher density does reduce a city's per capita urban park and green space. This study strengthens the urban policy and planning literature with much needed longitudinal evidence. Our overall findings support higher density as opposed to lower density urban development in China. 相似文献
445.
Manolis Mandalakis 《Environmental pollution (Barking, Essex : 1987)》2009,157(4):1227-1233
Ambient concentrations, gas/particle partitioning and particle-size distribution of polybrominated diphenyl ethers (PBDEs) were investigated in two urban areas (Athens and Heraklion) of Greece. Atmospheric (gas + particle) concentrations of ∑PBDE varied from 21 to 30 pg m−3 in the center of Athens and from 4 to 44 pg m−3 in the suburbs of Heraklion. A predominance of particulate PBDEs was observed in Athens (71-76% in particles), whereas the opposite was evident in Heraklion (69-92% in gas phase). In both urban areas, PBDE particle-size distribution featured a distinct enrichment in smaller particles. A similar trend was also observed in aerosols of a background marine site. For all sampling sites, more than 46% of ∑PBDE was associated with particles of <0.57 μm in diameter. Our results imply that particulate PBDEs may have long atmospheric residence time and they may be capable of reaching the deeper parts of the human respiratory system. 相似文献
446.
Stefan Norra 《Environmental science and pollution research international》2009,16(5):539-545
Background, aim, and scope In 1875, the geoscientist Walter Suess introduced several spheres, such as the lithosphere and the atmosphere to promote a
comprehensive understanding of the system earth. Since then, this idea became the dominating concept for the understanding
of the distribution of chemical elements in the system earth. Meanwhile, due to the importance of human beings on global element
fluxes, the term anthroposphere was introduced. Nevertheless, in face of the ongoing urbanization of the earth, this concept
is not any more adequate enough to develop a comprehensive understanding of global element fluxes in and between solid, liquid,
and gaseous phases. This article discusses a new concept integrating urbanization into the geoscientific concept of spheres.
Main features No geological exogenic force has altered the earth’s surface during the last centuries in such an extent as human activity.
Humans have altered the morphology and element balances of the earth by establishing agrosystems first and urban systems later.
Currently, urban systems happen to become the main regulators for fluxes of many elements on a global scale due to ongoing
industrial and economic development and a growing number of inhabitants. Additionally, urban systems are constantly expanding
and cover more and more former natural and agricultural areas. For nature, urban systems are new phenomena, which never existed
in previous geological eras. The process of the globe’s urbanization concurrently is active with the global climate change.
In fact, urban systems are a major emitter for climate active gases. Thus, beside the global changes in economy and society,
urbanization is an important factor within the global change of nature as is already accepted for climate, ecosystems, and
biodiversity.
Results Due to the fact that urbanization has become a global process shaping the earth and that the urban systems are globally cross-linked
among each other, a new geoscientific sphere has to be introduced: the astysphere. This sphere comprises the parts of the
earth influenced by urban systems. Accepting urbanization as global ongoing process forming the astysphere comprehensively
copes with the growing importance of urbanization on the creation of present geologic formations.
Discussion Anthropogenic activities occur mainly in rural and urban environments. For long lasting periods of human history, human activities
mainly were focused on hunting and agriculture, but since industrialization, urbanized areas became increasingly important
for the material and energy fluxes of earth. Thus, it seems appropriate to classify the anthroposphere into an agriculturally
and an urban-dominated sphere, which are the agrosphere (Krishna 2003) and the astysphere (introduced by Norra 2007).
Conclusions We have to realize that urban systems are deposits, consumers, and transformers of resources interacting among each other
and forming a network around the globe. Since the future of human mankind depends on the sustainable use of available resources,
only a global and holistic view of the cross-linked urban systems forming together the astysphere provide the necessary geoscientific
background understanding for global urban material and energy fluxes. If we want to ensure worth-living conditions for future
generations of mankind, we have to develop global models of the future needs for resources by the global metasystem of urban
systems, called astysphere.
Perspectives The final vision for geoscientific research on the astysphere must be to design models describing the global process of urbanization
of the earth and the development of the astysphere with respect to fluxes of materials, elements, and energy as well as with
respect to the forming of the earth’s face. Besides that, just from the viewpoint of fundamental research, the geoscientific
concept of spheres has to be complemented by the astysphere if this concept shall fully represent the system earth.
相似文献
Stefan NorraEmail: |
447.
K.G. Andersson T. Mikkelsen P. Astrup S. Thykier-Nielsen L.H. Jacobsen S.C. Hoe S.P. Nielsen 《Journal of environmental radioactivity》2009,100(12):1005-1011
The ARGOS decision support system is currently being extended to enable estimation of the consequences of terror attacks involving chemical, biological, nuclear and radiological substances. This paper presents elements of the framework that will be applied in ARGOS to calculate the dose contributions from contaminants dispersed in the atmosphere after a ‘dirty bomb’ explosion. Conceptual methodologies are presented which describe the various dose components on the basis of knowledge of time-integrated contaminant air concentrations. Also the aerosolisation and atmospheric dispersion in a city of different types of conceivable contaminants from a ‘dirty bomb’ are discussed. 相似文献
448.
K.M. Thiessen K.G. Andersson B. Batandjieva J.-J. Cheng W.T. Hwang J.C. Kaiser S. Kamboj M. Steiner J. Tomás D. Trifunovic C. Yu 《Journal of environmental radioactivity》2009
The Urban Remediation Working Group of the International Atomic Energy Agency's EMRAS (Environmental Modelling for Radiation Safety) program was organized to address issues of remediation assessment modelling for urban areas contaminated with dispersed radionuclides. The present paper describes the second of two modelling exercises. This exercise was based on a hypothetical dispersal of radioactivity in an urban area from a radiological dispersal device, with reference surface contamination at selected sites used as the primary input information. Modelling endpoints for the exercise included radionuclide concentrations and external dose rates at specified locations, contributions to the dose rates from individual surfaces, and annual and cumulative external doses to specified reference individuals. Model predictions were performed for a “no action” situation (with no remedial measures) and for selected countermeasures. The exercise provided an opportunity for comparison of three modelling approaches, as well as a comparison of the predicted effectiveness of various countermeasures in terms of their short-term and long-term effects on predicted doses to humans. 相似文献
449.
S.H.L. Yim J.C.H. Fung A.K.H. Lau S.C. Kot 《Atmospheric environment (Oxford, England : 1994)》2009,43(32):4982-4994
The objective of this study is to investigate the air ventilation impacts of the so called “wall effect” caused by the alignment of high-rise buildings in complex building clusters. The research method employs the numerical algorithm of computational fluid dynamics (CFD – FLUENT) to simulate the steady-state wind field in a typical Hong Kong urban setting and investigate pollutant dispersion inside the street canyon utilizing a pollutant transport model. The model settings of validation study were accomplished by comparing the simulation wind field around a single building block to wind tunnel data. The results revealed that our model simulation is fairly close to the wind tunnel measurements. In this paper, a typical dense building distribution in Hong Kong with 2 incident wind directions (0° and 22.5°) is studied. Two performance indicators are used to quantify the air ventilation impacts, namely the velocity ratio (VR) and the retention time (Tr) of pollutants at the street level. The results indicated that the velocity ratio at 2 m above ground was reduced 40% and retention time of pollutants increased 80% inside the street canyon when high-rise buildings with 4 times height of the street canyon were aligned as a “wall” upstream. While this reduction of air ventilation was anticipated, the magnitude is significant and this result clearly has important implications for building and urban planning. 相似文献
450.
Urban planning involves compromise between the diverse and often contradictory issues supported by the different stakeholders. The literature generally agrees on the need to broaden the participation base to overcome this difficulty. However, participation should not be limited to problem solving, but should also take place in the problem setting phase. This paper proposes a participatory diagnosis process for structuring the problem setting phase. We describe an experiment in a participatory diagnosis conducted with the residents of a Geneva neighborhood. The experiment began by identifying the residents' concerns, which were then reformulated under broader issues. Some 20 spatial indicators were built using GIS tools, and were then applied in a second phase of resident consultations to assess the relative importance of each issue. The ensuing priority issues formed the core of the diagnosis. The approach emphasized comparison between the daily experiences of residents and so-called official information (i.e. census tract, traffic measurement, and so on). The residents were therefore involved in a learning process that allowed them to consolidate or modify their opinions. The process led to the emergence of a clearly defined collective awareness that supplanted individual aspirations. 相似文献