Investigation on the Purification Efficiency of Rainwater by Green Land

2014 ◽  
Vol 881-883 ◽  
pp. 556-559
Author(s):  
Zhi Yong Liu ◽  
Xiao Jun Xu ◽  
Xin Zheng ◽  
Wen Jiao Dai

Rainwater utilization system using green technology, not only can reduce the pressure of rainstorm on the city drainage system, and replenish groundwater resources, but also control urban non-point source pollution. At present, rainwater indirect utilization is widely used. This research explored the Kunming urban green space system typical for each pollutant runoff reduction effect, purifying regularity and removal mechanism in order to provide a theoretical basis for its application.

2014 ◽  
Vol 955-959 ◽  
pp. 4050-4053
Author(s):  
Jia Xiu Sun Sun ◽  
Xiao Qing Zhou

The serious eco-environmental hazard affecting hilly city have appeared. we should input more investment into environmental protection, and develop green technology and recycling economy. In order to guarantee ecological security, the countermeasures for ecological infrastructure construction are put forward, establishing the green space system including suburban forest, farmland and green space, recovering wetland ecosystem, optimizing industrial structure and urban spatial distribution, and developing recycling economy, establishing ecological infrastructure monitoring network and information forecast system, carrying out ecological management.


2020 ◽  
Vol 12 (23) ◽  
pp. 10089
Author(s):  
Andre M. Eanes ◽  
Todd R. Lookingbill ◽  
Jeremy S. Hoffman ◽  
Kelly C. Saverino ◽  
Stephen S. Fong

Air pollution and the urban heat island effect are consistently linked to numerous respiratory and heat-related illnesses. Additionally, these stressors disproportionately impact low-income and historically marginalized communities due to their proximity to emissions sources, lack of access to green space, and exposure to other adverse environmental conditions. Here, we use relatively low-cost stationary sensors to analyze PM2.5 and temperature data throughout the city of Richmond, Virginia, on the ten hottest days of 2019. For both hourly means within the ten hottest days of 2019 and daily means for the entire record for the year, the temperature was found to exhibit a positive correlation with PM2.5. Analysis of hourly means on the ten hottest days yielded a diurnal pattern in which PM2.5 levels peaked in the early morning and reached their minima in the mid-afternoon. Spatially, sites exhibiting higher temperatures consistently had higher PM2.5 readings, with vulnerable communities in the east end and more intensely developed parts of the city experiencing significantly higher temperatures and PM2.5 concentrations than the suburban neighborhoods in the west end. These findings suggest an uneven distribution of air pollution in Richmond during extreme heat events that are similar in pattern but less pronounced than the temperature differences during these events, although further investigation is required to verify the extent of this relationship. As other studies have found both of these environmental stressors to correlate with the distribution of green space and other land-use factors in cities, innovative and sustainable planning decisions are crucial to the mitigation of these issues of inequity going forward.


2014 ◽  
Vol 641-642 ◽  
pp. 537-543
Author(s):  
Chen Wang ◽  
Yuan Xu Meng

Green space system planning is the most direct method to improve urban ecological environment from the perspective of planning. However, traditional way of green space system planning exposes its limitation of paying attention to only urban area, accompanied by the prominent appeal for the enhancement of urban ecological environment and living environment quality. Therefore, the study gives a preliminary discussion on the method of green spaces system planning based on GI theory by introducing the concept and characteristic of GI, and proposes urban-rural integrated green space environment formed by the organic combination of Hubs, Links, and Sites and an urban green space system able to keep the integrality and consecutiveness of natural ecological process, which offers reference for green space system planning of the new era.


2011 ◽  
Vol 243-249 ◽  
pp. 6672-6676
Author(s):  
Chun Rong Zhao ◽  
Ying Zhang

The low-carbon urban construction is an important carrier of the energy saving and emmission reduction,which will lead to an new trend of future city construction.while regarded as the important component of low-carbon construction, low-carbon ecology community will promote city sustainable development. And it is characteristic of the naturalness, economy and sociality. Based on present situation of chinese ecology community construction, some strategies are presented, incuding that the first is urban planning at macro-level; the second is spatial plan, transportation system, service facilities and green space system at medium measure; the third is water environment plan, energy plan, architectural design from at micro level; the fourth is community housing structure and public participation from social policies.


2013 ◽  
Vol 869-870 ◽  
pp. 99-103
Author(s):  
Mei Qiang Wan
Keyword(s):  

The foothills land can be used as different methods by the gradient 30 and 45. The low gradient land plans as the scenic greenbelt or parks for people; the high gradient land plans as green space for wild. Best use for foothills can enhance the city plan beyond hills.


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