您所在的位置: 首页 >> 期刊 >> 遥感科学

遥感科学

《遥感科学》是IVY出版社旗下的一本关注遥感科学与技术的综合性国际期刊,主要刊登有关遥感基础理论,遥感技术发展、遥感应用等研究领域内最新进展的学术性论文、评论性文章和研究综述性文章,旨在为该领域内的专家、学者、科研人员、管理人员提供一个良好的传播、分享和探讨遥感信息科学领域研究进展的交流平台,反映学术前沿水平,促进学术交流,把握遥感技术理论和实践前沿、研究水平和发展方向。本刊可接收中、英文稿件。其中,中文稿件要有详细的英文标题、作者、单位…… 【更多】 《遥感科学》是IVY出版社旗下的一本关注遥感科学与技术的综合性国际期刊,主要刊登有关遥感基础理论,遥感技术发展、遥感应用等研究领域内最新进展的学术性论文、评论性文章和研究综述性文章,旨在为该领域内的专家、学者、科研人员、管理人员提供一个良好的传播、分享和探讨遥感信息科学领域研究进展的交流平台,反映学术前沿水平,促进学术交流,把握遥感技术理论和实践前沿、研究水平和发展方向。

本刊可接收中、英文稿件。其中,中文稿件要有详细的英文标题、作者、单位、摘要和关键词。初次投稿请作者按照稿件模板排版后在线投稿。稿件会经过严格、公正的同行评审步骤,录用的稿件首先发表在本刊的电子刊物上,然后高质量印刷发行。期刊面向全球公开征稿、发行,要求来稿均不涉密,文责自负。

ISSN Print:2329-8138

ISSN Online:2329-8146

Email:rss@ivypub.org

Website: http://www.ivypub.org/rss/

  0
  0

Paper Infomation

Study on Heat Island Effect of Wastewater Treatment Plants in Harbin based on Thermal Infrared Remote Sensing Images

Full Text(PDF, 5344KB)

Author: Yujie Feng, Chunyan Chai, Man-Sing Wong

Abstract: Heat island effect has been a significant factor contributing local climate change at the city level. As a necessary infrastructure in urban system, Wastewater Treatment Plants (WWTPs) have been recognized as a contributor to global climate change due to its greenhouse gas emissions and huge energy and resource consumption. But their impacts on local climate change have been hardly studied. Landsat TM/ETM+ images, infrared remote sensing imagery, were used to study heat island effect of nine WWTPs in Harbin by retrieving surface temperature during 2000-2013. Results showed that heat island intensity of nine WWTPs increase by 53% during the time. Principle Factor Analysis and multiple linear regressions showed that heat island intensity of WWTPs are positively correlated with treatment volumes, urban surface temperature and negatively correlated with discharge standards, construction condition and treatment process.

Keywords: Remote sensing; Waste Water Treatment Plants (WWTPs); Heat island effect; Landsat; Temperature retrieval

References:

[1] Li, Q.; Zhang, H.; Liu, X.; Huang, J. Urban heat island effect on annual mean temperature during the last 50 years in China [J]. Theoretical and Applied Climatology, 2004, 79: 165-174.

[2] 曹越, 王宏宇. 城市环境中遥感技术的应用研究[J]. 环境科学与管理, 2015, 40(3): 5-8.

[3] 刘红, 张清海, 林绍霞, 赵璐玥, 林昌虎. 遥感技术在水环境和大气环境监测中的应用研究进展[J]. 贵州农业科学, 2013, 41(1): 187-190.

[4] 陈哲, 屹立, 王美. 遥感技术在环境监测中的作用[J]. 北方环境, 2013, 29(4): 165-167.

[5] Wang, X.; Liu, J.; Ren, N.Q.; Yu, H.Q.; Lee, D.J.; Guo, X. Assessment of multiple sustainability demands for wastewater treatment alternatives: A refined evaluation scheme and case study [J]. Environmental science & technology, 2012, 46: 5542-5549.

[6] Corominas, L.; Foley, J.; Guest, J.S.; Hospido, A.; Larsen, H.F.; Morera, S.; Shaw, A. Life cycle assessment applied to wastewater treatment: State of the art [J]. Water research, 2013, 47: 5480-5492.

[7] Mo, W.; Zhang, Q. Can municipal wastewater treatment systems be carbon neutral [J] J. Environ. Manag. 2012(112): 360–367.

[8] 李欢, 金宜英, 李洋洋. 污水污泥处理的碳排放及其低碳化策略[J]. 土木建筑与环境工程, 2011, 33(2): 117-121.

[9] Chunyan Chai, Dawei Zhang, Yanling Yu, Yujie Feng, Man Sing Wong. Carbon footprint analyses of mainstream wastewater treatment technologies under different sludge treatment scenarios in China [J]. Water, 2015(7): 918-938.

[10] 国家发展和改革委员会应对气候变化司.中华人民共和国气候变化第二次国家信息通报[M]. 北京: 中国经济出版社, 2013: 59-62.

[11] Barsi, J.A.; Schott, J.R.; Palluconi, F.D.; Hook, S.J. SPIE: In Validation of a web-based atmospheric correction tool for single thermal band instruments[C/OL]. San Diego, California, USA, 2005: 58820E-1-58820E-7.

[12] Sobrino, J.A.; Raissouni, N.; Li, Z.-L. A comparative study of land surface emissivity retrieval from noaa data [J]. Remote Sensing of Environment, 75, 2001: 256-266.

[13] Becker, F. The impact of spectral emissivity on the measurement of land surface temperature from a satellite [J]. International Journal of Remote Sensing, 8, 1987: 1509-1522.

[14] Sobrino, J.A.; Jiménez-Muñoz, J.C.; Paolini, L. Land surface temperature retrieval from landsat TM5 [J]. Remote Sensing of Environment, 90, 2004: 434-440.

[15] Sobrino, J.A.; Jiménez-Muñoz, J.C. Surface emissivity retrieval from digital airborne imaging spectrometer data [J]. Journal of Geophysical Research, 107(23), 2002: 2401-2413.

[16] 覃志豪, 李文娟, 徐斌, 陈仲新, 刘佳. 陆地卫星TM6波段范围内地表比辐射率的估计[J]. 国土资源遥感, 3(61), 2004: 28-41.

[17] Weng, Q. Thermal infrared remote sensing for urban climate and environmental studies: Methods, applications, and trends [J]. ISPRS Journal of Photogrammetry and Remote Sensing, 64, 2009: 335-344.

[18] Schwarz, N.; Lautenbach, S.; Seppelt, R. Exploring indicators for quantifying surface urban heat islands of european cities with modis land surface temperatures [J]. Remote Sensing of Environment, 115, 2011: 3175-3186.

[19] Memon, R.A.; Leung, D.Y.C.; Liu, C.-H. An investigation of urban heat island intensity (UHII) as an indicator of urban heating [J]. Atmospheric Research, 94, 2009: 491-500.

Privacy Policy | Copyright © 2011-2024 Ivy Publisher. All Rights Reserved.

Contact: customer@ivypub.org