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Articles

Determining overall water quality related to anthropogenic influences across freshwater systems of Thailand

Pages 132-151 | Received 09 Oct 2015, Accepted 13 Jan 2016, Published online: 24 Feb 2016

References

  • Akter, A. & Babel, M. S. (2012). Hydrological modeling of the Mun River basin in Thailand. Journal of Hydrology, 452–453, 232–246. doi:10.1016/j.jhydrol.2012.05.059.
  • Apinan, V. (2000). Agricuture’s influence on water quality in lower northeastern Thailand. In Water Quality Management and Control of Water Pollution.Water Reports (pp. 175–180). Rome, Italy: Food and Agriculture Organization of the United Nations. Retrieved from ftp://ftp.fao.org/agl/aglw/docs/wr21.pdf.
  • Bhutiani, R. & Khanna, D. R. (2007). Ecological study of river Suswa: modeling DO and BOD. Environmental Monitoring and Assessment, 125, 183–195.10.1007/s10661-006-9251-4
  • Biswas, A. K. & Seetharam, K. E. (2008). Achieving water security for Asia. International Journal of Water Resources Development, 24, 45–176. doi:10.1080/07900620701760556.
  • Bordalo, A. A., Nilsumranchit, W., & Chalermwat, K. (2001). Water quality and uses of the Bangpakong River (Eastern Thailand). Water Research, 35, 3635–3642. doi:10.1016/S0043-1354(01)00079-3.
  • Boyacioglu, H. l. (2007). Development of a water quality index based on a European classification scheme. Water SA, 33, 101–106.
  • Brown, R. M., McClelland, N. I., Deininger, R. A., & O’Connor, M. F. (1972). A water quality index – Crashing the psychological barrier. In W. A. Thomas (Ed.), Indicators of Environmental Quality, Vol. 1 (pp. 173–182). New York, NY: Springer, US.
  • Chen, Z., Zhu, Z., Yin, L., Wei, S., & Deng, L. (2015). The changing water quality characteristics from urban drinking water sources in Guangdong, China. Water Resources Management, 29, 987–1002. doi: 10.1007/s11269-014-0855-0
  • Cox, B. A. (2003). A review of currently available in-stream water-quality models and their applicability for simulating dissolved oxygen in lowland rivers. Science of the Total Environment, 314–316, 335–377. doi:10.1016/S0048-9697(03)00063-9.
  • Docker, B. & Robinson, I. (2014). Environmental water management in Australia: experience from the Murray-Darling Basin. International Journal of Water Resources Development, 30, 64–177. doi:10.1080/07900627.2013.792039.
  • Dudgeon, D. (1992). Endangered ecosystems: a review of the conservation status of tropical Asian rivers. Hydrobiologia, 248, 167–191.10.1007/BF00006146
  • Horton, R. (1965). An index number system for rating water quality. Journal of Water Pollution Control Federation, 37, 300–306.
  • Hydro and Agro Informatics Institute. (2013). River basin group managment and major river basins. Retrieved from http://www.haii.or.th/wiki/index.php/.
  • Islam, N., Sadiq, R., & Rodriguez, M. J. (2013). Optimizing booster chlorination in water distribution networks: a water quality index approach. Environ Monit Assess, 185, 8035–8050.10.1007/s10661-013-3153-z
  • Jarernpornnipat, A., Pedersen, O., Jensen, K. R., Boromthanarat, S., Vongvisessomjai, S., & Choncheanchob, P. (2003). Sustainable management of shellfish resources in Bandon Bay, Gulf of Thailand. Journal of Coastal Conservation, 9, 135–146.10.1652/1400-0350(2003)009[0135:SMOSRI]2.0.CO;2
  • Kannel, P. R., Lee, S., Lee, Y.-S., Kanel, S. R., & Khan, S. P. (2007). Application of water quality indices and dissolved oxygen as indicators for river water classification and urban impact assessment. Environmental Monitoring and Assessment, 132, 93–110.10.1007/s10661-006-9505-1
  • Ki, S. J., Lee, Y. G., Kim, S.-W., Lee, Y.-J., & Kim, J. H. (2007). Spatial and temporal pollutant budget analyses to-ward the total maximum daily loads management for the Yeongsan watershed in Korea. Water Science & Technology, 55, 367–374.
  • Kruawal, K., Sacher, F., Werner, A., Müller, J., & Knepper, T. P. (2005). Chemical water quality in Thailand and its impacts on the drinking water production in Thailand. Science of the Total Environment, 340, 57–70. doi:10.1016/j.scitotenv.2004.08.008.
  • Lai, Y. C., Yang, C. P., Hsieh, C. Y., Wu, C. Y., & Kao, C. M. (2011). Evaluation of non-point source pollution and river water quality using a multimedia two-model system. Journal of Hydrology, 409, 583–595. doi:10.1016/j.jhydrol.2011.08.040.
  • Landwehr, J. M. (1974). Water quality indices construction and analysis. (Ph.D. Thesis), University of Michigan, Ann Arbor, Michigan, USA.
  • Liu, Z., Kieffer, J. M., Kingery, W. L., Huddleston, D. H., & Hossain, F. (2007). Watershed modeling of dissolved oxygen and biochemical oxygen demand using a hydrological simulation Fortran program. Journal of Environmental Science and Health Part A: Toxic/Hazardous Substances and Environmental Engineering, 42, 2023–2032. doi:10.1080/10934520701629740.
  • Massoud, M. A. (2012). Assessment of water quality along a recreational section of the Damour River in Lebanon using the water quality index. Environmental Monitoring and Assessment, 184, 4151–4160.10.1007/s10661-011-2251-z
  • Meksumpun, C. & Meksumpun, S. (2008). Integration of aquatic ecology and biological oceanographic knowledge for development of area-based eutrophication assessment criteria leading to water resource remediation and utilization management: a case study in Tha Chin, the most eutrophic river of Thailand. Water Science & Technology, 58, 2303–2311.
  • Muttamara, S. & Sales, C. L. (1994). Water quality management of the Chao Phraya River (a case study). Environmental Technology, 15, 501–516. doi:10.1080/09593339409385457.
  • National Environment Board. (1994). Notification No. 8: Surface water quality standard, the 1992 Thailand Enhancement and Conservation of National Environmental Quality Act (in Thai) Royal Thai government gazette, 111 (16), 73–81 (24 February 1994).
  • Oracle America Inc. (2013). Oracle(R) crystal ball: Predictor user’s guild. CA: Redwood City.
  • Parris, K. (2011). Impact of agriculture on water pollution in OECD countries: Recent trends and future prospects. International Journal of Water Resources Development, 27, 33–52. doi:10.1080/07900627.2010.531898.
  • Pascual-Ferrer, J., Pérez-Foguet, A., Codony, J., Raventós, E., & Candela, L. (2014). Assessment of water resources management in the Ethiopian Central Rift Valley: environmental conservation and poverty reduction. International Journal of Water Resources Development, 30, 572–587. doi:10.1080/07900627.2013.843410.
  • PCD. (2004). Acts, laws, and standards related to pollution control (in Thai). Retrieved from http://www.pcd.go.th/info_serv/reg_std_water.html
  • PCD. (2008). The determination of pollution carrying capacity for the Chaopraya River (in Thai) ( Report No. PCD.02/204. No. 1/3). Bangkok.
  • Radwan, M., Willems, P., El-Sadex, A., & Berlamont, J. (2003). Modelling of dissolved oxygen and biochemical oxygen demand in river water using a detailed and a simplified model. International Journal of River Basin Management, 1, 97–103. doi:10.1080/15715124.2003.9635196.
  • Ragsdale, C. T. (2001). Spreadsheet modeling and decision analysis (3rd ed.). New York, NY: South-Western College Publishing.
  • Rajankar, P. N., Tambekar, D. H., & Wate, S. R. (2011). Groundwater quality and water quality index at Bhandara District. Environmental Monitoring and Assessment, 179, 619–625.10.1007/s10661-010-1767-y
  • Rouse, M. (2014). The worldwide urban water and wastewater infrastructure challenge. International Journal of Water Resources Development, 30, 20–27. doi:10.1080/07900627.2014.882203.
  • Royal Institute. (2007). Geographic region division. Retrieved from http://www.royin.go.th/th/knowledge/detail.php?ID=1378.
  • Said, A., Stevens, D. K., & Sehlke, G. (2004). Environmental assessment: An innovative index for evaluating water quality in streams. Environmental Management, 34, 406–414.10.1007/s00267-004-0210-y
  • Saktaywin, W. (2010). Water Quality Management. Retrieved from http://infofile.pcd.go.th/mgt/AIT14Dec10_Water.pdf?CFID=1409705&CFTOKEN=64205065
  • Sangsurasak, C., Hsieh, H.-N., Wongphathanakul, W., & Wirojanagud, W. (2006). Water quality modeling in the Nam Pong River. Notheast Thailand. ScienceAsia, 32, 71–81. doi:10.2306/scienceasia1513-1874.2006.32.071.
  • Schaffner, M., Bader, H.-P., & Scheidegger, R. (2009). Modeling the contribution of point sources and non-point sources to Thachin River water pollution. Science of the Total Environment, 407, 4902–4915. doi:10.1016/j.scitotenv.2009.05.007.
  • Singkran, N., Yenpiem, A., & Sasitorn, P. (2010). Determining water conditions in the northeastern rivers of Thailand using time series and water quality index models. Journal of Sustainable Energy & Environment, 1, 47–58.
  • Sthiannopkao, S., Takizawa, S., Homewong, J., & Wirojanagud, W. (2007). Soil erosion and its impacts on water treatment in the northeastern provinces of Thailand. Environment International, 33, 706–711. doi:10.1016/j.envint.2006.12.007.
  • Thaipichitburapa, P., Meksumpun, C., & Meksumpun, S. (2010). Province-based self-remediation efficiency of the Tha Chin river basin, Thailand. Water Science & Technology, 62, 594–602.
  • Thanapakpawin, P., Richey, J., Thomas, D., Rodda, S., Campbell, B., & Logsdon, M. (2007). Effects of landuse change on the hydrologic regime of the Mae Chaem river basin. NW Thailand. Journal of Hydrology, 334, 215–230. doi:10.1016/j.jhydrol.2006.10.012.

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