1.
Salomone, RJF . Agriculture and environment, life cycle assessment applied to coffee production: investigating environmental impacts to aid decision making for improvements at company level. Food Agric Environ. 2003;1:295-300.
Google Scholar2.
Woldesenbet, AG, Woldeyes, B, Chandravanshi, B. Characteristics of wet coffee processing waste and its environmental impact in Ethiopia. Int J Res Eng Sci. 2014;2:1-5.
Google Scholar3.
Beyene, A, Kassahun, Y, Addis, T, et al. The impact of traditional coffee processing on river water quality in Ethiopia and the urgency of adopting sound environmental practices. Environ Monit Assess. 2012;184:7053-7063.
Google Scholar |
Crossref |
Medline4.
Yemane Tekle, D, Hailu, AB, Wassie, TA, Tesema, AG. Effect of coffee processing plant effluent on the physicochemical properties of receiving water bodies, Jimma zone Ethiopia. Am J Environ Prot. 2015;4:83-90.
Google Scholar |
Crossref5.
Jan, CE, Ken, C. Review of Coffee Wastewater Characteristics and Approaches to Treatment. Project, “Improvement of Coffee Quality and Sustainability of Coffee Production in Vietnam.” German Technical Cooperation Agency (GTZ); 2010:1-10.
Google Scholar6.
Dragusanu, R, Giovannucci, D, Nunn, N. The economics of fair trade. J Econ Perspect. 2014;28:217-236.
Google Scholar |
Crossref |
ISI7.
Woldesenbet, AG, Woldeyes, B, Chandravanshi, BS. Bio-ethanol production from wet coffee processing waste in Ethiopia. Springerplus. 2016;5:1903.
Google Scholar |
Crossref |
Medline8.
APHA . Standard Methods for the Examination of Water and Wastewater. 21st ed. American Public Health Association; 2005.
Google Scholar9.
Stoddard, JL, Larsen, DP, Hawkins, CP, Johnson, RK, Norris, RH. Setting expectations for the ecological condition of streams: the concept of reference condition. Ecol Appl. 2006;16:1267-1276.
Google Scholar |
Crossref |
Medline10.
Gabriels, W, Lock, K, De Pauw, N, Goethals, PLM. Multimetric Macroinvertebrate Index Flanders (MMIF) for biological assessment of rivers and lakes in Flanders (Belgium). Limnologica. 2010;40:199-207.
Google Scholar |
Crossref11.
Gerber and Gebriel . Aquatic Invertebrates of South African Rivers, Field Guide, Institute for Water Quality Studies. Department of Water Affairs and Forestry; 2002.
Google Scholar12.
William Bouchard, R . Guide to Aquatic Invertebrate Families of Mongolia, Identification Manual for Students, Citizen Monitors, and Aquatic Resource Professionals. Saint Paul; 2012.
Google Scholar13.
Turkmen, G, Kazanci, N. Applications of various biodiversity indices to benthic macroinvertebrate assemblages in streams of a national park in Turkey. Rev Hydrol. 2010;3:111-125.
Google Scholar14.
Hilsenhoff, WL . Rapid field assessment of organic pollution with a family-level biotic index. J N Am Benthol Soc. 1988;7:65-68.
Google Scholar |
Crossref15.
Ijanu, EM, Kamaruddin, MA, Norashiddin, FA. Coffee processing wastewater treatment: a critical review on current treatment technologies with a proposed alternative. Appl Water Sci. 2020;10:11.
Google Scholar |
Crossref16.
Ethiopian Environmental Protection Authority (EEPA) . Provisional Standards for Industrial Pollution Control in Ethiopia. Prepared Under the Ecologically Sustainable Development (ESID) Project–US, ETH/99/068/Ehtiopia. EPA/UNIDO; 2003.
Google Scholar17.
WHO . Guidelines for Drinking Water Quality. 4th ed. WHO; 2011:678.
Google Scholar18.
Mosissa, T, Tegegne, D, Yohanne, M. Environmental flows risk assessment of effluent outfalls from conventional wet washed coffee refineries in Limu Kosa district of southwestern Ethiopia. Am J Environ Prot. 2016;5:199-207.
Google Scholar |
Crossref19.
Chapman, DV . Water Quality Assessments: A Guide to the Use of Biota, Sediments and Water in Environmental Monitoring. CRC Press; 1996.
Google Scholar |
Crossref20.
Haddis, A, Devi, R. Effect of effluent generated from coffee processing plant on the water bodies and human health in its vicinity. J Hazard Mater. 2008;152:259-262.
Google Scholar |
Crossref |
Medline21.
Bartram, J, Thyssen, N, Gowers, A. Water and Health in Europe: A Joint Report from the European Environment Agency and the WHO Regional Office for Europe. WHO Regional Office Europe; 2002.
Google Scholar22.
Galvão, AF, Matos, JS, Ferreira, FS, Correia, FN. Simulating flows in horizontal subsurface flow constructed wetlands operating in Portugal. Ecol Eng. 2010;36:596-600.
Google Scholar |
Crossref23.
Frazer-Williams, RA . A review of the influence of design parameters on the performance of constructed wetlands. J Chem Eng. 1970;25:29-42.
Google Scholar |
Crossref24.
Burgess, GL . Effects of heavy metals on benthic macroinvertebrates in the Cordillera Blanca, Peru. Master’s thesis. WWU Graduate School Collection; 2015.
https://cedar.wwu.edu/wwuet/414 Google Scholar25.
Yohannes, H, Elias, E. Contamination of rivers and water reservoirs in and around Addis Ababa city and actions to combat it. Environ Pollut Clim Chang. 2017;1:8.
Google Scholar
Comments (0)