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Erschienen in: Clean Technologies and Environmental Policy 2/2014

01.02.2014 | Review

Fog water as an alternative and sustainable water resource

verfasst von: Jeremy K. Domen, William T. Stringfellow, Mary Kay Camarillo, Shelly Gulati

Erschienen in: Clean Technologies and Environmental Policy | Ausgabe 2/2014

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Abstract

As the world’s population and demand for fresh water increases, new water resources are needed. One commonly overlooked aspect of the water cycle is fog, which is an important part of the hydrology of coastal, high-altitude, and forested regions. Fog water harvesting is being investigated as a sustainable alternative water resource for drinking water and reforestation. Fog water harvesting involves using mesh nets to collect water as fog passes through them. The materials of these nets, along with environmental factors such as wind speed, influence the volume of water collected. In this article, a review of current models for fog collection, designs, and applications of fog water harvesting is provided. Aspects of fog water harvesting requiring further research and development are identified. In regions with frequent fog events, fog water harvesting is a sustainable drinking water resource for rural communities with low per capita water usage. However, an analysis of fog water harvesting potential for the coastal areas of northern California (USA) showed that fog yields are too small for use as domestic water in areas with higher household water demands. Fog water shows particular promise for application in reforestation. Fog water irrigation can increase growth rates and survivability of saplings in reforestation efforts in regions with frequent fog events. Using fog collectors, denuded areas once dependent on natural fog drip can be restored, benefiting local hydrology and ecosystem recovery. Improvement in fog collector designs, materials, and models to increase collection efficiency, perhaps by inclusion of ideas from natural systems, will expand the regions where fog harvesting can be applied.

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Literatur
Zurück zum Zitat Abdul-Wahab SA, Al-Hinai H, Al-Najar KA, Al-Kalbani MS (2007a) Feasibility of fog water collection: a case study from Oman. J Water Supply Res Technol AQUA 56:275–280CrossRef Abdul-Wahab SA, Al-Hinai H, Al-Najar KA, Al-Kalbani MS (2007a) Feasibility of fog water collection: a case study from Oman. J Water Supply Res Technol AQUA 56:275–280CrossRef
Zurück zum Zitat Abdul-Wahab SA, Al-Hinai H, Al-Najar KA, Al-Kalbani MS (2007b) Fog water harvesting: quality of fog water collected for domestic and agricultural use. Environ Eng Sci 24:446–456CrossRef Abdul-Wahab SA, Al-Hinai H, Al-Najar KA, Al-Kalbani MS (2007b) Fog water harvesting: quality of fog water collected for domestic and agricultural use. Environ Eng Sci 24:446–456CrossRef
Zurück zum Zitat Abdul-Wahab SA, Lea V (2008) Reviewing fog water collection worldwide and in Oman. Int J Environ Stud 65:487–500CrossRef Abdul-Wahab SA, Lea V (2008) Reviewing fog water collection worldwide and in Oman. Int J Environ Stud 65:487–500CrossRef
Zurück zum Zitat Andrews HG, Eccles EA, Schofield WCE, Badyal JPS (2011) Three-dimensional hierarchical structures for fog harvesting. Langmuir 27:3798–3802CrossRef Andrews HG, Eccles EA, Schofield WCE, Badyal JPS (2011) Three-dimensional hierarchical structures for fog harvesting. Langmuir 27:3798–3802CrossRef
Zurück zum Zitat Azevedo J, Morgan DL (1974) Fog precipitation in coastal California forests. Ecology 55:1135–1141CrossRef Azevedo J, Morgan DL (1974) Fog precipitation in coastal California forests. Ecology 55:1135–1141CrossRef
Zurück zum Zitat Briassoulis D, Mistriotis A, Eleftherakis D (2007a) Mechanical behaviour and properties of agricultural nets—part I: testing methods for agricultural nets. Polym Test 26:822–832CrossRef Briassoulis D, Mistriotis A, Eleftherakis D (2007a) Mechanical behaviour and properties of agricultural nets—part I: testing methods for agricultural nets. Polym Test 26:822–832CrossRef
Zurück zum Zitat Briassoulis D, Mistriotis A, Eleftherakis D (2007b) Mechanical behaviour and properties of agricultural nets—part II: analysis of the performance of the main categories of agricultural nets. Polym Test 26:970–984CrossRef Briassoulis D, Mistriotis A, Eleftherakis D (2007b) Mechanical behaviour and properties of agricultural nets—part II: analysis of the performance of the main categories of agricultural nets. Polym Test 26:970–984CrossRef
Zurück zum Zitat Burgess SSO, Dawson TE (2004) The contribution of fog to the water relations of Sequoia sempervirens (D. Don): foliar uptake and prevention of dehydration. Plant, Cell Environ 27:1023–1034CrossRef Burgess SSO, Dawson TE (2004) The contribution of fog to the water relations of Sequoia sempervirens (D. Don): foliar uptake and prevention of dehydration. Plant, Cell Environ 27:1023–1034CrossRef
Zurück zum Zitat Busing RT, Fujimori T (2005) Biomass, production and woody detritus in an old coast redwood (Sequoia sempervirens) forest. Plant Ecol 177:177–188CrossRef Busing RT, Fujimori T (2005) Biomass, production and woody detritus in an old coast redwood (Sequoia sempervirens) forest. Plant Ecol 177:177–188CrossRef
Zurück zum Zitat Corbin JD, Thomsen MA, Dawson TE, D’Antonio CM (2005) Summer water use by California coastal prairie grasses: fog, drought, and community composition. Oecologia 145:511–521CrossRef Corbin JD, Thomsen MA, Dawson TE, D’Antonio CM (2005) Summer water use by California coastal prairie grasses: fog, drought, and community composition. Oecologia 145:511–521CrossRef
Zurück zum Zitat Dawson TE (1998) Fog in the California redwood forest: ecosystem inputs and use by plants. Oecologia 117:476–485CrossRef Dawson TE (1998) Fog in the California redwood forest: ecosystem inputs and use by plants. Oecologia 117:476–485CrossRef
Zurück zum Zitat del-Val E, Armesto JJ, Barbosa O et al (2006) Rain forest islands in the Chilean semiarid region: fog-dependency, ecosystem persistence and tree regeneration. Ecosystems 9:598–608CrossRef del-Val E, Armesto JJ, Barbosa O et al (2006) Rain forest islands in the Chilean semiarid region: fog-dependency, ecosystem persistence and tree regeneration. Ecosystems 9:598–608CrossRef
Zurück zum Zitat Estrela MJ, Veliente JA, Corell D, Fuentes D, Valdecantos A (2009) Prospective use of collected fog water in the restoration of degraded burned areas under dry Mediterranean conditions. Agric For Meteorol 149:1896–1906CrossRef Estrela MJ, Veliente JA, Corell D, Fuentes D, Valdecantos A (2009) Prospective use of collected fog water in the restoration of degraded burned areas under dry Mediterranean conditions. Agric For Meteorol 149:1896–1906CrossRef
Zurück zum Zitat Fischer DT, Still CJ, Williams AP (2009) Significance of summer fog and overcast for drought stress and ecological functioning of coastal California endemic plant species. J Biogeogr 36:783–799CrossRef Fischer DT, Still CJ, Williams AP (2009) Significance of summer fog and overcast for drought stress and ecological functioning of coastal California endemic plant species. J Biogeogr 36:783–799CrossRef
Zurück zum Zitat Gandhidasan P, Abualhamael HI (2012) Exploring fog water harvesting potential and quality in the Asir Region, Kingdom of Saudi Arabia. Pure Appl Geophys 169:1019–1036CrossRef Gandhidasan P, Abualhamael HI (2012) Exploring fog water harvesting potential and quality in the Asir Region, Kingdom of Saudi Arabia. Pure Appl Geophys 169:1019–1036CrossRef
Zurück zum Zitat Garrod RP, Harris LG, Scholfield WCE et al (2007) Mimicking a Stenocara beetle’s back for microcondensation using plasmachemical patterened superhydrophobic–superhydrophilic surfaces. Langmuir 23:689–693CrossRef Garrod RP, Harris LG, Scholfield WCE et al (2007) Mimicking a Stenocara beetle’s back for microcondensation using plasmachemical patterened superhydrophobic–superhydrophilic surfaces. Langmuir 23:689–693CrossRef
Zurück zum Zitat Gioda A, Espejo G, Acosta B (1993) Fog collectors in tropical areas. In: Proceedings of the international symposium of precipitation and evaporation. 20–24 September, 1993 Gioda A, Espejo G, Acosta B (1993) Fog collectors in tropical areas. In: Proceedings of the international symposium of precipitation and evaporation. 20–24 September, 1993
Zurück zum Zitat Gultepe I, Tardif R, Michaelides SC et al (2007) Fog research: a review of past achievements and future perspectives. Pure Appl Geophys 164:1121–1159CrossRef Gultepe I, Tardif R, Michaelides SC et al (2007) Fog research: a review of past achievements and future perspectives. Pure Appl Geophys 164:1121–1159CrossRef
Zurück zum Zitat Henschel JR, Seely MK (2008) Ecophysiology of atmospheric moisture in the Namib Desert. Atmos Res 87:362–368CrossRef Henschel JR, Seely MK (2008) Ecophysiology of atmospheric moisture in the Namib Desert. Atmos Res 87:362–368CrossRef
Zurück zum Zitat Hiatt C, Fernandez D, Potter C (2012) Measurements of fog water deposition on the California central coast. Atmos Clim Sci 2:525–531 Hiatt C, Fernandez D, Potter C (2012) Measurements of fog water deposition on the California central coast. Atmos Clim Sci 2:525–531
Zurück zum Zitat Hou Y, Chen Y, Xue Y, Zheng Y, Jiang L (2012) Water collection behavior and hanging ability of bioinspired fiber. Langmuir 28:4737–4743CrossRef Hou Y, Chen Y, Xue Y, Zheng Y, Jiang L (2012) Water collection behavior and hanging ability of bioinspired fiber. Langmuir 28:4737–4743CrossRef
Zurück zum Zitat Hung LS, Yao SC (1999) Experimental investigation of the impaction of water droplets on cylindrical objects. Int J Multiphas Flow 25:1545–1559CrossRef Hung LS, Yao SC (1999) Experimental investigation of the impaction of water droplets on cylindrical objects. Int J Multiphas Flow 25:1545–1559CrossRef
Zurück zum Zitat Imteaz MA, Al-hassan G, Shanableh A, Naser J (2011) Development of a mathematical model for the quantification of fog-collection. Resour Conserv Recy 57:10–14CrossRef Imteaz MA, Al-hassan G, Shanableh A, Naser J (2011) Development of a mathematical model for the quantification of fog-collection. Resour Conserv Recy 57:10–14CrossRef
Zurück zum Zitat Ingraham NL, Matthews RA (1995) The importance of fog-drip water to vegetation: Point Reyes Peninsula, California. J Hydrol 164:269–285CrossRef Ingraham NL, Matthews RA (1995) The importance of fog-drip water to vegetation: Point Reyes Peninsula, California. J Hydrol 164:269–285CrossRef
Zurück zum Zitat Johnstone JA, Dawson TE (2010) Climatic context and ecological implications of summer fog decline in the coast redwood region. Proc Natl Acad Sci USA 107:4533–4538CrossRef Johnstone JA, Dawson TE (2010) Climatic context and ecological implications of summer fog decline in the coast redwood region. Proc Natl Acad Sci USA 107:4533–4538CrossRef
Zurück zum Zitat Karkee M (2005) Harvesting of atmospheric water: a promising low-cost technology. In: Ninth international water technology conference. 17–20 March 2005, Sharm Al-Sheikh Karkee M (2005) Harvesting of atmospheric water: a promising low-cost technology. In: Ninth international water technology conference. 17–20 March 2005, Sharm Al-Sheikh
Zurück zum Zitat Klemm O, Schemenauer RS, Lummerich A et al (2012) Fog as a fresh-water resource: overview and perspectives. Ambio 41:221–234CrossRef Klemm O, Schemenauer RS, Lummerich A et al (2012) Fog as a fresh-water resource: overview and perspectives. Ambio 41:221–234CrossRef
Zurück zum Zitat Kummu M, Ward PJ, de Moel H, Varis O (2010) Is physical water scarcity a new phenomenon? Global assessment of water shortage over the last two millennia. Environ Res Lett 5:034006 Kummu M, Ward PJ, de Moel H, Varis O (2010) Is physical water scarcity a new phenomenon? Global assessment of water shortage over the last two millennia. Environ Res Lett 5:034006
Zurück zum Zitat LaDochy S, Witiw M (2012) The continued reduction in dense fog in the Southern California region: possible causes. Pure Appl Geophys 169:1157–1163CrossRef LaDochy S, Witiw M (2012) The continued reduction in dense fog in the Southern California region: possible causes. Pure Appl Geophys 169:1157–1163CrossRef
Zurück zum Zitat Leipper DF (1994) Fog on the U.S. West Coast: a review. Bull Am Meteor Soc 75:229–240CrossRef Leipper DF (1994) Fog on the U.S. West Coast: a review. Bull Am Meteor Soc 75:229–240CrossRef
Zurück zum Zitat Lummerich A, Tiedemann K (2009) Fog farming: linking sustainable land management with ecological renaturation in arid areas by means of reforestation. In: Conference on international research on food security, natural resource management and rural development. 6–8 October 2009, Hamburg Lummerich A, Tiedemann K (2009) Fog farming: linking sustainable land management with ecological renaturation in arid areas by means of reforestation. In: Conference on international research on food security, natural resource management and rural development. 6–8 October 2009, Hamburg
Zurück zum Zitat Lummerich A, Tiedemann K (2011) Fog harvesting on the verge of economic competitiveness. Erdkunde 65:305–306CrossRef Lummerich A, Tiedemann K (2011) Fog harvesting on the verge of economic competitiveness. Erdkunde 65:305–306CrossRef
Zurück zum Zitat Marzol MV (2008) Temporal characteristics and fog water collection during summer in Tenerife (Canary Islands, Spain). Atmos Res 87:352–361 CrossRef Marzol MV (2008) Temporal characteristics and fog water collection during summer in Tenerife (Canary Islands, Spain). Atmos Res 87:352–361 CrossRef
Zurück zum Zitat Marzol MV, Megía JLS (2008) Fog water harvesting in Ifni, Morocco. An assessment of potential and demand. Die Erde 139:97–119 Marzol MV, Megía JLS (2008) Fog water harvesting in Ifni, Morocco. An assessment of potential and demand. Die Erde 139:97–119
Zurück zum Zitat Niu F, Li Z, Li C, Lee K, Wang M (2010) Increase of wintertime fog in China: potential impacts of weakening of the Eastern Asian monsoon circulation and increasing aerosol loading. J Geophys Res 115:D00K20. doi:10.1029/2009jd013484 Niu F, Li Z, Li C, Lee K, Wang M (2010) Increase of wintertime fog in China: potential impacts of weakening of the Eastern Asian monsoon circulation and increasing aerosol loading. J Geophys Res 115:D00K20. doi:10.​1029/​2009jd013484
Zurück zum Zitat Olivier J, de Rautenbach CJ (2002) The implementation of fog water collection systems in South Africa. Atmos Res 64:227–238CrossRef Olivier J, de Rautenbach CJ (2002) The implementation of fog water collection systems in South Africa. Atmos Res 64:227–238CrossRef
Zurück zum Zitat Parker A, Lawrence C (2001) Water capture by a desert beetle. Nature 414:33–34CrossRef Parker A, Lawrence C (2001) Water capture by a desert beetle. Nature 414:33–34CrossRef
Zurück zum Zitat Raja S, Raghunathan R, Yu X et al (2008) Fog chemistry in the Texas-Louisiana Gulf Coast corridor. Atmos Environ 42:2048–2061CrossRef Raja S, Raghunathan R, Yu X et al (2008) Fog chemistry in the Texas-Louisiana Gulf Coast corridor. Atmos Environ 42:2048–2061CrossRef
Zurück zum Zitat Ramírez DA, Balaguer L, Mancilla R et al (2012) Leaf-trait responses to irrigation of the endemic fog-oasis tree Myrcianthes ferreyrae: can a fog specialist benefit from regular watering? Tree Physiol 32:65–73 Ramírez DA, Balaguer L, Mancilla R et al (2012) Leaf-trait responses to irrigation of the endemic fog-oasis tree Myrcianthes ferreyrae: can a fog specialist benefit from regular watering? Tree Physiol 32:65–73
Zurück zum Zitat Ritchie CD, Richards W, Arp PA (2006) Mercury in fog on the Bay of Fundy (Canada). Atmos Environ 40:6321–6328CrossRef Ritchie CD, Richards W, Arp PA (2006) Mercury in fog on the Bay of Fundy (Canada). Atmos Environ 40:6321–6328CrossRef
Zurück zum Zitat Ritter A, Regalado CM, Aschan G (2008) Fog water collection in a subtropical elfin laurel forest of the Garajonay National Park (Canary Islands): a combined approach using artificial fog catchers and a physically based impaction model. J Hydrometeorol 9:920–935CrossRef Ritter A, Regalado CM, Aschan G (2008) Fog water collection in a subtropical elfin laurel forest of the Garajonay National Park (Canary Islands): a combined approach using artificial fog catchers and a physically based impaction model. J Hydrometeorol 9:920–935CrossRef
Zurück zum Zitat Rivera JD (2011) Aerodynamic collection efficiency of fog water collectors. Atmos Res 102:335–342CrossRef Rivera JD (2011) Aerodynamic collection efficiency of fog water collectors. Atmos Res 102:335–342CrossRef
Zurück zum Zitat Schemenauer RS, Cereceda P (1991) Fog-water collection in arid coastal locations. Ambio 20:303–308 Schemenauer RS, Cereceda P (1991) Fog-water collection in arid coastal locations. Ambio 20:303–308
Zurück zum Zitat Schemenauer RS, Cereceda P (1994a) A proposed standard fog collector for use in high-elevation regions. J Appl Meteorol 33:1313–1322CrossRef Schemenauer RS, Cereceda P (1994a) A proposed standard fog collector for use in high-elevation regions. J Appl Meteorol 33:1313–1322CrossRef
Zurück zum Zitat Schemenauer RS, Cereceda P (1994b) Fog collection’s role in water planning for developing countries. Nat Resour Forum 18:91–100CrossRef Schemenauer RS, Cereceda P (1994b) Fog collection’s role in water planning for developing countries. Nat Resour Forum 18:91–100CrossRef
Zurück zum Zitat Schemenauer RS, Joe PI (1989) The collection efficiency of a massive fog collector. Atmos Res 24:53–69CrossRef Schemenauer RS, Joe PI (1989) The collection efficiency of a massive fog collector. Atmos Res 24:53–69CrossRef
Zurück zum Zitat Schemenauer RS, Fuenzalida H, Cereceda P (1988) A neglected water resource: the Camanchaca of South America. Bull Am Meteorol Soc 69:138–147CrossRef Schemenauer RS, Fuenzalida H, Cereceda P (1988) A neglected water resource: the Camanchaca of South America. Bull Am Meteorol Soc 69:138–147CrossRef
Zurück zum Zitat Shanyengana ES, Henschel JR, Seely MK, Sanderson RD (2002) Exploring fog as a supplementary water source in Namibia. Atmos Res 64:251–259CrossRef Shanyengana ES, Henschel JR, Seely MK, Sanderson RD (2002) Exploring fog as a supplementary water source in Namibia. Atmos Res 64:251–259CrossRef
Zurück zum Zitat Shanyengana ES, Sanderson RD, Seely MK, Schemenauer RS (2003) Testing greenhouse shade nets in collection of fog for water supply. J Water Supply Res Technol AQUA 52:237–241 Shanyengana ES, Sanderson RD, Seely MK, Schemenauer RS (2003) Testing greenhouse shade nets in collection of fog for water supply. J Water Supply Res Technol AQUA 52:237–241
Zurück zum Zitat Straub DJ, Hutchings JW, Herckes P (2012) Measurements of fog composition at a rural site. Atmos Environ 47:195–205CrossRef Straub DJ, Hutchings JW, Herckes P (2012) Measurements of fog composition at a rural site. Atmos Environ 47:195–205CrossRef
Zurück zum Zitat Syed FS, Körnich H, Tjernström M (2012) On the fog variability over south Asia. Clim Dyn 39:2993–3005 Syed FS, Körnich H, Tjernström M (2012) On the fog variability over south Asia. Clim Dyn 39:2993–3005
Zurück zum Zitat University of California Cooperative Extension (2000) A guide to estimating irrigation water needs of landscape plantings in California. The Landscape Coefficient Method and WUCOLS III. California Department of Water Resources, Sacramento University of California Cooperative Extension (2000) A guide to estimating irrigation water needs of landscape plantings in California. The Landscape Coefficient Method and WUCOLS III. California Department of Water Resources, Sacramento
Zurück zum Zitat van Heerden J, Olivier J, Schalkwyk V (2010) Fog water systems in South Africa: an update. In: Proceedings of the 5th international conference on fog, fog collection, and dew. 25–30 July 2010, Münster van Heerden J, Olivier J, Schalkwyk V (2010) Fog water systems in South Africa: an update. In: Proceedings of the 5th international conference on fog, fog collection, and dew. 25–30 July 2010, Münster
Zurück zum Zitat van Oldenborgh GJ, Yiou P, Vautard R (2010) On the roles of circulation and aerosols in the decline of mist and dense fog in Europe over the last 30 years. Atmos Chem Phys 10:4597–4609CrossRef van Oldenborgh GJ, Yiou P, Vautard R (2010) On the roles of circulation and aerosols in the decline of mist and dense fog in Europe over the last 30 years. Atmos Chem Phys 10:4597–4609CrossRef
Zurück zum Zitat Walmsley JL, Schemenauer RS, Bridgman HA (1996) A method for estimating hydrologic input from fog in mountainous terrain. J Appl Meteorol 35:2237–2249CrossRef Walmsley JL, Schemenauer RS, Bridgman HA (1996) A method for estimating hydrologic input from fog in mountainous terrain. J Appl Meteorol 35:2237–2249CrossRef
Zurück zum Zitat Witiw MR, Baars J, Fischer K (2003) Urban influences on visibility. In: Proceedings of the 5th international conference on urban climate. 1–5 September 2003, Lodz, Poland Witiw MR, Baars J, Fischer K (2003) Urban influences on visibility. In: Proceedings of the 5th international conference on urban climate. 1–5 September 2003, Lodz, Poland
Metadaten
Titel
Fog water as an alternative and sustainable water resource
verfasst von
Jeremy K. Domen
William T. Stringfellow
Mary Kay Camarillo
Shelly Gulati
Publikationsdatum
01.02.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Clean Technologies and Environmental Policy / Ausgabe 2/2014
Print ISSN: 1618-954X
Elektronische ISSN: 1618-9558
DOI
https://doi.org/10.1007/s10098-013-0645-z

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