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2014 | OriginalPaper | Buchkapitel

11. Drainage Water Reuse: Concepts, Practices and Potential Crops

verfasst von : Stephen R. Grattan, James D. Oster, John Letey, Stephen R. Kaffka

Erschienen in: Salinity and Drainage in San Joaquin Valley, California

Verlag: Springer Netherlands

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Abstract

Reuse of drainage water for irrigation is recognized as a viable means of reducing the amount of saline-sodic spent water that will ultimately require treatment or disposal in the western San Joaquin Valley (SJVDP 1990). This practice is not a long-term solution in itself, but rather an integral component to drainage water management in the San Joaquin Valley. For reuse to be successful, soil salinity and boron (B) cannot accumulate to levels damaging to crop growth; soil physical conditions conducive to water infiltration must be sustained; and trace element accumulation in crops and forages must remain low enough not to threaten the health of humans or livestock (Oster and Grattan 2002).

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Literatur
Zurück zum Zitat Ayar, J. E, Basinal, L. (2005). A technical advisor’s manual. Managing agricultural irrigation drainage water. A guide for developing integrated on-farm drainage management systems. (Eds.), Chapters 1 to 9. Fresno: Westside Resources Conservation District and Center for Irrigation Technology, California State University Fresno. Ayar, J. E, Basinal, L. (2005). A technical advisor’s manual. Managing agricultural irrigation drainage water. A guide for developing integrated on-farm drainage management systems. (Eds.), Chapters 1 to 9. Fresno: Westside Resources Conservation District and Center for Irrigation Technology, California State University Fresno.
Zurück zum Zitat Ayars, J. E., Hutmacher, R. B., Hoffman, G. J., Ben-Asher, J., & Pflaum, T. (1990). Response of sugar beet to non-uniform irrigation. Irrigation Science, 11, 101–109.CrossRef Ayars, J. E., Hutmacher, R. B., Hoffman, G. J., Ben-Asher, J., & Pflaum, T. (1990). Response of sugar beet to non-uniform irrigation. Irrigation Science, 11, 101–109.CrossRef
Zurück zum Zitat Ayars, J. E., Hutmacher, R. B., Schoneman, R. A., Vail, S. S., & Pflaum, T. (1993). Long-term use of saline water for irrigation. Irrigation Science, 14, 27–34.CrossRef Ayars, J. E., Hutmacher, R. B., Schoneman, R. A., Vail, S. S., & Pflaum, T. (1993). Long-term use of saline water for irrigation. Irrigation Science, 14, 27–34.CrossRef
Zurück zum Zitat Ayers, R. S. & Westcot, D. W. (1985). Water quality for agriculture (FAO Irrigation and Drainage Paper 29 Rev.1, 174pp.). Rome: Food and Agriculture Organization of the United Nations. Ayers, R. S. & Westcot, D. W. (1985). Water quality for agriculture (FAO Irrigation and Drainage Paper 29 Rev.1, 174pp.). Rome: Food and Agriculture Organization of the United Nations.
Zurück zum Zitat Bañuelos, G. S., Sharmarsakar, S., Cone, D., & Stuhr, G. (2003). Vegetative approach for improving the quality of water produced from soils in the Westside of central California. Plant and Soil, 249, 229–236.CrossRef Bañuelos, G. S., Sharmarsakar, S., Cone, D., & Stuhr, G. (2003). Vegetative approach for improving the quality of water produced from soils in the Westside of central California. Plant and Soil, 249, 229–236.CrossRef
Zurück zum Zitat Bari, M. A., & Schofield, N. J. (1992). Lowering of a shallow, saline water table by extensive eucalypt reforestation. Journal of Hydrology, 133, 273–291.CrossRef Bari, M. A., & Schofield, N. J. (1992). Lowering of a shallow, saline water table by extensive eucalypt reforestation. Journal of Hydrology, 133, 273–291.CrossRef
Zurück zum Zitat Bassil, E., & Kaffka, S. R. (2002a). Response of safflower (Carthamus tinctorius L.) to saline soils and irrigation. II. Consumptive water use. Agricultural Water Management, 54, 67–80.CrossRef Bassil, E., & Kaffka, S. R. (2002a). Response of safflower (Carthamus tinctorius L.) to saline soils and irrigation. II. Consumptive water use. Agricultural Water Management, 54, 67–80.CrossRef
Zurück zum Zitat Bassil, E., & Kaffka, S. R. (2002b). Response of safflower (Carthamus tinctorius L.) to saline soils and irrigation. II. Crop growth and yield. Agricultural Water Management, 54, 81–92.CrossRef Bassil, E., & Kaffka, S. R. (2002b). Response of safflower (Carthamus tinctorius L.) to saline soils and irrigation. II. Crop growth and yield. Agricultural Water Management, 54, 81–92.CrossRef
Zurück zum Zitat Benes, S., Grattan, S. R., Finch, C., & Basinal, L. (2004). Plant selection for IFDM. In: T. Jacobsen & L. Basinal (Eds.), A landowner’s manual: Managing agricultural irrigation drainage water. A guide for developing integrated on-farm drainage management systems (pp. 6–1 to 6–21). Fresno: California State Water Resources Control Board. Hudson Orth Communications. http://cit.cati.csufresno.edu/DrainageManual/Content/Chapter6.pdf. Accessed June 2012. Benes, S., Grattan, S. R., Finch, C., & Basinal, L. (2004). Plant selection for IFDM. In: T. Jacobsen & L. Basinal (Eds.), A landowner’s manual: Managing agricultural irrigation drainage water. A guide for developing integrated on-farm drainage management systems (pp. 6–1 to 6–21). Fresno: California State Water Resources Control Board. Hudson Orth Communications. http://​cit.​cati.​csufresno.​edu/​DrainageManual/​Content/​Chapter6.​pdf. Accessed June 2012.
Zurück zum Zitat Bradford, S., & Letey, J. (1992). Cyclic and blending strategies for using nonsaline and saline waters for irrigation. Irrigation Science, 13, 123–128. Bradford, S., & Letey, J. (1992). Cyclic and blending strategies for using nonsaline and saline waters for irrigation. Irrigation Science, 13, 123–128.
Zurück zum Zitat Brown, P. H., & Shelp, B. J. (1997). Boron mobility in plants. Plant and Soil, 193, 85–101.CrossRef Brown, P. H., & Shelp, B. J. (1997). Boron mobility in plants. Plant and Soil, 193, 85–101.CrossRef
Zurück zum Zitat Brown, P. H., Bellaloui, N., Wimmer, M. A., Bassil, E. S., Ruis, J., Hu, H., Pfeffer, H., Dannel, F., & Römheld, V. (2002). Boron in plant biology. Plant Boil, 4, 211–229. Brown, P. H., Bellaloui, N., Wimmer, M. A., Bassil, E. S., Ruis, J., Hu, H., Pfeffer, H., Dannel, F., & Römheld, V. (2002). Boron in plant biology. Plant Boil, 4, 211–229.
Zurück zum Zitat Cardon, G. E., & Letey, J. (1992). Soil-based irrigation and salinity management model: I. Plant water uptake calculations. Soil Science Society of American Journal, 56, 1881–1887.CrossRef Cardon, G. E., & Letey, J. (1992). Soil-based irrigation and salinity management model: I. Plant water uptake calculations. Soil Science Society of American Journal, 56, 1881–1887.CrossRef
Zurück zum Zitat Cervinka, V. (1994). Agroforestry farming system for the management of selenium and salt on irrigated farmland. In W. T. Frankenberger Jr. & S. Benson (Eds.), Selenium in the environment (pp. 237–250). New York: Marcel Dekker. Cervinka, V. (1994). Agroforestry farming system for the management of selenium and salt on irrigated farmland. In W. T. Frankenberger Jr. & S. Benson (Eds.), Selenium in the environment (pp. 237–250). New York: Marcel Dekker.
Zurück zum Zitat Corwin, D., Kaffka, S. R., Oster, J. D., Hopmans, J. W., Mori, Y., van Groenigen, J. W., & van Kessel, C. (2003). Assessment and field-scale mapping of soil quality properties of a saline-sodic soil. Geoderma, 114, 231–259.CrossRef Corwin, D., Kaffka, S. R., Oster, J. D., Hopmans, J. W., Mori, Y., van Groenigen, J. W., & van Kessel, C. (2003). Assessment and field-scale mapping of soil quality properties of a saline-sodic soil. Geoderma, 114, 231–259.CrossRef
Zurück zum Zitat Corwin, D. L., Lesch, S. M., Oster, J. D., & Kaffka, S. R. (2006). Monitoring management-induced spatio–temporal changes in soil quality through soil sampling directed by apparent electrical conductivity. Geoderma, 131(3/4), 369–387.CrossRef Corwin, D. L., Lesch, S. M., Oster, J. D., & Kaffka, S. R. (2006). Monitoring management-induced spatio–temporal changes in soil quality through soil sampling directed by apparent electrical conductivity. Geoderma, 131(3/4), 369–387.CrossRef
Zurück zum Zitat Dinar, A., Letey, J., & Vaux, H. J., Jr. (1986). Optimal ratios of saline and nonsaline irrigation waters for crop production. Soil Science Society of America Journal, 50(2), 440–443.CrossRef Dinar, A., Letey, J., & Vaux, H. J., Jr. (1986). Optimal ratios of saline and nonsaline irrigation waters for crop production. Soil Science Society of America Journal, 50(2), 440–443.CrossRef
Zurück zum Zitat Feng, G. L., Meiri, A., & Letey, J. (2003). Evaluation of a model for irrigation management under saline conditions: I. Effects on plant growth. Soil Science Society of American Journal, 67, 71–76.CrossRef Feng, G. L., Meiri, A., & Letey, J. (2003). Evaluation of a model for irrigation management under saline conditions: I. Effects on plant growth. Soil Science Society of American Journal, 67, 71–76.CrossRef
Zurück zum Zitat Glenn, E. P., Brown, J. J., & O’Leary, J. W. (1998, August). Irrigating crops with seawater. Scientific American, 279, 76–81.CrossRef Glenn, E. P., Brown, J. J., & O’Leary, J. W. (1998, August). Irrigating crops with seawater. Scientific American, 279, 76–81.CrossRef
Zurück zum Zitat Glenn, E. P., Brown, J. J., & Blumwald, E. (1999). Salt tolerance and crop potential as halophytes. Critical Reviews in Plants Sciences, 18, 227–255.CrossRef Glenn, E. P., Brown, J. J., & Blumwald, E. (1999). Salt tolerance and crop potential as halophytes. Critical Reviews in Plants Sciences, 18, 227–255.CrossRef
Zurück zum Zitat Grattan, S. R., & Oster, J. D. (2003). Use and reuse of saline-sodic waters for irrigation of crops. In S. S. Goyal, S. K. Sharma, & D. W. Rains (Eds.), Crop production in saline environments: Global and integrative perspectives (pp. 131–162). New York: Haworth Press. Grattan, S. R., & Oster, J. D. (2003). Use and reuse of saline-sodic waters for irrigation of crops. In S. S. Goyal, S. K. Sharma, & D. W. Rains (Eds.), Crop production in saline environments: Global and integrative perspectives (pp. 131–162). New York: Haworth Press.
Zurück zum Zitat Grattan, S. R., Shennan, C., May, D. M., Mitchell, J. P., & Burau, R. G. (1987). Use of drainage water for irrigation of melons and tomatoes. California Agriculture, 41, 27–28. Grattan, S. R., Shennan, C., May, D. M., Mitchell, J. P., & Burau, R. G. (1987). Use of drainage water for irrigation of melons and tomatoes. California Agriculture, 41, 27–28.
Zurück zum Zitat Grattan, S. R., Shannon, M. C., Grieve, C. M., Poss, J. A., Suarez, D. L., & Francois, L. E. (1996). Interactive effects of salinity and boron on the performance and water use of eucalyptus. Acta Horticulture, 449, 607–613. Grattan, S. R., Shannon, M. C., Grieve, C. M., Poss, J. A., Suarez, D. L., & Francois, L. E. (1996). Interactive effects of salinity and boron on the performance and water use of eucalyptus. Acta Horticulture, 449, 607–613.
Zurück zum Zitat Grattan, S. R., Benes, S. E., & Peters, D.W., & Mitchell, J. P. (1999, September 11–19). Potential suitability of the halophyte Salicornia bigelovii as the final crop in a drainage water reuse sequence. In: Proceeding of 17th international congress on irrigation and drainage (pp. 107–120). Granada, International Commission on Irrigation and Drainage (ICID). Grattan, S. R., Benes, S. E., & Peters, D.W., & Mitchell, J. P. (1999, September 11–19). Potential suitability of the halophyte Salicornia bigelovii as the final crop in a drainage water reuse sequence. In: Proceeding of 17th international congress on irrigation and drainage (pp. 107–120). Granada, International Commission on Irrigation and Drainage (ICID).
Zurück zum Zitat Grattan, S. R., Grieve, C. M., Poss, J. A., Robinson, P. H., Suarez, D. L., & Benes, S. E. (2004a). Evaluation of salt-tolerant forages for sequential water reuse systems. I. Biomass production. Agricultural Water Management, 70, 109–120.CrossRef Grattan, S. R., Grieve, C. M., Poss, J. A., Robinson, P. H., Suarez, D. L., & Benes, S. E. (2004a). Evaluation of salt-tolerant forages for sequential water reuse systems. I. Biomass production. Agricultural Water Management, 70, 109–120.CrossRef
Zurück zum Zitat Grattan, S. R., Grieve, C. M., Poss, J. A., Robinson, P. H., Suarez, D. L., & Benes, S. E. (2004b). Evaluation of salt-tolerant forages for sequential water reuse systems. III. Potential implications for ruminant mineral nutrition. Agricultural Water Management, 70, 137–150. Grattan, S. R., Grieve, C. M., Poss, J. A., Robinson, P. H., Suarez, D. L., & Benes, S. E. (2004b). Evaluation of salt-tolerant forages for sequential water reuse systems. III. Potential implications for ruminant mineral nutrition. Agricultural Water Management, 70, 137–150.
Zurück zum Zitat Grattan, S. R., Benes, S. E., Diaz, F., & Peters, D. W. (2008). Feasibility of irrigating Salicornia bigelovii Torr. with hyper-saline drainage water. Journal of Environmental Quality, 37:S, 149–156. Grattan, S. R., Benes, S. E., Diaz, F., & Peters, D. W. (2008). Feasibility of irrigating Salicornia bigelovii Torr. with hyper-saline drainage water. Journal of Environmental Quality, 37:S, 149–156.
Zurück zum Zitat Grieve, C. M., & Suarez, D. L. (1997). Purslane (Portulaca oleraceae L): A halophytic crop for drainage water reuse systems. Plant and Soil, 192, 277–283.CrossRef Grieve, C. M., & Suarez, D. L. (1997). Purslane (Portulaca oleraceae L): A halophytic crop for drainage water reuse systems. Plant and Soil, 192, 277–283.CrossRef
Zurück zum Zitat Gupta, U. C., Jame, Y. W., Campbell, C. A., Leyshon, A. J., & Nicholaichuk, W. (1985). Boron toxicity and deficiency: A review. Canadian Journal of Soil Science, 65, 381–409.CrossRef Gupta, U. C., Jame, Y. W., Campbell, C. A., Leyshon, A. J., & Nicholaichuk, W. (1985). Boron toxicity and deficiency: A review. Canadian Journal of Soil Science, 65, 381–409.CrossRef
Zurück zum Zitat James, D. W., Jackson, T. L., & Harvard, M. E. (1968). Effect of molybdenum and lime on the growth and molybdenum content of alfalfa grown on acid soils. Soil Science, 105(6), 397–402.CrossRef James, D. W., Jackson, T. L., & Harvard, M. E. (1968). Effect of molybdenum and lime on the growth and molybdenum content of alfalfa grown on acid soils. Soil Science, 105(6), 397–402.CrossRef
Zurück zum Zitat Jury, W. A., Tuli, A., & Letey, J. (2003). Effect of travel time on management of a sequential reuse drainage operation. Soil Science Society of America Journal, 67, 1122–1126.CrossRef Jury, W. A., Tuli, A., & Letey, J. (2003). Effect of travel time on management of a sequential reuse drainage operation. Soil Science Society of America Journal, 67, 1122–1126.CrossRef
Zurück zum Zitat Kaffka, S. R., & Hembree, K. (2004). The effects of saline soil and irrigation on sugarbeet stand establishment. The Journal of Sugar Beet Research, 41(3), 61–72.CrossRef Kaffka, S. R., & Hembree, K. (2004). The effects of saline soil and irrigation on sugarbeet stand establishment. The Journal of Sugar Beet Research, 41(3), 61–72.CrossRef
Zurück zum Zitat Kaffka, S. R., Daxue, D., & Peterson, G. (1999). Saline water can be used to irrigate sugarbeets, but sugar may be low. California Agriculture, 53(1), 11–15.CrossRef Kaffka, S. R., Daxue, D., & Peterson, G. (1999). Saline water can be used to irrigate sugarbeets, but sugar may be low. California Agriculture, 53(1), 11–15.CrossRef
Zurück zum Zitat Kaffka, S. R., Oster, J. D., & Corwin, D. L. (2002, August 14–21). Using forages and livestock to manage drainage water in the San Joaquin Valley. In: I. Kheoruenrome (Ed.), 17th world congress of soil science (Symp. No. 34: 2059-1 to 2059-12). Bangkok, World Congress of Soil Science. Kaffka, S. R., Oster, J. D., & Corwin, D. L. (2002, August 14–21). Using forages and livestock to manage drainage water in the San Joaquin Valley. In: I. Kheoruenrome (Ed.), 17th world congress of soil science (Symp. No. 34: 2059-1 to 2059-12). Bangkok, World Congress of Soil Science.
Zurück zum Zitat Kaffka, S., Oster, J., Maas, J., & Corwin, D. (2004, December 13–15). Forage production and soil reclamation using saline drainage water. In: Proceedings of the 2004 National Alfalfa Symposium and the 34th CA Alfalfa Symposium (pp. 247–253), San Diego, CA. Davis: Department of Agricultural and Range Science Cooperative Extension, UC Davis. Kaffka, S., Oster, J., Maas, J., & Corwin, D. (2004, December 13–15). Forage production and soil reclamation using saline drainage water. In: Proceedings of the 2004 National Alfalfa Symposium and the 34th CA Alfalfa Symposium (pp. 247–253), San Diego, CA. Davis: Department of Agricultural and Range Science Cooperative Extension, UC Davis.
Zurück zum Zitat Kubota, J., & Allaway, W. H. (1972). Geographic distribution of trace element problems. In J. J. Mordtvedt, P. M. Giordano, & W. L. Lindsay (Eds.), Micronutrients in agriculture. Madison: Soil Science Society of America. Kubota, J., & Allaway, W. H. (1972). Geographic distribution of trace element problems. In J. J. Mordtvedt, P. M. Giordano, & W. L. Lindsay (Eds.), Micronutrients in agriculture. Madison: Soil Science Society of America.
Zurück zum Zitat Läuchli, A. (2002). Functions of boron in higher plants: Recent advances and open questions. Plant Biol, 4, 190–192.CrossRef Läuchli, A. (2002). Functions of boron in higher plants: Recent advances and open questions. Plant Biol, 4, 190–192.CrossRef
Zurück zum Zitat Läuchli, A., & Grattan, S. R. (2007). Plant growth and development under salinity stress. In M. A. Jenks, P. A. Hasegawa, & S. M. Jain (Eds.), Advances in molecular-breeding towards salinity and drought tolerance (pp. 1–31). London: Springer.CrossRef Läuchli, A., & Grattan, S. R. (2007). Plant growth and development under salinity stress. In M. A. Jenks, P. A. Hasegawa, & S. M. Jain (Eds.), Advances in molecular-breeding towards salinity and drought tolerance (pp. 1–31). London: Springer.CrossRef
Zurück zum Zitat Läuchli, A., Grieve, C. M., Grattan, S. R., Smith, T. E., Poss, J. A. & Suarez, D. L. (2008, March 30–April 3). Does boron limit the use of saline water for irrigation? In Proceedings 2nd International Salinity Forum, Adelaide. Läuchli, A., Grieve, C. M., Grattan, S. R., Smith, T. E., Poss, J. A. & Suarez, D. L. (2008, March 30–April 3). Does boron limit the use of saline water for irrigation? In Proceedings 2nd International Salinity Forum, Adelaide.
Zurück zum Zitat Lesch, S. M., Rhoades, J. D., & Corwin, D. L. (2000) ESAP-95 version 2.01R: User manual and tutorial guide (Research Report No. 146). Riverside: United States Department of Agriculture, George E. Brown Jr., Salinity Laboratory. Lesch, S. M., Rhoades, J. D., & Corwin, D. L. (2000) ESAP-95 version 2.01R: User manual and tutorial guide (Research Report No. 146). Riverside: United States Department of Agriculture, George E. Brown Jr., Salinity Laboratory.
Zurück zum Zitat Letey, J., & Dinar, A. (1986). Simulated crop-production functions for several crops when irrigated with saline waters. Hilgarida, 54, 1–32. Letey, J., & Dinar, A. (1986). Simulated crop-production functions for several crops when irrigated with saline waters. Hilgarida, 54, 1–32.
Zurück zum Zitat Letey, J., & Feng, G. L. (2007). Dynamic versus steady-state approaches to evaluate irrigation management of saline waters. Agricultural Water Management, 91, 1–10.CrossRef Letey, J., & Feng, G. L. (2007). Dynamic versus steady-state approaches to evaluate irrigation management of saline waters. Agricultural Water Management, 91, 1–10.CrossRef
Zurück zum Zitat Letey, J., Dinar, A., & Knapp, K. C. (1985). Crop-water production function model for saline irrigation waters. Soil Science Society of America Journal, 49, 1005–1009.CrossRef Letey, J., Dinar, A., & Knapp, K. C. (1985). Crop-water production function model for saline irrigation waters. Soil Science Society of America Journal, 49, 1005–1009.CrossRef
Zurück zum Zitat Maas, E. V., & Grattan, S. R. (1999). Crop yields as affected by salinity. In R. W. Skaggs & J. van Schilfgaarde (Eds.), Agricultural drainage (Monograph 38, pp. 55–108). Madison: American Society of Agronomy. Maas, E. V., & Grattan, S. R. (1999). Crop yields as affected by salinity. In R. W. Skaggs & J. van Schilfgaarde (Eds.), Agricultural drainage (Monograph 38, pp. 55–108). Madison: American Society of Agronomy.
Zurück zum Zitat Maas, E. V., & Hoffman, G. J. (1977). Crop salt tolerance – Current assessment. Journal of Irrigation and Drainage Division ASCE, 103(IR2), 115–134. Maas, E. V., & Hoffman, G. J. (1977). Crop salt tolerance – Current assessment. Journal of Irrigation and Drainage Division ASCE, 103(IR2), 115–134.
Zurück zum Zitat Mason, J. (1990). The biochemical pathogenesis of molybdenum-induced copper deficiency syndromes in ruminants: Towards the final chapter. Irish Veterinary Journal, 43(1), 18–20. Mason, J. (1990). The biochemical pathogenesis of molybdenum-induced copper deficiency syndromes in ruminants: Towards the final chapter. Irish Veterinary Journal, 43(1), 18–20.
Zurück zum Zitat Masters, D. G., Benes, S. E., & Norman, H. (2007). Biosaline agriculture for forage and livestock production. Agriculture, Ecosystems & Environment, 119, 234–248.CrossRef Masters, D. G., Benes, S. E., & Norman, H. (2007). Biosaline agriculture for forage and livestock production. Agriculture, Ecosystems & Environment, 119, 234–248.CrossRef
Zurück zum Zitat Mikkelsen, R. L., Page, A. L., & Bingham, F. T. (1989). Factors affecting selenium accumulation by agricultural crops. In L. W. Jacobs (Ed.), Selenium in agriculture and the environment (Soil Science Society of America Special Publication 23, pp. 65–94). Madison: American Society of Agriculture and Soil Science Society of America. Mikkelsen, R. L., Page, A. L., & Bingham, F. T. (1989). Factors affecting selenium accumulation by agricultural crops. In L. W. Jacobs (Ed.), Selenium in agriculture and the environment (Soil Science Society of America Special Publication 23, pp. 65–94). Madison: American Society of Agriculture and Soil Science Society of America.
Zurück zum Zitat Mitchell, J. P., Shennan, C., Singer, M. J., Peters, D., Miller, R. O., Prichard, T., Grattan, S. R., Rhoades, J. D., May, D. M., & Munk, D. (2000). Impacts of gypsum and winter cover crops on soil physical properties and crop productivity when irrigated with saline water. Agricultural Water Management, 45(1), 55–71.CrossRef Mitchell, J. P., Shennan, C., Singer, M. J., Peters, D., Miller, R. O., Prichard, T., Grattan, S. R., Rhoades, J. D., May, D. M., & Munk, D. (2000). Impacts of gypsum and winter cover crops on soil physical properties and crop productivity when irrigated with saline water. Agricultural Water Management, 45(1), 55–71.CrossRef
Zurück zum Zitat Morris, J. D., & Thomson, L. A. J. (1983). The role of trees in dryland salinity control. Proceedings of the Royal Society of Victoria, 95(3), 123–131. Morris, J. D., & Thomson, L. A. J. (1983). The role of trees in dryland salinity control. Proceedings of the Royal Society of Victoria, 95(3), 123–131.
Zurück zum Zitat Nable, R. O., Bañuelos, G. S., & Paul, J. G. (1997). Boron toxicity. Plant and Soil, 193, 181–198.CrossRef Nable, R. O., Bañuelos, G. S., & Paul, J. G. (1997). Boron toxicity. Plant and Soil, 193, 181–198.CrossRef
Zurück zum Zitat NRC (National Research Council). (1996). Nutrient requirements of beef cattle (7th ed.). Washington, DC: National Academy Press. NRC (National Research Council). (1996). Nutrient requirements of beef cattle (7th ed.). Washington, DC: National Academy Press.
Zurück zum Zitat NRC (National Research Council). (2001). Nutrient requirements of dairy cattle (7th ed.). Washington, DC: National Academy Press. NRC (National Research Council). (2001). Nutrient requirements of dairy cattle (7th ed.). Washington, DC: National Academy Press.
Zurück zum Zitat Ohlendorf, H. M. (1989). Bioaccumulation and effects of selenium in wildlife. In L. W. Jacobs (Ed.), Selenium in agriculture and the environment (pp. 133–177). Madison: Soil Science Society of America Special Publication 23. Ohlendorf, H. M. (1989). Bioaccumulation and effects of selenium in wildlife. In L. W. Jacobs (Ed.), Selenium in agriculture and the environment (pp. 133–177). Madison: Soil Science Society of America Special Publication 23.
Zurück zum Zitat Oster, J. D. (1994). Irrigation with poor quality water. Agricultural Water Management, 25, 271–297.CrossRef Oster, J. D. (1994). Irrigation with poor quality water. Agricultural Water Management, 25, 271–297.CrossRef
Zurück zum Zitat Oster, J. D., & Grattan, S. R. (2002). Drainage water reuse. Irrigation Drainage Systems, 16, 297–310.CrossRef Oster, J. D., & Grattan, S. R. (2002). Drainage water reuse. Irrigation Drainage Systems, 16, 297–310.CrossRef
Zurück zum Zitat Osweiler, G. D., Carson, T. L., Buck, W. B., & van Gelder, G. A. (1985). Clinical and diagnostic veterinary toxicology (3rd ed.). Dubuque: Kendall/Hunt (Publishers). Osweiler, G. D., Carson, T. L., Buck, W. B., & van Gelder, G. A. (1985). Clinical and diagnostic veterinary toxicology (3rd ed.). Dubuque: Kendall/Hunt (Publishers).
Zurück zum Zitat Pang, X. P., & Letey, J. (1998). Development and evaluation of ENVIRO-GRO, an integrated water, salinity, and nitrogen model. Soil Science Society of America Journal, 62, 1418–1427.CrossRef Pang, X. P., & Letey, J. (1998). Development and evaluation of ENVIRO-GRO, an integrated water, salinity, and nitrogen model. Soil Science Society of America Journal, 62, 1418–1427.CrossRef
Zurück zum Zitat Pasternak, D., DeMhalach, Y., & Borovic, I. (1986). Irrigation with brackish water under desert conditions VII. Effect of time of application of brackish water on production of processing tomatoes (Lycopersicon esculentum mill.). Agricultural Water Mangement, 12, 149–158.CrossRef Pasternak, D., DeMhalach, Y., & Borovic, I. (1986). Irrigation with brackish water under desert conditions VII. Effect of time of application of brackish water on production of processing tomatoes (Lycopersicon esculentum mill.). Agricultural Water Mangement, 12, 149–158.CrossRef
Zurück zum Zitat Phillippo, M., Humphries, W. R., Atkinson, T., Henderson, G. D., & Garhwaite, P. H. (1987). The effect of dietary molybdenum and iron on copper status, puberty, fertility and oestrus cycles in cattle. Journal of Agricultural Science, 109, 321–336.CrossRef Phillippo, M., Humphries, W. R., Atkinson, T., Henderson, G. D., & Garhwaite, P. H. (1987). The effect of dietary molybdenum and iron on copper status, puberty, fertility and oestrus cycles in cattle. Journal of Agricultural Science, 109, 321–336.CrossRef
Zurück zum Zitat Qadir, M., & Oster, J. D. (2004). Crop and irrigation management strategies for saline-sodic soils and waters aimed at environmentally sustainable agriculture. Science of the Total Environment, 323, 1–19. Elsevier Press. www.sciencedirect.com.CrossRef Qadir, M., & Oster, J. D. (2004). Crop and irrigation management strategies for saline-sodic soils and waters aimed at environmentally sustainable agriculture. Science of the Total Environment, 323, 1–19. Elsevier Press. www.​sciencedirect.​com.CrossRef
Zurück zum Zitat Rains, D. W., Goyal, S., Weyrauch, R., & Lauchli, A. (1987). Saline drainage water reuse in a cotton rotation system. California Agriculture, 41, 24–26. Rains, D. W., Goyal, S., Weyrauch, R., & Lauchli, A. (1987). Saline drainage water reuse in a cotton rotation system. California Agriculture, 41, 24–26.
Zurück zum Zitat Rhoades, J. D. (1984). Use of saline water for irrigation. California Agriculture, 38(10), 42–43. Rhoades, J. D. (1984). Use of saline water for irrigation. California Agriculture, 38(10), 42–43.
Zurück zum Zitat Rhoades, J. D. (1987). Use of saline water for irrigation. Water Quality Bulletin, 12, 14–20. Rhoades, J. D. (1987). Use of saline water for irrigation. Water Quality Bulletin, 12, 14–20.
Zurück zum Zitat Rhoades, J. D., Bingham, F. T., Letey, J., Dedrick, A. R., Bean, M., Hoffman, G. J., Alves, W. J., Swain, R. V., Acheco, P. G., & Lemert, R. D. (1988). Reuse of drainage water for irrigation: Results of imperial valley study. Hilgardia, 56, 1–45. Rhoades, J. D., Bingham, F. T., Letey, J., Dedrick, A. R., Bean, M., Hoffman, G. J., Alves, W. J., Swain, R. V., Acheco, P. G., & Lemert, R. D. (1988). Reuse of drainage water for irrigation: Results of imperial valley study. Hilgardia, 56, 1–45.
Zurück zum Zitat Rhoades, J. D., Bingham, F. T., Letey, J., Hoffman, G. D., Pinter, A. R., Alves, W. J., Swain, R., Pacheco, P., Lemert, R., & Replogle, J. A. (1989). Use of saline drainage water for irrigation: Imperial valley study. Agricultural Water Management, 16, 25–36.CrossRef Rhoades, J. D., Bingham, F. T., Letey, J., Hoffman, G. D., Pinter, A. R., Alves, W. J., Swain, R., Pacheco, P., Lemert, R., & Replogle, J. A. (1989). Use of saline drainage water for irrigation: Imperial valley study. Agricultural Water Management, 16, 25–36.CrossRef
Zurück zum Zitat Rhoades, J. D., Kandiah, A., & Mashali, A. M. (1992). The use of saline waters for crop production (FAO Irrigation and Drainage Paper No. 48, 133pp.). Rome: FAO. Rhoades, J. D., Kandiah, A., & Mashali, A. M. (1992). The use of saline waters for crop production (FAO Irrigation and Drainage Paper No. 48, 133pp.). Rome: FAO.
Zurück zum Zitat Robinson, P. R., Grattan, S. R., Getachew, G., Grieve, C. M., Poss, J. A., Suarez, D. S., & Benes, S. E. (2004). Biomass accumulation and potential nutritive value of some forages irrigated with saline-sodic drainage water. Animal Feed Science and Technology, 111, 175–189.CrossRef Robinson, P. R., Grattan, S. R., Getachew, G., Grieve, C. M., Poss, J. A., Suarez, D. S., & Benes, S. E. (2004). Biomass accumulation and potential nutritive value of some forages irrigated with saline-sodic drainage water. Animal Feed Science and Technology, 111, 175–189.CrossRef
Zurück zum Zitat Rosenfeld, I., & Beath, O. A. (1964). Selenium: Geobotany, biochemistry, toxicity and nutrition. New York: Academic. Rosenfeld, I., & Beath, O. A. (1964). Selenium: Geobotany, biochemistry, toxicity and nutrition. New York: Academic.
Zurück zum Zitat Sanden, B. L., Ferguson, L., Reyes, H. C., & Grattan, S. R. (2004). Effect of salinity on evapotranspiration and yield of San Joaquin valley pistachios. Acta Horticulture, 664, 583–589. Sanden, B. L., Ferguson, L., Reyes, H. C., & Grattan, S. R. (2004). Effect of salinity on evapotranspiration and yield of San Joaquin valley pistachios. Acta Horticulture, 664, 583–589.
Zurück zum Zitat Shalhevet, J. (1984). Management of irrigation with brackish water. In I. Shainberg & J. Shalhevet (Eds.), Soil salinity under irrigation, processes and management (pp. 298–318). London: Springer. Shalhevet, J. (1984). Management of irrigation with brackish water. In I. Shainberg & J. Shalhevet (Eds.), Soil salinity under irrigation, processes and management (pp. 298–318). London: Springer.
Zurück zum Zitat Sharma, D. P., & Tyagi, N. K. (2004). On-farm management of saline drainage water in arid and semi-arid regions. Irrigation and Drainage, 53, 87–103.CrossRef Sharma, D. P., & Tyagi, N. K. (2004). On-farm management of saline drainage water in arid and semi-arid regions. Irrigation and Drainage, 53, 87–103.CrossRef
Zurück zum Zitat Shennan, C., Grattan, S. R., May, D. M., Hillhouse, C. J., Schactman, D. P., Wander, M., Roberts, B., Burau, R. G., McNeish, C., & Zelinski, L. (1995). Feasibility of cyclic reuse of saline drainage in a tomato-cotton rotation. Journal of Environmental Quality, 24, 476–486.CrossRef Shennan, C., Grattan, S. R., May, D. M., Hillhouse, C. J., Schactman, D. P., Wander, M., Roberts, B., Burau, R. G., McNeish, C., & Zelinski, L. (1995). Feasibility of cyclic reuse of saline drainage in a tomato-cotton rotation. Journal of Environmental Quality, 24, 476–486.CrossRef
Zurück zum Zitat SJVDP (San Joaquin Valley Drainage Program). (1990). A management plan for agricultural subsurface drainage and related problems on the Westside San Joaquin Valley (Final report of the San Joaquin Valley Drainage Program, 183pp.). Sacramento: U.S. Dept. Interior and Calif. Resources Agency. SJVDP (San Joaquin Valley Drainage Program). (1990). A management plan for agricultural subsurface drainage and related problems on the Westside San Joaquin Valley (Final report of the San Joaquin Valley Drainage Program, 183pp.). Sacramento: U.S. Dept. Interior and Calif. Resources Agency.
Zurück zum Zitat Suttle, F. N. (1991). The interactions between copper, molybdenum and sulfur in ruminant nutrition. Annual Review of Nutrition, 2, 121.CrossRef Suttle, F. N. (1991). The interactions between copper, molybdenum and sulfur in ruminant nutrition. Annual Review of Nutrition, 2, 121.CrossRef
Zurück zum Zitat Suyama, H., Benes, S. E., Robinson, P. H., Getachew, G., Grattan, S. R., & Grieve, C. M. (2007a). Biomass yield and nutritional quality of forage species under long-term irrigation with saline-sodic drainage water: Field evaluation. Animal Feed Science and Technology, 135, 329–345.CrossRef Suyama, H., Benes, S. E., Robinson, P. H., Getachew, G., Grattan, S. R., & Grieve, C. M. (2007a). Biomass yield and nutritional quality of forage species under long-term irrigation with saline-sodic drainage water: Field evaluation. Animal Feed Science and Technology, 135, 329–345.CrossRef
Zurück zum Zitat Suyam, H., Benes, S. E., Robinson, P. H., Grattan, S. R., Grieve, C. M., & Getachew, G. (2007b). Forage productivity, and quality under irrigation with saline-sodic drainage water: Greenhouse evaluation. Agriculture Water Management, 88, 159–172.CrossRef Suyam, H., Benes, S. E., Robinson, P. H., Grattan, S. R., Grieve, C. M., & Getachew, G. (2007b). Forage productivity, and quality under irrigation with saline-sodic drainage water: Greenhouse evaluation. Agriculture Water Management, 88, 159–172.CrossRef
Zurück zum Zitat Tanji, K. K., Valoppi. L.,& Woodring, R. C. (Eds.). (1988). Selenium contents in animal and human food crops grown in California. University of California Division of Agriculture and Natural Resources (Publication 3330, 102pp.). Oakland: University of California. Tanji, K. K., Valoppi. L.,& Woodring, R. C. (Eds.). (1988). Selenium contents in animal and human food crops grown in California. University of California Division of Agriculture and Natural Resources (Publication 3330, 102pp.). Oakland: University of California.
Zurück zum Zitat Valoppi, L., & Tanji, K. K. (1988). Are the selenium levels in food crops and waters of concern? In: K. K. Tanji, L. Valoppi & R. C. Woodring (Eds.), Selenium contents in animal and human food crops grown in California. University of California Division of Agriculture and Natural Resources (Publication 3330, 102pp.). Oakland: University of California. Valoppi, L., & Tanji, K. K. (1988). Are the selenium levels in food crops and waters of concern? In: K. K. Tanji, L. Valoppi & R. C. Woodring (Eds.), Selenium contents in animal and human food crops grown in California. University of California Division of Agriculture and Natural Resources (Publication 3330, 102pp.). Oakland: University of California.
Zurück zum Zitat Van Schilfgaarde, J. (1990). Irrigated agriculture: Is it sustainable? , In: K. K. Tanji (Ed.), Agricultural salinity assessment and management (Manuals and Reports on Engineering Practice No. 71, pp. 584–594). New York: American Society of Civil Engineers. Van Schilfgaarde, J. (1990). Irrigated agriculture: Is it sustainable? , In: K. K. Tanji (Ed.), Agricultural salinity assessment and management (Manuals and Reports on Engineering Practice No. 71, pp. 584–594). New York: American Society of Civil Engineers.
Zurück zum Zitat Velarde, M., Felker, P., & Degano, C. (2003). Evaluation of Argentine & Peruvian Prosopis germplasm for growth at seawater salinities. Journal of Arid Environments, 55, 515–531.CrossRef Velarde, M., Felker, P., & Degano, C. (2003). Evaluation of Argentine & Peruvian Prosopis germplasm for growth at seawater salinities. Journal of Arid Environments, 55, 515–531.CrossRef
Zurück zum Zitat Ward, G. M. L. (1978). Molybdenum toxicity and hypocuprosis in ruminants: A review. Journal of Animal Science, 46, 1078–1085. Ward, G. M. L. (1978). Molybdenum toxicity and hypocuprosis in ruminants: A review. Journal of Animal Science, 46, 1078–1085.
Metadaten
Titel
Drainage Water Reuse: Concepts, Practices and Potential Crops
verfasst von
Stephen R. Grattan
James D. Oster
John Letey
Stephen R. Kaffka
Copyright-Jahr
2014
Verlag
Springer Netherlands
DOI
https://doi.org/10.1007/978-94-007-6851-2_11