Arid
DOI10.2134/jeq2005.0062
Soil nitrate nitrogen dynamics after biosolids application in a tobosagrass desert grassland
Jurado-Guerra, P; Wester, DB; Fish, EB
通讯作者Wester, DB
来源期刊JOURNAL OF ENVIRONMENTAL QUALITY
ISSN0047-2425
EISSN1537-2537
出版年2006
卷号35期号:2页码:641-650
英文摘要

Dormant-season application of biosolids increases desert grass production more than growing season application in the first growing season after application. Differential patterns of NO3-N (plant available N) release following seasonal biosolids application may explain this response. Experiments were conducted to determine soil nitrate nitrogen dynamics following application of biosolids during two seasons in a tobosagrass [Hilaria mutica (Buckl.) Benth.] Chihuahuan Desert grassland. Biosolids were applied either in the dormant (early April) or growing (early July) season at 0, 18, or 34 dry Mg ha(-1). A polyester-nylon mulch was also applied to serve as a control that approximated the same physical effects on the soil surface as the biosolids but without any chemical effects. Supplemental irrigation was applied to half of the plots. Soil NO3-N was measured at two depths (0-5 and 5-15 cm) underneath biosolids (or mulch) and in interspace positions relative to surface location of biosolids (or mulch). Dormant-season biosolids application significantly increased soil NO3-N during the first growing season, and also increased soil NO3-N throughout the first growing season compared to growing-season biosolids application in a year of higher-than-average spring precipitation. In a year of lower-than-average spring precipitation, season of application did not affect soil NO3-N. Soil NO3-N was higher at both biosolids rates for both seasons of application than in the control treatment. Biosolids increased soil NO3-N compared to the inert mulch. Irrigation did not significantly affect soil NO3-N. Soil NO3-N was not significantly different underneath biosolids and in interspace positions. Surface soil NO3-N was higher during the first year of biosolids application, and subsurface soil NO3-N increased during the second year. Results showed that biosolids rate and season of application affected soil NO3-N measured during the growing season. Under dry spring-normal summer precipitation conditions, season of application did not affect soil NO3-N; in contrast, dormant season application increased soil NO3-N more than growing season application under wet spring-dry summer conditions.


类型Article
语种英语
国家USA ; Mexico
收录类别SCI-E
WOS记录号WOS:000235942300027
WOS关键词PLANT-AVAILABLE NITROGEN ; CHIHUAHUAN DESERT ; SEWAGE-SLUDGE ; AMMONIA VOLATILIZATION ; PHYSICAL-PROPERTIES ; ORGANIC WASTES ; MINERALIZATION ; DECOMPOSITION ; CARBON ; RESPONSES
WOS类目Environmental Sciences
WOS研究方向Environmental Sciences & Ecology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/152114
作者单位(1)Texas Tech Univ, Dept Range Wildlife & Fisheries Management, Coll Agr Sci & Nat Resources, Lubbock, TX 79409 USA;(2)Inst Nacl Invest Forestales Agr & Pecuarias, Chihuahua 31100, Chih, Mexico
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Jurado-Guerra, P,Wester, DB,Fish, EB. Soil nitrate nitrogen dynamics after biosolids application in a tobosagrass desert grassland[J],2006,35(2):641-650.
APA Jurado-Guerra, P,Wester, DB,&Fish, EB.(2006).Soil nitrate nitrogen dynamics after biosolids application in a tobosagrass desert grassland.JOURNAL OF ENVIRONMENTAL QUALITY,35(2),641-650.
MLA Jurado-Guerra, P,et al."Soil nitrate nitrogen dynamics after biosolids application in a tobosagrass desert grassland".JOURNAL OF ENVIRONMENTAL QUALITY 35.2(2006):641-650.
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