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首页> 外文期刊>International Journal of Economic and Environment Geology >Spatial and Temporal Changes in Salinity of Arable Lands in Shah Bandar Tehsil, Thatta District, Sindh
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Spatial and Temporal Changes in Salinity of Arable Lands in Shah Bandar Tehsil, Thatta District, Sindh

机译:信德省塔塔县沙阿班达特希尔的耕地盐分的时空变化

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The cultivable lands are reducing significantly in hot and dry arid regions of the world due to soil salinity and sodicity resulting in yield losses. Similarly, the coastal Shah Bandar Tehsil of Thatta district is also severely affected by different levels of soil salinity and sodicity. The topography of the area is uneven, so ill drained depressions and saline creeks are common. This area was worst affected by floods of 2010 and 2011. The flood water kept standing for several months causing water logging in the area. Irrigation is done with perennial and non perennial canals, as groundwater is highly saline due to saltwater flooding and seawater intrusion. In order to identify spatial and temporal variations in soil salinity and sodicity, 48 soil samples were collected from six sites of Shah Bandar Tehsil during Post and Pre monsoon seasons of 2011-2013. Physicochemical data indicate that average pHe of soil ranges between 7.4 and 7.8 during Post and Pre monsoon seasons of 2011-2013. While soil salinity (ECe) and sodicity (SAR) ranged from 1.09 to 47.10 dS/m and 2.43 to 43.79 during Post monsoon seasons of 2011 and 2013 respectively. Whereas, during Pre-monsoon seasons of 2012 and 2013, EC and SAR ranged from 2.30 to 65.8 dS/m and 3.12 to 50.51 respectively. Thus, soil salinity and sodicity vary from site to site and season to season due to arid climate, high evapotranspiration and fallow lands because of reduced flow of freshwater and seawater intrusion. Data show that the soil quality improved significantly as indicated by reduced soil salinity and sodicity due to floods of 2010 and 2011.
机译:由于土壤盐分和碱度的升高,导致世界干旱和干旱地区的可耕地大大减少,导致单产下降。同样,撒塔地区的沿海莎阿·班达·特希尔(Shah Bandar Tehsil)也受到不同程度的土壤盐分和碱度的严重影响。该地区的地形不平坦,因此排水不良的凹陷和咸水小溪很常见。该地区受2010年和2011年洪水的影响最严重。洪水持续了数月之久,导致该地区出现了水灾。多年生和非多年生的运河都进行灌溉,因为由于海水泛滥和海水入侵,地下水含盐量很高。为了确定土壤盐分和盐度的时空变化,在2011-2013年季风前后前后,从Shah Bandar Tehsil的6个地点采集了48个土壤样品。理化数据表明,2011-2013年季风后和季风前土壤的平均pHe在7.4至7.8之间。在2011年和2013年的季风后季节,土壤盐度(ECe)和碱度(SAR)分别为1.09至47.10 dS / m和2.43至43.79。而在2012年和2013年的季风前季节,EC和SAR分别为2.30至65.8 dS / m和3.12至50.51。因此,由于干旱气候,高蒸发蒸腾量和休耕地(由于淡水流量减少和海水入侵),土壤盐分和碱度因地而异,因季节而异。数据显示,由于2010年和2011年的洪水导致土壤盐分和碱度降低,表明土壤质量显着改善。

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