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Shallow groundwater and soil chemistry response to 3 years of subsurface drip irrigation using coalbed-methane-produced water

机译:浅层地下水和土壤化学对使用煤层气生产的地下地下滴灌3年的响应

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摘要

Disposal of produced waters, pumped to the surface as part of coalbed methane (CBM) development, is a significant environmental issue in the Wyoming portion of the Powder River Basin, USA. High sodium adsorption ratios (SAR) of the waters could degrade agricultural land, especially if directly applied to the soil surface. One method of disposing of CBM water, while deriving beneficial use, is subsurface drip irrigation (SDI), where acidified CBM waters are applied to alfalfa fields year-round via tubing buried 0.92m deep. Effects of the method were studied on an alluvial terrace with a relatively shallow depth to water table (~3m). Excess irrigation water caused the water table to rise, even temporarily reaching the depth of drip tubing. The rise corresponded to increased salinity in some monitoring wells. Three factors appeared to drive increased groundwater salinity: (1) CBM solutes, concentrated by evapotranspiration; (2) gypsum dissolution, apparently enhanced by cation exchange; and (3) dissolution of native Na-Mg-SO_4 salts more soluble than gypsum. Irrigation with high SAR (~24) water has increased soil saturated paste SAR up to 15 near the drip tubing. Importantly though, little change in SAR has occurred at the surface.
机译:作为美国煤层气(CBM)开发的一部分,将产出水进行泵送处理是美国粉末河盆地怀俄明州一个重大的环境问题。水的高钠吸附率(SAR)可能会使农田退化,尤其是直接施用于土壤表面时。处置煤层气水的一种方法虽然获得了有益的利用,但却是地下滴灌(SDI),其中,将酸化的煤层气水通过埋入0.92m深的管道全年用于苜蓿田。研究了该方法对冲积阶地的影响,该冲积阶地相对于地下水位较浅(〜3m)。过多的灌溉水导致地下水位上升,甚至暂时达到滴水管的深度。上升对应于一些监测井中盐度的增加。似乎三个因素推动了地下水盐度的增加:(1)由蒸散作用浓缩的煤层气溶质; (2)石膏溶解,通过阳离子交换明显增强; (3)溶解性比石膏高的天然Na-Mg-SO_4盐的溶解。高滴水比比(〜24)水灌溉使滴灌管附近的土壤饱和糊状比吸收比增加到15。但重要的是,表面的SAR几乎没有变化。

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