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Acidification of Surface Soil in Croplands in the Semiarid Middle Tibet Plateau, China

机译:中国半干旱地区土壤土壤酸化酸化

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The research of temporal variability of fertility input rates and how this variation affects soil acidity is imperative in the semiarid agricultural areas. Through the investigation of soil pH in cropland in the semiarid middle Tibet Plateau, China, in 2008 and the analogy with the spatial-temporal variation of pH of soils and their causing factors, It was shown that significant changes of soil pH in the area occurred since the Second National Soil Survey in 1980s, With average pH values decreasing from 7.70 in 1980s to 7.22 in 2008. The annual nitrogen rates were significantly different during three periods: 1985-1990, 1990-1995, and 1995-2005, where mean annual N rates increased from 7.7 kg ha-1 yr-1 to 94.01 kg ha-1 yr-1, followed by a decrease to 49.09 kg ha-1 yr-1 and then increased to 169.82 kg ha-1 yr-1. Fertilizer input rates were causing nutrient imbalances, contributing to acidification. A significant increase of fertilizer input, particularly ammonium nitrogen fertilizer, most likely caused the severe acidification in Ustic Cambisols and Dar Aquic Cambisols. We recommend that reduce annual rate of ammonium nitrogen fertilizer to avoid acidification. Efforts should be made to readjust soil nutrient inputs to reach an optimal, sustainable level.
机译:在半干旱农业领域,生育率投入率的时间变异性以及这种变异如何影响土壤酸度。通过调查Memiarid中西藏高原土壤pH的土壤pH值,2008年和对土壤pH值的空间变化的类比及其导致因素的类比,结果表明该地区土壤pH值的显着变化自20世纪80年代的第二次国家土壤调查以来,平均pH值从20世纪80年代的7.70减少到2008年的7.22.在三期内氮率有显着差异:1985-1990,1990-1995和1995-2005,在那里平均年度n率从7.7千克HA -1 -1 YR -1升至94.01 kg ha -1 Yr -1 。然后减少至49.09kg ha -1 -1 / sup> Yr -1 ,然后增加至169.82kg ha -1 -1 Yr -1 < / sup>。肥料投入率造成营养不平衡,有助于酸化。肥料输入的显着增加,特别是氮肥铵,最有可能导致Ustic Cambisols和Dar Aquic Cambisols中的严重酸化。我们建议减少氮肥率的年速率以避免酸化。应努力重新调整土壤营养投入以达到最佳,可持续的水平。

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