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《Journal of Soil and Water Conservation》 2007-01
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Character of Soil Aluminum Forms under Different Land Use and Slope Position

Lü Huan-zhe1,2,WANG Kai-rong1,XIE Xiao-li1 (1.Institute of Subtropical Agriculture,Chinese Academy of Sciences,Changsha 410125;2.The Graduate School of CAS,Beijing 100039)  
Different land use affect soil physical properties and nutrient characteristics, taking the hilly upland of red soil as a study case,the system selected consist of 4 different treatments of 10 years,that is regional natural recuperation,farming plot,planted forest tea plant and orange.We have investigated the soil characteristics and aluminum forms under different land use.The result showed that there is significant difference in the content of soil pH,organic matter and active aluminum forms by reasons of different land use.Compare to regional natural recuperation,the content of soil exchangeble aluminum in farming plot decreased because of straw and root stubble incorporation into the soil and adsorbent hydroxy aluminum and organically complexed aluminum increased.As for planted tea and orange plant,soil exchangeble aluminum increased,adsorbent hydroxy aluminum and organically complexed aluminum decreased.Soil corrasion transite to soil deposite from uphill slope to downhill slope position,so soil dissovled organic material piles up along with the runoff,which will increase soil pH and soil organic matter in downhill slope position.The correlation analysis indicated that soil pH value have a negative correlation with soil exchangeable aluminum and a positive correlation with soil adsorbent hydroxy aluminum remarbly,the equation is as follows respectively: y=-97.6x+6009.2(R2= 0.7315),y = 2810.8x-9293(R2=0.9003).Soil organic matter correlate with soil exchangeble aluminum negatively and with soil organically complexed aluminum positively,the equation is: y=-2963x+17616(R2=0.8977)and y=553.4x4779.1(R2=0.4364).As a result,the results showed that soil aluminum forms and nutrient properties largely depended on the land utilization and landscape on slope.
【Fund】: CERN野外台站研究基金;; 中国科学院知识创新项目(KZCX3-SW-441)联合资助
【CateGory Index】: S153
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