Scientia Agricultura Sinica ›› 2015, Vol. 48 ›› Issue (23): 4818-4826.doi: 10.3864/j.issn.0578-1752.2015.23.023
• SOIL & FERTILIZER·WATER-SAVING IRRIGATION·AGROECOLOGY & ENVIRONMENT • Previous Articles Next Articles
ZHAO Kai-li1, CAI Ze-jiang1,2, WANG Bo-ren1,2, WEN Shi-lin1,2, ZHOU Xiao-yang1, SUN Nan1,2
[1] 赵其国. 中国东部红壤地区土壤退化的时空变化、机理及调控. 北京: 科学出版社, 2002.
Zhao Q G. Mechanism, Temporal-Spatial Changes and Controlling Countermeasures of Soil Degradation in Hilly Red Soil Region of Southeastern China. Beijing: Science Press,2002. (in Chinese)
[2] 姬钢, 徐明岗, 文石林, 王伯仁, 张璐, 刘立生. 不同植被类型下红壤pH和交换性酸的剖面特征. 应用生态学报. 2015, 26(9): 2639-2645.
Ji G, Xu M G, Wen S L, Wang B R, Zhang L, Liu L S. Characteristics of soil pH and exchangeable acidity in red soil profile under different vegetation types. Acta Ecologica Sinica. 2015, 26(9): 2639-2645. (in Chinese)
[3] Guo J H, Liu X J, Zhang Y. Significant acidification in major chinese croplands. Science, 2010, 327: 1008-1010.
[4] 赵栋, 潘远智, 邓仕槐. 尚鹤, 王芳, 陈睿. 模拟酸雨对茶梅生理生态特性的影响. 中国农业科学, 2010, 43(15): 3191-3198.
Zhao D, Pan Y Z, Deng S H, Shang H, Wang F, Chen R. Effects of simulated acid rain on physiological and ecological characteristics of camellia sasanqua. Scientia Agricultura Sinica, 2010, 43(15): 3191-3198. (in Chinese)
[5] 郭建军, 李惠卓. 不同母质母岩土壤特性的分析研究. 内蒙古林业科技, 2003(1): 21-23.
Guo J J, Li H Z. Analysis and study on soil characteristics in different parent rock. Inner Mongolia Forestry Science & Technology, 2003(1): 21-23. (in Chinese)
[6] Jobbágy E G, Jackson R B. Patterns and mechanisms of soil acidification in the conversion of grasslands to forests. Biogeochemistry,2003, 64: 205-229.
[7] 王兴祥, 李清曼, 曹慧, 何园球, 张桃林. 关于植物对红壤的酸化作用及其致酸机理. 土壤通报, 2004, 35(1): 73-77.
Wang X X, Li Q M, Cao H, He Y Q, Zhang T L. Preliminary discussion on red soil acidification induced by plant and its mechanism. Chinese Journal of Soil Science, 2004, 35(1): 73-77. (in Chinese)
[8] 何腾兵, 董玲玲, 刘元生, 舒英阁, 罗海波, 刘芳. 贵阳市乌当区不同母质发育的土壤理化性质和重金属含量差异研究. 水土保持学报, 2006, 20(6): 157-162.
He T B, Dong L L, Liu Y S, Shu Y G, Luo H B, Liu F. Change of physical-chemical properties and heavy mental element in soil from different parent material/rock. Journal of Soil and Water Conservation, 2006, 20(6): 157-162. (in Chinese)
[9] 郭荣发, 杨杰文. 成土母质和种植制度对土壤pH和交换性铝的影响. 生态学报, 2004, 24(5): 984-990.
Guo R F, Yang J W. pH and the exchangeable aluminum content in acid soils as affected by parentmaterials and cropping systems. Acta Ecologica Sinica, 2004, 24(5): 984-990. (in Chinese)
[10] 吴甫成, 王晓燕, 邹君, 彭世良. 湖南土壤酸缓冲性能研究. 农业现代化研究. 2001, 22(1): 58-62.
Wu F C, Wang X Y, Zou J, Peng S L. A Study on acidic buffering ability of soils in Hunan province. Research of Agricultural Modernization, 2001, 22(1): 58-62. (in Chinese)
[11] Xu J M, Tang C, Chen Z L. The role of plant residues in pH change of acid soils differing in initial pH. Soil Biology & Biochemistry, 2006, 38(4): 709-719.
[12] 段雷, 黄永梅, 郝吉明, 周中平. 中国植被对氮和盐基阳离子吸收速率及其在土壤酸化中的作用. 环境科学, 2002, 23(3): 68-74.
Duan L, Huang Y M, Hao J M, Zhou Z P. Vegetation uptake of nitrogen and base cation in China and its role in soil acidification. Environmental Science, 2002, 23(3): 68-74. (in Chinese)
[13] Zhang T L, Wang X X, Zhang B, Zhao Q G. Soil degradation in relation to land use and its countermeasures in the red and yellow soil region of southern China//Integrated Watershed Management in the Global Ecosystems. Boca Raton: CRC Press, 1999: 52-57.
[14] 张璐, 文石林, 蔡泽江, 黄平娜. 湘南红壤丘陵区不同植被类型下土壤肥力特征. 生态学报, 2014, 34(14): 3996-4005.
Zhang L, Wen S L, Cai Z J, Huang P N. Characteristics of soil fertility under different vegetation types in the hilly red soil region of southern Hunan. Acta Ecologica Sinica, 2014, 34(14): 3996-4005. (in Chinese)
[15] Ronse A, Temmerman L D, Guns M. Evolution of acidity, organic matter content, and CEC in uncultivated soils of North Belgium during the past 25 years. Soil Science, 1988, 146(6): 453-460.
[16] 夏汉平, 余清发, 张德强. 鼎湖山3种不同林型下的土壤酸度和养分含量差异及其季节动态变化特性. 生态学报. 1997, 17(6): 645-653.
Xia H P, Yu Q F, Zhang D Q. The soil acidity and nutrient contents, and their characteristics of seasonal dynamic changes under 3 different forests of dinghushan nature reserve. Acta Ecologica Sinica,1997, 17(6): 645-653. (in Chinese)
[17] 鲍士旦. 土壤农化分析. 第三版. 北京: 中国农业出版社, 2000.
Bao S D. Soil and Agricultural Chemistry Analysis. 3rd ed. Beijing: China Agriculture Press, 2000. (in Chinese)
[18] 黄运湘, 曾希柏, 张杨珠, 林志灵, 孙楠, 王道龙. 湖南省丘岗茶园土壤的酸化特征及其对土壤肥力的影响. 土壤通报, 2010, 41(3): 633-638.
Huang Y X, Zeng X B, Zhang Y Z, Lin Z L, Sun N, Wang D L. Tea garden soil acidification and its impact on soil fertility in Hillock of Hunan Province. Chinese Journal of Soil Science,2010, 41(3): 633-638. (in Chinese)
[19] 陈灿, 洪滔, 林勇明, 李键, 洪伟, 吴承祯. 沿海湿地松防护林土壤pH空间变异分析. 广东农业科学, 2015, 9: 45-50.
Chen C, Hong T, Lin Y M, Li J, Hong W, Wu C Z. Spatial variation analysis on soil pH values of coastal protection forest of Pinus elliottii E.. Guangdong Agricultural Sciences, 2015, 9: 45-50. (in Chinese)
[20] 盛建东, 杨玉玲, 陈冰, 武红旗. 土壤总盐、pH及总碱度空间变异特征研究. 土壤, 2005, 37(1): 69-73.
Sheng J D, Yang Y L, Chen B, Wu H Q. Spatial variability of soil total salt, pH and toyal alkalinity. Soils, 2005, 37(1): 69-73. (in Chinese)
[21] 周国华, 马生明, 喻劲松, 朱立新. 土壤剖面元素分布及其地质环境意义. 地质与勘探, 2002, 38(6): 70-75.
Zhou G H, Ma S M, Yu J S, Zhu L X. Vertical distribution of elements in soil profiles and their significance for geological and environmental. Geology and Prospecting, 2002, 38(6): 70-75. (in Chinese)
[22] 王晓燕, 吴甫成, 田均良. 亚热带红壤酸缓冲特性试验研究. 热带地理, 2003, 23(1): 26-29.
Wang X Y, Wu F C, Tian J L. A study of the acid buffer characters of subtropical red soils through experiments. Tropical Geography,2003, 23(1): 26-29. (in Chinese)
[23] 黄平, 张佳宝, 朱安宁, 张丛志. 黄淮海平原典型潮土的酸碱缓冲性能. 中国农业科学. 2009,42(7): 2392-2396.
Huang P, Zhang J B, Zhu A N, Zhang C Z. Acid and alkaline buffering capacity of typical fluvor-aquic soil in Huang-Huai-Hai plain. Scientia Agricultura Sinica, 2009, 42(7): 2392-2396. (in Chinese)
[24] 田大伦, 项文化, 闫文德. 马尾松与湿地松人工林生物量动态及养分循环特征. 生态学报, 24(10): 2207-2210.
Tian D L, Xiang W H, Yan W D. Comparison of biomass dynamic and nutrient cycling between Pinus massomiana plantation and Pinus elliottii plantation. Acta Ecologica Sinica, 24(10): 2207-2210. (in Chinese)
[25] 张文猛, 王兴祥. 亚热带典型人工林土壤酸化特征及其生物学机理初步分析. 土壤, 2012, 44(6): 1021-1028.
Zhang W M, Wang X X. Characteristics of soil acidification and primary study of biological mechanism of typical forest plantation in subtropical China. Soils, 2012, 44(6): 1021-1028. (in Chinese)
[26] 官丽莉, 周国逸, 张德强, 刘菊秀, 张倩媚. 鼎湖山南亚热带常绿阔叶林凋落物量20年动态研究. 植物生态学报, 2004, 28(4): 449-456.
Guan L L, Zhou G Y, Zhang D Q, Liu J X, Zhang Q M. Twenty years of litter fall dynamics in subtropical evergreen broad-leaved forest at the DingHuShan forest ecosystem research station. Acta Phytoecologica Sinica,2004, 28(4): 449-456. (in Chinese) |
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