参考文献/References:
[1]ZHU Q C, LIU X, HAO T, et al. Modeling soil acidification in typical Chinese cropping systems[J]. Science of the Total Environment, 2018(613/614):1339-1348.
[2]VRIES W D, BREEUWSMA A. Relative importance of natural and anthropogenic proton sources in soils in the Netherlands[J]. Water Air & Soil Pollution, 1986, 28(1/2): 173-184.
[3]王代长,蒋新,卞永荣,等. 酸沉降下加速土壤酸化的影响因素[J]. 生态环境学报, 2002, 11(2): 152-157.
[4]BAILEY V L , FANSLER S J, STEGEN J C, et al. Linking microbial community structure to β-glucosidic function in soil aggregates[J]. Isme Journal, 2013, 7(10): 2044-2053.
[5]CAPUTO J, BEIER C M, SULLIVAN T J, et al. Modeled effects of soil acidification on long-term ecological and economic outcomes for managed forests in the Adirondack region (USA)[J]. Science of the Total Environment, 2016, 565: 401-411.
[6]TIAN D, NIU S. A global analysis of soil acidification caused by nitrogen addition[J]. Environmental Research Letters, 2012, 10(2): 1714-1721.
[7]GUO J H, LIU X J, ZHANG Y, et al. Significant acidification in major Chinese croplands[J]. Science, 2010, 327(5968): 1008-1010.
[8]XIA X, YANG Z, YU T, et al. Detecting changes of soil environmental parameters by statistics and GIS: a case from the lower Chang jiang plain, China[J]. Journal of Geochemical Exploration, 2017, 181: 116-128.
[9]ZHU H H, WU J S, HUANG D Y, et al. Improving fertility and productivity of a highly-weathered upland soil in subtropical China by incorporating rice straw[J]. Plant & Soil, 2010, 331(1/2): 427-437.
[10]戎秋涛,杨春茂,徐文彬. 土壤酸化研究进展[J]. 地球科学进展, 1996, 11(4): 396-401.
[11]LESTURGEZ G, POSS R, NOBLE A, et al. Soil acidification without pH drop under intensive cropping systems in Northeast Thailand[J]. Agriculture Ecosystems & Environment, 2006, 114(2): 239-248.
[12]ULRICH B. Natural and anthropogenic component of soil acidification[J]. Z Pflanzenernhr Bodenk, 1986, 149: 702-717.
[13]CAI Z, WANG B, XU M, et al. Intensified soil acidification from chemical N fertilization and prevention by manure in an 18-year field experiment in the red soil of southern China[J]. Journal of Soils and Sediments, 2015, 15(2): 260-270.
[14]汪吉东,张辉,张永春,等. 连续施用不同比例鸡粪氮对水稻土有机质积累及土壤酸化的影响[J]. 植物营养与肥料学报, 2014, 20(5): 1178-1185.
[15]李志,袁颖丹,张学玲,等. 不同干扰程度对山地草甸土壤有机质及酸度的影响[J].江苏农业科学,2018,46(9):285-288.
[16]赵敏,范琼,邓爱妮,等. 酸性土壤改良对土壤镉形态改变及数仔菜镉含量的影响[J].南方农业学报,2018,49(6):1089-1094.
[17]于兵,门明新,刘霈珈,等.有机酸对重金属污染土壤的淋洗效果[J]. 江苏农业科学,2018,46(13):284-287.
[18]姜军,徐仁扣,赵安珍. 用酸碱滴定法测定酸性红壤的pH缓冲容量[J]. 土壤通报, 2006(6): 1247-1248.
[19]XU J M , TANG C , CHEN Z L . The role of plant residues in pH change of acid soils differing in initial pH[J]. Soil Biology & Biochemistry, 2006, 38(4): 709-719.
[20]黄平,张佳宝,朱安宁,等. 黄淮海平原典型潮土的酸碱缓冲性能[J]. 中国农业科学, 2009, 42(7): 2392-2396.
[21]TARKALSON D D, PAYERO J O, HERGERT G W, et al. Acidification of soil in a dry land winter wheat-sorghum/corn-fallow rotation in the semiarid U.S. Great Plains[J]. Plant & Soil, 2006, 283(1/2): 367-379.
[22]成杰民,胡光鲁,潘根兴. 用酸碱滴定曲线拟合参数表征土壤对酸碱缓冲能力的新方法[J]. 农业环境科学学报, 2004, 23(3): 569-573.
[23]鲁如坤. 土壤农业化学分析方法[M]. 北京:中国农业科技出版社, 1998.
[24]TANG C, RAPHAEL C, RENGEL Z, et al. Understanding subsoil acidification: effect of nitrogen transformation and nitrate leaching[J]. Australian Journal of Soil Research, 2000, 38(4): 837-849.
[25]汪吉东,戚冰洁,张永春,等. 长期施肥对砂壤质石灰性潮土土壤酸碱缓冲体系的影响[J]. 应用生态学报, 2012, 23(4): 1031-1036.