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[1]ZHANG Haiou,GUO Zhen,XU Yan,et al.Dynamic Change Characteristics of Texture and Organic Matter Content of Soft Rock and Sand Compound Soil in Mu Us Sandy Land[J].Research of Soil and Water Conservation,2021,28(02):93-98.
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Dynamic Change Characteristics of Texture and Organic Matter Content of Soft Rock and Sand Compound Soil in Mu Us Sandy Land

References:
[1] Wang N, Xie J C, Han J C, et al. A comprehensive framework on land-water resources development in Mu Us Sandy Land[J]. Land Use Policy, 2014,40:69-73.
[2] 王愿昌,吴永红,闵德安,等.砒砂岩区水土流失治理措施调研[J].国际沙棘研究与开发,2007,5(1):39-44.
[3] 王愿昌,吴永红,寇权,等.砒砂岩分布范围界定与类型区划分[J].中国水土保持科学,2007,5(1):14-18.
[4] Han J C, Xie J C, Zhang Y. Potential role of feldspathic sandstone as a natural water retaining agent in Mu Us Sandy Land, northwest China [J]. Chinese Geographical Science, 2012,22(5):550-555.
[5] 韩霁昌,刘彦随,罗林涛.毛乌素沙地砒砂岩与沙快速复配成土核心技术研究[J].中国土地科学,2012,26(8):87-94.
[6] Wang N, Xie J C, Han J C. A sand control and development model in sandy land based on mixed experiments of arsenic sandstone and sand: A case study in Mu Us Sandy Land in China [J]. Chinese Geographical Science, 2013,23(6):700-707.
[7] Sun Z H, Han J C. Effect of soft rock amendment on soil hydraulic parameters and crop performance in Mu Us Sandy Land, China[J]. Field Crops Res., 2018,222:85-93.
[8] Wang H Y, Han J C, Tong W, et al. Analysis of water and nitrogen use efficiency for maize (Zea mays L.)grown on soft rock and sand compound soil[J]. Journal of the Science of Food and Agriculture, 2017,97(8):2553-2560.
[9] 韩霁昌,李娟,李晓明.砒砂岩与沙复配成土的物理性状及其对冬小麦产量的影响[J].西北农业学报,2013,22(11):15-19.
[10] 张露,韩霁昌,罗林涛,等.砒砂岩与风沙土复配土壤的持水特性研究[J].西北农林科技大学学报:自然科学版,2014,42(2):207-214.
[11] 罗林涛,程杰,王欢元,等.玉米种植模式下砒砂岩与沙复配土氮素淋失特征[J].水土保持学报,2013,27(4)58-61,66.
[12] 王国梁,周生路,赵其国.土壤颗粒的体积分形维数及其在土地利用中的应用[J].土壤学报,2005,42(4):545-550.
[13] 刘光崧.土壤理化分析与剖面描述[M].北京:中国标准出版社,1996.
[14] 张继义,赵哈林.退化沙质草地恢复过程土壤颗粒组成变化对土壤—植被系统稳定性的影响[J].生态环境学报2009,18(4):1395-1401.
[15] 邹诚,徐福利,闫亚丹.黄土高原丘陵沟壑区不同土地利用模式对土壤机械组成和速效养分影响分析[J].中国农学通报,2018,24(12):424-427.
[16] Abbas A, Mohammad-Reza N, Hassan R, et al. Fractal dimension of soil aggregates as an index of soil erodibility [J]. Journal of Hydrology, 2011,400(3):305-311.
[17] Meysam M, Mahmoud S, Mohammad H M, et al. Characterizing spatial variability of soil textural fractions and fractal parameters derived from particle size distributions[J]. Pedosphere, 2019,29(2)224-234.
[18] 贡璐,张海峰,吕光辉,等.塔里木河上游典型绿洲不同连作年限棉田土壤质量评价[J].生态学报,2011,31(14):4136-4143.
[19] 张露,韩霁昌,马增辉,等.砒砂岩与沙复配“土壤”的质地性状[J].西北农业学报,2014,23(4):166-172.
[20] 罗倩,张珍明,向准,等.不同种植年限鸟王茶产地土壤物理性质及生长特征[J].西南农业学报,2017,30(12):2746-2750.
[21] 陈玉真,王峰,尤志明,等.不同植茶年限茶园土壤的物理性状及渗透性能[J].山地学报,2016,34(1):38-45.
[22] 邹诚,徐福利,闫亚丹.黄土高原丘陵沟壑区不同土地利用模式对土壤机械组成和速效养分影响分析[J].中国农学通报,2008,24(12):424-427.
[23] 邓廷飞,刘彦,颜秋晓,等.贵州典型山银花土壤机械组成与养分特性及其关系[J].水土保持学报,2014,28(5):209-214.
[24] 苏志珠,刘蓉,梁爱民,等.晋西北沙化土地土壤机械组成与有机质的初步研究[J].水土保持研究,2018,25(6):61-67.
[25] 杨培岭,罗远培,石元春.用粒径的重量分布表征的土壤分形特征[J].科学通报,1993,38(20):1896-1899.
[26] Xu G C, Li Z B, Li P. Fractal features of soil particle-size distribution and total soil nitrogen distribution in a typical watershed in the source area of the middle Dan River, China[J]. Catena, 2013,101:17-23.
[27] Behzad G, Hugh D. Fractal dimension of soil fragment mass-size distribution: A critical analysis[J]. Geoderma, 2015,245/246:98-103.
[28] 缪驰远,汪亚峰,魏欣,等.黑土表层土壤颗粒的分形特征[J].应用生态学报,2007,18(9):1987-1993.
[29] 李德成,张桃林.中国土壤颗粒组成的分形特征研究[J].土壤与环境,2000,9(4):263-265.
[30] Liu X, Zhang G C, Heathman G C, et al. Fractal features of soil particle-size distribution as affected by plant communities in the forested region of Mountain Yimeng, China [J]. Geoderma,2009,154(1/2):123-130.
[31] 文海燕,傅华,赵哈林.退化沙质草地开垦和围封过程中的土壤颗粒分形特征[J].应用生态学报,2006,17(1):55-59.
[32] 华瑞,徐学选,张少妮,等.不同退耕年限林草地土壤颗粒分形特征研究[J].水土保持学报,2016,30(4):206-209.
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