[2] 安永清, 屈永华, 高鸿永, 伍靖伟, 陈爱萍. 内蒙古河套灌区土壤盐碱化遥感监测方法研究. 遥感技 术与应用, 2008, 23(3): 316-322. [3] 雷晓萍, 刘晓峰. 宁夏银北地区盐碱地综合改良治理对策. 中国工程咨询, 2016, 8: 53-55. [4] 杨劲松. 中国盐渍土研究的发展历程与展望. 土壤学报, 2008, 45(5): 837-845. [5] nek J, van Genuchten M T, ejna M. HYDRUS: Model u, calibration, and validation. Transactions of the ASABE, 2012, 55: 1261-1274. [6] Rasouli F, Pouya A K, nek J. Modeling the effects of saline water u in wheat- cultivated lands using the UNSATCHEM model. Irrigation Science, 2013, 31(5): 1009-1024. [7] Rozema J, Flowers T. Crops for a salinized world. Science, 2008, 322: 1478-1480. [8] Kafi M, Hajar Asadi H, Ganjeali A. Possible utilization of high-salinity wa民谣英文
ters and application of low amounts of water for production of the halophyte Kochia scoparia as alternative fodder in saline agroecosystems. Agricultural Water Management, 2010, 97(1): 139-147. [9] 郭洋, 陈波浪, 盛建东, 胡浩东, 徐财发. 几种一年生盐生植物的吸盐能力. 植物营养与肥料学报, 2015, 21(1): 269-276. [10] Ravindran K C, Venkatesan K, Balakrishnan V, Chellappan K P, Balasubramanian T. Restoration of saline land by halophytes for Indian soils. Soil Biology and Biochemistry, 2007, 39(10): 2661-2664. [11] 孔涛, 张德胜, 徐慧, 王力华. 盐碱地及其改良过程中土壤微生物生态特征研究进展. 土壤, 2014, 46(4): 581-588. [12] Mbarki S, Cerd A, Brestic M, Mahendra R, Abdelly C, Pascual J A. Vineyard compost supplemented with Trichoderma Harzianum T78 improve saline soil quality. Land Degradation & Development, 2016一丁点儿
, DOI: 10.1002/ldr.2554. [13] 邱并生. 盐碱土壤微生物. 微生物学通报, 2014, 41(1): 200. [14] 李凤霞, 王学琴, 郭永忠, 许兴, 杨建国, 季艳清. 宁夏不同类型盐渍化土壤微生物区系及多样性. 水土保持学报, 2011, 25(5): 107-111. [15] 于淑会, 韩立朴, 高会, 刘金铜. 高水位区暗管埋设下土壤盐分适时立体调控的生态效应. 应用生 态学报, 2016, 27(4): 1061-1068. [16] Valipour M. A comparison between horizontal and vertical drainage systems (include pipe drainage, open ditch drainage, and pumped wells) i锡伯族西迁节
n anisotropic soils. IOSR Journal of Mechanical and Civil Engineering (IOSR-JMCE), 2012, 4(1): 7-12. [17] Velstra J, Groen J, De Jong K. Obrvations of salinity patterns in shallow groundwater and drainage water from agricultural land in the Northern part of the Netherlands. Irrigation and drainage, 2011, 60(S1): 51-58. [18] 赵永敢, 逄焕成, 李玉义, 胡小龙, 王婧, 高鸿永. 秸秆隔层对盐碱土水盐运移及食葵光合特性的 影响. 生态学报, 2013, 33(17): 5153-5161. [19] Kang Y, Wang R, Wan S, Hu W, Jiang S, Liu S. Effects of different water levels on
cotton growth and water u through drip irrigation in an arid region with saline ground water of Northwest China. Agricultural water management, 2012, 109: 117-126. [20] 吕斯丹, 陈卫平, 王美娥. 模型模拟再生水灌溉对土壤水盐运动的影响. 环境科学, 2012, 1(12): 4100-4107. [21] 王静, 许兴, 肖国举, 王军. 脱硫石膏改良宁夏典型龟裂碱土效果及其安全性评价. 农业工程学报, 2016, 32(2): 141-147. [22] Ahmad S, Ghafoor A, Akhtar M E, Khan M Z. Implication of藐视的拼音
gypsum rates to optimize hydraulic conductivity for variable-texture saline-sodic soils reclamation. Land Degradation & Development, 2015, 27(3): 550-560. [23] Hulugalle N R, Weaver T B, Ghadiri H, Hicks A. Changes in soil properties of an eastern Australian vertisol irrigated with treated wage effluent following gypsum application.表格乘法函数
Land Degradation & Development, 2006, 17(5): 527-540. [24] 杨劲松, 姚荣江. 我国盐碱地的治理与农业高效利用. 中国科学院院刊, 2015, 30(S): 162-170. [25] 马金慧. 基于农田水土环境限制因子的河套灌区引黄水量阈值模拟研究[D]. 呼和浩特: 内蒙古农 业大学, 2014. [26] 李亮, 李美艳, 王世锋, 王长生, 李正中. 河套灌区解放闸灌域盐荒地积盐量分析. 排灌机械工程 学报, 2015, 33(5): 434-441. [27] 张丽丽, 赵西宁, 孙世坤, 郑玖瑜. 基于参与式调查的河套灌区节水灌溉技术适宜性分析. 中国农 村水利水电, 2015, (4): 12-17.