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1.
丁肇龙  汪君  胥鹏海  曹月娥  刘巍  杨建军 《土壤》2018,50(2):398-403
风力侵蚀是准东干旱与半干旱地区土地沙漠化的关键因素,通过野外考察和土壤~(137)Cs取样分析,对准东地区不同土地利用类型下土壤~(137)Cs分布特征及风力侵蚀进行了初步研究。研究表明,不同土地利用类型土壤~(137)Cs剖面分布特征不同,~(137)Cs基本分布在0~20 cm,甚至更浅,~(137)Cs活度值介于0~65.50 Bq/kg;各样点~(137)Cs总量介于0~1 698.29Bq/m~2,其中背景值为1 698.29 Bq/m~2,不同地类~(137)Cs总量排序为:低平地草甸(背景值样点)灌丛沙堆荒漠草地砾石戈壁盐碱地耕地固定沙地半固定沙地风蚀裸地;估算出耕地和非耕地各样点的风蚀速率,耕地平均风蚀速率为744.50 t/(km~2·a),非耕地风蚀速率介于945.06~4 404.01 t/(km~2·a)之间,平均值为2 589.96 t/(km~2·a)。  相似文献   

2.
宁南黄土高原阳洼流域137Cs分布及侵蚀特征研究   总被引:1,自引:0,他引:1  
利用137Cs示踪方法,对宁南黄土高原阳洼流域土壤137Cs分布及土壤侵蚀进行了初步研究。结果表明:流域137Cs基准值为(1 966.99±112.06)Bq/m2。流域内林草地土壤剖面137Cs呈指数型分布,坡耕地137Cs在耕层内呈均一分布。受坡位影响,坡耕地上坡137Cs质量活度为中、下坡的25.14%~27%。流域内坡耕地土壤侵蚀最高,平均为3 889.95 t/km2,自然荒坡最小,仅为坡耕地的17.83%,坡耕地是流域泥沙的主要侵蚀溯源区。阳洼流域土壤侵蚀存在明显的空间格局,不同土地类型下土壤137Cs面积活度、土壤侵蚀模数呈斑块状镶嵌分布,以靠近流域西南边界、中部及东南部区域土壤侵蚀模数最大,平均侵蚀速率在3 405.59~7 080.73 t/(km2.a),沉积与侵蚀明显区域间有过渡区域。坡度是影响该流域土壤侵蚀空间变化的主导因子,但土壤侵蚀速率并不简单随坡度增加而增大,它还受土地利用方式、坡位、降雨等因素影响。  相似文献   

3.
该文通过紫色丘陵区响水滩小流域不同土地利用类型、不同坡度和坡长、不同地貌部位土壤剖面中137Cs含量的测定与分析,对其侵蚀空间分布进行了估算.研究结果表明:该流域137Cs含量的背景值为1870 Bq/m2;流域内坡耕地、林地的年平均侵蚀强度分别为4468、1759 t/(km2·a);土壤侵蚀量与坡长、坡度均指数相关;丘顶、丘坡和鞍部的年平均侵蚀强度分别为2125、4676、3625 t/(km2·a).结果表明土地利用类型、坡长和坡度、地貌部位对土壤侵蚀量影响很大,坡耕地是该流域泥沙的主要来源.  相似文献   

4.
为快速、有效评估西江流域丘陵山地中长期土壤侵蚀状况,初步掌握区域土壤侵蚀与沉积规律,定量化西江流域土壤侵蚀强度,采用放射性核素Cs-137示踪方法,结合相关土壤侵蚀定量估算模型,探讨了西江流域梧州段典型丘陵山地人工林坡地和坡耕地的土壤侵蚀状况。结果表明,研究区Cs-137背景值为968.19Bq/m~2,Cs-137含量在坡面土壤中随土壤深度增加而递减,呈较好的线性关系。人工林地与坡耕地坡面土壤均呈侵蚀现象,人工林谷底表现为堆积现象。人工林地与坡耕地坡面土壤的侵蚀强度表现为上坡中坡下坡。人工林坡面年均土壤侵蚀模数为3 889t/(km~2·a),坡耕地坡面年均土壤侵蚀模数为4 257t/(km~2·a),坡耕地侵蚀模数大于人工林坡地,二者均为土壤中度侵蚀。在西江流域土地开发过程中,要加强对丘陵山地土壤的利用规划,防止过度开发;同时,要营造有效的水土保持措施,减少土壤侵蚀的形成,促进区域经济和环境的可持续发展。  相似文献   

5.
该文通过紫色丘陵区响水滩小流域不同土地利用类型、不同坡度和坡长、不同地貌部位土壤剖面中 137Cs含量的测定与分析,对其侵蚀空间分布进行了估算。研究结果表明:该流域 137Cs含量的背景值为1870 Bq/m2;流域内坡耕地、林地的年平均侵蚀强度分别为4468、1759 t/(km2·a);土壤侵蚀量与坡长、坡度均指数相关;丘顶、丘坡和鞍部的年平均侵蚀强度分别为2125、4676、3625 t/(km2·a)。结果表明土地利用类型、坡长和坡度、地貌部位对土壤侵蚀量影响很大,坡耕地是该流域泥沙的主要来源。  相似文献   

6.
雅鲁藏布江中游地区土壤侵蚀的137Cs示踪法研究   总被引:12,自引:0,他引:12  
雅江中游地区林草地土壤侵蚀强度的137Cs示踪法研究表明,林草地土壤剖面的137Cs总量,可以很好地表征土壤的侵蚀程度.研究区137Cs本底值介于830.6~1 114.0Bq/m2之间;林草地平均土壤侵蚀强度介于341~1 971t/km2.a,影响林草地土壤侵蚀强度的主要因子为林草地覆盖度,其次为坡度.  相似文献   

7.
长江上游重点水土流失区坡耕地土壤侵蚀的137Cs法研究   总被引:6,自引:3,他引:6  
《水土保持学报》2003,17(2):77-80
利用137Cs示踪技术,对长江上游重点水土流失区(金沙江下游及毕节地区、嘉陵江中下游地区、嘉陵江上游陕南陇南地区和三峡库区)坡耕地土壤流失速率进行了初步研究.结果表明,研究区土壤类型、坡度等因子对坡耕地土壤流失速率的影响较大,陕南区砾质土、三峡库区黄壤坡耕地的土壤流失速率相对较小,34°砾质土坡耕地,多年平均土壤流失率为985 t/(km2*a),31°黄壤坡耕地为2 059 t/(km2*a);嘉陵江中下游地区和三峡库区紫色土、陕南区黄褐土、陇南区黄绵土和金沙江燥红土坡耕地土壤流失速率较高,一般在2 000~10 000 t/(km2*a);坡度越大土壤流失速率也越高.同时,对坡耕地地块内部土壤侵蚀与堆积的空间分异进行了初步探讨.在坡耕地地块内部,土壤在流水和犁耕共同作用下,侵蚀速率从峁顶至坡底总体呈下降趋势,并在地块中下部出现堆积大于侵蚀的区域.侵蚀小于堆积的临界点,一般出现在距坡顶20~30 m范围.  相似文献   

8.
雅鲁藏布江中游地区土壤蚀的^137Cs示踪法研究   总被引:3,自引:0,他引:3  
雅江中游地区林草地土壤侵蚀强度的^137Cs示踪法研究表明,林草地土壤剖面的^137Cs总量,可以很好地表征土壤的侵蚀程度。研究区^137Cs本底值介于830.6-1114.0Bq/m^2之间;林草地平均土壤侵蚀强度介于341-1971t/km62.a,影响林草地土壤侵蚀强度的主要因子为林草地覆盖度,其次为坡度。  相似文献   

9.
龙门山地震带坡耕地土壤侵蚀对有机碳迁移的影响   总被引:1,自引:0,他引:1  
坡耕地土壤再分布对土壤有机碳(SOC,soil organic carbon)迁移的作用机制研究已成为土壤侵蚀学研究的热点,然而目前极少有研究关注地震后生态脆弱的龙门山地震带坡耕地土壤侵蚀机理及其导致的土壤有机碳再分布规律。该研究选择龙门山地震带内(都江堰市)一块陡坡耕地和一个梯田系列,采用137Cs法和野外调查,对比分析强震导致田埂垮塌和未受损情况下坡耕地土壤侵蚀空间变化特征和有机碳运移变化机理。结果表明,该区黄棕壤有效137Cs背景值为1 473 Bq/m2;坡度较小的坡式梯田内部上坡表现为侵蚀,下坡表现为沉积,同时,上部梯田的侵蚀速率高于下部梯田,但整个梯田系列净侵蚀量非常小,这表明梯田之间由于缺乏田埂的保护,水力也起着侵蚀、搬运上坡梯田土壤的作用,但是整个坡式梯田系列可以起到较好的保土作用,同时,坡式梯田内部主要以耕作侵蚀为主,是造成梯田上部坡位土壤流失严重的主要原因;陡坡耕地的地形为复合坡,由于田埂垮塌导致其土壤侵蚀速率显著高于坡式梯田系列,在整个坡面上,除了坡顶土壤侵蚀速率高之外,下坡坡度变大(曲率较大)的部位土壤侵蚀速率也非常高,同时,土壤沉积也发生在2个坡位(中下坡坡度较缓的部位和坡脚部位);在梯田系列和陡坡耕地上,SOC与土壤137Cs的空间变化规律较为一致。研究结果表明,在龙门山地震带,质量较好的石埂梯田仍然发挥着较好的土壤保持效果,同时,耕作侵蚀是该区坡耕地上一种重要的土壤侵蚀形式,在制定相应的土壤保持措施时,必须充分考虑耕作侵蚀的作用,才能有效地控制土壤侵蚀,此外,该研究结果还表明采用137Cs核素示踪技术可以比较科学地解释该区域的土壤侵蚀速率和SOC的空间变异规律。  相似文献   

10.
长江上游137Cs法土壤侵蚀量研究   总被引:17,自引:2,他引:17  
长江上游地区侵蚀泥沙径流观测资料较少,难以确定不同类型土地侵蚀量。本文利用137Cs示踪法测定了长江上游不同土地类型土壤侵蚀量,农耕地土壤侵蚀量介于758~9854t/(km2·a),非农耕地土壤侵蚀量介于310~4435t/(km2·a),紫色土裸坡侵蚀量高达12444t/(km2·a)。  相似文献   

11.
This paper presents the results of using the 137Cs technique to assess soil erosion rates of both sloping cultivated land and flat terraces in the Upper Yangtze River Basin, China. The study was carried out on eighteen sloping cultivated fields and four flat terrace fields in eight counties and cities over the eastern part of the basin. The 137Cs-reference inventory ranged from 620.5 to 2573.2 Bq/m2. For the 18 sloping cultivated fields, the average 137Cs inventory over a field ranged from 204.9 to 1847.7 Bq/m2, which accounts for 15–77% of the local 137Cs reference inventory, and the average water erosion rate ranged from 758 to 9854 t/km2 per year, with erosion rates of <1000 t/km2 per year in two fields; 1000–5000 t/km2 per year in eight fields; and >5000 t/km2 per year in eight fields. It is apparent that most of the sloping cultivated fields suffer severe or very severe soil erosion. For the four terrace fields under this study, the average 137Cs inventory over a field ranged between 915.8 and 2675.4 Bq/m2, which accounts for 97–104% of the local 137Cs reference inventory. However, water erosion is very slight on the terrace fields and little soil is lost from the terraces. The study also indicated that the severity of soil erosion is strongly related to soil texture and slope gradient.  相似文献   

12.
利用137Cs示踪技术评价东北黑土侵蚀和沉积过程   总被引:6,自引:1,他引:6  
Soil and water losses through erosion have been serious in the black soil region of Northeast China. Therefore, a sloping cultivated land in Songnen Plain was selected as a case study to: 1) determine the ^137Cs reference inventory in the study area; 2) calculate erosion and deposition rates of black soil on different slope locations; 3) conduct a sensitivity analysis of some model parameters; and 4) compare overall outputs using four different models. Three transects were set in the field with five slope locations for each transect, including summit, shoulder-slope, back-slope, foot-slope, and toe-slope. Field measurements and model simulation were used to estimate a bomb-derived ^137Cs reference inventory in the study area. Soil erosion and deposition rates were estimated using four ^137Cs models and percentage of ^137Cs loss/gain. The ^137Cs reference value in the study area was 2 232.8 Bq m^-2 with ^137Cs showing a clear topographic pattern, decreasing from the summit to shoulder-slope, then increasing again at the foot-slope and reaching a maximum at the toe-slope, Predicted soil redistribution rates for different slope locations varied. Among models, the Yang Model (YANG-M) overestimated erosion loss but underestimated deposition. However, the standard mass balance model (MBM1) gave predictions similar to a mass balance model incorporating soil movement by tillage (MBM2). Sensitivity analysis of the proportion factor and distribution pattern of ^137Cs in the surface layer demonstrated the impact of ^137Cs enrichment on calculation of the soil erosion rate. Factors influencing the redistribution of fallout ^137Cs in landscape should be fully considered as calculating soil redistribution rate using ^137Cs technique.  相似文献   

13.
This study sought to contribute to the understanding of soil redistribution by tillage on terraces and the extent and causes of within-field variation in soil properties by examining the spatial distributions of soil redistribution rates, derived using caesium-137, and of total nitrogen and total phosphorus concentrations, within a ribbon and a shoulder terrace in a yuan area of the Loess Plateau of China. Additional water erosion rate data were obtained for nine other terraces. Water erosion rates on the ribbon terraces were low (<1 kg m−2 yr−1), unless slope tangents exceeded 0·1. However, despite the use of animal traction, high rates of tillage erosion were observed (mean 5·5 kg m−2 yr−1). Soil nitrogen concentrations were related to rates of soil redistribution by tillage on the ribbon terrace examined in detail. In general, higher rates of water erosion (0·5–2·9 kg m−2 yr−1) and lower rates of tillage erosion (mean 1·4 kg m−2 yr−1) were evident on the longer shoulder terraces. On the shoulder terrace examined in detail, soil phosphorus concentrations were related to net rates of soil redistribution. A statistically significant regression relationship between water erosion rates and the USLE length and slope factor was used in conjunction with the simulation of tillage erosion rates to evaluate a range of terrace designs. It is suggested that off-site impacts of erosion could be further reduced by ensuring that the slope tangents are kept below 0·06 and lengths below 30 m, especially on the shoulder terraces. Tillage erosion and the systematic redistribution of soil nutrients could be reduced by modification of the contour-cultivation technique to turn soil in opposing directions in alternate years. Copyright © 1999 John Wiley & Sons, Ltd.  相似文献   

14.
Purple soils are widely distributed in the Sichuan Hilly Basin and are highly susceptible to erosion, especially on the cultivated slopes. Quantitative assessment of the erosion rates is, however, difficult due to small size of the plots of the manually-tilled land, the complex land use, and steep hillslopes. 137Cs and 210Pbex (excess 210Pb) tracing techniques were used to investigate the spatial pattern of soil erosion rates associated with slope-land under hoe tillage in Neijiang of the Sichuan Hilly Basin. The 137Cs and 210Pbex inventories at the top of the cultivated slope were extremely low, and the highest inventories were found at the bottom of the cultivated slope. By combining the erosion rates estimates provided by both 137Cs and 210Pbex measurements, the weighted mean net soil loss from the study slope was estimated to be 3100 t km-2 year-1, which was significantly less than 6930 t km-2 year-1 reported for runoff plots on a 10°cultivated slope at the Suining Station of soil Erosion. The spatial pattern of soil erosion rates on the steep agricultural land showed that hoe tillage played an important role in soil redistribution along the slope. Also, traditional farming practices had a significant role in reducing soil loss, leading to a lower net erosion rate for the field.  相似文献   

15.
In order to assess its potential for estimating soil redistribution rates, the naturally occurring fallout radionuclide 210Pbex has been used in parallel with 137Cs, derived from the atmospheric testing of nuclear weapon testing in the 1950s to 1970s, to estimate rates of soil redistribution on a sloping field with traditional erosion control measures located near Jiajia Village, Jianyang County, in the Sichuan Hilly Basin of China. The local 210Pbex reference inventory of 12,860 Bq m− 2 is higher than those reported for many other areas of the world and may reflect the influence of cloudy weather in preventing 210Pb released to the atmosphere across the local region moving up into the upper troposphere, where is would be more widely dispersed. The mean 210Pbex and 137Cs inventories measured in cores collected from the upper part of the field with an average slope of 10° were 8028 Bq m− 2 and 993 Bq m− 2, respectively, and the equivalent values for the lower part of the field, where the slopes are steeper (20°) were 11,388 Bq m− 2 and 1299 Bq m− 2. The pattern of post-fallout 210Pbex and 137Cs redistribution on the sloping field reflects not only the effects of water erosion and redistribution by tillage, but also the local traditional practice of “Tiaoshamiantu”, whereby sediment trapped in the ditches is returned to the fields by the farmer. The estimates of annual rates of soil loss provided by the 210Pbex measurement are closely comparable with those derived from the 137Cs measurements and are consistent with existing knowledge for the study area. The results obtained from this study confirm the potential for using 210Pbex measurement to estimate soil erosion rates over medium-term timescale of 50–100 years. By combining the estimates of erosion rates provided by the 210Pbex and 137Cs measurements, the weighted mean net soil loss was estimated to be 48.7 t ha− 1 year− 1 from the upper subfield and 16.9 t ha− 1 year− 1 from the lower subfield. These rates are considerably lower than the erosion rates obtained from runoff plot measurements in the local area. It is suggested that the traditional erosion control practices and the practice of “Tiaoshamiantu” have a significant effect in reducing soil loss and conserving valuable cultivated soil on sloping fields in the Sichuan Hilly Basin.  相似文献   

16.
为查明"三北"防护林建设前后农耕地和退耕地土壤保持效益变化,利用137Cs和210Pbex双核素示踪技术,选择了防护林建设较为成功的张家口坝上地区(风力侵蚀区)作为典型区,研究了农耕地以及退耕地土壤137Cs和210Pbex的剖面变化规律及其示踪的土壤侵蚀变化。结果表明:1)由于耕作的混匀作用,农耕地土壤剖面中137Cs和210Pbex均呈均匀态分布;退耕地土壤剖面中137Cs和210Pbex则表现为表层(0~5cm)浓度最高、下层(5~25cm)浓度均相对较低且分布相对均匀的形态,这表明退耕后坡地土壤137Cs和210Pbex剖面形态均会发生一定变化,退耕驱动土壤137Cs和210Pbex剖面变化导致运用土壤核素估算侵蚀模型在该区域难以适用;2)基于土壤137Cs和210Pbex剖面变化规律,利用210Pbex质量平衡方程,提出了退耕地土壤210Pbex土壤侵蚀估算模型;3)利用137Cs比例模型估算退耕地土壤侵蚀速率为27.94±11.92 (t/hm2·a),农耕地侵蚀速率为29.11±14.42 (t/hm2·a),而利用修正后的210Pbex转换模型估算得到"三北"防护林区退耕地造林前平均侵蚀速率为82.16±14.36 (t/hm2·a),造林后平均侵蚀速率为-41.28±33.91 (t/hm2·a);农耕地造林前平均侵蚀速率为68.55±22.11 (t/hm2·a),造林后平均侵蚀速率-8.52±47.32 (t/hm2·a)。这表明137Cs示踪技术主要表征了1963年以来该区坡地土壤侵蚀和沉积的平均结果,而210Pbex示踪技术则可以较好地示踪防护林建成前后的土壤侵蚀变化。此外,研究结果也表明,相比于"三北"防护林建成之前,建成之后该区农耕地和退耕地的土壤侵蚀速率均呈显著下降趋势,且均由前期的风沙侵蚀转变成了风沙沉积。  相似文献   

17.
黄土高原不同侵蚀类型区侵蚀产沙强度变化及其治理目标   总被引:5,自引:3,他引:2  
为了确定黄土高原不同侵蚀类型区的治理目标,采取"水文—地貌法",利用98个水文站控制区和234个侵蚀产沙单元,在分析其不同治理阶段土壤侵蚀产沙变化特征与减沙幅度,不同侵蚀强度面积的变化及其空间分布的基础上,提出了未来20a黄土高原主要流失区的区域治理目标:土壤流失量控制在3.60×108 t左右,土壤侵蚀模数1 300 t/(km2.a)左右。其中,黄土峁状丘陵沟壑区为3 000t/(km2.a),黄土梁状丘陵沟壑区为2 000t/(km2.a),干旱黄土丘陵沟壑区为2 000t/(km2.a),黄土平岗丘陵沟壑区为1 000t/(km2.a),风沙黄土丘陵沟壑区为1 000t/(km2.a),黄土山麓丘陵沟壑区为1 000t/(km2.a),森林黄土丘陵沟壑区为300t/(km2.a),黄土高塬沟壑区为1 500t/(km2.a),黄土残塬沟壑区为3 000t/(km2.a),黄土阶地区为500t/(km2.a),风沙草原区为500t/(km2.a),高原土石山区为100t/(km2.a)。未来20a黄土高原的治理重点区域为黄土峁状丘陵沟壑区(2.20×104 km2)、干旱黄土丘陵沟壑区(1.50×104 km2)、黄土高塬沟壑区(8 600km2)、黄土梁状丘陵沟壑区(4 600km2)。  相似文献   

18.
Soil degradation is a serious problem in the central and northern Highlands of Ethiopia. It has been so for several decades as a result of over exploitation and mismanagement. Relocation of a portion of the population from these regions to the relatively less populated Southwestern Highlands has taken place for decades to try to address the problem. However, such mass resettlements have caused severe soil degradation problems in many destination areas in the Southwestern Highlands. The aim of this study was to assess the problem of soil degradation using the caesium‐137 isotope and to test its value for erosion study in the region. The adapted USLE was applied to compare results from the caesium‐137 isotope studies. Along a deforestation continuum, fields cultivated for various years were studied for erosion. From a reference grazing land plot, total caesium‐137 fallout of 2026 ± 176 Bq m−2 with a CV of 24·6 per cent was recorded showing the presence of sufficient fallout to apply the technique. Erosion in cultivated fields was estimated against this reference using conversion models. Results from the Proportional Model |−13·9 ± 2·7|and the adapted USLE |12·3 ± 2·6| were not significantly different (p < 0·05), meaning the technique provides reliable results. A positive relationship was observed between severity of erosion and time of cultivation after forest clearing (R2 = 0·78). The mean annual loss of soil from cultivated land, 14·9 ± 2·9 t ha−1 y−1, is already beyond the tolerable threshold and might exacerbate further clearing of forests for cultivation if the land is not properly managed. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

19.
宜兴茶园土壤侵蚀及生态影响   总被引:9,自引:2,他引:9  
张燕  杨浩  金峰  张洪  彭补拙 《土壤学报》2003,40(6):815-821
茶园是苏南丘陵坡地的一种典型利用方式 ,其上发生的土壤侵蚀及产生的生态影响不容忽视。而要测度土壤侵蚀 ,137Cs示踪法是目前使用较多的一种有用工具 ,但要用此法 ,需找到研究区的137Cs背景值 ,并建立合适的估算模型。本文在对宜兴茶园研究时 ,确定了这里的137Cs背景值为 2 2 0 0Bqm- 2 ,并建立了估算耕作土壤的较合理的模型h =Hc× (Cref-Ct) /(Cref-Cin)。在此基础上衡量了研究对象的土壤侵蚀量 ;并进一步探讨了由此引发的生态影响 ,包括土层减薄、土壤质地改变和养分流失这样的直接影响 ,以及与之相应的一些间接影响 ,如能耗增加、水体富营养化及土地适宜性变化等 ;并且 ,还采用等值侵蚀模数这个指标 ,在与其他地区尤其是黄土和红壤区比较中揭示了苏南地区土壤侵蚀的生态危害的严重性  相似文献   

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