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1.
为了明确岩溶槽谷小流域地表悬浮泥沙与地下河悬浮泥沙的主要来源,制定具有针对性的水土流失防治措施,该研究以青木关岩溶槽谷小流域为例,采集碳酸盐岩、碎屑岩、沟道和裂隙等4种不同泥沙源地土壤样品,测定了137Cs、磁化率、Li、As等41种土壤理化性质作为指纹因子;利用双边范围检验、均值检验和Kruskal-Wallis H非参数检验对所有指纹因子进行筛选,确定Fe、137Cs、Pb、V、质量频率磁化率5种指纹因子为最佳指纹因子组合;采用复合指纹法定量分析地表和地下河出口悬浮泥沙来源。结果表明:降雨量、降雨历时和降雨强度与流域潜在泥沙源地贡献率存在一定的规律;流域潜在泥沙源地对地表悬浮泥沙平均贡献率分别为碳酸盐岩(43.62%)> 沟道(27.34%)>碎屑岩(17.30%)>裂隙(11.74%),拟合优度为91.88%;对地下河出口悬浮泥沙的平均贡献率分别为碳酸盐岩(36.14%)>裂隙(24.02%)>沟道(22.93%)>碎屑岩(16.91%),拟合优度为92.56%。该研究定量分析了岩溶槽谷地表和地下河出口悬浮泥沙的主要来源,可为岩溶槽谷小流域综合治理提供参考依据。  相似文献   

2.
[目的]为查明桑干河流域的泥沙主要策源地和侵蚀产沙变化。[方法]选取阳原县高墙乡典型淤地坝沉积泥沙为研究对象,利用复合指纹识别技术,测定沉积泥沙及其源地的土壤粒径、SOC、TN、137Cs、低频质量磁化率等9种指纹因子,研究了不同淤积阶段的泥沙策源地及坝控小流域侵蚀产沙演变规律。[结果](1)沉积泥沙中137Cs平均含量较低,与沟壁土壤无显著差异(p>0.05),但极显著小于林草地和耕地的137Cs含量(p<0.01),这指示淤地坝沉积泥沙主要来源于沟壁;(2)由于沟壁中大部分137Cs含量低于检出限,137Cs较好地指示泥沙主要来源沟谷地中的沟壁,但难以用于小流域多种策源地的判别,经Kruskal-Wallis H非参数检验和多元逐步判别分析筛选,确定TN+Xlfb+SOC构成最佳指纹因子组合,有效地判别小流域2006—2017年泥沙源地的平均贡献率为沟壁(82.68%±8.20%)>耕地(15.36%±8.46%)>林草地(1....  相似文献   

3.
基于复合指纹法的岩溶洼地小流域泥沙来源解析   总被引:1,自引:0,他引:1  
陈英  魏兴萍  张爱国  雷珊 《水土保持学报》2020,34(5):131-136,144
岩溶洼地是重庆岩溶地区常见的一种地貌类型,洼地小流域是人们从事农事活动的重要场所,研究流域不同土地利用侵蚀产沙特征,对认识流域侵蚀产沙规律和治理水土流失具有重要意义。选取了1个建有水库的岩溶洼地小流域,分析源地和泥沙样品的39个地球化学特征,利用复合指纹和多元混合模型计算各源地侵蚀泥沙贡献率。结果表明:流域筛选出的最佳指纹因子组合为U、χ_(lf)、Rb、Li、~(137)Cs、χ、Mn,正确判别累积率为99.93%,6种泥沙源地的总正确判别率为91.49%,符合复合指纹法应用的条件。碳酸盐岩耕地、碳酸盐岩林地、碳酸盐岩草地、碎屑岩林地、碎屑岩草地和沟道/裂隙对流域沉积泥沙的相对贡献分别为16.29%,41.16%,13.03%,16.67%,4.48%,8.37%,拟合优度为93.57%,相对误差平均值为8.26%,表明模型判别结果可信。各泥沙源地中碳酸盐岩耕地单位面积泥沙贡献值远高于其他泥沙源地,是碳酸盐岩林地的1.98倍,碳酸盐岩草地的2.07倍,碎屑岩林地的2.13倍,碎屑岩草地的2.21倍,即单位面积碳酸盐岩耕地土壤抗蚀能力最弱。  相似文献   

4.
用土壤中放射性原子落尘137Cs因地表植生,坡度及土层厚度不同而有不同含量以及矿物抗风化及冲蚀程度不同,其所获石英或云母(抗风化)与长石(易风化)矿物含量比,可探测集水区内水库泥沙淤积之来源。就本研究结果,137Cs在果园土壤最高,平均为302μμCi/kg,森林土壤次之为203μμCi/kg,而以崩塌地土壤147μμCi/kg最低,显示因地表坡度及植生不同造成表土厚度之差异,徒而影响137Cs原子落坐在土壤中之分布。矿物抗风化及冲蚀作用因种类而异,石英/长石比(Q/F)或云母/长石比(Mi/F)之值愈高,表示抗风化之矿物含量高,矿物安定度大或不易受风化及冲蚀。由分析结果获知森林土壤Q/F值与果园土壤相近,而崩塌地土壤最低,就Q/F值或Mi/F值比较,果园土壤似较森林土壤更为安定,此与果园土壤之坡度较平坦,表土较厚有关。此项结果与放射化学方法所测得之137Cs含量所表示之意义一致。无论以原子落尘或矿物比值测值,均显示不同植生这有其显着差异,用以追踪水库淤沙来源,具有辨异性辨就方法之设备及分析之难易与时间耗费,笔者建议采用地球化学之矿物测定法,更有应用价值。  相似文献   

5.
基于指纹识别技术计算了东北黑土区典型小流域不同侵蚀产沙源地的泥沙贡献比。通过分析农地、林地、草地表层土以及侵蚀沟样品中的33种物质,使用非参数检验和多元判别分析筛选出包括P、Ce、Ga、Rb和137Cs组成的最优复合指纹因子,并将放射性核素137Cs和210Pbex作为第2组指纹因子,将最优复合指纹因子中的单个因子分别作为单因子,作为第3组指纹因子,分别利用多元混合线性模型、Bayesian模型和单因子解析解等泥沙来源指纹分析方法计算了表层土和侵蚀沟的相对泥沙贡献比。结果表明:基于不同模型不同指纹因子的泥沙来源贡献比结果虽不尽相同,但无重大差别。利用多元混合线性模型计算时,由放射性元素137Cs和210Pbex作为指纹因子计算的泥沙来源(表层土47.5%,侵蚀沟52.5%),与最优复合指纹因子计算的泥沙来源(表层土44.6%,侵蚀沟55.4%)基本一致;利用Bayesian模型计算时,由放射性元素137Cs和210Pbex作为指纹因子计算的表层土和侵蚀沟的泥沙贡献比约各占1/2,而利用最优复合指纹因子计算得到的泥沙贡献比中,表层土(58.8%)多于侵蚀沟(41.2%);以复合指纹因子中单个因子为指纹因子计算解析解,P、Ga、Ce、137Cs 4个因子的判别能力较强,能有效判别泥沙物源区;为保证泥沙贡献比计算结果的精确性,有必要确定各模型的计算精度,并挖掘具体的影响因素,调整参数或算法,为模型改进提供依据。研究发现,面积占比不足1%的侵蚀沟贡献了流域近1/2的泥沙,表明侵蚀沟发育引起的土壤流失不容小觑,应加强对该区侵蚀沟道的治理。  相似文献   

6.
核素示踪在土壤侵蚀研究中的应用   总被引:5,自引:1,他引:4  
利用示踪技术研究土壤侵蚀在国外已有30多年的历史,因其具有分析精度和量化程度高,能对土壤侵蚀时空变化进行定量监测的优势而受到重视。分别介绍了单核素示踪(137Cs),多核素复合示踪(7Be, 210Pb, 226Ra, 230Th, 137Cs)在土壤侵蚀和泥沙来源研究领域中的进展情况,并详细阐述利用稳定性稀土元素(REE)示踪在研究泥沙来源,侵蚀产沙时空分布方面也是一种有效的方法,最后对各种方法做了简要评价。  相似文献   

7.
大气散落核素复合示踪在土壤侵蚀科学中的应用   总被引:2,自引:0,他引:2  
介绍了大气散落核素7Be、210Pbex137Cs复合在土壤侵蚀和泥沙来源领域中的研究进展;阐述了核素比率应用的原理、特点及其能更为敏感地反映土壤侵蚀速率和过程等优点;说明多元素复合示踪在推断土壤不同侵蚀过程及估算土壤侵蚀速率方面的作用;论述了建立两核素相关深度曲线确定泥沙起源深度的应用原理和特点及其应用范围,并对各种方法进行了简单的评价.  相似文献   

8.
人类活动是影响河流泥沙淤积的重要因素,为探讨道路建设和河道破坏对河流产沙的影响,以浙江省寿昌江流域为研究对象,采用复合指纹识别示踪技术,得到了不同潜在泥沙来源区对河流产沙的贡献。结果表明:采用Kruskal-Wallis H-test(KW-H)与多元判别分析(DFA)组合、主成分分析(PCA)与DFA组合得到的指纹示踪因子,结合复合指纹示踪模型,均能够很好地区分泥沙来源,但PCA和DFA统计法得到的4个指纹示踪因子组合能更好地区分泥沙来源。在河流出口处,来自河道的泥沙最多,占河流总产沙的34.7%,其次是建设用地,其产沙贡献为总产沙的28.1%,来自林地和水田的泥沙贡献分别为24.1%,12.7%,旱地产沙贡献最小,仅为0.3%。降水、土地利用、造桥、挖沙及道路建设等是引起产沙贡献差异的重要原因。因此,寿昌江流域降雨量大,植被覆盖度高,河流泥沙主要来自人类生产建设对地表的破坏。  相似文献   

9.
泥沙来源“指纹”示踪技术研究综述   总被引:4,自引:0,他引:4  
泥沙来源"指纹"示踪技术是综合研究流域土壤侵蚀和泥沙输移的新方法。泥沙来源"指纹"示踪技术基于流域侵蚀产沙过程划分潜在物源类型,根据物源特性筛选具有诊断能力的"指纹"性质,通过定量转换模型建立流域出口泥沙与内部潜在物源间的"指纹"联系,定量描述各潜在物源对流域出口产沙的相对贡献;结合悬移质或沉积泥沙通量监测,定量分析各潜在物源对流域产沙的绝对贡献量及流域侵蚀产沙时、空变化特征。通过综述泥沙来源"指纹"示踪技术的理论基础及实施框架,流域尺度潜在物源类型,泥沙"指纹"因子类别、分布特点及诊断能力,泥沙来源复合"指纹"示踪技术的研究进展,指出泥沙来源"指纹"示踪技术的局限性,并对泥沙来源"指纹"示踪技术进行展望。  相似文献   

10.
土壤侵蚀示踪方法研究综述   总被引:6,自引:0,他引:6  
土壤侵蚀已成为极为严峻的环境问题之一,由于降雨、坡面层流引起的土壤侵蚀被认为是涉及到坡面土壤的分散、沉积和转移同时发生的过程。分别介绍了放射性核素137Cs示踪,稳定性稀土元素示踪,磁性示踪剂在土壤侵蚀、沉积、分布和泥沙来源研究领域中的进展情况。旨在借鉴国内外研究方法上的经验。对于准确评价侵蚀泥沙在坡面空间、时间尺度上的分布、转运、沉积,了解土壤侵蚀过程和评价基于坡面、流域的土壤侵蚀模型有重要的指导意义。  相似文献   

11.
Water erosion in the hilly areas of west China is the main process contributing to the overall sediment of the Yellow River and the Yangtze River. The impact of gully erosion in total sediment output has been mostly neglected. Our objective was to assess the sediment production and sediment sources at both the hillslope and catchment scales in the Yangjuangou reservoir catchment of the Chinese Loess Plateau, northwest China. Distribution patterns in sediment production caused by water erosion on hills and gully slopes under different land use types were assessed using the fallout 137Cs technique. The total sediment production from the catchment was estimated by using the sediment record in a reservoir. Sediment sources and dominant water erosion processes were determined by comparing 137Cs activities and 210Pb/137Cs ratios in surface soils and sub-surface soils with those of sediment deposits from the reservoir at the outlet of the catchment. Results indicated that landscape location had the most significant impact on sediment production for cultivated hillslopes, followed by the terraced hillslope, and the least for the vegetated hillslope. Sediment production increased in the following order: top>upper>lower>middle for the cultivated hillslope, and top>lower>upper>middle for the terraced hillslope. The mean value of sediment production declined by 49% for the terraced hillslope and by 80% for the vegetated hillslope compared with the cultivated hillslope. Vegetated gully slope reduced the sediment production by 38% compared with the cultivated gully slope. These data demonstrate the effectiveness of terracing and perennial vegetation cover in controlling sediment delivery at a hillslope scale. Averaged 137Cs activities and 210Pb/137Cs ratios in the 0–5 cm surface soil (2.22–4.70 Bq kg−1 and 20.70–22.07, respectively) and in the 5–30 cm subsoil (2.60 Bq kg−1 and 28.57, respectively) on the cultivated hills and gully slopes were close to those of the deposited sediment in the reservoir (3.37 Bq kg−1 and 29.08, respectively). These results suggest that the main sediment sources in the catchment were from the surface soil and subsoil on the cultivated slopes, and that gully erosion is the dominant water erosion process contributing sediment in the study area. Changes in land use types can greatly affect sediment production from gully erosion. An increase in grassland and forestland by 42%, and a corresponding decrease in farmland by 46%, reduced sediment production by 31% in the catchment.  相似文献   

12.
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   

13.
Cesium and soil carbon in a small agricultural watershed   总被引:8,自引:1,他引:8  
Scientific, political, and social interests have developed recently in the concept of using agricultural soils to sequester carbon. Studies supporting this concept indicate that soil erosion and subsequent redeposition of eroded soils in the same field may establish an ecosystem disequilibrium that promotes the buildup of carbon on agricultural landscapes. The problem is to determine the patterns of soil erosion and redeposition on the landscape and to relate these to soil carbon patterns. Radioactive 137cesium (137Cs) can be used to estimate soil erosion patterns and, more importantly, redeposition patterns at the field level. The purpose of this study was to determine the relationship between 137Cs, soil erosion, and soil carbon patterns on a small agricultural watershed. Profiles of soils from an upland area and soils in an adjacent riparian system were collected in 5 cm increments and the concentrations of 137Cs and carbon were determined. 137Cs and carbon were uniformly mixed in the upper 15–20 cm of upland soils. 137Cs (Bq g−1) and carbon (%) in the upland soils were significantly correlated (r2=0.66). Carbon content of the 0–20 cm layer was higher (1.4±0.3%) in areas of soil deposition than carbon content (1.1±0.3%) in areas of soil erosion as determined by the 137Cs technique. These data suggest that measurements of 137Cs in the soils can be useful for understanding carbon distribution patterns in surface soil. Carbon content of the upland soils ranged from 0.5 to 1.9% with an average of 1.2±0.4% in the 0–20 cm layer while carbon below this upper tilled layer (20–30 cm) ranged from 0.2 to 1.5% with an average of 0.5±0.3%. Total carbon was 2.66 and 3.20 kg m−2 in the upper 20 cm and upper 30 cm of the upland soils, respectively. Carbon content of the 0–20 cm layer in the riparian system ranged from 1.1 to 67.0% with an average 11.7±17.1%. Carbon content below 20 cm ranged from 1.8 to 79.3% with an average of 18.3±17.5%. Soil carbon in the upper 20 cm of the riparian profile was 10.1 and 15.0 kg m−2 in the upper 30 cm of the riparian profiles. This is an increase of organic carbon by a factor of 3.8 and 4.7 for the upper 20 cm and upper 30 cm of the riparian profiles, respectively, when compared to the upland soil profiles.  相似文献   

14.
以青木关岩溶槽谷区内代表性耕地型与林地型洼地小流域为研究对象,从洼地沉积物入手,探明各洼地沉积物剖面~(137)Cs比活度、六六六(HCHs)、有机质、黏粒含量及容重的深度分布特征;运用~(137)Cs示踪法,辅以HCHs进行沉积物断代,追溯流域近60年来的土壤侵蚀量演变特征及探讨其驱动因素。结果表明:(1)炮台院子耕地型洼地沉积物剖面~(137)Cs、HCHs仅有个别层位检出,无法利用~(137)Cs、HCHs深度分布进行沉积物断代,反映了发育的落水洞对其沉积物剖面影响大。(2)龙洞槽耕地型和劳动村林地型洼地小流域1963—1983,1984—2019年产沙模数分别为231.78,82.04 t/(km~2·a)和68.79,39.46 t/(km~2·a),表明流域生态环境得到明显改善。与1963—1983年时段相比,该地区1984—2019年时段年平均降水量无明显变化,2个小流域产沙模数均显著减小,表明近60年流域产沙强度主要受土地利用方式、水土保持措施等人类活动控制。(3)龙洞槽洼地剖面~(137)Cs、HCHs峰值,表层泥沙~(137)Cs、HCHs数值和不同时期流域产沙模数均明显大于劳动村洼地,主要是由2个洼地分别控制的耕地型与林地型小流域在人类活动影响下产沙强度的差异所致。另外,~(137)Cs和HCHs相结合的示踪方法可较好地用于评估西南岩溶流域产沙量的时间变化。  相似文献   

15.
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   

16.
Starting in the 1980's, the Rainbow Smelt (Osmerus mordax) population of the Boyer River (Canada) gradually declined due to water eutrophication and excessive siltation in the spawning area. Sediments and agricultural nutrients reach hydrosystems through runoff and soil erosion. The objectives of the study were to quantify the soil and sediment loss from agricultural fields and to identify the areas at risk, using 137Cs measurements. Using a Geographical Information Systems (GIS), the watershed was subdivided into 6 isosectors presenting specific soil/slope combinations. Representative fields from each isosector were sampled for 137Cs. Using GIS, the data for individual fields were extrapolated to isosectors and the whole cultivated area of the watershed. Based on this approach, it was estimated that around 30% of the arable lands of the watershed show erosion rates higher than 6 t ha− 1 yr− 1, which is considered as a tolerable level for Canadian soils, and that 45% of the residual area presents an erosion rate close to that limit. The average sediment production at the edge of fields was estimated at 2.8 t ha− 1 yr− 1, for an annual production of more than 60 000 t of material. Loamy soils with a slope higher than 2% were estimated to generate the highest sediment rate (6.9 t ha− 1 yr− 1) and nearly 40% of the overall sediment production.  相似文献   

17.
Sediment budgets have been established for two small (<4 km2), lowland, agricultural catchments, by using 137Cs measurements, sediment source fingerprinting and more traditional monitoring techniques to quantify the individual components of the budget. The gross and net erosion rates for the fields on the catchment slopes were estimated using 137Cs measurements within selected fields, which encompassed a representative range of slope angles, slope lengths and land use. These estimates were extrapolated over the entire catchment, using a simple topographically driven soil erosion model (Terrain-Based GIS, TBGIS) superimposed on a DEM, to derive catchment average gross and net erosion rates. Suspended sediment yields were measured at the catchment outlets and sediment source fingerprinting techniques were used to establish the relative contributions from the catchment surface, subsurface tile drains and eroding channel banks to the sediment yields. In-channel and wetland storage were quantified using both direct measurements and 137Cs measurements. The sediment budgets established for the catchments highlighted the importance of subsurface tile drains as a pathway for sediment transfer, accounting for ca. 60% and 30% of the sediment output from the two catchments. Erosion from channel banks contributed ca. 10% and 6% of the sediment output from the two catchments. Although the suspended sediment yields from these catchments were considered high by UK standards (ca. 90 t km−2 year−1), the sediment delivery ratios ranged between 14% and 27%, indicating that a major proportion of the mobilised sediment was stored within the catchments. In-field and field-to-channel storage were shown to be of similar magnitude, but storage of sediment in the channel system and associated wetlands was relatively small, representing <5% of the annual suspended sediment yield.  相似文献   

18.
赣南红壤丘陵区137Cs示踪土壤侵蚀对土壤养分元素的影响   总被引:1,自引:1,他引:0  
赣南红壤丘陵区是我国土壤侵蚀与土地退化比较严重的地区,以南丰县为例,应用137 Cs示踪技术探讨不同土地利用方式下土壤侵蚀与养分元素的关系。结果表明:(1)湿地松林、桔园、水田3种土地利用方式作用下土壤中137 Cs与养分元素分布差异显著,在垂直剖面上,湿地松林137 Cs含量呈指数递减分布,水田与桔园137 Cs含量因人为干扰在耕层内均匀分布;有机质与137 Cs有相似的分布特征;全氮、碱解氮、速效磷、速效钾含量均呈现一定表聚性。(2)位于坡地的2种土地利用方式中,湿地松林137 Cs、全氮、碱解氮、速效磷、速效钾、有机质含量均表现为下坡>上坡>中坡;桔园137 Cs活度表现为中坡>下坡>上坡,全氮、碱解氮、速效磷表现为下坡>中坡>上坡,而速效钾、有机质最大值均出现在上坡。(3)相关性分析表明,土壤137 Cs与有机质、全氮、碱解氮显著正相关,表明小流域有机质、氮元素可能与137 Cs有相同的物理运移方式,pH与137 Cs显著负相关,速效磷、速效钾则与137 Cs不相关。(4)3种土地利用方式中位于小流域谷地的水田137 Cs、有机质、全氮、碱解氮含量最高,坡地上桔园坡面137 Cs与土壤养分元素含量均高于湿地松林地,表明一定程度的坡改梯桔园种植模式能有效缓解土壤侵蚀与养分流失,改善区域生态环境。  相似文献   

19.
利用137Cs示踪技术,研究了宁南黄土高原阳洼流域土壤137Cs的空间分布和侵蚀特征.研究结果表明,流域137Cs背景值为1 966.99 Bq/m2,流域内不同土地利用方式下土壤137Cs比活度不同,且有比较明显的137Cs比活度分异.流域内林草地土壤剖面137Cs呈现指数分布模式,坡耕地剖面的137Cs则呈均匀分布模式.不同土地利用方式下土壤137Cs的面积活度表现为沟台>林草地>农耕坡地,其中农耕坡地、沟台地土壤侵蚀、沉积表现出较大的变异,变异系数达65%以上.阳洼流域土壤侵蚀模数与137Cs比活度呈现出相反的分布趋势,但都明显具有斑块状和条带状分布的特点.流域土壤以中、强度侵蚀为主,中、强度侵蚀面积占流域总面积的46%,在流域土壤侵蚀防治中坡耕地仍是治理的关键.  相似文献   

20.
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   

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