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用^137Cs法探讨苏南坡地的土壤侵蚀 总被引:10,自引:0,他引:10
与黄土和红壤地区相比 ,学术界对苏南丘陵区土壤侵蚀的关注要少得多 ,也许是这里的土壤侵蚀的绝对数量不大 ,然而 ,苏南地区的土壤侵蚀引起的生态影响却不容忽视 ,如因土壤侵蚀造成的养分流失对水体的影响及土层减薄都远超过黄土区。为了探讨苏南土壤侵蚀的生态影响 ,首先是要了解土壤侵蚀的状况 ,在这方面 13 7Cs示踪法是一种非常有用的工具 ,可是要使用此法 ,必须要解决两个问题 ,一是确定研究区的背景值 ,二是建立估算土壤侵蚀的模型。经过较长时间的研究 ,确定苏南地区的 13 7Cs背景值为 2 2 0 0 Bq/m2 ;并根据基本物理含义 ,建立了耕地与非耕地的土壤侵蚀模型 ,用这 2个模型并借用其他学者提供的土壤沉积模型 ,对宜兴竹园及茶园两个坡地的土壤侵蚀与沉积作了估算。在此基础上 ,又尝试着简单探讨了土壤侵蚀引起的土层及养分流失的生态影响 相似文献
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苏南丘陵区存在多种利用当地土地资源方式,诸多利用方式也改变了土壤的性能,一般是人类干预下的耕地的土壤侵蚀及养分流失高于处在自然半自然状态下的非耕地。为了定量了解由土壤侵蚀引起的养分流失,首先应掌握土壤侵蚀的强度,^137Cs示踪法可以对此提供帮助。使用此法需解决2个问题:确定研究区域的^137Cs背景值与建立估算土壤侵蚀的模型,我们在这方面做了合理的尝试。以此为基础,估算了各种利用方式下土壤养分流失量;为了与黄土和红壤区土壤侵蚀的危害相比较,提出了等值侵蚀模数的概念,以便揭示苏南地区土壤侵蚀的潜在危害性。通过研究初步确认耕地尤其是水田可能是太湖水体营养元素的主要农业来源。 相似文献
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基于137Cs示踪的南方红壤丘陵区不同土地利用管理方式的侵蚀效应 总被引:1,自引:0,他引:1
南方红壤丘陵区因土壤侵蚀严重而成为生态脆弱地带.通过137Cs示踪技术,采用相关土壤侵蚀定量模型,对南方典型红壤丘陵区不同土地利用与管理方式下不同地貌部位的土壤侵蚀及其导致的侵蚀效应进行了研究.结果表明:研究区的137Cs的背景值为(1 920±125.6) Bq/m2;137Cs含量在不同土地利用管理方式和地貌部位存在明显的分异;侵蚀强度总的变化趋势表现为:荒山>本地松林、水保林>桔园>桔园改苗圃地>苗圃,因侵蚀而导致的土壤有机质和其他理化性状也表现出大致相同的变化特征;而不同地貌部位的侵蚀模数则表现为坡顶相对较小,坡中和坡底则相对较大. 相似文献
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选择江苏镇江地区作为研究区,采集仑山水库附近的12个土壤剖面共116个土壤样品,运用137Cs示踪方法,探讨了撂荒地、油菜地、茶园、林草地、林地、水稻田6种地类的137Cs含量及其侵蚀模数。研究表明:该区土壤中的137Cs背景值为1760.48Bq/m2。在0—50cm深度范围内,137Cs含量平均值为844.03Bq/m2,土壤侵蚀模数平均值为2642.89t/(km2.a)。不同地类按137Cs含量的大小排序,非耕作土为林草地>撂荒地>林地,耕作土为水稻田>油菜地>茶园;按土壤侵蚀模数的大小排序,非耕作土为林地>撂荒地>林草地,耕作土为茶园>油菜地>水稻田。非耕作土为轻度侵蚀,耕作土多为中度到强烈侵蚀。 相似文献
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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
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~(137)Cs技术研究岩溶高原湿地小流域土壤侵蚀特征 总被引:1,自引:0,他引:1
运用137Cs技术研究了威宁草海沙河小流域不同土地利用方式和地貌部位的土壤侵蚀特征。结果表明:研究区137Cs的背景值为879Bq·m2;农耕地土壤剖面中137Cs中呈均匀分布,非农耕地土壤剖面中呈指数递减分布;不同土地利用方式下,137Cs的面积活度值从大到小为灌丛地人工草地农耕地,土壤侵蚀模数值为农耕地草地灌丛地;不同地貌部位土壤中,137Cs面积活度值从大到小为下坡中坡上坡,侵蚀模数值变化为上坡中坡下坡。小流域年均侵蚀模数为:1254.9t·(km2·a)-1,灌丛地侵蚀模数为462.6t·(km2·a)-1,人工草地为630.4t·(km2·a)-1,农耕地为3311.8t·(km2·a)-1。因此,在小流域水土流失综合治理过程中,农耕地是治理的重点。 相似文献
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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
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沂蒙山区土壤侵蚀的137Cs示踪法初步研究 总被引:1,自引:0,他引:1
沂蒙山区是我国北方典型的土石山区,当地土壤由片麻岩、砂岩发育而来,质地疏松易流失,缺乏对泥沙侵蚀监测的长期观测数据。本研究采集了山东省沂蒙山区某一小流域的48个土样共72个样品,利用137Cs示踪技术,确定该地区土壤中的137Cs背景值约为1 740 Bq m-2,并利用杨浩等人的土壤侵蚀定量模型,对该流域土壤侵蚀进行了初步估算。估算结果表明该地区非耕地土壤侵蚀的平均速率为2 531 t km-2a-1,坡耕地土壤侵蚀的平均速率为6 953 t km-2a-1。由于人类耕作活动以及地形的影响,坡耕地土壤侵蚀严重,土壤侵蚀速率在坡面上呈复杂变化。当地土壤流失严重,使得土壤涵蓄水能力下降,加剧了洪涝、干旱灾害的发生,影响当地农业的可持续发展和人们生活水平的提高。 相似文献
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侵蚀引起的苏南坡地土壤退化 总被引:5,自引:0,他引:5
Soil erosion accelerates soil degradation. Some natural soils and cultivated soils on sloping land in southern Jiangsu Province, China were chosen to study soil degradation associated with erosion. Soil erosion intensity was investigated using the 137Cs tracer method. Soil particle-size distribution, soil organic matter (OM), total nitrogen (TN) and total phosphorus (TP) were measured, and the effects of erosion on soil physical and chemical properties were analyzed statistically using SYSTAT8.0. Results indicated that erosion intensity of cultivated soils was greater than that of the natural soils, suggesting that cultivation increased soil loss. Erosion also led to an increase of coarser soil particle proportion, especially in natural soils. In addition, silt was the primary soil particle lost due to erosion. However, in cultivated fields, coarser soil particles over time were attributed not only to soil erosion but also to mechanical eluviation as a result of farming activities. Moreover, erosion caused a decrease in soil OM, TN and TP as well as thinning of the soil layer. 相似文献
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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
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农耕地土壤~(210)Pb_(ex)含量对侵蚀速率变化的响应模型 总被引:1,自引:0,他引:1
论文在分析了农耕地土壤侵蚀速率改变后土壤中210Pbex含量变化的基础上,检讨了现行的计算农耕地土壤侵蚀速率210Pbex法存在的问题误区。根据质量平衡原理建立了农耕地土壤210Pbex含量对侵蚀速率变化的响应模型,证明长期以来普遍认为的"210Pbex法测定值为100a或200a以来的较长期的平均土壤侵蚀速率"的看法是不正确的。并用模型模拟计算了侵蚀速率变化后农耕地210Pbex含量的响应过程,结果表明农耕地土壤侵蚀速率发生变化后,土壤的210Pbex面积活度迅即响应,随着时间的增加呈指数变化。侵蚀速率增大的,土壤中210Pbex面积活度降低;减小的,210Pbex面积活度增加。210Pbex可以替代137Cs用于农耕地土壤侵蚀速率的测定。210Pbex不但可以测定持续耕种100a以上农耕地的侵蚀速率,也可以用于调查近期土地利用变化的土壤侵蚀响应。 相似文献
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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
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三峡库区紫色土坡耕地土壤侵蚀的137Cs示踪研究 总被引:7,自引:2,他引:5
坡耕地是三峡库区的重点水土流失区和河流泥沙的主要来源地.采用~(137)Cs示踪技术对三峡库区紫色土坡耕地的土壤侵蚀速率进行了定量研究.结果表明,新政小流域的~(137)Cs本底值为1 420.9 Bq/m~2;平均坡度为11.4°的缓坡耕地的~(137)Cs面积活度介于398.5~1 649.6 Bq/m~2之间,坡长加权平均值为816.0Bq/m~2;采用改进的简化质量平衡模型计算了坡耕地的土壤侵蚀速率,结果得出该坡地的土壤侵蚀模数介于-3 358.8~4 937.4 t/(km~2·a),其加权平均值为1 294.6 t/(km~2·a).受犁耕作用的影响,坡耕地两个坡段的土壤侵蚀速率随坡长增加大致都呈下降趋势,并在坡段下方出现了堆积.坡耕地土壤侵蚀速率不高的原因,一方面是由于所研究坡耕地属于缓坡,坡度较小,另一方面则是由于当地农民总结出了一套有效防止水土流失的耕作方式,使得土壤侵蚀强度大大降低. 相似文献
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Caesium-137 (137Cs) has been widely used for the determination of soil erosion and sediment transport rate. However, depth distribution patterns of 137Cs in the soil profile have not been considered. As a result, the erosion rates may be over-estimated or underestimated. This paper presents the depth distribution of 137Cs fallout in different soil profiles using published data. Three types of depth distribution functions of 137Cs are given by using statistical regression methods, the exponential type, the peak type and the decreasing type (including uniform distribution). Relationships between 137Cs loss and soil erosion rate are given by introducing the regression functions. The influence of depth distribution of 137Cs on the estimation of the soil erosion rate was simulated. Simulation results showed that very different soil erosion rates could be deduced for different depth distributions when 137Cs loss is the same, which indicates that the depth distribution pattern should be considered when soil erosion is estimated by using 137Cs. Simulation results also suggested that it is most important to determine the depth distribution of 137Cs near the soil surface and the annual relative loss of 137Cs by using the depth distribution of 137Cs as a criterion to estimate the soil erosion rate. 相似文献