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1.
为探明侵蚀对坡耕地土壤活性有机碳的影响,利用137 Cs示踪技术,并结合土壤理化分析,研究了川北山区坡耕地土壤侵蚀所引起的土壤再分配对土壤有机碳与活性有机碳空间变异性的影响。结果表明,川北山区坡耕地土壤侵蚀是水蚀和耕作侵蚀共同作用的结果,强烈的耕作导致坡上部发生严重的土壤侵蚀;侵蚀对坡耕地土壤有机碳与活性有机碳分布影响较大,土壤有机碳与活性有机碳含量与137 Cs含量呈显著正相关,坡上部土壤有机碳与活性有机碳含量贫瘠,而在坡下部相对富集。因此,山区坡耕地土壤肥力的空间分布特征在今后的土地施肥管理中应引起关注。  相似文献   

2.
川中丘陵区坡耕地侵蚀空间分布的WEPP模型和137Cs法研究   总被引:4,自引:1,他引:4  
当前核素示踪技术和侵蚀产沙模型联合应用于侵蚀空间分异规律研究甚少且主要集中在流域尺度上。本研究利用WEPP模型和137Cs核素示踪技术估算了川中丘陵区简阳县贾家村附近两块坡耕地的侵蚀速率,进而对两种方法估算的侵蚀速率在坡面上的空间分布规律进行了分析。研究表明用137Cs核素示踪法测算的两块坡耕地的侵蚀速率随坡长增加而呈波动变化特征,用WEPP模型估算的坡耕地和坡耕地的土壤侵蚀速率随坡长增加而增大。坡耕地I顶部极高的137Cs计算的侵蚀速率和极低的WEPP模型计算的侵蚀速率表明人工刨地耕作逐渐把该坡耕地顶部的耕作土迁移至下部并将坡顶变成该坡耕地内最贫瘠的部分。用WEPP模型模拟的侵蚀速率与用137Cs计算的侵蚀速率在量上和空间分布上都有较大的不同,这说明在川中丘陵区用WEPP模型来估算传统耕作方式下坡耕地的侵蚀速率存在一定的局限性。  相似文献   

3.
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   

4.
为更好地理解矿区土壤退化机理,该文利用137Cs技术研究了焦作矿区具有15a沉陷历史的采煤沉陷坡土壤侵蚀特征及其对土壤养分的影响。沉陷坡137Cs含量从坡顶到下坡逐渐降低,及至坡脚急剧增大且表现出最高的值。基于137Cs本底(1 645 Bq/m2),沉陷坡坡顶至下坡表现为土壤侵蚀,而坡脚为土壤沉积。沉陷坡土壤侵蚀高达3.75 kg/(m2·a),属于中度侵蚀。沉陷坡土壤黏粒含量沿下坡方向增加,表明水蚀的分选性搬运。与对照区相比,沉陷坡侵蚀区土壤总有机碳(total organic carbon,TOC)、水溶性有机碳(water-soluble organic carbon,WSOC)、全氮、碱解氮、全磷、有效磷含量均出现了显著降低(P0.05);沉积区除WSOC显著降低(P0.05)外,其他养分含量变化不明显(P0.05)。在沉陷坡的侵蚀区,TOC与WSOC含量沿下坡方向逐渐减小,表现出与137Cs一致的分布格局;其他养分含量的坡面变化与137Cs分布不一致。相较于对照区,WSOC/TOC与碳氮比、碳磷比在沉陷坡侵蚀强烈的坡位分别出现了显著增大与降低(P0.05)。研究结果表明:1)焦作矿区自采煤沉陷坡形成以来发生了较严重的水蚀;2)侵蚀引起的土壤再分配影响沉陷坡土壤碳、氮、磷动态,其中,土壤再分配对土壤碳动态的影响最强;3)在土壤侵蚀作用下,采煤沉陷坡侵蚀强烈的坡位土壤有效态碳、氮、磷养分潜在的侵蚀风险大。采煤沉陷坡土壤侵蚀及其对土壤养分的不利影响应引起矿粮复合区土地整治的关注。  相似文献   

5.
土壤侵蚀因素对紫色丘陵区坡耕地耕层质量影响   总被引:11,自引:3,他引:8  
土壤侵蚀是导致坡耕地耕层土壤质量退化和土壤生产力不稳定的关键因素。该文以紫色丘陵区坡耕地为例,对坡耕地不同地力等级耕层土壤质量、渗透性能及耕层类型进行聚类分析,讨论了土壤侵蚀对坡耕地耕层厚度影响及合理耕层土体构型。结果表明:(1)紫色土坡耕地耕层土壤质量具有中等程度变异性,有效土层厚度(15~80 cm)和耕层厚度(15~25 cm)变异系数分别为12.18%和37.26%,土壤有效磷变异系数可达94.51%,说明土壤物理指标变异性小于化学指标变化;三级以下地力耕层构型为近似全虚或全实剖面结构,五等地力坡耕地产量下降50%左右。(2)紫色土坡耕地不同坡位、不同垂直深度的耕层土壤物理性质、持水性能及耕作性能差异显著(P0.05),土壤容重为上坡下坡中坡,土壤抗剪强度为上坡中坡下坡,土壤稳定入渗为下坡中坡上坡,土壤贯入阻力表现为中坡上坡下坡;除土壤入渗外,土壤容重、抗剪强度、贯入阻力均表现为底土层心土层耕层;坡耕地0~40 cm土层中蓄存降水可被农作物利用70%左右。(3)中度侵蚀程度坡耕地,年均耕层厚度薄化值为1.04~3.04 mm,坡耕地合理耕层建立可选择有效土层厚度、耕层厚度、土壤容重、土壤抗剪强度、土壤有机质、土壤渗透性为坡耕地合理耕层评价最小数据集,耕层构型总体保持上虚下实型、耕层厚度20~25 cm、有效土层厚度50~60 cm。(4)紫色土坡耕地可分为四种耕层类型,其障碍耕层主要表现为有效土层厚度限制型(第II类)、耕层厚度限制型(第III类)和土壤养分限制型(第IV类),分别占耕层总量30%、10%、3%;紫色土坡耕地合理耕层建立应重点关注有效土层厚度和耕层厚度调控。研究结果可为客观认识土壤侵蚀与紫色土坡耕地耕层退化关系、合理耕层构建提供理论依据和技术参数支持。  相似文献   

6.
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   

7.
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   

8.
利用137Cs示踪方法,对宁南黄土高原阳洼流域纵断面土壤137Cs分布及相关影响因子进行了初步研究。结果表明:流域纵断面137Cs面积活度随坡面海拔和水平距离的变化,表现为一种不规则的波动振荡趋势。随海拔降低,纵断面上、中部137Cs面积活度逐步下降,有明显的土壤侵蚀发生;坡面下部137Cs面积活度最高,泥沙沉积的再分布现象明显。流域内林草地剖面土壤137Cs呈指数型分布,坡耕地、梯田137Cs在耕层内呈均一分布,其分布模式与各土地类型土壤有机质的分布状态完全一致。相关分析表明,两者在P<0.01水平达到极显著相关(r2=0.336,n=417)。土壤137Cs的损失和土壤有机质的移动具有相同的物理路径和运移机制;农耕坡地土壤137Cs面积活度随坡度增加有逐步降低的趋势;土地利用方式、坡度、耕作活动是影响纵断面土壤137Cs空间异质性的主要因素。137Cs示踪方法是研究土壤侵蚀空间分布的一种有效工具。  相似文献   

9.
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   

10.
利用^137Cs示踪方法,对宁南黄土高原阳洼流域纵断面土壤^137Cs分布及相关影响因子进行了初步研究。结果表明:流域纵断面^137Cs面积活度随坡面海拔和水平距离的变化,表现为一种不规则的波动振荡趋势。随海拔降低,纵断面上、中部^137Cs面积活度逐步下降,有明显的土壤侵蚀发生;坡面下部^137Cs面积活度最高,泥沙沉积的再分布现象明显。流域内林草地剖面土壤^137Cs呈指数型分布,坡耕地、梯田^137Cs在耕层内呈均一分布,其分布模式与各土地类型土壤有机质的分布状态完全一致。相关分析表明,两者在P〈0.01水平达到极显著相关(r^2=0.336,n=417)。土壤^137Css的损失和土壤有机质的移动具有相同的物理路径和运移机制;农耕坡地土壤^137Cs面积活度随坡度增加有逐步降低的趋势;土地利用方式、坡度、耕作活动是影响纵断面土壤^137Cs空间异质性的主要因素。^137Cs示踪方法是研究土壤侵蚀空间分布的一种有效工具。  相似文献   

11.
近地表土壤水分条件对坡面土壤侵蚀过程的影响   总被引:17,自引:0,他引:17       下载免费PDF全文
 采用人工模拟降雨实验,研究近地表土壤水分条件对安塞黄绵土和杨陵塿土土壤侵蚀过程的影响,尤其是土壤水分饱和条件下的土壤侵蚀过程。结果表明:土壤质地对入渗和径流过程有较大影响。对同一质地的供试土壤,随着前期近地表土壤含水量的增大,入渗量减少,而径流强度增大,坡面初始发生产流时间也越早。当前期近地表土壤含水量相近时,杨陵塿土的初始产流时间早于安塞黄绵土,坡面径流量和侵蚀产沙量也随前期近地表土壤水分含量的增加而增大。对于安塞黄绵土,当前期土壤含水量分别为饱和含水量的100%、75%和50%时,其径流量分别占饱和含水量的25%时的2.5、2.2和1.3倍,其侵蚀产沙量分别为50、25和1.3倍。而对于供试土壤为杨陵塿土,当前期土壤含水量分别为饱和土壤含水量的100%和50%时,其径流量分别是占饱和土壤含水量的25%时的1.1和1.0倍,其侵蚀产沙量分别为6.5和2.0倍。在降雨过程中,前期土壤含水量越大,片蚀发展为细沟侵蚀的时间越早,而且细沟侵蚀也越严重。  相似文献   

12.
自然侵蚀量和容许土壤流失量与水土流失治理标准   总被引:4,自引:0,他引:4       下载免费PDF全文
在总结分析国内有关自然侵蚀量、容许土壤流失量研究成果的基础上,探讨自然侵蚀量与容许土壤流失量的关系,讨论制订水土流失治理标准的思路。认为水土流失治理标准的确定有3个参考值:1)标准值,即一定条件下的容许土壤流失量,是水土流失治理至少要达到的目标,且随着对不同土地利用类型的功能需求与可实施的最佳水土保持措施、以及所在水土流失类型区的侵蚀危害与治理约束条件的不同而不同;2)理想值,即正常自然侵蚀状态下的土壤流失量;3)极端值,即土壤流失量为0,不发生水土流失。水土流失治理应是先控制到现时生态环境与社会经济条件下的容许土壤流失量范围内,逐步达到自然正常侵蚀量或制止水土流失的发生;还应引入环境伦理、环境美学及景观设计等理念,最终实现土地的可持续利用、区域生态系统的健康稳定及人与自然的和谐友好发展。  相似文献   

13.
Snowmelt-induced rill erosion could bring serious harm for soil quality and agricultural productive conditions of slope farmland in the black soil zone of Northeast China. In this study, we conducted laboratory experiments to investigate the effects of the freeze-thaw (FT) temperature, number of FT cycles, water content, flow rate, and thaw depth on rill morphology and erosion amount in two common soil (black soil and albic soil). The thaw depth obtained the maximum range, which was the primary factor for the width-to-depth ratio of rills in the black soil; whereas, the flow rate obtained the maximum range as the primary factor for rill erosion in black soil and albic soil. The number of FT cycles had a minor effect on rill erosion in the two soils. Under the same conditions, the rill morphology showed a large difference between the two soils, and higher rill erosion occurred in albic soil than black soil. Rill erosion was relatively high in black soil and albic soil when the FT temperature fluctuated around 0°C during freezing-thawing. The water content exhibited a greater effect on rill erosion in black soil than in albic soil. The unthawed frozen layer could promote rill erosion during snowmelt period to some extent. The results could provide some reference for future study snowmelt-induced rill erosion mechanism and preventive measures.  相似文献   

14.
Developing a magnetic tracer to study soil erosion   总被引:6,自引:0,他引:6  
Soil erosion is commonly measured as the quantity of sediment leaving a plot or watershed. The techniques for measuring soil erosion patterns and sediment redistribution within plots or watersheds by direct monitoring are very limited. The objective of this study was to develop a direct and non-intrusive tracer method to study the sources, patterns and rates of erosion and deposition of sediments in erosion plots. The magnetic tracer developed in this study consisted of polystyrene plastic beads embedded with a magnetic powder (magnetite). The “magnetized” beads, with a mean weight diameter of 3.2 mm and particle density of about 1.2 g cm−3, were uniformly mixed with soil and tested in the laboratory using simulated rainfall and inflow studies to simulate the interrill and rill components of soil erosion, respectively. In the interrill and rill experiments, the tracer was transported in the same proportion it was initially mixed with the soil. Given this fact, a magnetometer, which measures the soil's magnetic susceptibility, could be used to identify areas of deposition or detachment. The magnetic susceptibility would be increased or reduced depending on whether deposition or detachment occurs. To simulate detachment and deposition, a magnetometer was tested for different tracer concentrations and different thickness of soil containing the tracer. The magnetometer promises to be a sensitive, accurate, and useful tool to study the spatial variation of soil erosion when magnetic tracers are used.  相似文献   

15.
区域土壤侵蚀普查方法的初步讨论   总被引:13,自引:0,他引:13       下载免费PDF全文
区域土壤侵蚀调查制图和动态分析,是国家和省区编制土壤侵蚀宏观规划的数据基础,也是一个重大前沿性研究命题。在综述国内外区域土壤侵蚀调查制图、区域土壤侵蚀因子、土壤侵蚀尺度效应和土壤侵蚀模型等研究现状的基础上,对即将开展的全国土壤侵蚀普查工作提出以下建议:土壤侵蚀普查需要充分利用我国土壤侵蚀模型研究的最新成果,采用模拟计算方法实现对土壤侵蚀强度的定量估算;调查内容应包括区域土壤侵蚀因子、土壤侵蚀类型与强度、水土保持措施、典型区域抽样调查等;对土壤侵蚀尺度效应、区域土壤侵蚀模型应用示范和区域土壤侵蚀数据库建设方法等关键技术展开攻关研究。  相似文献   

16.
加速土壤侵蚀对养分流失的影响   总被引:7,自引:0,他引:7  
ZHENG Fen-Li 《土壤圈》2005,15(6):707-715
Soil erosion and nutrient losses on newly-deforested lands in the Ziwuling Region on the Loess Plateau of China were monitored to quantitatively evaluate the effects of accelerated soil erosion, caused by deforestation, on organic matter, nitrogen and phosphorus losses. Eight natural runoff plots were established on the loessial hill slopes representing different erosion patterns of dominant erosion processes including sheet, rill and shallow gully (similar to ephemeral gully). Sediment samples were collected after each erosive rainfall event. Results showed that soil nutrients losses increased with an increase of erosion intensity. Linear relations between the losses of organic matter, total N, NH4-N, and available P and erosion intensity were found. Nutrient content per unit amount of eroded sediment decreased from the sheet to the shallow gully erosion zones, whereas total nutrient loss increased. Compared with topsoil, nutrients in eroded sediment were enriched, especially available P and NH4-N. The intensity of soil nutrient losses was also closely related to soil erosion intensity and pattern with the most severe soil erosion and nutrient loss occurring in the shallow gully channels on loessial hill slopes. These research findings will help to improve the understanding of the relation between accelerated erosion process after deforestation and soil quality degradation and to design better eco-environmental rehabilitation schemes for the Loess Plateau.  相似文献   

17.
Soil translocation by soil tillage can have a considerable importance on arable land. These results were published in the international literature. The aim of the experiments is to quantify the translocation of soil due to tillage with different typical tools. A mouldboard plough and a disc harrow were tested in field experiments on a slope (4° inclination) with sandy soil. The average movement of soil particles of the top soil was determined about the changed tracer concentration. The tracer coloured gravels were most suitable of all tested tracer. The comparison of the tools showed more soil translocation caused by mouldboard plough (145?kg) than by disc harrow (12?kg). The transport was also different: plough 0.50?m and disc harrow 0.11?m average distance.  相似文献   

18.
采用人工模拟降雨的方法,研究不同降雨模式下石灰土坡地的地表侵蚀特征.结果表明:1)降雨总量为102mm,降雨强度为2.03 mm/min时,地表累积产沙量多达1 201.86 g,降雨强度为0.37 mm/min时,产生的地下土流失量最多为6.563 g;2)降雨时间均为90 min,降雨强度由强变弱时地表产沙量最多为796.7 g,降雨强度由弱变强时产生的延续产沙量最多为41.38 g,此时产生的地下土流失量仅为4.923 g;3)影响地表产沙量的主要因素是降雨强度,影响延续产沙量最显著的因子是降雨后期降雨强度,而降雨时间的长短决定了地下土流失量.  相似文献   

19.
Tillage erosion studies have mainly focused on the effect of topography and cultivation practices on soil translocation during tillage. However, the possible effect of initial soil conditions on soil displacement and soil erosion during tillage have not been considered. This study aims at investigating the effect of the initial soil conditions on net soil displacement and the associated erosion rates by a given tillage operation of a stony loam soil. Tillage erosion experiments were carried out with a mouldboard plough on a freshly ploughed (pre-tilled) soil and a soil under grass fallow in the Alentejo region (Southern Portugal).

The experimental results show that both the downslope displacement of soil material and the rate of increase of the downslope displacement with slope gradient are greater when the soil is initially in a loose condition. This was attributed to: (i) a greater tillage depth on the pre-tilled soil and (ii) a reduced internal cohesion of the pre-tilled soil, allowing clods to roll and/or slide down the plough furrow after being overturned by the mouldboard plough.

An analysis of additional available data on soil translocation by mouldboard tillage showed that downslope displacement distances were only significantly related to the slope gradient when tillage is carried out in the downslope direction. When tillage is carried out in the upslope direction, the effect of slope gradient on upslope displacement distances was not significant. This has important implications for the estimation of the tillage transport coefficient, which is a measure for the intensity of tillage erosion, from experimental data. For our experiments, estimated values of the tillage transport coefficient were 70 and 254 kg m−1 per tillage operation for grass fallow and pre-tilled conditions, respectively, corresponding to local maximum erosion rates of ca. 8 and 35 Mg ha−1 per tillage operation and local maximum deposition rates of ca. 33 and 109 Mg ha−1 per tillage operation.  相似文献   


20.
Soil erosion, which includes soil detachment, transport, and deposition, is one of the important dynamic land surface processes. The magnetic tracer method is a useful method for studying soil erosion processes. In this study, five types of magnetic tracers were made with fine soil, fly ash, cement, bentonite, and magnetic powder (reduced iron powder) using the method of disk granulation. The tracers were uniformly mixed with soil and tested in the laboratory using simulated rainfall and inflow experiments to simulate the interrill and rill components of soil erosion, in order to select one or more tracers which could be used to study detachment and deposition by the erosive forces of raindrops and surface flow of water on a slope. The results showed that the five types of magnetic tracers with high magnetic susceptibility and a wide range of sizes had a range of 0.99-1.29 g cm?3 in bulk density. In the interrill and rill experiments, the tracers FC1 and FC2 which consisted of ?y ash and cement at ratios of 1:1 and 2:1, respectively, were transported in phase with soil particles since the magnetic susceptibility of sediment approximated that of the soil which was uneroded and the slopes of the regression equations between the detachment of sediment and magnetic tracers FC1 and FC2 were very close to the expected value of 20, which was the original soil/tracer ratio. The detachment and deposition on slopes could be accurately reffected by the magnetic susceptibility differences. The change in magnetic susceptibility depended on whether deposition or detachment occurred. However, the tracer FS which consisted of fine soil and the tracers FB1 and FB2 which consisted of fly ash and bentonite at ratios of 1:1 and 2:1, respectively, were all unsuitable for soil erosion study since there was no consistent relationship between sediment and tracer detachment for increasing amounts of runo?. Therefore, the tracers FC1 and FC2 could be used to study soil erosion by water.  相似文献   

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