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91.
研究不同土地利用类型土壤侵蚀量的坡度效应,以便为退耕还林及坡耕地水保措施提供依据。根据上舍河小流域2000年55场有效降雨资料,对不同土地利用类型(坡耕地、杉木林地)次降雨地表径流量、径流侵蚀模数与坡度、降雨量、降雨强度、植被盖度等影响因子进行相关分析。结果表明:坡耕地、杉木林地的次降雨地表径流量、地表径流侵蚀模数与坡度、降雨量、降雨强度、植被盖度等相关显著。在一定坡度范围内,坡耕地的次降雨地表径流量和径流侵蚀模数,随着坡度的增大而增加,而杉木林分的次降雨地表径流量和径流侵蚀模数,随着坡度的增加而降低。 相似文献
92.
Krzaklewski W. Barszcz J. Małek S. kozioł K. Pietrzykowski M. 《Water, air, and soil pollution》2004,159(1):151-164
In the technological processes of ore flotation in the non-ferrous metal industry flotation, tailings constitute up to 98% of the total of the processed material. They are stored in sedimentation ponds as fine-grained drift containing an excess of heavy metals, mainly zinc, cadmium, lead and copper. After the dehydration and drying up of the surface of sedimentation ponds, these metals are carried with dust by the wind and they are accumulated in the vicinity of the ponds in humus horizons of soils causing considerable degradation and even devastation. In this publication, we have presented the results of research on the negative influence of such a structure on the soils of an adjacent fragment of forest and its dependence on the distance from the sedimentation pond. The level of degradation of the soils under research has been assessed on the basis of changes and transformations of the morphological soil profiles, the level of alkalization and accumulation of heavy metals (Zn, Pb, Cd) in the topsoil layers and their translocation in the soil horizons. The following soils have been distinguished in the investigated area: Haplic Podzols distorted and degraded as well as Urbic Anthrosols. The acquired results have served to depict the spatial accumulation of these heavy metals in the topsoil layers. The highest accumulation of heavy metals and the degradation of the forest sites connected with it has occurred in the vicinity of a sedimentation pond drain channel. Soil remediation has been recommended in this area. 相似文献
93.
Dust storm erosion and its impact on soil carbon and nitrogen losses in northern China 总被引:4,自引:0,他引:4
There is increased awareness of the environmental impacts of soil carbon (C) and nitrogen (N) losses through wind erosion, especially in areas heavily affected by dust storm erosion. This paper reviews the recent literature concerning dust storm-related soil erosion and its impact on soil C and N losses in northern China. The purpose of our study is to provide an overview of the area of erosion-affected soils and to estimate the magnitude of soil C and N losses from farmland affected by dust storm erosion.According to the second national soil erosion remote-sensing survey in 2000, the area affected by wind erosion was 1.91 million km2, accounting for 20% of the total land area in China. This area is expanding quickly as the incidence of heavy dust storms has greatly increased over the last five decades, mainly as a result of the intensification of soil cultivation. The economic and ecological damage caused by wind erosion is considerable. Heavily affected areas show a loss of nutrients and organic carbon in soils and the heavily degraded soils are much less productive. Compared with the non-degraded soil, the C and N contents in degraded soils have declined by 66% and 73%, respectively. The estimated annual losses per cm toplayer of soil C and N by dust storm erosion in northern China range from 53 to 1044 kg ha− 1 and 5 to 90 kg ha− 1, respectively. Field studies suggest that soil losses by wind erosion can be reduced by up to 79% when farmers shift from conventional soil tillage methods to no-till. Thus shifting to no-till or reduced tillage systems is an effective practice for protecting soil and soil nutrients. Our study indicates that soil conservation measures along with improved soil fertility management measures should be promoted in dry-land farming areas of northern China. As erosion is a major mechanism of nutrient withdrawal in these areas, we plead for the development of accurate methods for its assessment and for the incorporation of erosion, as a nutrient output term, in nutrient budget studies. 相似文献
94.
Majed Abu-Zreig 《Journal of Soils and Sediments》2006,6(3):137-144
Background Several types of organic polymers with various molecular weights and surface charges are produced for various industrial
and agricultural purposes, and recent studies have shown that high molecular weight anionic polymers are the most effective
in reducing runoff and soil loss. However, anionic polyacrylamide (PAM) is marketed under various commercial names with variable
molecular weight and length according to its chemistry (Barvenik 1994). Consequently, its interactions with soil and efficiency
in reducing soil erosion are expected to vary. Moreover, types of PAM other than those recommended for erosion control may
also be effective in reducing soil erosion.
Objectives The objective of this research is to test the influence of 9 types of polyacrylamide (PAM) on water infiltration and soil
loss of an arid silt loam soil under simulated rainfall conditions.
Method logy. Nine types of organic polymers varied in surface charge, ranging from +20 to –75, and molecular weight ranging from
very low to very high were used in this study. Soil plots with dimensions of 60 cm by 120 cm having moderate slope of3 to
5% were constructed in the field and equipped with runoff collection installations. A specific type of PAM was spread on soil
plots at a rate of 10 kg/ha. Rainfall was supplied from a drip type rainfall simulator at constant intensity and duration
of 80 mm/h and 50 min, respectively. Runoff, infiltration and soil loss were measured for each plot subjected to a specific
type of PAM and compared to control plots.
Results and Conclusions Land application of PAMs significantly increased infiltration prior to runoff but had insignificant effect on total infiltration
volume and final infiltration rate under the present experimental conditions. Experimental results confirmed that anionic
polymers were more effective in reducing soil loss than that of non-ionic or cationic polymers. In fact the cationic, low
molecular weight and low surface charge non-ionic PAMs had insignificant effect on soil loss. High molecular weight anionic
PAM with 30% surface charge (A-130) was more effective(46% reduction) than those having a high molecular weight and a lower
surface charge of 20% (A-110 and A-120) with an aver-age soil loss reduction of 24%. The PAM A-836, described assoil erosion
polymer with 20% surface charge and high molecular weight, reduced soil erosion by 41%. Unexpectedly, the anionic PAM with
low molecular weight but very high surface charge was also effective in reducing soil loss (47% reduction).
Recommendations and Outlook Land application of PAM improves water infiltration and highly reduces soil erosion thus improving agricultural production.
Application of PAM could be the only viable way to improve arid land farming. It seemed that various types of PAMs, other
than those specifically produced for erosion protection can be used to combat soil erosion. This means that farmers in poor
countries can use any type of PAM that is available to them to improve agricultural production. 相似文献
95.
96.
不同草带对坡耕地土壤侵蚀的影响 总被引:5,自引:0,他引:5
于20012002年进行了“不同草带对坡耕地土壤侵蚀的影响”研究,试验设高羊茅(A)单作、高羊茅与红三叶混作(B)、非洲狗尾草与红三叶混作(C)和一个无草带种植(对照D)4个处理,坡地在13.2°14°。在每个处理上部等高种植玉米,基部种0.5 m宽的草带,底部设径流收集池,主要收集510月玉米生长期间的水土流失量。结果表明:①草带可显著减少径流量和侵蚀量,3种草带处理2年的总径流量和总侵蚀量均极显著(P<0.01)小于对照D,其中非洲狗尾草与红三叶混作的水土保持效果最好,高羊茅与红三叶混作次之,高羊茅单作为第三。②试验地水土流失主要发生在68三个月,这3个月的径流量和侵蚀量分别占总量的96.8%,99.9%,特别是6月径流量和侵蚀量分别占总量的63.2%,80.3%,草带在此期间水土保持效果最显著。所以,在坡耕地上结合农作物等高种植多年生草带是一项简单有效的水土保持技术。 相似文献
97.
水土流失区马尾松垦复施肥与混交固氮植物措施对比分析 总被引:2,自引:0,他引:2
水土流失区马尾松“老头林”采用一般的垦复施肥措施,对促进马尾松生长有显著效果,但施肥作用只能持续3年左右。而采用混交固氮树种杨梅、胡枝子的措施,随着固氮植物固氮能力及生物生长量的增加,土壤养分状况、土壤结构等得到不断改善,马尾松高生长量也在逐步上升,效果十分显著,且作用持久。 相似文献
98.
Soil translocation resulting from multiple passes of tillage under normal field operating conditions 总被引:1,自引:0,他引:1
Until now, most tillage erosion experiments were conducted under controlled soil and operating conditions. However, soil condition, tillage depth, speed and direction generally show substantial within-field variation. In this study, a series of tillage experiments were set up to investigate the erosivity of tillage under normal operating conditions. The effect of a typical tillage sequence, including multiple mouldboard, chisel and harrow passes, on soil translocation and tillage erosion was studied during a period of 3 years. Soil translocation in excess of 10 m was observed while the average net translocation rates ranged between 0 and 0.9 m. The results suggest that the annual tillage transport coefficient, associated with mechanized agriculture, is in the order of 781 kg m−1 yr−1. The experimental results also show that the tillage transport coefficient of a sequence of tillage operations can be reasonably well predicted from information provided by the farmer and by summing the transport coefficients obtained from controlled, single pass experiments. However, a Monte Carlo simulation showed that a relatively high number of tillage operations are required to obtain accurate estimates of the tillage transport coefficients in multiple pass experiments. 相似文献
99.
Wind erosion has degraded over one-half billion hectares of land worldwide. 137Cesium (137Cs) has been used as a tracer to study long-term rates of soil redistribution by water and, to a lesser extent, by wind. Early studies assumed that the decline in 137Cs activity for a potentially eroded soil relative to that for an uneroded soil was linearly proportional to soil loss. More recently, models have emerged that consider the effects of soil cultivation and the particle surface area-dependent partitioning of 137Cs on soils. We investigated the partitioning of 137Cs in wind-eroded sediments and with soil surface samples sieved into contiguous ranges of particle sizes. We also compared the 137Cs activities and stratification of several adjacent soils with known wind erosion and deposition histories. Finally, we tested 137Cs-based soil loss models with measured data from sites with documented histories. 137Cs activities and mean particle diameters of aeolian samples agreed well with the 137Cs activities and respective mean diameters of the sieved surface soil samples. Good agreement between model estimations and measured data indicated that 137Cs models developed to estimate soil redistribution by water were also applicable to soil redistribution by wind provided that the models contained an appropriate particle size correction parameter. 相似文献
100.
切沟侵蚀是黄土高原丘陵沟壑区水土流失的重要形式之一,然而极端暴雨条件下不同土地利用类型坡面切沟侵蚀研究还鲜见报道。该研究以陕北2017年"7·26"特大暴雨为例,研究了岔巴沟流域3种土地利用类型(农地、休闲地和撂荒地)坡面切沟发育形态特征及体积估算模型。结果表明:1)农地、休闲地和撂荒地切沟长度分布在20 m内的占比分别为55.6%、34.8%和44.8%;农地切沟平均深度为110 cm,分别比休闲地和撂荒地高18.3%、19.2%;农地和休闲地切沟平均宽深比分别为0.87和0.84,横断面呈"宽-浅型",而撂荒地切沟呈"方型"(宽深比1.01)。2)撂荒地切沟侵蚀体积分别比农地和休闲地减少47.8%和28.3%,表明植被恢复有效地削弱了极端暴雨作用下的切沟侵蚀。3)农地切沟不同坡段侵蚀体积由高到低为下坡、上坡、中坡,而休闲地和撂荒地切沟侵蚀体积沿坡长方向呈递增趋势;3种土地利用类型切沟在上坡段的沟岸拓宽速率大于下切速率,中下坡则相反。4)农地、休闲地和撂荒地切沟侵蚀体积均与切沟长度、横断面面积呈极显著幂函数关系(P<0.001),横断面面积是切沟体积估算更为有效的参数。研究结果可为黄土高原丘陵沟壑区不同土地利用类型坡面切沟侵蚀体积估算及其防治提供重要依据。 相似文献