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1.
土壤团聚体有机碳研究进展   总被引:1,自引:0,他引:1  
土壤有机碳是衡量土壤肥力的重要指标,对于促进土壤养分循环、增加养分有效性有重要作用。土壤团聚体是土壤的重要组成部分,是组成土壤结构的最小单元,受到自然因素和人为因素的影响,其形成转化过程与土壤固碳过程息息相关,因而研究团聚体和有机碳的关系及团聚体有机碳影响因素对于土壤结构的改善和土壤质量的提升具有重要意义。本文通过对文献的总结,明晰了土壤团聚体和有机碳的关系,阐述了土壤类型、施肥方式、土地利用和矿区复垦对土壤团聚体有机碳的影响,并从生物质炭的长期定位研究和复垦矿区的土壤修复两方面对土壤团聚体有机碳的研究进行展望,研究结果可为合理的农业生产提供科学依据。  相似文献   
2.
Mingzhu HE 《干旱区科学》2020,12(4):701-715
In arid desert regions of northwestern China, reclamation and subsequent irrigated cultivation have become effective ways to prevent desertification, expand arable croplands, and develop sustainable agricultural production. Improvement in soil texture and fertility is crucial to high soil quality and stable crop yield. However, knowledge on the long-term effects of the conversion of desert lands into arable croplands is very limited. To address this problem, we conducted this study in an arid desert region of northwestern China to understand the changes in soil physical-chemical properties after 0, 2, 5, 10, 17, and 24 years of cultivation. Our results showed that silt and clay contents at the 17-year-old sites increased 17.5 and 152.3 folds, respectively, compared with that at the 0-year-old sites. The soil aggregate size fraction and its stability exhibited an exponential growth trend with increasing cultivation ages, but no significant change was found for the proportion of soil macroaggregates (>5.00 mm) during the 17 years of cultivation. The soil organic carbon (SOC) content at the 24-year-old sites was 6.86 g/kg and increased 8.8 folds compared with that at the 0-year-old sites. The total (or available) nitrogen, phosphorus, and potassium contents showed significant increasing trends and reached higher values after 17 (or 24) years of cultivation. Changes in soil physical-chemical properties successively experienced slow, rapid, and stable development stages, but some key properties (such as soil aggregate stability and SOC) were still too low to meet the sustainable agricultural production. The results of this long-term study indicated that reasonable agricultural management, such as expanding no-tillage land area, returning straw to the fields, applying organic fertilizer, reducing chemical fertilizer application, and carrying out soil testing for formula fertilization, is urgently needed in arid desert regions.  相似文献   
3.
不同植被措施下排土场边坡细沟发育时空特征   总被引:1,自引:0,他引:1  
为明确不同恢复年限植被措施对煤矿排土场边坡水土流失的防治效应,采用样方调查法,以内蒙古准格尔旗永利煤矿矿区排土场边坡为研究对象,以裸露边坡(CK)为对照,研究不同恢复年限(1a、3a、5 a)的沙柳方格+沙棘+沙打旺(SHA)和沙柳方格+沙打旺(SA)2种措施对细沟发育的影响。结果表明:(1)1a时CK、SHA与SA措施细沟宽度均集中分布在4~8 cm,细沟深度均集中分布在2~4 cm;3 a时CK、SHA与SA措施细沟宽度则集中分布在4~8 cm、8~12 cm、4~8 cm,细沟深度均集中分布在4~6 cm;5 a时CK与SHA措施细沟宽度均集中分布在8~12 cm,而细沟深度则集中分布在4~6 cm和8~14 cm;(2)CK(1~5 a)、SHA措施(1~5 a)和SA措施(1~3 a)的细沟平均宽分别为7.57~11.35 cm、7.58~13.31 cm和5.57~6.14 cm,细沟平均深分别为3.38~6.23 cm、4.19~10.34 cm、2.59~4.24 cm,三者的细沟平均宽深比分别为2.39、2.12和2.05,平均细沟密度分别为1.52~5.25 m·m–2、1.42~1.68 m·m–2和1.88~2.25 m·m–2;(3)1 a时CK、SHA和SA措施的细沟宽深比随坡长变化幅度较大,随着恢复年限增加,宽深比则呈下降趋势,CK、SHA措施和SA措施的细沟密度和细沟侵蚀量均随坡长增加呈增大趋势;(4)与CK相比,1 a时SHA和SA措施边坡细沟侵蚀模数分别减小25.0%和25.86%,两种措施减蚀效果差别不大,而3 a时则分别减小了61.73%和35.31%,SHA措施减蚀效果显著增强。研究结果可以为矿区排土场边坡的植被合理布设提供科学依据与理论指导。  相似文献   
4.
为奠定基于运动力学参数构建土壤侵蚀模型的理论基础,通过不同降雨强度(25、50和75 mm/h)、不同坡长(1、5、10、15和20 m)下径流小区内人工模拟降雨试验,对不同处理下坡面薄层水动力学特性进行分析,并对水动力学参数与土壤侵蚀之间的关系进行初步探讨。结果表明:当坡度一定时,坡面平均流速主要受坡长及单宽流量影响,降雨强度通过影响单宽流量的大小间接影响坡面平均流速;在试验设计范围内,当坡长1 m时,整体上呈"层流-急流态",当坡长为1 m时,整体上呈"层流-缓流态";当降雨强度一定时,雷诺数随着坡长的增加线性增加,佛汝德数随着坡长的增加以幂函数形式增加;降雨强度对坡面流有明显的"增阻"效应;坡面阻力系数随着坡长的增加呈幂函数减小趋势;坡面平均土壤侵蚀率与单宽流量间呈一元线性趋势增加,与水流平均流速间呈指数函数增加,与雷诺数间呈二次函数增加。  相似文献   
5.
随着“互联网+”时代的到来,数据挖掘、数据共享、云计算等信息技术为农机的智能化和信 息化管理提供有效方法和手段。为更好的推动农业经济发展,有必要借助先进的信息技术手段,搭建 一个基于“互联网+”的智慧农机管理信息数据共享平台,使我国农机管理进入大数据时代,推进智慧 农业发展。  相似文献   
6.
1987~1990年,对3515hm2残次毛竹林试验区进行4年2度的砍杂、全垦、全垦结合施肥3种不同的作业方式的对比试验,试验结果均比试验前取得了显著的效益,其平均立竹量由1716支/hm2增加到3075支/hm2,平均胸径由6.67cm增加到8.91cm,平均度产新竹由3780kg/hm2增加到15090kg/hm2,平均度产竹笋由570kg/hm2增加到2430kg/km2,度产值由795元/hm2增加到3235.5元/hm2,投入产出比为1:7.08。3种作业方式的比较,以全垦结合施肥为最好。  相似文献   
7.
Abstract. A two year field experiment was carried out in a semiarid Mediterranean area in order to evaluate, the effect on soil erosion of adding different urban organic wastes: a stabilized municipal waste (compost), an unstabilized municipal waste, and an aerobic sewage sludge. All the treatments significantly reduced soil erosion, compared to the control soil. The soil amended with compost was the most effective treatment, reducing soil loss by 94% and runoff by 54%.  相似文献   
8.
Abstract. The Pan‐European Soil Erosion Risk Assessment (pesera ) model was evaluated using existing soil erosion data collected under various types of climate, vegetation, landscape and soil conditions. The data used represent a variety of typical Mediterranean land uses such as winter wheat, vines, olives and bare, stony land prevailing in hilly areas. Using this data, the model was calibrated for sediment transport by overland flow and results compared to measured soil erosion values from runoff plots and a watershed on a monthly basis. The performance of the model was assessed statistically, showing that it can be satisfactorily used for predicting soil erosion rates under the conditions included in the study. The overall model estimate including all the available experimental data was 0.69 t ha?1 yr?1 with a maximum error of 1.49 t ha?1 yr?1. After validation, the model was applied to a small watershed (60 ha) of great ecological importance for the sea turtle Caretta caretta. For this purpose, soil and vegetation maps were compiled from all the necessary data for applying the model. The model was run for three years using daily data from an existing nearby meteorological station. The predicted and measured soil erosion rates for a 7‐month period were 0.31 t and 0.18 t, respectively. Application of the model to each mapping unit showed the over‐riding importance of land use for sediment generation under the given climatic conditions. Bare land, occupying 5.5% of the watershed area, generated up to 69% of the total sediments estimated for the watershed. It is concluded that the pesera model can be used as a regional diagnostic tool under a range of soil, topographic and climatic conditions for identifying the best land use type and vegetation cover to protect hilly areas from soil erosion. The calculated overall root mean square error for the model is 0.06 t ha?1 yr?1, compared to a soil erosion rate of 0.04 t ha?1 yr?1, which can be tolerated for protecting the area for the sea turtle.  相似文献   
9.
台江采育场竹木混交林丰产措施试验   总被引:1,自引:0,他引:1  
对台江林业采育场现有竹木混交林进行施肥和土壤垦复两种试验,结果表明,不同施肥处理虽有一定增产效果,但经方差分析未达到显著水平;不同土壤垦复措施的增产效果,以深翻加施肥的新竹产量最高,锄草松土居第二,单纯深翻并不理想,效果不如劈山抚育。因而,新兴竹木混交林应以调整竹林结构和护笋养竹为主,每年锄草松土即可达到材用丰产林标准,不宜盲目深翻、施肥。  相似文献   
10.
Abstract. Current tillage erosion models account for the influence of tillage direction in the magnitude of the soil (tillage) transport coefficient. It is argued here that this is counter-intuitive and causes significant problems in modelling tillage erosion in areas of complex terrain. This article examines whether a re-modelling of tillage erosion is possible that separates tillage direction (an interaction with the landform) from the soil transport coefficient (a measure of tillage intensity representing the combination of implement erosivity and soil erodibility). Experimental data for mouldboard ploughing upslope, downslope and cross-slope at Coombe Barton Farm, Devon are examined. Integration of data for all directions into a single relationship, which relates translocation in the direction of tillage to slope in the direction of tillage and translocation perpendicular to tillage to slope perpendicular to tillage, is not possible using previously published methods of analysis. However, when total translocation distance is regressed against the tangent of the slope at 45° to the tillage direction (bisecting the tillage direction and the direction of overturning) it is found that a single relationship can be used to describe tillage in all three directions. Therefore, this relationship is used to determine a single value of the soil transport coefficient ( k fTa) for constant soil and implement conditions but different tillage directions. This redefinition of tillage is important both for true estimation of tillage erosion severity, the adirectional coefficient being 40% larger than the directional coefficient, and for modelling of tillage erosion in complex terrain. These improvements are vital when tillage erosion simulation is used to direct soil conservation strategies.  相似文献   
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