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71.
为掌握凤城市耕地土壤的肥力状况,对比分析近25 a的土壤有机质含量变化情况。结果表明:近25 a凤城市各乡镇(区)土壤有机质平均含量由较缺乏转化为中等水平;随着耕作年限的增加,较小比例的五级(缺乏)水平耕地消失。 相似文献
72.
土壤有机质对坡耕地土壤侵蚀及作物产量的影响 总被引:5,自引:0,他引:5
土壤有机质是形成土壤结构的重要因素.采取定位试验的结果表明,在10°~12°的黄土坡耕地上每公顷施厩肥30000、45000、75000kg,年径流量比对照区分别减少13.3%、20.5%、34%,年泥沙流失量分别减少32.3%、33.7%、35.4%,其减少率随施肥量的增加而提高;第4年各施肥水平下的耕层土壤有机质增加量分别为69.7%、65.0%和140.1%;一种作物在一年中的产量随施肥量的增加而增加,3种施肥水平可分别增产26.7%、25.5%和43.3%.在10°左右的坡耕地上,每年施入一定数量的有机肥,使土壤有机质增加,土壤结构得到改善,并达到减少水土流失、提高作物产量的目的. 相似文献
73.
基于土壤剖面测定数据计算中国土壤有机碳贮量 总被引:10,自引:0,他引:10
Soil organic carbon (SOC) storage under different types of vegetations in China were estimated using measured data of 2 440 soil profiles to compare SOC density distribution between different estimates, to map the soil organic carbon stocks under different types of vegetation in China, and to analyze the relationships between soil organic carbon stocks and environmental variables using stepwise regression analyses. Soil organic carbon storage in China was estimated at 69.38 Gt (1015 g). There was a big difference in SOC densities for various vegetation types, with SOC distribution closely related to climatic patterns in general. Stepwise regression analyses of SOC against environmental variables showed that SOC generally increased with increasing precipitation and elevation, while it decreased with increasing temperature. Furthermore, the important factor controlling SOC accumulation for forests was elevation, while for temperate steppes mean annual temperature dominated. The more specific the vegetation type used in the regression analysis, the greater was the effect of environmental variables on SOC. However, compared to native vegetation, cultivation activities in the croplands reduced the influence of environmental variables on SOC. 相似文献
74.
Microbial biomass C (MBC) is one of the soil properties used as an indicator for the fertility status of a soil. A study was conducted on a semi-arid Loess Plateau in China. The field was planted with spring wheat and mulched with plastic film for various lengths of time. Our primary objectives were to (i) explore the influence of film mulching on soil MBC and soil fertility, and (ii) seek an effective approach of maintaining and improving sustainability of cropland mulched with plastic film in two growing seasons. Four treatments were tested, non-mulching (M0), mulching for 30 days after sowing (M30), mulching for 60 DAS (M60) and mulching for the whole growing period (Mw). An increasing air temperature with time within the growing season promoted soil MBC in the two growing seasons, but a severe drought led to a lower MBC in 2000 compared with the wet year of 1999. Film mulching promoted MBC significantly in the 2 years, but decreased soil organic carbon (SOC). SOC is very low in the experimental soil, accounting for the higher MBC/SOC ratio compared with ratios reported by others. The SOC is greatly reduced in the non-mulched and the Mw treatments compared to the M30 and M60 treatments. In conclusion, the benefits of film mulching in semi-arid agricultural systems are enormous but realizing their full potential depends on how long the mulching material is maintained during the growing season. In the system tested, it is desirable to mulch the plots for 30-60 DAS in order to enhance microbial biomass and cycling of nutrients and also to provide a more stable soil micro-environment that generates more residues in the rhizosphere. 相似文献
75.
76.
Patricia J. Folgarait Fabien Thomas Thierry Desjardins Michel Grimaldi Ichiro Tayasu Pierre Curmi Patrick M. Lavelle 《Biology and Fertility of Soils》2003,38(6):349-357
This study compared soil physical, chemical, and biological characteristics between natural grassland and recently abandoned rice fields in order to identify those variables that might explain the observed increase of Camponotus punctulatus anthills in abandoned rice paddy fields from Northern Argentina. Mainly due to a reduction of macropores and mesopores, overall porosity decreased by around 6% and bulk density was about 7% greater, in the 0- to 10- and 10- to 20-cm layers of the abandoned rice fields. Carbon and nitrogen content from organic matter increased (29% and 41% respectively for the 0- to 20-cm horizon) during cultivation but decreased (38% and 24%) 2 years after the last rice harvest. Forty percent of natural grassland-organic matter and 30% of abandoned rice-organic matter mineralized in less than 2 years. There was a different community structure between the abandoned rice fields and the undisturbed natural grassland and only a 20.6% (i.e. only 19 species from a total of 92) overlap in species composition. The abundance of macrofauna was greater in abandoned rice fields (2,208 individuals m–2) in comparison to natural grasslands (288 ind m–2) due to higher densities of small earthworms and Camponotus punctulatus ants; however, the Shannon index showed lower values in comparison to natural grasslands. Earthworms and C. punctulatus in the abandoned rice fields showed a change in their 13C signature indicating a switch in diet from natural grassland organic matter (C4) to organic matter from rice (C3). Our results indicate that the effects of rice cultivation practices did not seem to produce any physical or trophic limitations to recolonization by the macrofauna. It seems that changes in overall soil conditions have favored a change in the construction behavior of C. punctulatus which, in combination with population increases, could explain the explosion in number of anthills. 相似文献
77.
基于137Cs示踪的丹江口市农用地土壤侵蚀与有机质流失分析 总被引:2,自引:0,他引:2
运用137Cs示踪技术探讨了丹江口市小流域不同土地利用方式的土壤侵蚀,并分析了137Cs含量与有机质和重金属含量之间的关系。结果表明:农用地土壤侵蚀速率从大到小依次为沟谷旱地>坡耕地>菜田>水田>草地>灌丛,耕作土的侵蚀强度多为中度和强度侵蚀,非耕作土则是微度和轻度侵蚀;不同土地利用方式对土壤有机质和重金属分布影响很大,有机质含量分布规律为草地>灌丛>菜田>水田>沟谷旱地>坡耕地;Pb与Ni含量为灌丛>草地>坡耕地>沟谷旱地>菜田>水田;Cr与Cu含量为灌丛>菜田>坡耕地>草地>沟谷旱地>水田;Zn含量为灌丛>菜田>草地>坡耕地>沟谷旱地>水田。对137Cs含量与土壤有机质、重金属含量进行回归分析的相关系数均在0.7以上,说明在景观简单的小流域,可以利用137Cs含量和数学模型预测土壤有机质和重金属的含量变化。 相似文献
78.
三江平原不同土地利用方式下沟渠沉积物可溶性有机碳含量和分布 总被引:4,自引:0,他引:4
研究了三江平原3种土地利用方式下沟渠沉积物DOC含量和分布,探讨了3种土地利用方式对沟渠沉积物DOC含量和分布的影响。结果表明,三江平原沟渠系统虽然都是在湿地的基础上开挖而成,但是分散于3种土地利用方式下的沟渠沉积物DOC含量及其分布发生了明显变化。湿地开垦为农田利于沟渠各层沉积物DOC的累积,水田和旱田相比,旱田更有利于沟渠各层沉积物DOC的累积;沟渠沉积物DOC垂直分布随土地利用方式不同发生了明显的变化,穿过型沟渠和边界沟渠相比,边界沟渠沉积物DOC垂直分布显示出更强的沉积特点。挖沟排水和土地开垦耕作,不仅导致大量DOC向沟渠迁移并沉积在沟渠中,而且最终导致不同沟渠沉积物中DOC的含量和分布产生了明显的差异性。 相似文献
79.
Angela Y.Y. Kong Steven J. Fonte Chris van Kessel Johan Six 《Soil & Tillage Research》2009,104(2):256-262
Few studies address nutrient cycling during the transition period (e.g., 1–4 years following conversion) from standard to some form of conservation tillage. This study compares the influence of minimum versus standard tillage on changes in soil nitrogen (N) stabilization, nitrous oxide (N2O) emissions, short-term N cycling, and crop N use efficiency 1 year after tillage conversion in conventional (i.e., synthetic fertilizer-N only), low-input (i.e., alternating annual synthetic fertilizer- and cover crop-N), and organic (i.e., manure- and cover crop-N) irrigated, maize–tomato systems in California. To understand the mechanisms governing N cycling in these systems, we traced 15N-labeled fertilizer/cover crop into the maize grain, whole soil, and three soil fractions: macroaggregates (>250 μm), microaggregates (53–250 μm) and silt-and-clay (<53 μm). We found a cropping system effect on soil Nnew (i.e., N derived from 15N-fertilizer or -15N-cover crop), with 173 kg Nnew ha−1 in the conventional system compared to 71.6 and 69.2 kg Nnew ha−1 in the low-input and organic systems, respectively. In the conventional system, more Nnew was found in the microaggregate and silt-and-clay fractions, whereas, the Nnew of the organic and low-input systems resided mainly in the macroaggregates. Even though no effect of tillage was found on soil aggregation, the minimum tillage systems showed greater soil fraction-Nnew than the standard tillage systems, suggesting greater potential for N stabilization under minimum tillage. Grain-Nnew was also higher in the minimum versus standard tillage systems. Nevertheless, minimum tillage led to the greatest N2O emissions (39.5 g N2O–N ha−1 day−1) from the conventional cropping system, where N turnover was already the fastest among the cropping systems. In contrast, minimum tillage combined with the low-input system (which received the least N ha−1) produced intermediate N2O emissions, soil N stabilization, and crop N use efficiency. Although total soil N did not change after 1 year of conversion from standard to minimum tillage, our use of stable isotopes permitted the early detection of interactive effects between tillage regimes and cropping systems that determine the trade-offs among N stabilization, N2O emissions, and N availability. 相似文献
80.
柳杉人工林采伐后不同土地利用类型初期土壤有机碳变化 总被引:2,自引:1,他引:2
运用空间代替时间的方法研究了25年生柳杉人工林(对照)采伐后形成的柳杉人工幼龄林、经济林、苗圃地、皆伐迹地、农耕地5种土地利用类型初期土壤有机碳含量和碳储量变化。结果表明,5种土地利用类型和对照的土壤有机碳含量和碳储量均随土层的加深而降低;除经济林外,苗圃地、柳杉人工幼龄林、农耕地和皆伐迹地的土壤平均有机碳含量分别比对照降低了10.8%,28.1%,37.8%,40.1%;5种不同土地利用类型土壤碳储量排序为:皆伐迹地(214.2±17.0 t C/hm2)>经济林(191.3±13.4 t C/hm2)>柳杉人工幼龄林(173.5±15.1t C/hm2)>苗圃地(171.9±9.2 t C/hm2)>农耕地(132.7±12.1 t C/hm2),分别比对照(272.9±21.8 t C/hm2)减少了21.5%,29.9%,36.4%,37.0%,51.4%。人工林采伐后形成的不同土地利用类型,土壤有机碳含量和碳储量减小的程度与采伐后紧接着采取的人为措施有关。 相似文献