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Driving forces and their interactions of soil erosion in soil and water conservation regionalization at the county scale with a high cultivation rate
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作者 LUO Bang-lin LI Jiang-wen +2 位作者 GONG Chun-ming ZHONG Shou-qin wei chao-fu 《Journal of Mountain Science》 SCIE CSCD 2023年第9期2502-2518,共17页
Soil erosion control based on county scale Soil and Water Conservation Regionalization(SWCR)is an essential component of China's ecological civilization construction.In SWCR,the quantitative analysis of the spatia... Soil erosion control based on county scale Soil and Water Conservation Regionalization(SWCR)is an essential component of China's ecological civilization construction.In SWCR,the quantitative analysis of the spatial heterogeneity and driving factors of soil erosion among different regions is still lacking.It is of great significance for soil erosion control to deeply examine the factors contributing to soil erosion(natural,land use,and socioeconomic factors)and their interaction at the county and regional levels.This study focused on a highly cultivated area,Hechuan District of Chongqing in the Sichuan Basin.The district(with 30 townships)was divided into four soil and water conservation regions(Ⅰ-Ⅳ)using principal component and hierarchical cluster analysis.The driving factors of soil erosion were identified using the geographical detector model.The results showed thatⅰ)the high cultivation rate was a prominent factor of soil erosion,and the sloping farmland accounted for 78.4%of the soil erosion in the study area;ⅱ)land use factors demonstrated the highest explanatory power in soil erosion,and the average interaction of land use factors explained 60.1%of soil erosion in the study area;ⅲ)the interaction between natural factors,socioeconomic factors,and land use factors greatly contributes to regional soil erosion through nonlinear-enhancement of double-factor enhancement.This study highlights the importance of giving special attention to the effects of land use factors on soil erosion at the county scale,particularly in mountainous and hilly areas with extensive sloping farmland and a high cultivation rate. 展开更多
关键词 Soil and Water Conservation Regionalization Driving factors Soil erosion Geographical detector model Spatial heterogeneity
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Technical efficiency and its determinants of the various cropping systems in the purple-soiled,hilly region of southwestern China 被引量:2
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作者 ZHANG Shi-chao wei chao-fu +1 位作者 SHAO Jing-an WU Zhao-juan 《Journal of Mountain Science》 SCIE CSCD 2016年第12期2205-2223,共19页
This study examines the technical efficiency(TE) differences among typical cropping systems of smallholder farmers in the purple-soiled hilly region of southwestern China.Household-,plot-,and crop-level data and commu... This study examines the technical efficiency(TE) differences among typical cropping systems of smallholder farmers in the purple-soiled hilly region of southwestern China.Household-,plot-,and crop-level data and community surveys were conducted to explore TE levels and determinants of typical cropping systems by using a translog stochastic frontier production function.Results indicate significant difference in TE and its determinants among cropping systems.The mean TEs of the rice cropping system(R),the rice-rape cropping system(RR),the rice-rape-potato cropping system(RRP),and the oil cropping system(O) are0.86,0.90,0.84,and 0.85,respectively,which are over 1.17 times higher than those of the maize-sweet potato-other crop cropping system(MSO) and the maize-sweet potato-wheat cropping system(MSW) at0.78 and 0.69,respectively.Moreover,Technical inefficiency(TIE) of different cropping systems is significantly affected by characteristics of the household as well as plot.However,the impact of land quality,mechanical cultivation conditions,crop structure,farming system,farm radius,household type,cultivated land area per capita,and annual household income per capitalon TIE vary by cropping system.Additionally,output elasticity of land,labor,and capital,as a group,is greater than the one of agricultural machinery and irrigation.Finally,when household-owned effective agricultural labor is at full farming capacity,optimal plot sizes for the R,RR,RRP,MSO,MSW,and 0 cropping systems are 1.12hm^2,0.35 hm^2,0.25 hm^2,2.82 hm^2,1.87 hm^2,and 1.17hm^2,respectively. 展开更多
关键词 Cropping systems Technical efficiency Land management Plot Purple-soil Stochastic Frontier Production Function
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基于土地整治的山地丘陵区耕地质量潜力测算 被引量:20
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作者 王婕 魏朝富 +2 位作者 刘卫平 钟守琴 信桂新 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第7期122-132,共11页
准确地识别土地整治改良因素和科学地测算耕地质量潜力对耕地质量建设具有重要意义.本研究基于我国现有的耕地质量评价体系,分析土地整治工程措施对山地丘陵区耕地质量的影响,提出了一套服务于山地丘陵区土地整治的耕地质量提升潜力测... 准确地识别土地整治改良因素和科学地测算耕地质量潜力对耕地质量建设具有重要意义.本研究基于我国现有的耕地质量评价体系,分析土地整治工程措施对山地丘陵区耕地质量的影响,提出了一套服务于山地丘陵区土地整治的耕地质量提升潜力测算方法;并通过准确识别土地整治改良因素,确定提升方案,测算了重庆市綦江区耕地质量提升潜力.结果显示:1)研究区现状国家利用等指数区间为648.02~1 659.33,整治后国家利用等指数区间为761.81~1 783.04,耕地质量平均可提高0.79个利用等;2)得到的现状耕地利用等指数与折算为基准作物的实际产量的相关性(R^2=0.895 0)大于农用地分等成果(R^2=0.797 4);3)高潜力分等单元主要分布在地势较为平坦、水源较为充足的丘陵地带,整治重点是提高农民生产生活条件;低潜力分等单元主要分布在陡坡中山地带和有石灰岩分布的喀斯特丘陵区,整治重点为防止水土流失与保护生态环境.本研究提供的潜力测算方法适应了差别化土地整治需求,保证了测算结果的真实性和潜力实现的可行性,可为山地丘陵区土地整治耕地质量潜力测算提供参考.不同的地质地貌类型,耕地质量提升的核心因子有所差异,土地整治的工程措施应有侧重点. 展开更多
关键词 山地丘陵区 土地整治 耕地质量 潜力测算
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成渝经济区农地适度规模经营方式及其环境效应差异比较 被引量:7
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作者 信桂新 程相友 +2 位作者 杨朝现 魏朝富 成六三 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2020年第2期86-98,共13页
以成渝经济区为研究区,比较成渝地区农地经营方式转变的地域差异,评估农地经营方式转变的可持续性.选取成都平原区的广汉市和重庆山地丘陵区的江津区为研究样区,基于两个区域的1102份调查数据,运用能值分析法分析两地农地经营方式转变... 以成渝经济区为研究区,比较成渝地区农地经营方式转变的地域差异,评估农地经营方式转变的可持续性.选取成都平原区的广汉市和重庆山地丘陵区的江津区为研究样区,基于两个区域的1102份调查数据,运用能值分析法分析两地农地经营方式转变的差异.由于资源禀赋、家庭特征、经营方式、流转市场、流转价格等因素的差异影响,江津区与广汉市农户农地流转呈现区域“悖反”现象;从能值分析来看,广汉市通过规模化、产业化、机械化的大生产模式提升农业科技装备水平,降低投入、提高农业生产率,实现了良性的农业集约化;而江津区通过高投入—高产出的高效农业产业模式大幅提升农业产出,但过度追加不可更新要素的投入方式却不可持续,引起了劣质的农业集约化.因此,就转变农地经营方式而言,成都平原区应着眼于“降本增效”,发展规模化、产业化、机械化的大生产模式;重庆山地区应着眼于“提质增效”,以农业科技、装备和设施更新为驱动发展生态农业. 展开更多
关键词 农地经营方式 适度规模经营 路径 能值分析 成渝经济区
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基于PSR模型典型山区耕地集约利用及其驱动力研究——以四川凉山彝族自治州为例 被引量:4
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作者 廖仕梅 刘卫平 +2 位作者 魏朝富 谢德体 倪九派 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第5期150-159,共10页
耕地集约利用对地区特别是民族山区的粮食安全和社会稳定具有重要的现实意义.本文以凉山彝族自治州(以下简称为凉山州)为例,构建基于PSR模型的耕地集约利用评价体系对耕地集约利用进行评价,并通过SPSS20.0软件采用主成分分析法探讨耕地... 耕地集约利用对地区特别是民族山区的粮食安全和社会稳定具有重要的现实意义.本文以凉山彝族自治州(以下简称为凉山州)为例,构建基于PSR模型的耕地集约利用评价体系对耕地集约利用进行评价,并通过SPSS20.0软件采用主成分分析法探讨耕地集约利用水平变化的驱动因素.结果表明:1)凉山州2005-2014年间的耕地集约利用水平变化较大,2011年后增幅逐渐增强,状态、响应、压力子系统依次对耕地集约利用产生不同程度影响,三大子系统也相互影响.2)耕地集约利用水平变化的驱动因素为:自然条件、工程政策措施、经济水平、人口与投入等因素.研究得出:凉山州耕地集约利用变化与PSR模型的三大子系统存在不同程度的相关性.所选指标较好体现凉山州耕地集约利用水平,耕地集约利用的驱动因素符合凉山州实际,证实PSR模型的普适性的同时体现出凉山州耕地集约利用的独特性与差异性. 展开更多
关键词 PSR 典型山区 耕地集约利用 驱动力 凉山州
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Tillage Effect on Organic Carbon in a Purple Paddy Soil 被引量:38
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作者 HUANG Xue-Xia GAO Ming +2 位作者 wei chao-fu XIE De-Ti PAN Gen-Xing 《Pedosphere》 SCIE CAS CSCD 2006年第5期660-667,共8页
The distribution and storage of soil organic carbon (SOC) based on a long-term experiment with various tillage systems were studied in a paddy soil derived from purple soil in Chongqing, China. Organic carbon storage ... The distribution and storage of soil organic carbon (SOC) based on a long-term experiment with various tillage systems were studied in a paddy soil derived from purple soil in Chongqing, China. Organic carbon storage in the 0-20 and 0-40 cm soil layers under different tillage systems were in an order: ridge tillage with rice-rape rotation (RT-rr) > conventional tillage with rice only (CT-r) > ridge tillage with rice only (RT-r) > conventional tillage with rice-rape rotation (CT-rr). The RT-rr system had significantly higher levels of soil organic carbon in the 0-40 cm topsoil, while the proportion of the total remaining organic carbon in the total soil organic carbon in the 0-10 cm layer was greatest in the RT-rr system. This was the reason why the RT-rr system enhanced soil organic carbon storage. These showed that tillage system type was crucial for carbon storage. Carbon levels in soil humus and crop-yield results showed that the RT-rr system enhanced soil fertility and crop productivity. Adoption of this tillage system would be beneficial both for environmental protection and economic development. 展开更多
关键词 carbon sequestration organic carbon storage purple paddy soil tillage system
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Soil heavy metal(loid)s and risk assessment in vicinity of a coal mining area from southwest Guizhou, China 被引量:17
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作者 QIN Fan-xin wei chao-fu +3 位作者 ZHONG Shou-qin HUANG Xian-fei PANG Wen-pin JIANG Xin 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2205-2213,共9页
Total concentrations of arsenic, lead, cadmium, mercury, nickel, chromium, and copper in the soils from near a coal mine area in southwest Guizhou, China, were measured to evaluate the level of contamination, and the ... Total concentrations of arsenic, lead, cadmium, mercury, nickel, chromium, and copper in the soils from near a coal mine area in southwest Guizhou, China, were measured to evaluate the level of contamination, and the potential ecological risks posed by the heavy metals were quantitatively estimated. Results reveal that all heavy metals/metalloid exceeded the background values for soil environmental quality of heavy metals in Guizhou area. Geo-accumulation index(I_(geo)) showed that arsenic had the highest contamination level(I_(geo)=4) among the seven heavy metals/metalloid, and the contamination levels of mercury and lead were also relatively high(I_(geo)=3). Pearson correlation and cluster analysis identified that mercury, copper and arsenic had a relationship, and their presence might be mainly related to mining activity, coal and oil combustion, and vehicle emissions. Improved Nemerow index indicated that the overall level of heavy metal contamination in the studied area ranged from moderately–heavily contaminated to heavily contaminated level. Potential ecological risk index(R_I) analysis manifested that the whole ecological risk level ranged from high degree to very high degree(325.30≤R_I≤801.02) in the studied soil samples, and the potential ecological risk factors (E_r^i) of heavy metals/metalloid were as follows: Hg > As > Cd > Pb > Cu > Ni > Cr, and the E_r^i of Hg and As reached very high risk grade. 展开更多
关键词 heavy metals soil contamination ecological risk coal mining area Xingren county
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耕层土壤剥离再利用覆土时空优化研究
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作者 张国栋 魏朝富 +2 位作者 陈心佩 信桂新 刘卫平 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2018年第5期140-149,共10页
科学确定有覆土需求的地块,是耕层土壤剥离与再利用工程的先决条件.本文在ArcGIS技术支持下,以重庆市江津区为例,采用信息熵法构建了规划期内山地丘陵区耕地耕作层覆土需求优先度的评价指标体系,根据覆土优先度综合分值划定近期覆土区... 科学确定有覆土需求的地块,是耕层土壤剥离与再利用工程的先决条件.本文在ArcGIS技术支持下,以重庆市江津区为例,采用信息熵法构建了规划期内山地丘陵区耕地耕作层覆土需求优先度的评价指标体系,根据覆土优先度综合分值划定近期覆土区、中期覆土区、远期覆土区.结果表明:1)基期(2013年)至规划期(2020年),非农建设用地转化为耕地的现象覆盖了研究区大部分区域,覆土区总面积为648.27hm^2;2)基于自然条件、社会条件和用地条件,采用熵权法对上述指标进行权重计算,得出2013-2020年江津区覆土优先度综合分值Q,Q≥0.49的覆土区域划为近期覆土区,0.35≤Q<0.49的覆土区域划为中期覆土区,Q<0.35的覆土区域则划为远期覆土区;3)近期覆土区覆土迫切性较高,具有较强的社会可行性,应优先安排耕层土壤覆土工程;中期覆土区优先度次于近期覆土区,为后备覆土区域;远期覆土区缺乏一定的经济基础,总体来说该区域覆土迫切度较低,覆土社会可行性不高.因此,覆土改良不仅要考虑土壤质量等自然条件,还应考虑社会条件和用地条件,而确定合理的覆土时序和覆土区域则关系着耕层土壤剥离与再利用工程的投资、工期和效果. 展开更多
关键词 信息熵 耕层覆土需求 优先度评价 时空优化 江津区
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LAND USE CHANGE AND ITS SOCIO-ECONOMIC DRIVING FORCES UNDER STRESS OF PROJECT IN OLD RESERVOIR AREA——Case Study of Linshui Reservoir Area of Dahonghe Reservoir in Sichuan Province 被引量:3
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作者 SHAO Jing-an HUANG Xue-qin +2 位作者 QU Ming wei chao-fu XIE De-ti 《Chinese Geographical Science》 SCIE CSCD 2005年第4期315-324,共10页
The old reservoir areas built in 1950s- 1970s left behind many socio-economic problems, because of the administrative backward migration and little migration fund, and all these problems would be tied to land. Based o... The old reservoir areas built in 1950s- 1970s left behind many socio-economic problems, because of the administrative backward migration and little migration fund, and all these problems would be tied to land. Based on interviewing with peasant households, combining land use survey and socio-economic statistical index, this paper analyzed land use change and its corresponding driving forces in Linshui reservoir area of Dahonghe Reservoir. Results showed that land use change in the reservoir area was mainly embodied on low-lying land submergence and migration requisition land. The former changed the land use patterns, and the latter mainly reconstructed original land property and made land over-fragmented. Cultivated land per capita was 0.041ha in this area, below the cordon of cultivated land per capita enacted by FAO. Currently, there were still 30.25% of peasant households being short of grain in trimester of one year, and there were 35.27% of people living under the poverty line. The conditions of eco-environmerit in Linshui Reservoir Area were worse, and healthy and sub-healthy eco-environment accounted for less proportion, composed of green belt around the reservoir area and paddy field ecosystem, and economic forest and orchard ecosystem, respectively. The stress of the reservoir project was macroscopic background to analyze the driving factors of land use change, and real underlying diving factor of the land use change in the area was the change of cultural landscape under the stress of reservoir project. The rapid increase of population was the key factor to induce the change of man-land relationship in the reservoir area, the low level of rural economy was the crucial factor to decide how migrants input for production, and the belief of migrants, influencing the land use patterns in a certain extent, was the inducing factor to keep land use stable. The low-lying submergence and infrastructure construction accompanied the reservoir project were leading factors driving land use change in the area, while changes in land use patterns, after the reservoir being built, were the responses of peasant households' behaviors to land use change. 展开更多
关键词 land use change socio-economic driving factor project stress old reservoir area
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Effects of Land Management Practices on Soil Water in Southwestern Mountainous Area, China 被引量:3
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作者 SHAO Jing-an wei chao-fu XIE De-ti 《Agricultural Sciences in China》 CAS CSCD 2008年第7期871-886,共16页
The effects of selected land management practices (cross-sloping tillage, ridge culture, organic manure, and straw mulch) on soil water conservation in a southwestern mountainous area, China, were studied during Nov... The effects of selected land management practices (cross-sloping tillage, ridge culture, organic manure, and straw mulch) on soil water conservation in a southwestern mountainous area, China, were studied during November 2002 to November 2004. The experimental field is divided into three parts based on soil layer depths, 0-60 cm (part Ⅰ), 0-40 cm (part Ⅱ), and 0- 20 cm (part Ⅲ), and they all had the same slope azimuth (SE), slope (10°), and slope type (linear). The experimental plots were subjected to the following treatments: cross-sloping tillage (CST); cross-sloping tillage with organic manure (CST/ OM); cross-sloping tillage with straw mulch (CST/SM); contour ridge culture (CRC); contour ridge culture with organic manure (CRC/OM); and contour ridge culture with straw mulch (CRC/SM), to identify the effects of management practices on soil water. Water contents were determined for soil samples collected, using a 2.2 cm diameter manual probe. Soil water was monitored once every five days from Nov. 20, 2002 to Nov. 20, 2004. The results indicated that, in the study stages, an integration of rainfall, evaporative losses, and crop transcription controlled the basic tendencies of profile (mean) soil water, while land management practices, to a certain extent, only modified its amount, distribution, and routing. Moreover, these modifications also mainly focused on the first 20 cm depth of topsoil layer. When each management practice was compared with control treatment, season changes of profile (mean) soil water were pronounced, while interannual changes among them were not significant. More comparisons indicated that, in the study stages, contour ridge culture had better effects than cross-sloping tillage. And under the same tillage, the combination of organic manure could achieve more than straw mulch. These management practices should be recommended considering the effectiveness of soil and water management techniques in the southwestern mountainous area, China. 展开更多
关键词 land management practices soil water precision water management southwestern mountainous area China
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AN INSIGHT ON DRIVERS OF LAND USE CHANGE AT REGIONAL SCALE 被引量:2
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作者 SHAO Jing-an wei chao-fu XIE De-ti 《Chinese Geographical Science》 SCIE CSCD 2006年第2期176-182,共7页
The studies of driving forces of regional land use change (LUC) are to reveal the real motivation behind the LUC and its interacting mechanism, so as to simulate and predict the process of LUC. Presently, studies root... The studies of driving forces of regional land use change (LUC) are to reveal the real motivation behind the LUC and its interacting mechanism, so as to simulate and predict the process of LUC. Presently, studies rooting from different natural and socio-economic backgrounds and from different scales have deepened the people’s understanding and cognition to driving forces of regional LUC. Biophysical driving forces are relatively stable, and have the cumulating effects. Human driving forces are relatively active, and are main driving forces of short-term regional LUC. Existing regional LUC models can answer the three main problems: which contribution (why), which location (where) and what rate (when). But, regional land use system is defined as the self-organized system, usually affected by the cri- tical value area and sudden change, and controlled by different stages. To reduce the impact of critical threshold and break on land use system, the studies of LUC driving forces will aim at following priority areas: data linkage between remote sensing and no-remote sensing data; underlying driving force identification; driving factor quantification; driving factor scale dependence; and driving process integration simulation. 展开更多
关键词 land use change driving forces driving mechanism process simulation regional scale
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Shear strength features of soils developed from purple clay rock and containing less than two-millimeter rock fragments 被引量:1
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作者 ZHONG Shou-qin ZHONG Mang +2 位作者 wei chao-fu ZHANG wei-hua HU Fei-nan 《Journal of Mountain Science》 SCIE CSCD 2016年第8期1464-1480,共17页
Soil shear strength is an important indicator of engineering design and an essential parameter of soil precision tillage and agricultural machinery and equipment design. Although numerous studies have investigated the... Soil shear strength is an important indicator of engineering design and an essential parameter of soil precision tillage and agricultural machinery and equipment design. Although numerous studies have investigated the characteristics of different soil shear strengths, only a few of these works have paid attention to soils containing considerable quantities of rock fragments. To date, most studies on the effects of rock fragments on the shear strength have paid attention to the role of rock fragments with sizes 〉2 mm. The effects of rock fragments 〈2 mm in soil are generally ignored. Similar to rock fragments 〉2 ram, the presence of rock fragments 〈2 mm could also change the mechanical properties of soils. Thus, in the present study we evaluated the potential influence of 〈2 mm rock fragments on soil shear strength via an unconsolidated undrained (UU) triaxial compression test. Our results were as follows: (1) A certain quantity of 〈2 mm rock fragments presented in purple soils developed from clay rocks; and an appropriate quantity of 〈2 mm rock fragments could improve the shear strength of soils. (2) The different PSDs of soils containin 〈2 mm rock fragment mainly caused variations in the internal friction angle of soils. (3) The shear strengths of the two mudstone-developed red-brown and gray-brown purple soils was more sensitive to water than that of the shale-developed coarse-dark purple soil. As the soil water content increased from 9% to 23%, the changes in the cohesion, internal friction angle, shear strength, and the maximum principal stress difference were smaller in the coarse dark purple soil than in the two other soils. We therefore concluded that 〈2 mm rock fragments in purple soils exerted important effects on soil shear strength. A better understanding of the differences among the shear strength features of purple soils could help improve the design of agricultural machinery and equipment. 展开更多
关键词 Shear strength Purple soils Rockfragments Particle size distribution (PSD) Soil watercontent Triaxial test
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Soil Aggregation and Its Relationship with Organic Carbon of Purple Soils in the Sichuan Basin,China 被引量:1
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作者 wei chao-fu SHAO Jing-an +4 位作者 NI Jiu-pai GAO Ming XIE De-ti PAN Gen-xing Shuichi Hasegawa 《Agricultural Sciences in China》 CAS CSCD 2008年第8期987-998,共12页
The interaction of soil aggregate dynamics with soil organic carbon is complex with varied spatio-temporal processes in macro-and micro-aggregates. This paper is to determine the aggregation of soil aggregates in purp... The interaction of soil aggregate dynamics with soil organic carbon is complex with varied spatio-temporal processes in macro-and micro-aggregates. This paper is to determine the aggregation of soil aggregates in purple soils (Regosols in FAO Taxonomy or Entisols in USDA Taxonomy) for four types of land use, cropland [corn (Zea mays L.)], orchard (citrus), forestland (bamboo or cypress), and barren land (wild grass), and to explore their relationship with soil organic carbon in the Sichuan basin of southwestern China. Procedures and methods, including manual dry sieving procedure, Yoder's wet sieving procedure, pyrophosphates solution method, and Kachisky method, are used to acquire dry, wet, and chemically stable aggregates, and microaggregates. Light and heavy fractions of soil organic carbon were separated using 2.0 g·mL^-1 HgI2-KI mixed solution. The loosely, stably, and tightly combined organic carbon in heavy fraction were separated by extraction with 0.1 M NaOH and 0.1 M NaOH-0.1M Na4P2O7 mixed solution (pH 13). The results show that the contents of dry and wet macroaggregates 〉0.25 mm in diameter were 974.1 and 900.0 g·kg^-1 highest in red brown purple soils under forestland, while 889.6 and 350.6 g·kg^-1 lowest in dark purple soil and lowest in grey brown purple soils under cropland, respectively. The chemical stability of macroaggregates was lowest in grey brown purple soil with 8.47% under cropland, and highest in red brown purple soil with 69.34% under barren land. The content of microaggregates in dark purple soils was 587g·kg^-1 higher than brown purple soils, while 655g·kg^-1 in red brown purple soils was similar to grey brown purple soils (651g·kg^-1). Cropland conditions, only 38.4% of organic carbon was of the combined form, and 61.6% of that existed in light fraction. Forestland conditions, 90.7% of organic carbon in red brown purple soil was complexed with minerals as a form of humic substances. The contents and stability of wet aggregates 〉 0.25 mm, contents and stability of chemically stable aggregates 〉0.25 mm, contents of microaggregates 〉 0.01 mm, contents of aggregated primary particle (d〈0.01 mm) and degree of primary particles (d 〈0.01 mm) aggregation were closely related to the concentrations of total soil organic carbon, and loosely and tightly combined organic carbon in heavy fraction. Soil microaggregation could be associated with organic carbon concentration and its combined forms in heavy fraction. There was a direct relationship between microaggregation and macroaggregation of soil primary particles, because the contents of wet aggregates 〉 0.25 mm and its water stability of aggregates were highly correlated with the contents of aggregated primary particle (d 〈 0.01 mm) and the degree of primary particles (d 〈 0.01 mm) aggregation. 展开更多
关键词 aggregation of soil primary particle soil structure soil organic carbon aggregate size distribution complexingof organo-mineral purple soil
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Soil Geochemistry Changes Induced by a Foreign Soil Reconstruction Project in Three Gorges Reservoir Region of China 被引量:1
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作者 LIU Juan wei chao-fu +1 位作者 LUO You-Jin DU Jing 《Journal of Mountain Science》 SCIE CSCD 2015年第6期1511-1520,共10页
Fertile topsoil was added onto the surface of barren slope land in Three Gorges Reservoir region of China in an anthropogenic process known as the foreign soil reconstruction project. The main goal of this paper was t... Fertile topsoil was added onto the surface of barren slope land in Three Gorges Reservoir region of China in an anthropogenic process known as the foreign soil reconstruction project. The main goal of this paper was to reveal the influence of anthropogenic activities on pedogenic processes and soil classifications. Chemical weathering indices and comparative analysis were applied to discuss changes in geochemical compositions and weathering features of purplish soils(Cambisols) before and after the project. Results showed that:(1) The foreign soil reconstruction project slightly altered the major element composition of topsoil and improved the soil structure. Although the distributions of major elements in the original topsoil, original subsoil, foreign topsoil and newly constructed topsoil were all similar to that in upper continental crust, newly constructed topsoil was the most similar soil.(2) The chemical index of alteration was more sensitive than the weathering index of Parker at indicating chemical weathering status of purplish soil. The chemical weathering status of newly constructed topsoil was higher than that of the original topsoil and lower than that of foreign topsoil.(3) Anthropogenic activities may provide a promising new thought for the anthropogenic soil classification system. The scope and subgroups of Anthrosols should be extended and strengthened. Or there may be a need to combine Anthrosols and Technosols orders to create a new soil order. The results may be used for optimizing soil mellowing engineering activities and enriching the soil classification system. 展开更多
关键词 Anthropogenic activities Weathering status Foreign soil reconstruction project Pedogenic processes Three Gorges Reservoir region China
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