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上海城郊不同农业用地类型土壤硝化和反硝化作用 被引量:16
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作者 施振香 柳云龙 +2 位作者 尹骏 卢小遮 章立佳 《水土保持学报》 CSCD 北大核心 2009年第6期99-102,111,共5页
采用气压过程分离(BaPS)技术对上海城郊不同农业用地类型土壤总硝化速率和反硝化速率进行了测定。结果表明:不同农业用地类型土壤总硝化速率和反硝化速率差异显著(p<0.05),其中大棚蔬菜总硝化速率和反硝化速率最高;在土壤含水量15%~... 采用气压过程分离(BaPS)技术对上海城郊不同农业用地类型土壤总硝化速率和反硝化速率进行了测定。结果表明:不同农业用地类型土壤总硝化速率和反硝化速率差异显著(p<0.05),其中大棚蔬菜总硝化速率和反硝化速率最高;在土壤含水量15%~30%范围内,土壤总硝化作用和反硝化作用对氮损失的贡献率分别为46.8%,53.2%,土壤含水量和土壤通气孔隙度的适度增加均有利于土壤硝化作用和反硝化作用的进行;总硝化速率与土壤含水量、土壤通气孔隙度、全氮含量呈显著性相关(p<0.05),与土壤NO3-N呈极显著性相关(p<0.01),反硝化速率与土壤含水量、NO3-N、全氮呈显著性相关(p<0.05),与土壤通气孔隙度呈极显著性相关(p<0.01);中等土壤含水量范围内,影响土壤硝化作用、反硝化作用的环境因子趋于多样和复杂化,各种土壤环境因子共同影响和决定土壤硝化和反硝化过程。 展开更多
关键词 硝化作用 反硝化作用 农业用地类型
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不同农业用地类型对土壤性质和土壤环境的影响——以北京市延庆县为例 被引量:2
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作者 杨昱祺 王小策 +1 位作者 孙淑蕊 王学东 《水土保持通报》 CSCD 北大核心 2014年第5期313-316,321,共5页
选择北京市延庆县为研究区域,通过对不同农业用地类型的土壤进行采样和分析,研究了延庆县不同农业用地类型对土壤性质和环境的影响,以期为北京市土壤的农业可持续利用提供依据。结果表明,研究区域粮田、菜地、果园的土壤pH值、有机质和... 选择北京市延庆县为研究区域,通过对不同农业用地类型的土壤进行采样和分析,研究了延庆县不同农业用地类型对土壤性质和环境的影响,以期为北京市土壤的农业可持续利用提供依据。结果表明,研究区域粮田、菜地、果园的土壤pH值、有机质和碱解氮含量均显著低于林地;4种不同农业用地类型中表层土壤的As,Cd,Cr含量平均值分别超出北京市土壤背景值0.93,0.09和15.3mg/kg。粮田、菜地耕作层的重金属含量高于林地和果园,内梅罗指数和单项污染指数评价表明这4种土壤利用类型尚属清洁。尽管研究区目前重金属污染程度较低,最高值仅为警戒值的74%,但其单项污染指数显示该地区土壤重金属累积速度较快。粮田土壤中As,Cd元素含量较退耕林地分别增加了20.9%和38.5%。如不加以控制,土壤重金属污染状况会进一步加剧。 展开更多
关键词 延庆县 农业用地类型 土壤重金属污染
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传统农业区土地利用对土壤氮素季节动态变化的影响——以官厅水库上游延庆盆地为例 被引量:11
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作者 齐鑫 陈利顶 +2 位作者 李琪 马岩 张心昱 《生态环境》 CSCD 北大核心 2007年第2期564-568,共5页
土地利用对土壤养分时空动态变化的影响,不仅影响到土壤中养分元素的利用效率,同时会影响到养分流失的危险性和区域非点源污染的形成。本文通过野外采样分析,按照不同时期对官厅水库上游延庆盆地内的玉米地、蔬菜地、果园、其他经济类... 土地利用对土壤养分时空动态变化的影响,不仅影响到土壤中养分元素的利用效率,同时会影响到养分流失的危险性和区域非点源污染的形成。本文通过野外采样分析,按照不同时期对官厅水库上游延庆盆地内的玉米地、蔬菜地、果园、其他经济类用地的土壤全氮含量进行了测定;分析了不同农业用地影响下土壤氮素的季节动态变化特征和土壤垂直剖面变化。结果发现:(1)0~40cm是玉米地养分活跃层;蔬菜地的养分含量在0~10cm土层变化最剧烈;果园整个剖面上养分变化均较剧烈;其它经济用地在25~40cm土层养分变化较大;(2)果园和蔬菜地是研究区内养分活动最活跃的土地利用方式,蔬菜地的表层养分流失风险性最高,对于地表水和地下水具有很高的潜在影响;果园在整个剖面上养分变化较大,其发生养分的淋溶流失的风险性最高;玉米和其他经济用地养分变化不大。研究结果建议,传统农业区在开展农业结构调整时,尤其是将传统的农作物种植改为蔬菜地和果园时,必须加强对农田生态系统研究,实施严格的科学管理,提高养分的利用效率,降低对环境的影响。 展开更多
关键词 农业用地类型 土壤氮素 养分流失 非点源污染
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Effect of Agricultural Land Use Changes on Soil Nutrient Use Efficiency in an Agricultural Area,Beijing,China 被引量:5
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作者 CHEN Liding QI Xin +2 位作者 ZHANG Xinyu LI Qi ZHANG Yanyan 《Chinese Geographical Science》 SCIE CSCD 2011年第4期392-402,共11页
Agricultural land use and management practices may affect soil properties,which play a critical role in sustaining crop production.Since the late 1970s,several new agricultural land use types had been introduced in th... Agricultural land use and management practices may affect soil properties,which play a critical role in sustaining crop production.Since the late 1970s,several new agricultural land use types had been introduced in the rural areas of China.The purpose of this study is to evaluate the effect of these land use changes on the soil properties,nu-trient absorption rate,and nutrient use economic efficiency ratio in an agricultural area of Beijing.Specifically,the cropland,the orchard and the vegetable field were examined.Results of this study suggest that land use and farming management practices significantly affect the content of soil organic carbon (SOC),total nitrogen (TN),total phos-phorus (TP),and available phosphorus in the surface layer of 0-25 cm (p<0.05) in the Yanqing Basin,northwestern Beijing.Soil nutrients in each agricultural land use type decrease rapidly with the increasing soil depth.Orchard and vegetable field tend to have higher soil nutrients than the cropland does.However,the soil nutrient-absorption rate (NAR) of the orchard and vegetable field is lower than that of the cropland,even though orchard and vegetable field may provide much higher economic benefit.While increasing SOC,TN,and TP in the orchard and vegetable field by intensive farming may be a valuable option to improve soil quality,potential increase in the risk of nutrient loss,or agricultural non-point source pollution can be a tradeoff if the intensive practices are not managed appropriately. 展开更多
关键词 agricultural land use soil nutrient absorption rate (NAR) soil nutrient use economic efficiency ratio (NEER) soil property environmental effect
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The Effect of Land Use on Soil Organic Carbon Stocks in Lake Victoria Crescent Agro-Ecological Zone, Uganda
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作者 David Akodi Everline Komuttmga +2 位作者 Choice Agaba Kevin John Oratungye Elizabeth Ahumuza 《Journal of Agricultural Science and Technology(A)》 2016年第3期154-160,共7页
The effect of land use on soil organic carbon (SOC) stocks and depth distribution of SOC was investigated in the Lake Victoria Crescent ago-ecological zone of Uganda. Soil samples were collected from six land use ty... The effect of land use on soil organic carbon (SOC) stocks and depth distribution of SOC was investigated in the Lake Victoria Crescent ago-ecological zone of Uganda. Soil samples were collected from six land use types at 0-30, 30-60 and 60-90 cm from profile pits dug in similar soils and slopes. Results indicated that SOC stocks significantly differed across the various land use systems. SOC also varied significantly by depth. The highest SOC and pH were recorded under natural forest-strict nature. Grassland had the lowest SOC but the highest bulk density (BD). Phosphorous (P) was the highest in banana-coffee systems and the lowest under tea plantations. The lowest values of pH and BD were found in highly disturbed natural forest. The upper layers of the soil (0-30 cm) stored higher amounts of SOC compared to other depths (30-60 cm and 60-90 cm). Land use therefore has a significant effect on SOC and other soil physical and chemical properties. 展开更多
关键词 Soil organic carbon land use change land use systems Mabira forest.
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Effect of Land Use on Soil Phosphorus Sorption-Desorption Under Intensive Agricultural Practices in Plastic-Film Greenhouses 被引量:3
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作者 YANG Guang-Rong HAO Xi-Ying +1 位作者 LI Chun-Li LI Yong-Mei 《Pedosphere》 SCIE CAS CSCD 2014年第3期367-377,共11页
With rapid urbanization and economic growth, Chinese traditional rice-legume production is increasingly replaced by vegetable and horticultural flower production, which could affect soil properties. This study was con... With rapid urbanization and economic growth, Chinese traditional rice-legume production is increasingly replaced by vegetable and horticultural flower production, which could affect soil properties. This study was conducted near Kunming City, Yunnan Province, Southwest China to investigate how soil phosphorus (P) sorption and desorption processes respond to land use changes and to relate P sorption and desorption parameters to soil properties. Soil samples (0-20, 20-40, 40-60, 60-80 and 80-100 cm) were collected from five sites representing four land use types: rice-legume production in a two-crop, one-year rotation (Rice), vegetable production in open fields (Vegetable), recent (〈 3 years) conversion from open fields to plastic-film greenhouse vegetable and flower production at two sites (VFCS1 and VFCS2), and longer-term (〉 10 years) plastic-film greenhouse vegetable and flower production (VFCL). The changes in land use affected soil pH, electrical conductivity, available N and P and organic carbon content in topsoil and subsoil. In turn, these changes of soil properties influenced soil P sorption capacity. The P sorption maximum (Smax) was affected by land use types, soil sampling depth and their interactions (P 〈 0.0001). For surface soil, Smax was in the order of Rice (1 380 mg kg-1) 〉 VFCL (1 154 mg kg-1) 〉 VFCS2 (897 mg kg-1) 〉 VFCS1 (845 mg kg-1) 〉 Vegetable (747 mg kg-1). The lowest Sm^x generally occurred at the surface (except for Rice at 80-100 cm) and increased with depth. The amount of P desorbed during the 8 successive extractions was in the range 23%-44% of sorbed P, and was not affected by land use types or sampling depths. The decreases in Smax suggested that soil P sorption capacity decreased when rice-legume production converted to more intensive vegetation and flower production and caution should be exercised when applying P fertilizer to minimize potential leaching and runoff P loss to the environment. 展开更多
关键词 flower production P sorption maximum rice-legume production vegetable production
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