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Rehabilitation of bauxite residue to support soil development and grassland establishment 被引量:9
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作者 XUE Sheng-guo 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第2期353-360,共8页
Rehabilitation(amendment and vegetation establishment)on bauxite residue is viewed as a promising strategy to stabilize the surface and initiate soil development.However,such approaches are inhibited by high pH,high e... Rehabilitation(amendment and vegetation establishment)on bauxite residue is viewed as a promising strategy to stabilize the surface and initiate soil development.However,such approaches are inhibited by high pH,high exchangeable sodium(ESP)and poor nutrient status.Amendment with gypsum is effective in improving residue physical and chemical properties and promoting seed establishment and growth.Application of organics(e.g.compost)can address nutrient deficiencies but supplemental fertilizer additions may be required.A series of germination bioassays were performed on residue to determine candidate species and optimum rehabilitation application rates.Subsequent field trials assessed establishment of grassland species Holcus lanatus and Trifolium pratense as well as physical and chemical properties of amended residue.Follow up monitoring over five years assessed elemental content in grassland and species dynamics.With co-application of the amendments several grassland species can grow on the residue.Over time other plant species can invade the restored area and fast growing nutrient demanding grasses are replaced.Scrub species can establish within a 5 Yr period and there is evidence of nutrient cycling.High pH,sodicity and nutrient deficiencies are the major limiting factors to establishing grassland on residue.Following restoration several plant species can grow on amended residue. 展开更多
关键词 bauxite residue substrate amendment soil development soil formation in bauxite residue vegetation establishment
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Analysis of Post-Burial Soil Developments of Pre-AD 79 Roman Paleosols near Pompeii(Italy)
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作者 Sebastian Vogel Michael Marker 《Open Journal of Soil Science》 2014年第10期337-356,共20页
The AD 79 eruption of Somma-Vesuvius completely buried the ancient landscape around Pompeii (Italy) to some extent conserving the pre-AD 79 Roman paleosols of the Sarno River plain. To estimate potential post-burial s... The AD 79 eruption of Somma-Vesuvius completely buried the ancient landscape around Pompeii (Italy) to some extent conserving the pre-AD 79 Roman paleosols of the Sarno River plain. To estimate potential post-burial soil developments of these paleosols detailed soil liquid and solid phase analysis were carried out. Firstly, an in-situ soil hydrological monitoring was conducted within a pre-AD 79 paleosol in natural undisturbed stratification. The results show that soil water flow and nutrient transport from the overlying volcanic deposits into the pre-AD 79 paleosol take place. Secondly, to estimate their influence on the paleosol’s mineral soil properties, the solid phase of four pre-AD 79 paleosols and associated modern unburied soils were analysed and compared. By combining the data from the soil liquid and solid phase analysis, potential post-burial changes in the paleosols were estimated. Finally, a rise of the mean groundwater table was determined since AD 79. This distinguishes the Sarno River plain into two different zones of post-burial soil developments: 1) lower altitudes where formerly terrestrial paleosols are now influenced by groundwater dynamics and 2) higher altitudes where the paleosols are still part of the vadose zone and rather influenced by infiltration water or interflow. Thus, the mechanism of potential post-burial soil development being active in the pre-AD 79 paleosols is not uniform for the entire Sarno River plain but strongly depends on the paleotopographic situation. 展开更多
关键词 soil Liquid Phase soil Solid Phase Post-Burial soil developments Pre-AD 79 Roman Paleosol POMPEII Somma-Vesuvius
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Career opportunities in Institute of Soil Science,CAS,Nanjing,China
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《Pedosphere》 2025年第3期602-602,共1页
The Institute of Soil Science(ISS)located at Nanjing is an academic community directly affiliated with the Chinese Academy of Sciences(CAS).Being the cradle,research center,and talent highland of modern soil science i... The Institute of Soil Science(ISS)located at Nanjing is an academic community directly affiliated with the Chinese Academy of Sciences(CAS).Being the cradle,research center,and talent highland of modern soil science in China,the institute is committed to promoting the development of soil science and to solving vital problems facing agricultural development,ecological conservation,and environmental protection. 展开更多
关键词 Chinese Academy Sciences promoting development soil science NANJING solving vital problems institute soil science iss located career opportunities Institute soil Science modern soil science
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Career opportunities in Institute of Soil Science,CAS,Nanjing,China
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《Pedosphere》 2025年第2期448-448,共1页
The Institute of Soil Science(ISS)located at Nanjing is an academic community directly affiliated with the Chinese Academy of Sciences(CAS).Being the cradle,research center,and talent highland of modern soil science i... The Institute of Soil Science(ISS)located at Nanjing is an academic community directly affiliated with the Chinese Academy of Sciences(CAS).Being the cradle,research center,and talent highland of modern soil science in China,the institute is committed to promoting the development of soil science and to solving vital problems facing agricultural development,ecological conservation,and environmental protection. 展开更多
关键词 Chinese Academy Sciences promoting development soil science NANJING solving vital problems institute soil science iss located career opportunities Institute soil Science modern soil science
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Fractions and Bioavailability of Soil Inorganic Phosphorus in the Loess Plateau of China under Different Vegetations 被引量:6
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作者 WEI Xiaorong SHAO Mingan +2 位作者 SHAO Hongbo GAO Jianlun XU Gang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2011年第1期263-270,共8页
Plants play an important role in soil phosphorus nutrition. However, the effect of plants on phosphorus nutrition in soils of the Loess Plateau of China is not well understood. This study was conducted to reveal the r... Plants play an important role in soil phosphorus nutrition. However, the effect of plants on phosphorus nutrition in soils of the Loess Plateau of China is not well understood. This study was conducted to reveal the relationships between plants and phosphorus' fractions and availability in the Loess Plateau of China. Twenty-two plant communities were surveyed and soil samples under different plant canopies were collected for the determination of soil properties and inorganic phosphorus fractionation. The results showed that Leguminosae and Lilaceae reduced pH and increased organic matter, cation exchange capacity, total and Olsen phosphorus in soils under their canopies, while Labiatae and Rosaceae increased pH and decreased organic matter, cation exchange capacity, total and Olsen phosphorus in soils under their canopies. The contents of Ca2P, CasP, AI-P and Fe-P were highly related with soil Oisen phosphorus. They were all higher in soils under Leguminosae and Lilaceae and lower in softs under Labiatae and Rosaceae. The results of this study indicate that Leguminosae and Lilaceae improved phosphorus nutrition in soils, yet Labiatae and Rosaceae impeded the improvement of phosphorus nutrition in soils under their canopies, which will be of more help to instruct vegetation restoration in the region and provide information for soil development. 展开更多
关键词 BIOAVAILABILITY FRACTION inorganic phosphorus VEGETATION soil development Loess Plateau
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Temporal and environmental factors drive community structure and function of methanotrophs in volcanic forest soils
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作者 Rusong Chai Hongjie Cao +3 位作者 Qingyang Huang Lihong Xie Fan Yang Hongbin Yin 《Journal of Forestry Research》 SCIE EI CAS CSCD 2024年第2期1-13,共13页
Methanotrophs,organisms that obtain oxygen by oxidizing methane,are recognized as the only known biological sink for atmospheric CH_4,and forest soil methanotrophs play crucial roles in mitigating global warming.The s... Methanotrophs,organisms that obtain oxygen by oxidizing methane,are recognized as the only known biological sink for atmospheric CH_4,and forest soil methanotrophs play crucial roles in mitigating global warming.The succession patterns of methanotrophic communities and functions in Wudalianchi volcano forest soils could provide a basis for the study of evolutionary mechanisms between soil microorganisms,the environment,and carbon cycling of temperate forest ecosystems under climate change.In this study,the characteristics and drivers of methanotrophic community structure and function of two volcanic soils at different stages of development are analyzed,including an old volcano and a new volcano,which most recently erupted 300 years and 17-19×10^(5)years ago,respectively,and a non-volcano hills as control,based on space for time substitution and Miseq sequencing and bioinformation technology.The results showed that CH_(4) fluxes were significantly higher in old-stage volcano forest soils than new-stage forest soils and non-volcano forest soils.There were significant differences in the community composition and diversity of soil methanotrophs from different volcano forest soils.Methylococcus was the dominant genus in all soil samples.Additionally,the relative abundance of Methylococcus,along with Clonothrix,Methyloglobulus,Methylomagum,Methylomonas and Methylosarcina,were the important genera responsible for the differences in methanotrophic community structure in different volcano forest soils.The relative abundance of methanotroph belonging toγ-proteobacteria was significantly higher than that belonging toα-proteobacteria(P<0.05).Chao1,Shannon and Simpson indices of soil methanotrophic community were significantly lower in new-stage volcanos and were significantly affected by bulk density,total porosity,p H,nitrate,dissolved organic carbon and dissolved organic nitrogen.There were significant differences in community structure between new-stage and old-stage volcanoes.Bulk density and p H are important soil properties contributing to the divergence of methanotrophs community structure,and changes in soil properties due to soil development time are important factors driving differences in methanotrophs communities in Wudalianchi volcanic soils. 展开更多
关键词 METHANOTROPHS pmo A soil development stage Volcanoes Forest soils
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The Chemistry of Serpentine Soils Developed Over A Podiform Chromite Deposit,Western Sierra Nevada,USA
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作者 Lisa L.STILLINGS Steven W.BLECKER 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期39-,共1页
The Chinese Camp mining district in the western Sierra Nevada of California,USA,contains a serpentinized,ultramafic dunite intrusion with podiform chromite deposits.Serpentine soils have developed over this intrusion,... The Chinese Camp mining district in the western Sierra Nevada of California,USA,contains a serpentinized,ultramafic dunite intrusion with podiform chromite deposits.Serpentine soils have developed over this intrusion,creating a unique ecosystem of endemic vegetation and soils characterized by low Ca/Mg ratios and high Ni and Cr contents.The vegetation and red coloration make it easy to visually distinguish between soils developed over intruded,serpentinized bedrock and unmineralized,adjacent andesite bedrock(Fig.1).The purpose of our study was to compare soil chemistry and vegetative parameters among 3 study-design levels:1)undisturbed serpentine soil,2)undisturbed background soil(non-serpentine,developed over andesite),and 3)serpentine soil disturbed by mining activities.Within each of these l e v*e ls,3 random locations were chosen where weestablished 3,30-m transects(spaced 120-degrees apart).One soil sample was collected at a random location along each transect(0-15 cm depth after removing litter/O horizon).This scheme resulted in the collection of 9replicate soil samples per study-design level.Samples were analyzed for total metal content by ICP-AES/MS(inductively coupled plasma atomic emission spectroscopy/mass spectroscopy),p H,electrical conductivity,and total C/N/S.The vegetative parameter of%canopy cover was measured with a line-point intercept survey along each transect,using 0.6m intervals.Above-ground net primary productivity(ANPP)was estimated by harvesting all aboveground living plant material within a 0.5 m quadrant at 3 random locations along each transect,drying,and weighting the material.Significant differences among design levels were observed for ANPP,canopy cover,total P,total N,and Ca/Mg,where the median values for these parameters decreased in the order undisturbed background>undisturbed serpentine>mining-disturbed serpentine.The highest concentrations of Cr and Ni were found in undisturbed serpentine(medians of 1960 ppm and 2529ppm,respectively)followed by mining-disturbed serpentine(medians of 420 and 2120,respectively)then undisturbed non-serpentine(medians 47.0 and 32.2 ppm,respectively).Soil p H varied significantly among the design levels with a median 5.74 in undisturbed background,median 6.25 in undisturbed serpentine,and median of 7.17 in mining-disturbed serpentine.These data document the distinct differences in soil chemistry and vegetation parameters between undisturbed serpentine soil and adjacent,undisturbed background soil.Efforts toward mining reclamation must recognize these differences and include the correct baseline conditions in the reclamation plan. 展开更多
关键词 USA The Chemistry of Serpentine soils Developed Over A Podiform Chromite Deposit Western Sierra Nevada
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春小麦发育期的干旱胁迫响应特征及其生理调控机制
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作者 陈斐 赵鸿 +7 位作者 王鹤龄 杨阳 王润元 张凯 赵福年 齐月 唐玉瑞 魏星星 《中国农学通报》 2025年第33期14-23,共10页
为探究春小麦发育期对干旱胁迫的响应特征及其生理调控机制,科学应对气候变化挑战,以‘定西新24号’为试验材料,采用曲线拟合与相关分析等方法,分析大田与盆栽两种干旱胁迫条件下土壤水分、作物发育期及生理生态参数的变化特征。结果表... 为探究春小麦发育期对干旱胁迫的响应特征及其生理调控机制,科学应对气候变化挑战,以‘定西新24号’为试验材料,采用曲线拟合与相关分析等方法,分析大田与盆栽两种干旱胁迫条件下土壤水分、作物发育期及生理生态参数的变化特征。结果表明:(1)持续干旱胁迫下,大田小麦的孕穗期、抽穗期和开花期分别缩短1 d、1 d和8 d,乳熟期延长5 d,盆栽小麦抽穗期延长2 d、开花期缩短6 d。(2)基于指数与线性模型构建的土壤水分胁迫因子,可有效模拟干旱胁迫引起的发育期变化。(3)在土壤相对湿度为45%~53%时,光合生理参数与叶片水分指标对大田小麦拔节至开花期的提前呈反向调控效应;当土壤相对湿度低于45%时,二者则协同促进乳熟期提前。对于盆栽小麦孕穗期干旱,各叶片生理指标共同促进抽穗期延长。研究结果可为半干旱区春小麦的干旱动态监测、预测及影响评估提供科学依据。 展开更多
关键词 干旱胁迫 发育期模拟 土壤水分胁迫因子 生理调控机制 春小麦 物候 光合参数 叶水势
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不同发育阶段柽柳沙堆土壤和叶片C、N、P化学计量特征及影响因素
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作者 周冰倩 郭志国 +3 位作者 刘隋赟昊 许延琴 董正武 李生宇 《草业科学》 北大核心 2025年第11期2695-2711,共17页
柽柳(Tamarix ramosissima)沙堆在遏制沙漠蔓延及维持区域生态系统稳定方面发挥着重要作用,本文以不同发育阶段的柽柳沙堆为研究对象,探究各发育阶段柽柳沙堆土壤-叶片C、N、P化学计量特征,结合结构方程模型分析其影响因素及途径,为干... 柽柳(Tamarix ramosissima)沙堆在遏制沙漠蔓延及维持区域生态系统稳定方面发挥着重要作用,本文以不同发育阶段的柽柳沙堆为研究对象,探究各发育阶段柽柳沙堆土壤-叶片C、N、P化学计量特征,结合结构方程模型分析其影响因素及途径,为干旱荒漠区灌丛沙堆土壤-叶片养分循环及土壤形成机制的研究提供理论依据。结果表明:1)从雏形阶段到衰退阶段沙堆,土壤养分含量整体呈先升高后降低的变化,增长阶段沙堆土壤有机碳(SOC)、全氮(TN)含量、C/N、C/P、N/P显著高于其他各发育阶段沙堆(P<0.05)。稳定阶段沙堆柽柳叶片养分含量及土壤全磷(TP)和全钾(TK)含量最高,60 cm以下土层速效钾(AK)、有效磷(AP)呈先升高后降低的变化,0-40 cm层铵态氮(NH_(4)^(+)-N)含量呈先降低后升高的变化。2)随着土层深度的增加,雏形阶段沙堆土壤SOC和TP含量呈先降低后升高再降低的变化,衰退阶段沙堆土壤TN和TK含量呈先降低后升高的变化;C/N无明显变化规律,N/P及C/P在增长阶段沙堆呈先升高后降低的变化。3)雏形阶段沙堆叶片生态化学计量特征易受土壤C影响,增长及稳定阶段沙堆叶片易受土壤P、K影响,衰退阶段沙堆叶片不易受土壤养分影响;雏形阶段和增长阶段沙堆土壤-叶片化学计量特征易受盐分影响,稳定阶段沙堆易受蒸发、盐分等因素影响,衰退阶段沙堆易受温度影响;土壤质地、pH及土壤含水量对各发育阶段沙堆土壤和叶片化学计量特征均有一定程度的影响。综合分析表明,研究区各发育阶段柽柳沙堆土壤养分极为贫瘠,土壤盐碱性高,稳定阶段沙堆土壤及叶片养分积累能力最强。叶片生态化学计量特征受到土壤、气候因素的综合影响,且经过长期生态适应,柽柳已形成自身独特的生态适应策略。 展开更多
关键词 柽柳沙堆 土壤养分 叶片养分 生态化学计量 沙堆发育过程 环境因子 古尔班通古特沙漠
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黄土丘陵区生物结皮对土壤磷素有效性及碱性磷酸酶活性的影响 被引量:35
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作者 张国秀 赵允格 +1 位作者 许明祥 高丽倩 《植物营养与肥料学报》 CAS CSCD 北大核心 2012年第3期621-628,共8页
黄土丘陵区生物结皮广泛发育,可影响土壤磷素有效性。目前鲜见生物结皮对土壤磷素有效性的研究报道。本文以该区不同年限退耕地的生物结皮为研究对象,通过野外调查和室内分析,研究了生物结皮对土壤全磷、有效磷及碱性磷酸酶活性的影响... 黄土丘陵区生物结皮广泛发育,可影响土壤磷素有效性。目前鲜见生物结皮对土壤磷素有效性的研究报道。本文以该区不同年限退耕地的生物结皮为研究对象,通过野外调查和室内分析,研究了生物结皮对土壤全磷、有效磷及碱性磷酸酶活性的影响。结果表明,1)生物结皮的形成可显著提高结皮层土壤全磷含量,而下层(0—10 cm)全磷含量差异不显著;2)生物结皮的形成可显著提高结皮层土壤有效磷含量,研究区生物结皮层土壤有效磷含量为3.27~5.87 mg/kg,占到同层土壤全磷含量的0.57%~0.95%,生物结皮层磷酸酶活性高于下层(0—10 cm)3~81倍;3)生物结皮对土壤磷素有效性及碱性磷酸酶活性的影响与生物结皮发育阶段有关;4)生物结皮主要通过提高结皮层土壤碱性磷酸酶活性和有机质含量,降低土壤pH,进而提高了土壤磷素有效性。本文研究结果表明,生物结皮的形成有助于提高黄土丘陵区退耕地土壤磷素有效性。 展开更多
关键词 生物结皮 发育动态 剖面分布 退耕地
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甘肃小陇山日本落叶松人工林不同发育阶段土壤理化性质的变化 被引量:38
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作者 王宏星 孙晓梅 +2 位作者 陈东升 沈亚洲 马建伟 《林业科学研究》 CSCD 北大核心 2012年第3期294-301,共8页
采用时序研究法对甘肃小陇山林区日本落叶松人工林不同发育阶段(6、15、23、35 a)的土壤物理性质、化学性质进行多因子综合比较,利用主成分分析的方法,以主成分特征贡献率为权重,计算土壤肥力综合指标值,分析土壤性质的演变规律。结果表... 采用时序研究法对甘肃小陇山林区日本落叶松人工林不同发育阶段(6、15、23、35 a)的土壤物理性质、化学性质进行多因子综合比较,利用主成分分析的方法,以主成分特征贡献率为权重,计算土壤肥力综合指标值,分析土壤性质的演变规律。结果表明:日本落叶松人工林发育至近熟林阶段,土壤物理性质变差,表现为土壤密度最大1.62g·cm-3,毛管孔隙度和最大持水量降至最低,分别为29.69%、24.45%,并且土壤有机质、氮、磷、钾、镁、钙含量也明显降低;而到成熟林阶段,土壤理化性质有显著改善,土壤密度降低为1.21 g·cm-3、毛管孔隙度和最大持水量恢复至45.56%、42.65%,土壤养分含量也有了很大的提高,甚至超过了中龄林阶段的水平;同时幼龄林、中龄林、近熟林和成熟林土壤性质综合得分分别为-0.329、0.188、-0.565、0.739,也表明近熟林土壤性质最差,成熟林土壤性质最好。 展开更多
关键词 日本落叶松 人工林 土壤性质 发育阶段
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江西省大岗山湿地松林土壤性质的变化 被引量:18
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作者 杨承栋 焦如珍 +3 位作者 盛炜彤 夏良放 熊有强 曾满生 《林业科学研究》 CSCD 北大核心 1999年第4期392-397,共6页
重点论述在江西省大岗山山下林场清除灌丛和其它次生植被的迹地上栽植湿地松 ,发育至中龄林、近熟林时土壤性质的变化规律。研究结果表明 :次生植被的土壤容重明显比湿地松中龄林和近熟林的高 ,次生植被土壤的最大持水量则明显地低于中... 重点论述在江西省大岗山山下林场清除灌丛和其它次生植被的迹地上栽植湿地松 ,发育至中龄林、近熟林时土壤性质的变化规律。研究结果表明 :次生植被的土壤容重明显比湿地松中龄林和近熟林的高 ,次生植被土壤的最大持水量则明显地低于中龄林和近熟林 ,非毛管孔隙度和总孔隙度也明显比中龄林和近熟林土壤的低 ;在中龄林土壤中细菌和放线菌的数量最少 ,真菌数量则随着树龄不断增大呈增加的趋势 ;湿地松中龄林的土壤氧化还原酶活性明显比次生植被和近熟林的低 ,土壤有机养分含量随着树龄增大有提高趋势 ,但速效 展开更多
关键词 地力衰退 湿地松林 不同发育阶段 土壤性质
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土壤含水量和土壤类型对豆大蓟马蛹期发育和羽化的影响 被引量:15
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作者 韩云 唐良德 +3 位作者 付步礼 邱海燕 吴建辉 刘奎 《环境昆虫学报》 CSCD 北大核心 2015年第4期710-714,共5页
豆大蓟马Megalurothrips usitatus(Bagrall)是近年来严重制约海南豇豆生产的重要害虫。针对该蓟马在土壤中化蛹的习性,本文研究了在室内条件下不同土壤含水量和土壤类型对豆大蓟马化蛹的影响。结果表明,土壤含水量和土壤类型显著影响豆... 豆大蓟马Megalurothrips usitatus(Bagrall)是近年来严重制约海南豇豆生产的重要害虫。针对该蓟马在土壤中化蛹的习性,本文研究了在室内条件下不同土壤含水量和土壤类型对豆大蓟马化蛹的影响。结果表明,土壤含水量和土壤类型显著影响豆大蓟马蛹的发育历期和羽化率,土壤含水量为15%且土壤类型为砂壤土时,豆大蓟马的发育历期最短为3.62±0.15 d,羽化率最高为52.08%±0.07%,低含水量(5%)和高含水量(25%)均不利于豆大蓟马化蛹。土壤类型以砂壤土最适宜豆大蓟马化蛹,粘土最不适合豆大蓟马化蛹,其羽化率最低为19.17%±0.02%。 展开更多
关键词 豆大蓟马 土壤含水量 化蛹 羽化 发育历期
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黄土丘陵区不同类型生物结皮下土壤微生物的分布特征 被引量:7
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作者 胡忠旭 赵允格 王一贺 《西北农林科技大学学报(自然科学版)》 CSCD 北大核心 2017年第6期105-114,共10页
【目的】分析黄土丘陵区不同类型生物结皮的发育特征及土壤微生物的分布特征,以明确生物结皮形成过程对土壤微生物的影响。【方法】采用野外调查和室内分析相结合的方法,调查黄土丘陵区浅色藻结皮、深色藻结皮、藻+少量藓结皮、藓+少量... 【目的】分析黄土丘陵区不同类型生物结皮的发育特征及土壤微生物的分布特征,以明确生物结皮形成过程对土壤微生物的影响。【方法】采用野外调查和室内分析相结合的方法,调查黄土丘陵区浅色藻结皮、深色藻结皮、藻+少量藓结皮、藓+少量藻结皮及藓结皮5类生物结皮的发育特征,并测定生物结皮层及结皮下0~2cm土层的土壤微生物数量和化学性质,最后分析了不同生物结皮发育特征和土壤化学性质与土壤微生物数量之间的相关性。【结果】研究区浅色藻结皮、深色藻结皮、藻+少量藓结皮、藓+少量藻结皮及藓结皮的结皮厚度分别为1.13,3.26,6.31,8.91,12.61mm,藻盖度分别为100%,98.67%,71.61%,27.33%,7.80%,藓盖度分别为0%,0.80%,24.90%,65.87%,81.30%。不同类型生物结皮土壤细菌数量占微生物总数的比例为53.12%~72.09%,放线菌所占比例为27.49%~46.80%,真菌所占比例为0.08%~0.92%。在生物结皮层,土壤微生物总数和细菌数量从浅色藻结皮到藓结皮总体呈增加趋势,藓结皮土壤细菌、放线菌和真菌数量显著高于其他生物结皮;在结皮下0~2cm土层,土壤微生物总数和放线菌数量表现为藓结皮>浅色藻结皮>深色藻结皮>藓+少量藻结皮>藻+少量藓结皮,藓结皮土壤细菌、放线菌和真菌数量显著高于其他生物结皮。在生物结皮层,藓结皮土壤细菌比例较藻结皮有所增加,放线菌比例相应减少,藓结皮真菌比例最高;藓结皮下0~2cm土层真菌比例显著大于其他生物结皮。垂直分布上,生物结皮层土壤细菌数量和比例、真菌数量和比例均大于结皮下0~2cm土层,但放线菌数量和比例小于结皮下0~2cm土层。在生物结皮层和结皮下0~2cm土层,不同类型生物结皮土壤化学性质存在明显差异。生物结皮层微生物总数、细菌数量和比例、真菌数量与藓盖度和结皮厚度呈显著或极显著正相关关系,放线菌比例与藓盖度和结皮厚度呈显著负相关关系。土壤微生物总数、细菌数量和比例、真菌数量和比例与土壤碳氮含量、碳氮比、电导率呈显著或极显著正相关关系,细菌数量和比例、真菌数量和比例与土壤pH值呈显著或极显著负相关关系。【结论】生物结皮对半干旱地区土壤微生物具有重要影响,藓结皮较其他生物结皮可显著提高土壤微生物数量。 展开更多
关键词 生物结皮 发育特征 土壤微生物数量 土壤化学性质 黄土丘陵区
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杉木人工林不同发育阶段土壤性质变化的研究 被引量:19
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作者 王丹 戴伟 +3 位作者 王兵 李萍 邓宗付 赵超 《北京林业大学学报》 CAS CSCD 北大核心 2010年第3期59-63,共5页
通过对杉木幼龄林、中龄林、近熟林、成熟林和过熟林5个发育阶段下土壤主要理化性质和生物学性质的分析,探讨了杉木不同发育阶段对土壤性质的影响。结果表明:土壤密度、孔隙度、饱和持水量和田间持水量均受到林木生长的显著影响,这种影... 通过对杉木幼龄林、中龄林、近熟林、成熟林和过熟林5个发育阶段下土壤主要理化性质和生物学性质的分析,探讨了杉木不同发育阶段对土壤性质的影响。结果表明:土壤密度、孔隙度、饱和持水量和田间持水量均受到林木生长的显著影响,这种影响在表层最强烈;土壤有机质含量、全氮量、碱解氮含量和速效钾含量以及土壤细菌、放线菌和真菌数量都表现出幼龄林阶段较高、其后开始明显下降且多数指标在近熟林阶段达到最低、成熟林阶段显著提高、至过熟林阶段达到整个生长发育最高水平的规律性变化。相关分析表明:土壤理化性质表现出的规律性变化与不同阶段下土壤微生物状况的改变密切相关。土壤有效磷含量仅在近熟林—成熟林阶段有显著增加,其他阶段变化不显著。在中龄林和近熟林阶段土壤出现明显的负向极化变化趋势,在该阶段进行整地、施肥等营林措施可能会对林木生长有良好的促进作用。 展开更多
关键词 杉木人工林 发育阶段 土壤性质
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我国水土保持“十一五”建设目标与任务 被引量:7
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作者 焦居仁 史立人 +3 位作者 牛崇桓 张长印 袁建平 徐传早 《中国水土保持科学》 CSCD 2006年第4期1-5,13,共6页
我国是世界上水土流失最严重的国家之一。多年来,水土流失防治工作取得巨大进展。遥感调查表明,20世纪80年代以来,我国水土流失加剧的趋势初步得到控制,但总体形势依然严峻。“十一五”期间,水土保持工作要以科学发展观为指导,围绕全面... 我国是世界上水土流失最严重的国家之一。多年来,水土流失防治工作取得巨大进展。遥感调查表明,20世纪80年代以来,我国水土流失加剧的趋势初步得到控制,但总体形势依然严峻。“十一五”期间,水土保持工作要以科学发展观为指导,围绕全面建设小康社会的目标,加强预防监督,抓紧重点治理,促进生态自我修复,搞好科技推广,完善监测预报,基本遏制水土流失、生态恶化的趋势。 展开更多
关键词 水土保持现状 水土流失发展趋势 目标 任务
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人工油松林不同生长阶段深层土壤有机碳和活性碳的差异及其影响因素 被引量:4
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作者 邱甜甜 刘国彬 +2 位作者 王国梁 孙利鹏 姚旭 《自然资源学报》 CSSCI CSCD 北大核心 2016年第8期1399-1409,共11页
研究深层土壤碳库动态对了解陆地生态系统深层碳汇潜力、应对全球CO2升高具有重要意义。论文以黄土丘陵区人工油松林为研究对象,以撂荒地为参照,分析了不同生长阶段的人工油松林地0~200 cm土层土壤有机碳(soil organic carbon,SOC)和... 研究深层土壤碳库动态对了解陆地生态系统深层碳汇潜力、应对全球CO2升高具有重要意义。论文以黄土丘陵区人工油松林为研究对象,以撂荒地为参照,分析了不同生长阶段的人工油松林地0~200 cm土层土壤有机碳(soil organic carbon,SOC)和活性有机碳(readily oxidizable carbon,ROC)动态变化特征及其影响因素。结果表明:在0~200 cm剖面上,不同生长阶段油松林SOC含量及储量较撂荒地显著提高。浅层(0~100 cm)SOC平均含量,成熟林为撂荒地的2.03倍,提高最大;其次是中龄林,为1.85倍;最后是幼龄林,为1.59倍。深层(100~200 cm)SOC平均含量,幼龄林、中龄林和成熟林分别较撂荒地提高了1.43、1.38和1.36倍。各生长阶段油松林浅层和深层SOC储量分别占0~200 cm SOC储量的61.0%~69.8%和30.2%~39.0%,不同生长阶段间浅层SOC储量差异显著,但深层SOC储量差异不大。浅层ROC储量,幼龄林、中龄林和成熟林依次提高了54.8%、82.0%和91.6%;深层ROC储量依次提高了32.4%、40.9%和58.1%,且深层储量占0~200 cm土层的31.2%~33.3%。不仅浅层SOC和ROC含量受多个因素的影响,而且深层ROC含量也与油松高度、根系生物量以及枯落物厚度、干重呈极显著正相关。因此,人工林建设不仅显著提高浅层SOC和ROC含量,而且对深层土壤的固碳能力有一定改善。 展开更多
关键词 活性有机碳 深层土壤 生长阶段 油松林 黄土高原
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不同树龄杨树人工林的根系呼吸季节动态 被引量:24
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作者 闫美芳 张新时 +1 位作者 周广胜 江源 《生态学报》 CAS CSCD 北大核心 2010年第13期3449-3456,共8页
根系呼吸是准确评估森林生态系统土壤碳收支的一个重要依据。基于LI-COR-6400-09土壤呼吸系统连续2a测定的3个生长阶段杨树人工林的根系呼吸数据,分析了根系呼吸的季节变化规律及树龄、土壤水热因子和细根生物量对它的影响。结果表明:3... 根系呼吸是准确评估森林生态系统土壤碳收支的一个重要依据。基于LI-COR-6400-09土壤呼吸系统连续2a测定的3个生长阶段杨树人工林的根系呼吸数据,分析了根系呼吸的季节变化规律及树龄、土壤水热因子和细根生物量对它的影响。结果表明:3个不同树龄人工林的根系呼吸速率均呈明显的季节变化,最大值出现在夏初,最小值出现在秋末,基本上与表层土壤温度的季节变化相一致。根系呼吸的峰值早于土壤温度和细根生物量的峰值,说明林木根系的季节生长节律、地下碳分配模式都可能影响根系呼吸的季节变化。2年生人工林的根系呼吸速率最高,平均为3.78μmolCO2m-2s-1,并随树龄增长呈下降趋势。3个树龄人工林根系呼吸占土壤呼吸的比例介于38.6%-58.0%之间,且2年生人工林最大。不同林龄之间根系呼吸的差异主要与根系的生长周转速率及代谢活性随生长阶段的变化有关。总的来说,表层土壤温度和细根生物量的协同作用可解释根系呼吸速率变化的76%。此外在评估一个轮伐期内的根系呼吸强度时,应考虑不同生长阶段对它的影响。 展开更多
关键词 杨树人工林 土壤呼吸 根系呼吸 生长阶段 影响因子
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红树林土壤基本特征及发展前景 被引量:25
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作者 徐海 陈少波 +2 位作者 张素霞 仇建标 黄晓林 《安徽农业科学》 CAS 北大核心 2008年第4期1496-1497,1504,共3页
简要总结红树林土壤的命名及特点,分析了红树林在成土过程中的作用,概括了红树林土壤特征,并且展望其研究发展前景。
关键词 红树林土壤 基本特征 发展前景
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杉木生长及土壤特性对土壤呼吸速率的影响 被引量:22
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作者 王丹 王兵 +1 位作者 戴伟 李萍 《生态学报》 CAS CSCD 北大核心 2011年第3期680-688,共9页
在江西大岗山生态站选择不同发育阶段杉木人工林,研究土壤呼吸速率、土壤性质和年凋落物量的变化特征以及它们之间的相互关系。结果表明:杉木人工林随林分发育过程中林龄增加,林分年凋落物量和土壤纤维素酶活性逐渐增加;蔗糖酶活性呈现... 在江西大岗山生态站选择不同发育阶段杉木人工林,研究土壤呼吸速率、土壤性质和年凋落物量的变化特征以及它们之间的相互关系。结果表明:杉木人工林随林分发育过程中林龄增加,林分年凋落物量和土壤纤维素酶活性逐渐增加;蔗糖酶活性呈现出先增加后降低的变化趋势,而淀粉酶活性无明显变化规律。土壤理化性质表现为幼龄林阶段较好,中龄林最差、近熟林—过熟林又逐渐恢复的变化特征;但不同指标恢复速度不同。土壤呼吸速率从幼龄林到近熟林呈明显先降低后增加的变化规律;从近熟林到成熟林略有增加,但增加不显著;过熟林时又显著降低,达到中龄林水平。通径分析表明,不同土壤性质对土壤呼吸速率表现出不同程度的影响;在被研究的土壤性质中,年凋落物量、土壤有机碳含量和纤维素酶活性对土壤呼吸速率表现出更强烈的直接影响和间接影响作用。 展开更多
关键词 杉木人工林 发育阶段 土壤性质 土壤呼吸速率 通径分析
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