61 resultados para Soil physicochemical characteristics

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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Practical testing of the feasibility of cyanobacterial inoculation to speed up the recovery of biological soil crusts in the field was conducted in this experiment. Results showed that cyanobacterial and algal cover climbed up to 48.5% and a total of 14 cyanobacterial and algal species were identified at the termination of inoculation experiment; biological crusts' thickness, compressive and chlorophyll a content increased with inoculation time among 3 years; moss species appeared in the second year; cyanobacterial inoculation increased organic carbon and total nitrogen of the soil; total salt, calcium carbonate and electrical conductivity in the soil also increased after inoculation. Diverse vascular plant communities composed of 10 and 9 species are established by cyanobacterial inoculation on the windward and leeward surface of the dunes, respectively, after 3 years. The Simpson index for the above two communities are 0.842 and 0.852, while the Shannon-Weiner index are 2.097 and 2.053, respectively. In conclusion, we suggest that cyanobacterial inoculation would be a suitable and effective technique to recover biological soil crusts, and may further restore the ecological system. (C) 2008 Published by Elsevier Ltd.

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A capillary zone electrophoresis (CZE) method has been developed for investigating the physicochemical characteristics of five Strychnos alkaloids in Strychnos nux-vomica L. Firstly, the dissociation constants of the five Strychnos alkaloids were determined, based on the relation between the effective mobility of the solutes and the buffer pH. The mathematical relationship was strictly deduced from the fundamental electrophoretic theory and the dissociation equilibrium. Secondly, an equation describing the relation between the migration time of alkaloids of similar structure and their molecular weights was developed and used to predict the migration order and to calculate the electrosomotic velocity. The results predicted by the theory agreed with those from experiments.

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The performance of a wetland system in treating lead (Pb)/zinc (Zn) mine drainage was evaluated by using the polyurethane foam unit (PFU) microbial community (method), which has been adopted by China as a standardized procedure for monitoring water quality. The wetland system consisted of four cells with three dominant plants: Typha latifolia, Phragmites australis and Paspalum distichum. Physicochemical characteristics [pH, EC, content of total suspended solid (TSS) and metals (Pb, Zn, Cd, and Cu)] and PFU microbial community in water samples had been investigated from seven sampling sites. The results indicated that the concentrations of Pb, Zn, Cd, Cu, and TSS in the mine drainage were gradually reduced from the inlet to the outlet of the wetland system and 99%, 98%, 75%, 83%, and 68% of these metals and TSS respectively, had been reduced in concentration after the drainage passed through the wetland system. A total of 105 protozoan species were identified, the number of protozoa species and the diversity index (DI) gradually increased, while the heterotrophic index (HI) gradually decreased from the inlet to the outlet of the wetland system. The results indicated that DI, HI, and total number species of protozoa could be used as biological indicators indicating the improvement of water quality.

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The benthic community structure in Baoan Lake was examined in relation to lake water physicochemical characteristics and biological parameters. Seventy macroinvertebrate taxa were identified, and mollusks constituted the dominant group and accounted for more than 80% of the total abundance. Assemblages were composed mainly of scrapers (81.5%) and collector-gatherers (roughly 10%). Three plant variables (richness, total cover, and total biomass) were strongly correlated with the faunal gradient (p<0.05). Other predicator variables were Cl-, SiO2, and chemical oxygen demand. Because of the importance of macrophytes in structuring benthic assemblage in this lentic system, the spatial heterogeneity of macrophytes also influenced the pattern of macroinvertebrates. Seven lake regions were uniquely characterized according to primary macrophyte composition and biomass. There were significant differences for macroinvertebrate taxa richness, abundance, and biodiversity among the seven macrophyte regions.

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Substantial amounts of algal crusts were collected from five different desert experimental sites aged 42, 34, 17, 8 and 4 years, respectively, at Shapotou ( China) and analyzed at a 0.1 mm microscale of depth. It was found that the vertical distribution of cyanobacteria and microalgae in the crusts was distinctly laminated into an inorganic-layer (ca. 0.00 - 0.02 mm, with few algae), an algae-dense-layer ( ca. 0.02 - 1.0 mm) and an algae-sparse-layer ( ca. 1.0 - 5.0 mm). It was interesting to note that in all crusts Scytonema javanicum Born et Flah ( or Nostoc sp., cyanobacterium), Desmococcus olivaceus (Pers ex Ach., green alga) Laundon and Microcoleus vaginatus Gom. ( cyanobacterium) dominated at the depth of 0.02 - 0.05, 0.05 - 0.1 and 0.1 - 1.0 mm, respectively, from the surface. Phormidium tenue Gom. ( or Lyngbya cryptovaginatus Schk., cyanobacterium) and Navicula cryptocephala Kutz.( or Hantzschia amphioxys (Ehr.) Grun. and N. cryptocephala together, diatom) dominated at the depth of 1.0 - 3.0 and 3.5 - 4.0 mm, respectively, of the crusts from the 42 and 34 year old sites. It was apparent that in more developed crusts there were more green algae and the niches of Nostoc sp., Chlorella vulgaris Beij., M. vaginatus, N. cryptocephala and fungi were nearer to the surface. If lichens and mosses accounted for less than 41.5% of the crust surface, algal biovolume was bigger when the crust was older, but the opposite was true when the cryptogams other than algae covered more than 70%. In addition to detailed species composition and biovolume, analyses of soil physicochemical properties, micromorphologies and mineral components were also performed. It was found that the concentration of organic matter and nutrients, electric conductivity, silt, clay, secondary minerals were higher and there were more micro-beddings in the older crusts than the less developed ones. Possible mechanisms for the algal vertical microdistribtion at different stages and the impact of soil topography on crust development are discussed. It is concluded that biomethods ( such as fine species distribution and biovolume) were more precise than mineralogical approaches in judging algal crust development and thus could be a better means to measure the potentiality of algal crusts in desert amelioration.

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为了了解植被恢复过程土壤水库特征的变化及其驱动因子,为半干旱典型草原区植被恢复的土壤环境效应提供评价依据,研究了宁南半干旱典型草原区植被恢复80 a对土壤水库库容、实际贮水量和贮水效率的影响及驱动因子。结果表明:土壤水库总库容、吸持库容、实际贮水量、贮水效率以及土壤物理性质均在草原植被恢复25 a内不断提高,经37 a略微下降后随植被演替土壤水库特征和土壤物理性质继续改善。通过逐步回归分析,容重、有机质含量和水稳性团聚体分形维数是影响土壤水库总库容的主要因子,毛管孔隙度则是影响土壤实际贮水量和贮水效率的主要因子。土壤有机质含量与容重、分形维数呈显著负相关(P<0.05),与毛管孔隙度呈极显著正相关(P<0.01)。植被恢复促使有机质积累,从而改善了土壤结构状况,提高了土壤土壤贮水能力、贮水量和贮水效率。可以认为土壤有机质积累是土壤水库功能提高的直接动力。

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对黄土丘陵区植被次生演替灌木初期的土壤养分特征进行了研究。结果表明:灌木初期土壤养分含量总体上表现出0~20 cm土层明显高于20~60 cm土层,而20~40 cm和40~60 cm间无显著差异。0~60 cm土壤深度内,土壤养分因子含量平均值变化范围分别为:有机质4.66~9.83 g.kg-1,全氮0.33~0.61 g.kg-1,全磷0.49~0.52 g.kg-1,有效氮21.56~41.80 mg.kg-1,有效磷0.73~1.31 mg.kg-1,有效钾58.31~102.01 mg.kg-1。灌木初期的土壤养分条件略好于草本阶段,说明植被演替草本阶段对土壤的培肥作用为群落向灌丛演替阶段发展提供了一个较好的土壤养分环境。灌木初期不同,灌木树种间的土壤养分条件存在一定差异,表明不同灌木树种定居所需适宜的土壤养分条件也不同;灌木初期除土壤全磷外,其他各养分因子间均表现出极显著线性相关关系(P<0.01)。

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为分析不同土地利用方式下坡面土壤水分特性的差异和规律,对黄土高原水蚀风蚀交错带典型坡面上农地、林地和草地的土壤水分特性进行了分析。结果表明:(1)苜蓿地土壤的持水能力和供水能力最强,其次是杏树林和长芒草地,谷子地最差;(2)通过土壤水分有效性分析发现,水蚀风蚀交错带田间持水量相当于-0.2×105Pa土壤基质势时的土壤含水量,永久凋萎点则低于-2.0×106Pa土壤基质势对应的土壤含水量;(3)苜蓿地有效水含量最高,谷子地有效水含量最低,而且苜蓿地土壤有效水含量的提高主要是提高了迟效水部分;(4)对不同土地利用方式下的土壤比水容量变化曲线研究表明,土壤比水容量在田间持水量附近随土壤含水量的降低减小的很快,而当土壤水分降低到田间持水量的50%~60%以下时,土壤比水容量基本不变。

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磷是植物生长发育所必需的营养元素之一,由于磷在土壤中的难溶性和难移动性,使得磷在陆地生态系统的循环越来越受到重视,尤其是在明确土壤磷素存在形态和分布特征的基础上,探讨土壤磷素与土地利用方式以及植被生长发育状况之间的关系,对于指导土地利用和恢复植被建设具有重要意义。本研究以辽东山区天然次生林主要林型胡桃楸林、杂木林(由蒙古栎、花曲柳和山杨等树种组成)和蒙古栎林为主要研究对象,系统研究了辽东山区天然次生林土壤磷素的分布特征,并比较研究了落叶松人工林取代天然次生林后土壤磷素的变化特征。主要结论如下: 1. 辽东山区天然次生林土壤磷素特征:(1)次生林0-30 cm土壤全磷含量的变化范围为326.5 mg kg-1-984.9 mg kg-1,土壤总有机磷含量、总无机磷含量、Olsen-P含量和土壤微生物量磷含量占全磷含量的比例变化范围分别为47%-76%、24%-53%、1.23%-1.40%和2.67%-3.45%,土壤全磷与土壤有机碳、全氮之间呈显著正相关,说明次生林土壤有机质含量是影响土壤磷素含量的主要因素之一;土壤Olsen-P和微生物量磷季节变化明显,均表现为夏季最高,且土壤Olsen-P和微生物量磷的季节变化规律不受植被类型的影响;另外,土壤Olsen-P、土壤微生物量磷的季节变化均与土壤含水量相关。(2)三个林型土壤酸性磷酸酶与土壤有机碳、全氮、全磷、Olsen-P和微生物量磷之间存在密切的相关性,酸性磷酸酶可以作为评价次生林土壤磷素状况的一个指标。(3)不同林型土壤各形态无机磷分布不同,胡桃楸林以Fe-P(铁结合的磷酸盐)和Ca-P(钙结合的磷酸盐)为主,杂木林和蒙古栎林以O-P(闭蓄态磷)为主;不同林型土壤各形态无机磷随季节的变化规律不同,与Olsen-P的关系也不同,胡桃楸林土壤Olsen-P与Al-P(铝结合的磷酸盐)之间具有显著的相关性,杂木林土壤Olsen-P与Fe-P和Ca-P之间相关性显著,蒙古栎林土壤Olsen-P与Ca-P之间显著相关,说明辽东山区不同林型土壤磷素的有效来源不同。(4)辽东山区有机磷各形态的分布特征为:中等活性有机磷 > 中等稳定性有机磷 > 高稳定性有机磷 > 活性有机磷;土壤活性有机磷的季节变化与Olsen-P变化一致,中等活性有机磷、中等稳定性有机磷和高等稳定性有机磷的含量随季节变化无此规律;胡桃楸林、蒙古栎林土壤Olsen-P与活性有机磷、中等稳定性有机磷和高等稳定性有机磷之间显著相关,杂木林土壤Olsen-P与活性有机磷、中等活性有机磷、中等稳定性有机磷和高等稳定性有机磷之间相关性显著,说明在本研究区土壤有机磷对磷素有效性的贡献较大。(5)三个林型内主要树种叶片磷含量均较高,且叶片N/P < 10,土壤磷素不是辽东山区次生林植被生长的限制性养分因子。 2. 落叶松人工林取代天然次生林后土壤磷素特征的变化:(1)和天然次生林相比,落叶松人工林土壤全磷、总有机磷、Olsen-P、土壤微生物量磷和磷酸酶活性均显著降低(P<0.05),土壤总无机磷含量无明显变化,这说明次生林转变为落叶松人工林后土壤磷素状况下降。(2)随着次生林转变为落叶松人工林和落叶松人工林连栽后,土壤无机磷各形态含量变化显著,土壤Fe-P和Ca-P含量逐渐降低,O-P含量升高,土壤Olsen-P与无机磷形态中的Fe-P和Ca-P之间显著正相关,表明了Fe-P和Ca-P是Olsen-P的主要无机磷来源。(3)落叶松人工林取代次生林后,土壤活性有机磷、中等活性有机磷、中等稳定性有机磷和高等稳定性有机磷含量均降低,土壤Olsen-P与活性有机磷显著正相关,活性有机磷是补充Olsen-P的直接有机磷源;土壤微生物量磷与各有机磷组分及 Olsen-P含量之间均呈显著正相关,这说明微生物量磷在有机磷转化中起着重要作用。

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横断山区干旱河谷地区的土壤是制约植被恢复的一个关键要素,但干旱条件下土壤质量与动态演变状况并不清楚,本研究以岷江干旱河谷核心地段的土壤为对象,研究了阳坡褐土土壤的物理、化学以及生物学特征在海拔梯度(1800m、2000m、2200m)格局及其时间动态(2005-2007)变化,应用主成分分析综合评价了土壤质量及其时空差异性,明确了土壤质量的变化趋势。主要研究结论如下: 1) 海拔梯度上土壤物理性状的变化,2005 年和2007 年土壤物理性状综合质量随着海拔的升高均得到了优化,即海拔2200 m>海拔2000 m>海拔1800 m。 2) 海拔梯度上土壤化学性质的变化,土壤化学综合性质2005 年随海拔升高而趋于变得更优,而2007 年海拔2000 m 最优,海拔1800 m 则最差。 3) 海拔梯度上土壤生物学性质的变化,2005 年土壤生物学性质随海拔升高表现出趋于更好,2007 年海拔2000 m 最优而海拔1800 m 地段最差。 4) 从土壤物理、化学、生物学三方面出发,应用主成分分析,分别分析得出2005 年和2007 年不同海拔高度的土壤质量综合得分。根据综合得分得出土壤质量综合评价的排列顺序为:2005 海拔2200 m>2007 年海拔2000 m>2005 年海拔2000 m>2007 年海拔1800 m>2007 海拔2200 m>2005 年海拔1800 m。2005年土壤综合质量随海拔升高而趋好,2007 年则以海拔2000 m 最优,海拔1800 m和2200 m 差异不大。 5)排除人为干扰后,干旱河谷土壤物理性状在海拔1800 m 略有恢复,海拔2000 m 变化不明显,而海拔2200 m 仍有退化趋势;土壤化学性质在海拔1800 m和2000 m 地段得到恢复,而海拔2200 m 处仍有退化;土壤生物学性质在海拔2000 m 地段呈恢复趋势,而1800 m 和2200 m 仍处于退化状态。综合质量分析表明,与2005 年相比,2007 年海拔1800 m 和2000 m 地段土壤质量趋于变优而海拔2200 m 地段仍有退化迹象。 Soil is a key factor that affect the restoration of vegetation in the Hengduan Mountains dry valley area. But the dynamics and quality of soil is not knowed in dry area. In this study, soil physiochemical and biological characteristics ranging from 1800~2200m above sea level from a typical south-facing slope at the Minjiang River dry valley area had been studied, and characteristics of changes in soil quality along altitudinal gradients and time scales were also discussed. The principal component analysis was used to assess the soil quality. The main results were as follows: 1) Changes in soil physical properties along altitudes. Soil physical properties obtained the optimization along with the elevation in 2005 and 2007. 2) Changes in soil chemical properties. It was summarized that soil chemical properties increased with elevation in 2005, but the soil of 2000 m was the best in 2007. 3) Changes in soil biological characteristics. Soil biological properties increased with elevation in 2005, but the soil of 2000 m was the best and 1800 m was the worst in 2007. 4) Change tendency of soil quality. With the soil physics, chemistry and biology characteristics, we analysised the change tendency of soil quality in altitudes. The result indicated that soil quality increased with altituded in 2005, and soil quality of 2000 m was the best in 2007. 5) In brief, the soil quality is by physics, chemistry as well as the biology synthesizes the influence the final outcome. And the soil quality's change was manifested by soil physics, chemistry and the biology characteristics. All the results indicated soil quality still degenerated at 2200 m in in the dry valley of Minjiang River. And soil quality of 1800 m and 2000 m resumed slight.

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以黄土高原陕北水蚀风蚀交错区六道沟小流域为例,研究了该区以苔藓为主要成分的沙土和黄土两种生物结皮对土壤理化性质的影响。结果显示:(1)两种生物结皮均能显著增加土壤饱和含水量和田间持水量,降低容重和饱和导水率,其中沙土生物结皮还可明显粘化0~25cm土壤质地;(2)两种生物结皮均能不同程度的增加土壤全量养分、速效养分以及有机质含量,降低pH值,但其影响多数集中在表层或结皮层;(3)土壤化学性质中,全氮、速效磷和有机质受生物结皮影响程度较大,而全氮、速效钾和有机质受生物结皮影响土层较深;(4)沙土生物结皮对土壤理化性质的影响程度大于黄土生物结皮。两种类型生物结皮对所研究土壤理化性质的影响总体有利于该区生态环境的改善,且沙土生物结皮较黄土生物结皮具有更为重要的生态功能。

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坡地土壤降雨入渗、径流和侵蚀过程与土壤结构密切相关。试验样地为宁夏固原云雾山自然保护区的坡耕地、退耕6a、退耕11a(前8a放牧,后3a禁牧)和退耕16a坡地,室内测定土壤结构指标,野外采用基于径流-入流-产流方法的新型降雨仪器在17、43和56mm/h雨强下观测坡地土壤的入渗性能,分析土壤结构特征对入渗的影响。对土壤结构的稳定性指标、孔隙性指标和分形维数指标进行分析,结果表明,随着退耕年限的延长,土壤团聚体稳定性增强,土壤结构孔隙状况得到明显改善。模拟降雨结果显示,随着雨强的增大,退耕地的土壤入渗率增加,但坡耕地反而降低。退耕11a样地受放牧牲畜践踏影响,入渗性能最差。通过逐步回归分析可知,在17mm/h和56mm/h雨强下,影响土壤稳定入渗率的土壤结构因子主要是容重和有机碳含量,而在43mm/h雨强下主要是毛管孔隙度和非毛管孔隙度。土壤有机碳含量和孔隙状况的差异致使土壤结构特征不同,从而对入渗性能和过程产生明显的影响。

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实地测定了黄土高原半干旱区固原不同生长年限苜蓿草地和连作8a苜蓿草地翻耕轮作不同年限粮食作物后深层土壤水分特征,分析了苜蓿草地土壤干燥化特征和粮草轮作对土壤水分的恢复效应。结果表明:(1)苜蓿连作1a、5a、8a和12a等4类苜蓿草地0~1000cm土层平均土壤湿度值为6.6%,平均土壤水分过耗量702.8mm,平均土壤干燥化速率147.1 mm/a,达到强烈干燥化程度,苜蓿连作5a土壤干层深度超过1000cm,苜蓿连作8a土壤干层深度超过1360cm,苜蓿草地合理利用年限为7a。(2)连作8a苜蓿草地翻耕并轮作4~7a和25a粮食作物等5类粮田0~1000cm土层土壤湿度介于6.74%~11.95%,土壤贮水量恢复值介于210.6~887.3mm,平均土壤水分恢复速率为80.8mm/a。轮作6a后粮田土壤干层轻度恢复程度以上深度达到1000cm。通过粮草轮作使苜蓿草地土壤湿度恢复到当地土壤稳定湿度需要13a以上。黄土高原半干旱区适宜的粮草轮作模式为:7a苜蓿→13a粮食作物。