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1.
The study of interactions between minerals, organic matter (OM) and microorganisms is essential for the understanding of soil functions such as OM turnover. Here, we present an interdisciplinary approach using artificial soils to study the establishment of the microbial community and the formation of macro-aggregates as a function of the mineral composition by using artificial soils. The defined composition of a model system enables to directly relate the development of microbial communities and soil structure to the presence of specific constituents. Five different artificial soil compositions were produced with two types of clay minerals (illite, montmorillonite), metal oxides (ferrihydrite, boehmite) and charcoal incubated with sterile manure and a microbial community derived from a natural soil. We used the artificial soils to analyse the response of these model soil systems to additional sterile manure supply (after 562 days). The artificial soils were subjected to a prolonged incubation period of more than two years (842 days) in order to take temporally dynamic processes into account. In our model systems with varying mineralogy, we expected a changing microbial community composition and an effect on macro-aggregation after OM addition, as the input of fresh substrate will re-activate the artificial soils. The abundance and structure of 16S rRNA gene and internal transcribed spacer (ITS) fragments amplified from total community DNA were studied by quantitative real-time PCR (qPCR) and denaturing gradient gel electrophoresis (DGGE), respectively. The formation of macro-aggregates (>2 mm), the total organic carbon (OC) and nitrogen (N) contents, the OC and N contents in particle size fractions and the CO2 respiration were determined. The second manure input resulted in higher CO2 respiration rates, 16S rRNA gene and ITS copy numbers, indicating a stronger response of the microbial community in the matured soil-like system. The type of clay minerals was identified as the most important factor determining the composition of the bacterial communities established. The additional OM and longer incubation time led to a re-formation of macro-aggregates which was significantly higher when montmorillonite was present. Thus, the type of clay mineral was decisive for both microbial community composition as well as macro-aggregation, whereas the addition of other components had a minor effect. Even though different bacterial communities were established depending on the artificial soil composition, the amount and quality of the OM did not show significant differences supporting the concept of functional redundancy.  相似文献   
2.
[目的]研究不同伊利石添加量对碱性盐化土壤中重金属镉形态的影响及达到吸附稳定的时间。[方法]采用Tessier连续提取法。[结果]在pH为7.93的土壤溶液中,黏土矿物伊利石的添加使得土壤中重金属镉的有效态逐渐减少,其有效态减少总量从2.047mg/kg增加到3.103 mg/kg,铁锰氧化态和碳酸盐态均有不同程度的升高,有机结合态变化不明显,在吸附行为发生14 d左右基本达到平衡,最后出现少量的离子"释放"。[结论]伊利石对碱性盐化土壤中镉形态有较显著的影响。  相似文献   
3.
福建耕作土壤含钾矿物研究   总被引:1,自引:0,他引:1  
 研究了福建省10个耕作土壤耕层不含钾矿物。结果表明紫色页岩发育的土壤中云母最多,玄武岩发育的土壤和花岗岩发育的赤红壤云母较少,河流冲积物及石灰岩发育的水稻土云母居中。云母含量高的土壤,钾的潜在供应量高,潜在供应速度大。粘粒伊利石和2-10μm云母对供钾潜力的意义大于粘粒水白云母和10-100μm云母。105℃烘干24小时对粘粒伊利石影响显著;干湿交替(不加钾)过程中各粒级云母对释钾或固钾均有显著相关;干湿交替(加钾)过程中固钾量主要取决于粘粒矿物类型,当粘粒中有较多蛭石时,Δ-K°值主要取决于蛭石;当粘粒中蛭石少而云母多时,Δ-K°值与粘粒伊利石相关极显著。含钾长石在钾素供应及转化上的意义低于云母。  相似文献   
4.
Knowledge of soil potassium (K) dynamics and quantification of plant-available K reserves are essential for the correct management of this nutrient. The objectives of this study, conducted in six Uruguayan mollisols, were to (i) determine the contribution of plant-available nonexchangeable K to plant nutrition, (ii) compare the ability of the ammonium acetate (NH4OAc) method and the sodium tetraphenylboron (NaBPh4) method to determine plant-available K, and (iii) quantify the effect of K fixation and release processes on the ability of both methods to estimate changes in K availability due to different K balances. In a greenhouse experiment, perennial ryegrass (Lolium perenne, cv. Horizon) was grown over a period of 320 days in six soils fertilized with 0, 100, 200, and 400 mg K kg–1. We measured plant K uptake and the changes in soil K status related to different K balances using NH4OAc and NaBPh4. Use of NaBPh4 resulted in a more accurate determination of plant-available K (R2 = 0.97 vs. 0.78) and soil K balance (R2 = 0.73 vs. 0.63), but neither of the methods was suitable for identifying positive K balances. However, when positive balances were established by K addition and incubation without plant growth, both methods related well with K balances. Again, NaBPh4 was better than NH4OAc (R2 = 0.98 and 0.88, respectively). The more accurate determination of plant K uptake and the strongest relationship with K balance of NaBPh4 was due to the extraction of exchangeable K plus a proportion of plant-available nonexchangeable K. Soil–plant interactions enhance soil K fixation in forms that are available to plant absorption but are not extractable by the chemical methods considered in this study.  相似文献   
5.
A complex buried paleosol at Podere Renieri at Montalcino (central Italy) formed during a series of continental episodes within an interval of Pliocene marine sediments from about 4.1 to 4.8 My BP. The aim of this work was to document the kind of pedogenesis which occurred throughout this time and, in particular, the plinthite formation. Plinthite (soft and hard) is poor in organic carbon, neutral or subalkaline, dominated by illite, and enriched in iron and chromium. The main differences between soft and hard plinthite are attributed to soil structure, which is absent in hard plinthite, and to the abundance of iron depleted zones, which are much larger in soft plinthite. Variations in mineralogy, chemistry and genesis of soft and hard plinthite can be ascribed to the specific environment of plinthite formation, close to the Pliocene sea. Pedogenetic evidence indicates that plinthite evolved in a hot and humid paleoclimate, showing a progressive increase in seasonality, and that low-grade plinthite formation occurred in a time span of a few hundred thousand years. Soils with low-grade plinthite have agronomic value in their suitability for the production of high quality Brunello di Montalcino wine.  相似文献   
6.
In the present investigation, soils representing ten locations and three agro-climatic zones of foot-hills of north-west Himalayas were studied to assess Non-exchangeable Potassium (NEK) reserves, its release and influence of K-fixing capacity and clay minerals on NEK release. Maximum release of non-exchangeable K was obtained in temperate zone soils (295 mg kg− 1) followed by intermediate zone (227 mg kg− 1) and sub-tropical zone soils (106 mg kg− 1), having relative soil quality index (RSQI) values of 85, 80 and 65, respectively. The quantitative analysis of clay minerals, through XRD technique, revealed that the temperate soils have more illite (averaging 62%) which holds well as a reason for high NEK reserves of 1556 mg kg− 1 in these soils in comparison to intermediate (having illite averaging 53%) and sub-tropical (having illite averaging to 49%) soils having NEK amounting to 1022 and 918 mg kg− 1, respectively. In order to study the NEK removal from the soils under investigation, maize was grown as a test crop and potassium was applied through four treatments having four levels of K (0, 15, 30 and 60 mg kg− 1) applied as KCl. The crop demonstrated significant response in terms of dry matter yield up to 30 mg kg− 1 in sub-tropical and intermediate soils while no such response was obtained in temperate soils. The percent NEK removed by maize crop from NEK reserves was 14, 25 and 20% in sub-tropical, intermediate and temperate soils, respectively. The information about NEK release, its removal as well as its relationship with K fixing capacity, clay minerals and RSQI can be used for understanding the K buffering potential of soils especially under adverse soil and climatic conditions that prevail in southwest India. Besides, the regression equations developed can be used for predicting NEK release on the basis of K fixing capacity and clay mineralogical composition.  相似文献   
7.
A complex buried paleosol at Podere Renieri at Montalcino (central Italy) formed during a series of continental episodes within an interval of Pliocene marine sediments from about 4.1 to 4.8 My BP. The aim of this work was to document the kind of pedogenesis which occurred throughout this time and, in particular, the plinthite formation. Plinthite (soft and hard) is poor in organic carbon, neutral or subalkaline, dominated by illite, and enriched in iron and chromium. The main differences between soft and hard plinthite are attributed to soil structure, which is absent in hard plinthite, and to the abundance of iron depleted zones, which are much larger in soft plinthite. Variations in mineralogy, chemistry and genesis of soft and hard plinthite can be ascribed to the specific environment of plinthite formation, close to the Pliocene sea. Pedogenetic evidence indicates that plinthite evolved in a hot and humid paleoclimate, showing a progressive increase in seasonality, and that low-grade plinthite formation occurred in a time span of a few hundred thousand years. Soils with low-grade plinthite have agronomic value in their suitability for the production of high quality Brunello di Montalcino wine.  相似文献   
8.
黄土-古土壤序列是记录第四纪气候环境变化的良好信息载体之一。以黄土高原南缘陕西省淳化黄土-古土壤序列为研究对象,通过X射线衍射法对黄土-古土壤剖面黏土矿物进行定性与半定量分析,调查不同土层黏土矿物相对含量及伊利石/绿泥石比值(I/C值)的变化规律,并结合伊利石结晶度的变化特征,探讨不同土层黏土矿物特征所对应的气候变化规律,揭示黄土高原南部地区在更新世时期的气候环境演变规律。结果表明:(1)淳化剖面黏土矿物的相对含量、I/C值以及伊利石结晶度IC值在反演古气候方面具有较好的指示性。(2)淳化剖面不同土层的黏土矿物类型基本相同,但其相对含量存在差异。在WL-3~S5阶段,即早更新世至中更新世中期,黏土矿物的组合类型为伊利石-蒙脱石-绿泥石-高岭石-蛭石,其中早更新世至中更新世早期(WL-3~L11阶段),伊利石相对含量相对偏低,气候以温凉为主,而中更新世中期(S10~S5阶段),伊利石相对含量上升,但蒙脱石、绿泥石含量均降低,气候相对温湿;在中更新世晚期(L5~S1阶段),黏土矿物的组合类型改变为伊利石-绿泥石-蛭石-高岭石-蒙脱石,以伊利石和绿泥石为主,气候较为干冷。黏土矿物类型及含量表明淳化地区从早更新世早期到中更新世晚期气候环境总体干冷化,并经历了温凉-温湿-干冷的变化过程。(3)I/C值以及伊利石结晶度IC值从剖面底部到顶部均经历了由小到大再到小的过程,它们与黏土矿物的含量所反映的气候变化规律一致。本研究有助于探索黄土高原南部地区在更新世时期的气候环境变化,为全面了解更新世黄土高原不同地区第四纪气候环境演变提供依据。  相似文献   
9.
刘莉红  胡雪峰  叶玮  薛勇  罗凡  闫呈龙 《土壤学报》2015,52(5):991-1001
对安徽宣城市宣州和郎溪两地第四纪红土黏土矿物组合和伊利石结晶度进行研究,探讨其对第四纪红土形成环境的指示意义。结果表明,两地第四纪红土黏土矿物的组合基本相似:剖面上部末次冰期下蜀黄土层(黄棕色土层)黏土矿物主要为伊利石、高岭石和2∶1型的蛭石;均质红土和网纹红土以伊利石和高岭石为主,无蛭石;网纹层下部出现伊利石-蒙脱石混层矿物。根据伊利石的X射线衍射(XRD)峰,获得伊利石结晶度(Illite crystallinity,IC)值,可以反映伊利石结晶程度。两地第四纪红土同类层次的IC值较接近。宣州和郎溪剖面黄棕色土的IC值平均为0.463,均质红土为0.599,网纹红土为0.726。全剖面样品IC值与风化强度指标呈显著负相关,充分说明红土IC值可有效地反映红土的风化强度。第四纪红土剖面从黄棕色土→均质红土→网纹红土,IC值升高,伊利石结晶变差,反映了红土风化强度增加,形成的气候环境更加湿热。  相似文献   
10.
南京地区水稻土中固定态铵与伊利石的相关性   总被引:1,自引:0,他引:1  
陈国岩  李福春  杜伟  李学林  何为红 《土壤》2009,41(6):926-931
本文以南京地区长城岗和泉水两个水稻土剖面为研究对象,在利用Silva-Bremner法测定土壤全样和3个粒级(黏粒、粉粒和细砂粒)的固定态铵含量、利用X-射线衍射仪测定矿物成分的基础上,讨论了固定态铵含量与粒级以及矿物种类的关系.结果认为,两个剖面在以下几个方面具有共性:①在黏粒、粉粒和细砂粒3个粒级中,黏粘粒含量与固定态铵含量的关系最为密切,相关系数分别为0.68和0.64;②在黏粒中的伊利石、高岭石和蒙脱石3种主要矿物中,伊利石含量与固定态铵含量相关性最好,相关系数分别为0.50和0.49;⑨对于全样来说,其中的伊利石含量与同定态铵含量呈极显著正相关,相关系数分别为0.68和0.66.这些数据充分说明,伊利石是南京地区水稻土中固定态铵赋存的最主要载体.  相似文献   
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