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1.
本文研究结果表明:(1)神农架垂直带土壤矿物的风化脱硅作用较弱,粘土矿物以2:1型矿物为主,1:1型高岭含量很少。(2)随海拔升高,矿物的淋溶脱钾和层间羟基铝化作用增强,低海拔土壤的2:1型矿物以水云母为主,高海拔土壤以1.4nm矿物为主,其中1.4nm过渡矿物相对增多。(3)土壤的络合态铁、铝和非晶形铁,铝含量随海拔升高明显增大。(4)土壤的可变电荷量,阴离子交换量,交换性酸和铝饱和度等均随海拔  相似文献   

2.
对莽山北坡不同海拔高度的5个土壤剖面15个土样的粘粒矿物进行了X射线衍射分析和粘粒氧化物的化学选择溶提测试,结果表明:(1)莽山土壤中粘粒矿物组合的垂直变化明显。海拔500m以下的红壤、黄红壤的粘土矿物以1:1型高岭为主,粘粒氧化物中有较多的晶质氧化铁和热碱溶性氧化硅。海拔850m以上的黄壤、暗黄棕壤和山地灌丛草甸土的粘土矿物以2:1型的14×10-10m过渡矿物和水云母为主,粘粒氧化物中有较多的无定形氧化铁、铝和三水铝石。(2)随海拔升高,土壤粘粒的硅铝率、氧化铁的游离度变幅不大,而氧化铁的活化度和各种氧化铝的富集明显提高。根据这些结果,结合莽山土壤的风化威土的条件与过程,讨论了莽山垂直带土壤中粘土矿物和氧化物的分布与演化过程的特点。  相似文献   

3.
土壤中铁铝氧化物与黏土矿物交互作用的研究进展   总被引:9,自引:0,他引:9  
谭文峰  周素珍  刘凡  冯雄汉  李学垣 《土壤》2007,39(5):726-730
铁铝氧化物与黏土矿物是土壤中最重要、最活跃的固相组分之一,一般占土壤质量的90%以上,它们之间的交互作用直接影响土壤界面活性、理化性质和肥力状况.本文以铁铝氧化物和黏土矿物胶结过程中的一些表观特征变化为出发点,重点阐述了交互作用前后对土壤理化性质的影响,以及宏观表现到微观交互作用的机理,并提出了宜加强二者交互作用的界面特性、非晶形向晶形转化过程等的研究,以期揭示土壤退化、团聚体形成、元素的保蓄与释放、土壤污染物的调控等土壤的基本属性问题.  相似文献   

4.
杨东伟  章明奎  张鹏启  刘千千  董静  李雪  黄笑 《土壤》2020,52(3):567-574
近年来水田改为林地在我国南方地区非常普遍,为了解这种转变对土壤矿物(黏土矿物和氧化铁)演变的影响,在浙江省平原地区构建了4个水田改林地系列土壤,采用野外调查和室内分析相结合的方法,研究水田改林地后土壤剖面中氧化铁形态和黏土矿物类型的演变规律。结果表明,改林地后,土壤剖面中全铁含量变化不明显,耕作层和犁底层土壤游离氧化铁有轻微增加趋势。改林地15~20 a后,4个系列土壤耕作层活性铁和活化度降幅分别在18.0%~38.4%和24.7%~48.9%;耕作层土壤铁氧化物的晶胶比增幅在0.73倍~1.62倍;耕作层土壤亚铁含量明显下降,降幅最高达95.8%,变异系数达到143.9%;耕作层络合铁降幅在21.3%~36.2%,并与有机质呈极显著正相关(P0.01)。改林地后,犁底层土壤中绿泥石相对含量及其与高岭石的比值都呈降低趋势,其他黏土矿物相对含量变化规律不明显,土壤有机质显著下降,土壤明显酸化。土壤铁氧化物形态和数量的变化对土壤结构以及土壤重金属的迁移转化等产生重要影响。  相似文献   

5.
谷俊  杨飞  李德成  宋效东  张甘霖 《土壤》2023,55(4):871-879
土壤有机碳(SOC)含量和动态是有机碳输入输出平衡和土壤固持能力共同作用的结果,前者主要受生物气候条件控制,而后者则主要受黏粒及无机矿物等土壤理化属性的影响。本研究通过沿海拔梯度选择表土地形序列作为“自然试验场”,探究祁连山区SOC含量及组分变化的控制因素。研究发现:该地形序列土壤母质主要来源于黄土沉积,土壤黏土矿物以绿泥石和水云母为主,指示该区域的整体弱风化特征。在巨大的水热梯度影响下,地形序列内土壤成土强度差异明显,低海拔地区土壤含有碳酸盐,随着海拔上升,碳酸盐物质逐渐淋失,SOC和铁铝氧化物含量增加。进一步分析发现,铁铝氧化物是SOC含量及组分方差的主要解释变量。偏相关分析显示,当控制铁铝氧化物后,气候对SOC含量及组分的影响不显著。这表明气候对SOC的影响可能主要通过影响土壤属性,造成铁铝氧化物等属性的差异,间接影响SOC的长期固存,且该机制主要作用于矿物结合态有机碳(MOC)组分。本研究对理解SOC固存及其对气候变化的动态响应有重要启示。  相似文献   

6.
土壤矿物和胡敏酸对阿特拉津的吸附-解吸作用研究   总被引:3,自引:0,他引:3  
选取了6种土壤矿物(蒙脱石、高岭石、钙饱和处理蒙脱石、钙饱和处理高岭石、无定型氧化铁和无定型氧化铝),以及从土壤中提取纯化的3种胡敏酸为材料,采用批量吸附平衡法,研究土壤矿物和胡敏酸对阿特拉津的吸附特性。结果表明,各吸附剂对阿特拉津的吸附均能采用Frundlich方程进行较好地拟合(r≥0.982,p0.01)。胡敏酸对阿特拉津具有最大的吸附性能,其固-液分配系数(Kd值)随平衡浓度(Ce值)的变化基本恒定,吸附等温线呈线性(Frundlich方程常数N≈1),吸附以分配溶解作用为主,吸附可逆性较高。黏土矿物(特别是蒙脱石)对阿特拉津也具有较强的吸附能力,Kd值随Ce值增加而增加,吸附等温线呈S型(N1),吸附主要是通过表面亲水作用。无定型氧化铁铝的Kd值随Ce值增加而降低,当Ce达到一定水平后,Kd趋于恒定,吸附等温线呈L形(N1),吸附主要是通过无定型氧化物表面的羟基与阿特拉津分子间的化学键合作用,吸附可逆性最差。  相似文献   

7.
土壤镉吸附的研究进展   总被引:8,自引:0,他引:8  
综述了土壤镉吸附的机理和土壤pH、有机质含量、粘粒矿物类型及含量、土壤溶液中竞争性阳离子、共存阴离子、土壤温度等土壤性质对土壤镉吸附的影响;总结了土壤镉的吸附量随土壤pH增加、温度升高及有机质、铁锰氧化物和粘土矿物含量增加而增加的机理;竞争性阳离子的存在抑制镉的吸附,土壤溶液中共存阴离子对镉吸附的影响取决于阴离子种类和土壤类型。  相似文献   

8.
可变电荷土壤中特殊化学现象及其微观机制的研究进展   总被引:3,自引:0,他引:3  
徐仁扣  李九玉  姜军 《土壤学报》2014,51(2):207-215
综述了近年来可变电荷土壤化学研究的进展,着重总结了可变电荷土壤中的盐吸附、铁铝氧化物对土壤自然酸化的抑制作用和离子强度对离子专性吸附的影响等特殊化学现象及其微观机制的研究进展。用颗粒表面扩散层重叠导致有效电荷数量减小的原理解释了盐吸附现象和铁铝氧化物对土壤自然酸化的抑制作用。阐明了可变电荷土壤和矿物中介质离子强度影响离子专性吸附的机制,用四层吸附模型解释了离子专性吸附随离子强度增大而增加的现象,并根据胶体zeta电位随离子强度改变而变化的趋势进一步证明了离子强度增大使胶体专性吸附面上静电电位的绝对值减小,是离子专性吸附随离子强度增大而增加的主要原因。带电颗粒表面双电层结构和双电层相互作用的深入研究,有助于阐明可变电荷土壤中一些特殊化学现象的微观机理,从而进一步完善土壤化学理论。  相似文献   

9.
胶体悬液中白云母与铁铝氧化物表面双电层的相互作用   总被引:1,自引:0,他引:1  
白云母是一种原生矿物,也是土壤中常见的层状硅酸盐矿物,其负电荷主要由四面体结构中的Al置换Si而来[1]。在通常的pH条件下,白云母带负电荷,可变电荷土壤中的铁、铝氧化物带正电荷。当白云母与铁、铝氧化物存在于同一悬液  相似文献   

10.
冻融作用对棕壤水溶性盐和土壤氧化物的影响   总被引:1,自引:0,他引:1  
为了解沈阳棕壤水溶性盐和土壤氧化物在冻融条件下的变化规律,采用冻融模拟试验研究了冻融作用对棕壤水溶性盐和土壤氧化物的影响。结果表明,(1)冻融作用促进了土壤K+、Na+、Ca2+、Mg2+的释放,有机质和黏粒含量是影响其释放的重要因素。(2)冻融作用促使土壤中CO2含量增加,促进了HCO3-的形成。虽然SO42-、Cl-性质稳定,但冻融作用中水分和温度的变化,致使SO42-、Cl-随着冻融次数的增加呈先增加后稳定的趋势。(3)冻融作用促进土壤铁结晶老化形成氧化铁,且氧化铁含量随土壤深度增加逐渐增加;氧化锰主要受冻融条件下土壤pH影响,pH上升氧化锰含量增加。(4)土壤氧化硅和氧化铝受pH影响,pH降低其含量增加,pH增加其含量降低。此外,有机质含量较多的土层不易形成硅铝氧化物,土壤铁锰氧化物的增加不利于土壤硅铝氧化物的形成。  相似文献   

11.
The clay mineral association,oxides of clay fraction and surface charge properties of 7 soils,which are developed from granite,located at different altitudesof the Tianbao Mountains were studied.Results indicate that with the increase in altitude,1) the weathering process and desilicification of soil clay minerals became weaker,whereas the leaching depotassication and the formation process of hydroxy-aluminum interlayer got stronger;2)the contents of amorphous and complex aluminum and iron,and the activity of aluminum and iron oxides for soil clay fraction increased;and 3) the amount of variable negarive charge,anion exchange capacity and the values of PZC and PZNC also increased.The activity of aluminum and iron oxides,the accumulation of aluminum,and surface charge characteristics and their relation to clay oxides of the vertical zone soils were observed and recorded.  相似文献   

12.
The long-term effects of intermittent flooding on soil properties were studied in field experiments on a Vertisol cropped with rice in Senegal. The dominant clay minerals were smectite and kaolinite. When the soil was reduced after flooding, its cation exchange capacity (CEC) increased to twice that of its oxidized, unflooded state. Mössbauer spectroscopy showed an increase in smectite structural FeII upon reduction, which explained a part of the increase in CEC. The rest of the increase was attributed to the removal of iron oxyhydroxide coatings by reductive dissolution. The reduction and dissolution of oxides under the field conditions were substantiated by analysis of the surfaces of vermiculites buried in the Ap horizons of the cropped and the non-cropped soils. The redox-induced CEC changes were found to be reversible after 22 cycles of rice cropping. Nevertheless, the structural Fe and free Fe contents of the rice field Ap horizon were less than those of soil in uncropped neighbouring land, suggesting that inundation induced weathering and eluviation of the minerals. The observed changes in CEC and related redox reactions may substantially modify proton, anion and cation balances in intermittently flooded soils.  相似文献   

13.
Limited information is available on the changes of surface chemical properties of tropical soils with time during the pedogenesis. Soil samples of three profiles derived from basalts of 10, 1330 and 2290 kilo annum (ka) in age were collected from adjacent locations in a tropical region of Hainan Province, China. The changes in soil surface chemical properties and the mineralogy of the soil clay fraction with time were investigated using ion adsorption, micro-electrophoresis, and X-ray diffraction analysis. The content of 2:1-type clay minerals decreased, while those of kaolinite and gibbsite increased with increasing basalt age and degree of soil development. The content of pedogenic free iron (Fe) oxides and the ratio of free Fe oxides/total Fe oxides increased with soil development stage, while soil poorly crystalline Fe and aluminum (Al) oxides had an opposite trend. The positive surface charge of the soils increased with increasing basalt age and degree of soil development; this was consistent with the change in their contents of free Fe/Al oxides. However, the value of negative surface charge had an opposite behavior. The soil derived from 10-ka-basalt had much more negative charge than soils derived from 1330- and 2290-ka-basalt. Soil net surface charge and zeta potential of the soil clay-fraction decreased with the increase in basalt age. Both net charge–pH curves and zeta potential–pH curves shifted to positive values with increased basalt age and degree of soil development. Increasing age also elevated the point of zero net charge of the soil and the isoelectric point of soil colloids.  相似文献   

14.
Soil organic carbon (SOC) storage and turnover is influenced by interactions between organic matter and the mineral soil fraction. However, the influence of clay content and type on SOC turnover rates remains unclear, particularly in tropical soils under natural vegetation. We examined the lability of SOC in tropical soils with contrasting clay mineralogy (kaolinite, smectite, allophane and Al-rich chlorite). Soil was sampled from A horizons at six sites in humid tropical areas of Ghana, Malaysian Borneo and the Solomon Islands and separated into fractions above and below 250 μm by wet sieving. Basal soil respiration rates were determined from bulk soils and soil fractions. Substrate induced respiration rates were determined from soil fractions. SOC lability was significantly influenced by clay mineralogy, but not by clay content when compared across contrasting clay minerals. The lability of SOC was lowest in the allophanic and chloritic soil, higher in the kaolinitic soils and highest in the smectitic soil. Our results contrast with conventional concepts of the greater capacity of smectite than of kaolinite to stabilize SOC. Contents of dithionite-citrate-bicarbonate extractable Fe and Al were inversely related to SOC lability when compared across soil types. A stronger inverse correlation between content of ammonium-oxalate extractable Fe and SOC lability was found when considering the kaolinitic soils only and we conclude that the content of active Fe (hydr-) oxides controls SOC stabilization in the kaolinitic soils. Our results suggest that the validity of predictive models of SOC turnover in tropical soils would be improved by the inclusion of soil types and contents of Fe and Al (hydr-) oxides.  相似文献   

15.
我国北亚热带白浆化土壤矿物学特性的研究   总被引:3,自引:0,他引:3       下载免费PDF全文
傅桦  丁瑞兴 《土壤学报》1997,34(3):246-255
本文对北亚热带地区七个白浆化土壤的原生矿物和次生矿物的特性进行了研究。重,轻矿物含量表明土壤继承了母质的特性,粘淀层与漂白层的母质沉积是间断的,前者风化强度大于后者。石英颗粒表现特征显示漂白层物来来源于黄土物质再堆积,粘土矿物以水云母为主,其结晶度较差,氧化铁类型以针铁矿和赤铁矿为主,也有非晶质氧化铁和硅酸盐中的Fe^2+,其形成条件与现代化成土条件一致。  相似文献   

16.
为了解我国亚热带地区山地草甸土性态的变化和成土特点,从福建、浙江、江西、安徽、湖南和贵州等省采集了20个代表性山地草甸土剖面,详细观察了土壤剖面形态特征,分析了土壤颗粒组成、有机质、阳离子交换量(CEC)、酸度、氧化铁形态和黏土矿物类型等指标,并从诊断分类的角度探讨了它们在中国土壤系统分类中的地位。结果表明:这一地区的山地草甸土表层有机质积累均非常明显,颜色普遍呈黑色和深褐色,土壤酸化明显,土壤氧化铁游离度多在40%以下,土壤CEC较高。但研究也发现,不同样点之间土壤的土体厚度、剖面构型、黏化状况、有机质垂直分布、氧化铁含量、矿物类型及其诊断层和诊断特性均有较大的差异。土体构型大致有Ah-C、Ah-Bw-C、Ah-Bt-C和Ah-G-C等4类。根据中国土壤系统分类的诊断标准,可把研究的20个剖面归并为均腐土、潜育土、淋溶土、雏形土和新成土等5个土纲,下续分为6个亚纲、10个土类和15个亚类。研究认为,在地理发生分类中笼统地把这些土壤归为一个土类存在边界不明确等问题。  相似文献   

17.
江西低丘红壤性水稻土的主要化学特性研究   总被引:1,自引:2,他引:1       下载免费PDF全文
范本兰  杜国华 《土壤学报》1985,22(2):183-190
三个红壤性水稻土的有机质和腐殖质的含量由淹育型水稻土→潴育型水稻土→潜育型水稻土依次逐渐增加,其C/N和H/P比值也顺次增大。它们的粘土矿物组成无明显差异。铁、锰物质在潴育型水稻土剖面中分异最明显,其次为淹育型水稻土;而无定形氧化铁在剖面中变幅最大却是潜育型水稻土;结晶态铁在土壤剖面中分异亦有一定规律,其中潴育型水稻土的指示性土层(W层)的晶胶率(结晶铁/无定形铁)远较其它土层为高,这种变化特性的差异,对区分不同水分作用的水稻土发育类型有一定的特殊意义;土壤络合态铁与土壤有机质含量有关。土壤氧化锰与土壤氧化铁相比虽然含量低,但对土壤氧化还原条件反应更加敏感,所以在土壤剖面中淋移趋势更加明显。  相似文献   

18.
欧锦琼  黄伟濠  卢瑛  李博  阳洋  唐贤  贾重建  秦海龙 《土壤》2020,52(6):1290-1297
黏粒矿物影响着土壤理化性质,可指示成土因素特征和土壤发生发育过程/强度,也是中国土壤系统分类的基层单元土族矿物学类型划分的重要依据。本研究选择了广西不同纬度和成土母质的18个代表性水耕人为土的剖面,应用X射线衍射(XRD)方法分析了其典型水耕氧化还原层(Br层)的黏粒矿物组成及其空间分布特征,并确定了其中“黏质”剖面的土族控制层段矿物学类型。结果表明:(1)供试土壤的黏粒矿物主要包括高岭石、伊利石、三水铝石、1.42 nm过渡矿物、蒙脱石和蛭石等,依次分别出现在100%、88.9%、72.2%、61.1%、44.4%和38.9%的剖面中。(2)黏粒矿物组成在纬度空间分布上具有明显规律性特征。随着纬度降低,土壤黏粒中的高岭石增加,伊利石、蒙脱石、1.42nm过渡矿物逐渐减少;纬度>23°N区域内,成土母质对黏粒矿物组成影响明显。(3)纬度23°N是黏粒矿物组成和土族矿物学类型分界线,<23°N区域,黏粒矿物均以高岭石为主,是“黏质”剖面的土族控制层段的主要矿物学类型;>23°N区域,黏粒矿物组成以高岭石、蒙脱石、伊利石或1.42 nm过渡矿物为主,因成土母质不同而异,“黏质”剖面的土族控制层段矿物学类型包括高岭石混合型、混合型和伊利石型。  相似文献   

19.
Dark chestnut soils of the Ershov Experimental Station in the Transvolga region are characterized by the even distribution and aggregation of clay minerals in the profile. Hydromica, chlorite, kaolinite, and smectitic minerals predominate in the clay (<1 μm) fraction. The smectitic phase consists of randomly ordered mixed-layered minerals of the following types: mica-smectite with a low (<50%) content of smectite layers, mica-smectite with a high (>50%) content of smectite layers, and chlorite-smectite. In some horizons, the smectitic phase occurs in the superdispersed state. The long-term irrigation of these soils with fresh water of the Volga River has led to certain changes in the composition and properties of the clay particles. The weakening of bonds between them has taken place. As a result, the content of water-peptizable clay has increased by two times, and the content of aggregated clay of the first category (AC1) has increased by 1.5 times at the expense of a decrease in the contents of tightly bound clay (TBC) and aggregated clay of the second category (AC2). Also, the redistribution of organic matter bound with clay particles has taken place: its content in the AC1 fraction has decreased, whereas its content in the AC2 and TBC fractions has increased. In the topsoil horizon, the amount of the smectitic phase has lowered, whereas the contents of hydromica, kaolinite, and fine-dispersed quartz in the clay fraction have increased. In general, some amorphization of the clay material has occurred. The periodic alkalization of the soil solutions upon irrigation has led to the conversion of the smectitic phase into the superdispersed state in the entire soil profile.  相似文献   

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