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21.
The objective of the present study is to reveal the composition and characteristics of organo-mineral complexes in red soils (red soil,lateritic red soil and latosol) of south China in terms of chemical dissolution and fractional peptization methos.In the combined humus,most of the extractable humus could dissolve in 0.1 M NaOH extractant and belonged to active humus (H1),and there was only a small amount of humus which could be further dissolved in 0.1 M Na4P2O7 extractant at pH 13 and was stably combined humus (H2).The H1/H2 ratio ranged from 3.3 to 33.8 in red soils,and the proportions of both H1 and total extractable organic carbon (H1 H2) in total soil organic carbon and the ratios of H1 to H2 and H1 to (H1 H2) were all higher in lateritic red soil and latosol than in red soil.The differences of combined humus composition in various red soils were directly related to the content of Fe and Al oxides.In organo-mineral complexes,the ratio of Na-dispersed fraction (G1) to Na-ground-dispersed fraction (G2) was generally smaller than 1 for red soils,but there was a higher G1/G2 ratio in red soil than in lateritic red soil and latosol.G1 fraction had a higher content of fulvic acid (FA),but G2 fraction had a higher content of humic acid (HA).The ratios of H1 to H2 and HA to FA were higher in G2 than in G1.The differences in the composition and activity of humus between G1 and G2 fractions were related to the content of free Fe and Al oxides.The quantities of complex Fe and Al,the Fe/C and Al/C atomic ratios were higher in G2 than in G1,and the ratio of Al/C was much higher than that of Fe/C.It may be deduced that aluminum plays a more important role than iron in the formation process of organo-mineral complexes in red soils.  相似文献   
22.
Li  L. M.  Wu  Q. T. 《土壤圈》1991,1(1):83-91
Studies have been made,by ^15N-tracer technique on nitrogen loss resulting from adding amorphous manganese oxide to NH4^ -N medium under anaerobic conditions.The fact that the total nitrogen recovery was decreased and that ^15NO2,^15N2O,^15N^14NO,^15NO,^15N2 and ^15N^14N were emitted has proved that,like amorphous iron oxide,amorphous manganese oxide can also act as an electron acceptor in the oxidation of NH4^ -N under anaerobic conditions and give rise to nitrogen loss.This once again illustrates another mechanism by which the loss of ammonium nitrogen in paddy soils is brought about by amorphous iron and manganese oxides.The quantity of nitrogen loss by amorphous manganese oxide increased with an increase in the amount of amorphous manganese oxide added and lessened with time of its aging.The nitrogen loss resulting from amorphous manganese oxide was less than that from amorphous iron oxide.And the nitrogen loss resulting from amorphous manganese oxide was less than that from amorphous iron oxide.And the nitrogen loss by cooperation of amorphous manganese oxide and microorganisms (soil suspension) was larger than that by amorphous manganese oxide alone.In the system,nitrogen loss was associated with the specific surface ares and oxidation-reduction of amorphous manganese oxide.However,their quantitative relationship and the exact reaction processes of nitrogen loss induced by amorphous manganese oxide remain to be further studied.  相似文献   
23.
24.
A study on the distribution of free iron and manganese oxides was conducted in soils developed on calcareous alluvial deposits under subhumid climatic conditions, in Western Greece. Soil samples from two well drained soils and from two poorly drained soils, classified as Alfisols, were collected and used in this study. After certification of soil homogeneity the acid ammonium oxalate and dithionite-citrate-bicaxbonate methods were used to extract free iron and manganese oxides from the samples. Iron oxides extracted by the dithionite-citrate-bicarbonate method (Fed) were significantly higher than the iron oxides extracted by the ammonium oxalate method (Feo), indicating that a considerable fraction is present in crystalline forms, independent of drainage status. A confirmation of free iron oxides and fine clay was detected. The ratios Feo/Fed and (Fed-Feo)/total Fe (Fet) could not be used to distinguish the well drained soils from the poorly drained soils. Manganese movement in a soluble form is independent of the fine clay.  相似文献   
25.
植物根表铁,锰氧化物胶膜及其在植物营养中的作用   总被引:4,自引:0,他引:4  
在渍水土壤中,由于嫌气条件下存在有许多Fe^2+、Mn^2+,长期适应这种环境的植物具有氧化根际的能力,从而在其根表淀积形成铁、锰氧化物胶膜。研究表明,这些包被在根表的铁、锰氧化物胶膜在适应淹水条件、养分吸收及重金属离子进入植物体过程中起着重要作用,具有重要生态意义。本文综述了近年来国际上这方面的研究进展。  相似文献   
26.
苄嘧磺隆在几种氧化物表面的吸附及氯离子对吸附的影响   总被引:2,自引:0,他引:2  
 利用平衡吸附法研究了苄嘧磺隆在高岭土、针铁矿、水铁矿、非晶型氢氧化铝及水钠锰矿表面的吸附以及氯离子对吸附的影响。结果表明 ,供试粘土矿物及氧化物对苄嘧磺隆的吸附均符合Langmuir方程 ,最大吸附量大小顺序为 :非晶型氢氧化铝 >针铁矿 >水铁矿 >水钠锰矿 >高岭石 ,且吸附量随氯离子浓度的增加而降低。其中在非晶型氢氧化铝和针铁矿表面的降幅较大  相似文献   
27.
(一)苹果贮藏保鲜中存在的问题 (1)苹果贮藏保鲜多用化学药剂 多菌灵、托布津等化学农药对人、畜有致畸作用,2、4-D中含有极微量的有毒物质对人体的威胁也很大,三唑类有机化合物有一定的致癌性,残留在食品中的二氧化硫能引起严重的过敏反应。因而,化学药剂对于苹果防腐保鲜是有待改进的。 (2)果蔬产地缺乏冷库设施  相似文献   
28.
植物的pH值,等电点,细胞膜透性与抗氟化物的关系   总被引:7,自引:0,他引:7  
不同植物叶细胞的pH值,等电点,细胞膜透性的变化与抗氟性有一定的相关性。pH值高、等电点低的植物抗氟性强,受氟化物危害后细胞膜透性变化小,反之,pH值高,等电点也高的植物抗氟性弱,受氟化物危害后细胞膜透性变化大。  相似文献   
29.
铁锰结核的元素组成及微形态特征   总被引:8,自引:0,他引:8  
本文研究了钙质变性土中铁锰结核的矿质全量组成、微量元素丰度,微形态特征以及土壤和铁锰结核中各形态铁锰氧化物的组成特点,结果表明,铁锰结核中仍以SiO2含量最高,但Fe2O3含量增加超过了Al2O3、MnO含量大大超过了K2O、Na2O、TiO2和MgO的含量,所测定的9种微量元素中以Ba含量最高,其次是V、Ni、Co3种铁族元素,Cu和Pb含量也较高,但Zn和Cr含量较低,一般黑土层中的结核较小,  相似文献   
30.
汪超  李福春  阚尚  田智宇  周静 《土壤》2015,47(1):49-54
以黄土高原广泛分布的黑垆土为研究对象,研究了6个粒级团聚体中总有机碳(TOC)、稳定性有机碳(St OC)、矿物保护态有机碳(MOC)、化学稳定性有机碳(ROC)和游离氧化铁(Fed)、无定形氧化铁(Feo)、络合态氧化铁(Fep)以及黏土矿物含量的特征,重点分析了有机碳在各粒级团聚体中的分配及其与黏土矿物和各种形态氧化铁之间的相关性,及探讨了有机碳的保护机制。结果表明:黑垆土中约80%的土壤有机碳赋存于0.5~0.25、0.25~0.05和0.05 mm的3个粒级团聚体中;黑垆土中的有机碳以St OC为主,其含量随着团聚体粒级的减小而增加。在0.5~0.25和0.25~0.05 mm团聚体中,TOC含量与Fed含量呈正相关关系,相关性系数(r)均为0.72(P0.05);在0.25~0.05 mm粒级团聚体中,ROC含量与Fed含量呈正相关关系(r=0.68,P0.05),而St OC和MOC含量与伊利石含量具有正相关关系r分别为0.71(P0.05)和0.68(P0.05)。黑垆土中对有机碳起保护作用的主要是Fed和伊利石,但二者对有机碳的保护机制可能有所不同:Fed与有机碳络合形成化学稳定性有机碳,而伊利石主要通过吸附作用实现对有机碳的保护。  相似文献   
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