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首页> 外文期刊>Pedobiologia >Possible influence of termites (Macrotermes bellicosus) on forms and composition of free sesquioxides in tropical soils
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Possible influence of termites (Macrotermes bellicosus) on forms and composition of free sesquioxides in tropical soils

机译:白蚁(Macrotermes bellicosus)对热带土壤中游离倍半氧化物的形式和组成的可能影响

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There has been less concern about soil mineralogical alteration than about soil physical, chemical and biological changes induced by termite nest-building activity. Furthermore, much less attention has been paid to free sesquioxides than to phyllosilicate minerals. In the present study, we conducted field morphological observations and selective dissolution analysis to characterize free sesquioxides in termite (Macrotermes bellicosus) mounds as compared with surrounding pedons in different toposequence positions, i.e., seasonally flooded valley bottom, hydromorphic fringe and well-drained upland sites. Distinctive redoximorphic features, such as surface yellowish layers on mound structures from the fringe site, indicate possible alteration of iron sesquioxide forms in the mounds due to the transportation of soil from reductive (aquic subsoil) to oxidative (epigeal mound) environments by the nest-building activity of M. bellicosus. On the other hand, the iron-soluble content in the dithionite-citrate-bicarbonate (DCB) system (Fe_d) was generally higher in the mound structures than at the adjacent sub-surface (Ap2) horizon at each toposequence position, while there was less difference in the content of acid ammonium oxalate (AAO) extractable iron (Fe_o) as compared to Fe_d. As a consequence, the iron activity index (Fe_d/Fe_o ratio) was found for the most part to be lower in the mound structures than in the neighboring Ap2 horizon. In addition, the content of Fe_d, AAO-soluble Al (Al_o) and DCB-extractable Al (Al_d) was significantly correlated with clay content in these soils. These findings suggest that M. bellicosus preferentially collects clay particles, probably from the clay-rich subsoils, such as the argillic horizon, which has been formed by the co-migration of phyllosilicate minerals and relatively crystalline sesquioxides. The species then likely incorporates them into the mounds, which induces an increase in the Fe_d content relative to that of Fe_o, resulting in a decreased iron activity index in the mound structures.
机译:人们对土壤矿物学变化的关注比对白蚁筑巢活动引起的土壤物理,化学和生物学变化的关注要少。此外,对游离倍半氧化物的关注比对层状硅酸盐矿物的关注要少得多。在本研究中,我们进行了田间形态学观察和选择性溶解分析,以表征白蚁丘中游离倍半氧化物与不同坡度位置周围的脚趾(即季节性淹没的河谷底部,水形边缘和排水良好的高地)相比的特征。 。独特的氧化还原形态特征,例如边缘部位丘结构上的表面淡黄色层,表明由于土壤将巢中的还原性土壤(潮土)迁移到氧化环境(土丘),从而使土中的倍半氧化铁形态发生了变化。 bellicosus的建筑活动。另一方面,在每个堆垛位置,丘陵结构中的连二亚硫酸氢盐-碳酸氢盐-碳酸氢盐(DCB)系统(Fe_d)中的铁可溶物含量通常高于相邻次表层(Ap2)的水平。与Fe_d相比,酸性草酸铵(AAO)可萃取铁(Fe_o)的含量差异较小。结果,在土堆结构中发现的铁活度指数(Fe_d / Fe_o比)大部分低于相邻的Ap2水平线。另外,这些土壤中Fe_d,AAO可溶性Al(Al_o)和DCB可提取Al(Al_d)的含量与粘土含量显着相关。这些发现表明,贝氏梭状芽孢杆菌优先收集粘土颗粒,可能是从富含粘土的底土中收集的,例如由层状硅酸盐矿物和相对结晶的倍半氧化物共同迁移形成的泥质层。然后该物种可能将它们掺入土丘,这导致Fe_d含量相对于Fe_o含量增加,导致土丘结构中的铁活度指数降低。

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