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Tuesday, 9 August 2016

Influence of soil pedological properties on termite mound stability

Published Date
15 January 2016, Vol.262:4551doi:10.1016/j.geoderma.2015.08.020

Title 

Influence of soil pedological properties on termite mound stability

  • Author 
  • P. Jouquet a,b,,
  • N. Guilleux a,b
  • L. Caner c
  • S. Chintakunta b
  • M. Ameline b
  • R.R. Shanbhag d
  • aInstitute of Ecology and Environmental Sciences (UMR 242 iEES Paris), Institute of Research for Development (IRD), 32 av. H. Varagnat, 93143 Bondy, France
  • bIndo-French Cell for Water Science (IFCWS), Civil engineering Department, Indian Institute of Science, 560 012 Bangalore, Karnataka, India
  • cUniversité de Poitiers, IC2MP-HydrASA UMR 7285, B35, 5 rue Albert Turpain, TSA51106, 86073 Poitiers, France
  • dInstitute of Wood Science and Technology, Malleswaram, 560 003 Bangalore, Karnataka, India
  • Termite mound density is similar in ferralsol and in vertisol.
  • Stability of termite mound aggregates is reduced compared to control.
  • Degradation of termite nests by rain is more important in vertisol than ferralsol.
  • Termites impact differently soil dynamics depending on the environment.

Abstract

This study investigated the influence of soil properties on the density and shape of epigeous fungus-growing termite nests in a dry deciduous forest in Karnataka, India. In this environment, Odontotermes obesus produces cathedral shaped mounds. Their density, shape (height and volume) and soil physicochemical properties were analyzed in ferralsol and vertisol environments. No significant difference was observed in O. obesus mound density (n = 2.7 mound ha− 1 on average in the vertisol and ferralsol areas). This study also showed that O. obesus has a limited effect on soil physical properties. No differences in soil particle size, pH, or the C:N ratio and base saturation were measured whereas the C and N contents were reduced and CEC was higher in termite nest soils in both environments. Clay mineralogical composition was also measured, and showed the presence of higher amounts of smectite clays in termite nest soils, which thus explained the increasing CEC despite the reduced C and N content. However, the main difference was the shape of the termite mounds. The degradation of the nests created a hillock of eroded soil at the base of termite mounds in the vertisol while only a thin layer of eroded soil was observed in the ferralsol. The increased degradation of termite mounds in the vertisol is explained by the presence of smectites (2:1 swelling clays), which confer macroscopic swelling and shrinking characteristics to the soil. Soil shrinkage during the dry season leads to the formation of deep cracks in the termite mounds that allow rain to rapidly penetrate inside the mound wall and then breakdown unstable aggregates. In conclusion, it appears that despite a similar abundance, termite mound properties depend to a large extent on the soil properties of their environments.

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  • ⁎ 
    Corresponding author at: UMR 242, iEES-Paris, IRD, 32 av. H. Varagnat, 93143 Bondy, France.


For further details log on website :
http://www.sciencedirect.com/science/article/pii/S0016706115300495

Composting of cow dung and crop residues using termite mounds as bulking agent

Published Date
October 2014, Vol.169:731741doi:10.1016/j.biortech.2014.06.110

Title 

Composting of cow dung and crop residues using termite mounds as bulking agent

  • Author 
  • Tanmoy Karak a,b,,,
  • Indira Sonar b
  • Ranjit K. Paul c
  • Sampa Das d
  • R.K. Boruah b
  • Amrit K. Dutta b
  • Dilip K. Das a
  • aDepartment of Agricultural Chemistry and Soil Science, Faculty of Agriculture, Bidhan Chandra Krishi Viswavidyalaya, Mohanpur-741252, Nadia, West Bengal, India
  • bUpper Assam Advisory Centre, Tea Research Association, Dikom-786101, Assam, India
  • cIndian Agricultural Statistics Research Institute, New Delhi 110012, India
  • dDibrugarh Polytechnic, Lahowal, Dibrugarh-786010, Assam, India
  • Composting of crop residues with termite mound is composed and low cost technology.
  • Addition of termite mound as composting materials decrease composting time.
  • Termite mound addition improves the quality of finished compost.
  • Incorporation of termite mound significantly improved NPK in prepared compost.

Abstract

The present study reports the suitability of termite mounds as a bulking agent for composting with crop residues and cow dung in pit method. Use of 50 kg termite mound with the crop residues (stover of ground nut: 361.65 kg; soybean: 354.59 kg; potato: 357.67 kg and mustard: 373.19 kg) and cow dung (84.90 kg) formed a good quality compost within 70 days of composting having nitrogen, phosphorus and potassium as 20.19, 3.78 and 32.77 g kg−1 respectively with a bulk density of 0.85 g cm−3. Other physico-chemical and germination parameters of the compost were within Indian standard, which had been confirmed by the application of multivariate analysis of variance and multivariate contrast analysis. Principal component analysis was applied in order to gain insight into the characteristic variables. Four composting treatments formed two different groups when hierarchical cluster analysis was applied.

Graphical abstract


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For further details log on website :
http://www.sciencedirect.com/science/article/pii/S096085241400964X

Rare earth and trace element geochemistry of termite mounds in central and northeastern Namibia: Mechanisms for micro-nutrient accumulation

Published Date
15 October 2009, Vol.153(1):217230doi:10.1016/j.geoderma.2009.08.011

Title 

Rare earth and trace element geochemistry of termite mounds in central and northeastern Namibia: Mechanisms for micro-nutrient accumulation

  • Author 
  • Aboubakar Sako a,,
  • Anthony J. Mills b
  • Alakendra N. Roychoudhury c
  • aDepartment of Geological Sciences, University of Cape Town, Rondebosch 7700, South Africa
  • bDepartment of Soil Science, University of Stellenbosch, Private Bag X1, Matieland 7602, South Africa
  • cDepartment of Geology, Geography and Environmental Studies, University of Stellenbosch, Private Bag X1, Matieland 7602, South Africa

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For further details log on website :
http://www.sciencedirect.com/science/article/pii/S0016706109002596

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