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Agronomy & Crop Ecology

Rice yield and soil carbon dynamics over three years of applying rice husk charcoal to an Andosol paddy field

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Pages 176-182 | Received 30 Jul 2016, Accepted 23 Jan 2017, Published online: 17 Feb 2017

References

  • Agriculture, Forestry and Fisheries Research Council. (2014). Koukinousei sozai no genryou no kyoukyu kanousei nitsuite [Feasibility of supply of raw materials for high-functional materials]. Retrieved from Ministry of Agriculture, Forestry and Fisheries of Japan: http://www.s.affrc.go.jp/docs/ibunya/kakubunyakentoukai/pdf/2kai1-2.pdf***
  • Asai, H., Samson, B. K., Stephan, H. M., Songyikhangsuthor, K., Homma, K., Kiyono, Y., … Horie, T. (2009). Biochar amendment techniques for upland rice production in Northern Laos: 1. Soil physical properties, leaf SPAD and grain yield. Field Crops Research, 111, 81–84.10.1016/j.fcr.2008.10.008
  • Cooperband, L. (2002). The art and science of composting. A resource for farmers and compost producers. Retrieved from Center for Integrated Agricultural Systems, University of Wisconsin-Madison: http://www.cias.wisc.edu/wp-content/uploads/2008/07/artofcompost.pdf
  • Crombie, K., Mašek, O., Sohi, S. P., Brownsort, P., & Cross, A. (2013). The effect of pyrolysis conditions on biochar stability as determined by three methods. GCB Bioenergy, 5, 122–131.10.1111/gcbb.12030
  • FAO-UNESCO. (1990). Soil map of the world: Revised legend (World soil resources report 60). Rome: FAO.
  • Glaser, B., Lehmann, J., & Zech, W. (2002). Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal – A review. Biology and Fertility of Soils, 35, 219–230.10.1007/s00374-002-0466-4
  • Guntzer, F., Keller, C., & Meunier, J. D. (2012). Benefits of plant silicon for crops: A review. Agronomy for Sustainable Development, 32, 201–213.10.1007/s13593-011-0039-8
  • Haefele, S. M., Konboon, Y., Wongboon, W., Amarante, S., Maarifat, A. A., Pfeiffer, E. M., & Knoblauch, C. (2011). Effects and fate of biochar from rice residues in rice-based systems. Field Crops Research, 121, 430–440.10.1016/j.fcr.2011.01.014
  • Hardie, M., Clothier, B., Bound, S., Oliver, G., & Close, D. (2014). Does biochar influence soil physical properties and soil water availability? Plant and Soil, 376, 347–361.10.1007/s11104-013-1980-x
  • Hossain, K. A., Horiuchi, T., & Miyagawa, S. (1999). Effects of powdered rice chaff application on Si and N absorption, lodging resistance and yield in rice plants (Oryza sativa L.). Plant Production Science, 2, 159–164.10.1626/pps.2.159
  • Imaizumi, K., & Yoshida, S. (1958). Edaphological studies on silicon supplying power of paddy fields. Bulletin of the National Institute of Agricultural Sciences Series B, 8, 261–304**.
  • Knoblauch, C., Maarifat, A. A., Pfeiffer, E. M., & Haefele, S. M. (2011). Degradability of black carbon and its impact on trace gas fluxes and carbon turnover in paddy soils. Soil Biology and Biochemistry, 43, 1768–1778.10.1016/j.soilbio.2010.07.012
  • Koyama, S., Inazaki, F., Minamikawa, K., Kato, M., & Hayashi, H. (2015). Increase in soil carbon sequestration using rice husk charcoal without stimulating CH4 and N2O emissions in an Andosol paddy field in Japan. Soil Science and Plant Nutrition, 61, 873–884.10.1080/00380768.2015.1065511
  • Koyama, S., Katagiri, T., Minamikawa, K., Kato, M., & Hayashi, H. (2016). Effects of rice husk charcoal application on rice yield, methane emission, and soil carbon sequestration in andosol paddy soil. Japan Agricultural Research Quarterly: JARQ, 50, 319–327.10.6090/jarq.50.319
  • Lehmann, J., & Rondon, M. (2006). Biochar soil management on highly weathered soil in the humid tropics. In N. Uphoff, A. S. Ball, C. Palm, E. Fernandes, J. Pretty, H. Herren … J. Thies (Eds.), Biological approaches to sustainable soil systems (pp. 517–529). Boca Raton, FL: CRC Press10.1201/CRCBKSPE
  • Lehmann, J., Czimczik, C., Laird, D., & Sohi, S. (2009). Stability of biochar in soil. In J. Lehmann & S. Joseph (Eds.), Biochar for environmental management: Science and technology (pp. 183–206). London: Earthscan.
  • Lehmann, J., Rillig, M. C., Thies, J., Masiello, C. A., Hockaday, W. C., & Crowley, D. (2011). Biochar effects on soil biota – A review. Soil Biology and Biochemistry, 43, 1812–1836.10.1016/j.soilbio.2011.04.022
  • Ma, J. E., Nishimura, K., & Takahashi, E. (1989). Effect of silicon on the growth of rice plant at different growth stages. Soil Science and Plant Nutrition, 35, 347–356.10.1080/00380768.1989.10434768
  • Makabe-Sasaki, S., Kakuda, K., Sasaki, Y., & Ando, H. (2014). Effects of slag silicate fertilizer on silicon content of rice plants grown in paddy fields on the Shounai Plain, Yamagata, Japan. Soil Science and Plant Nutrition, 60, 708–721.10.1080/00380768.2014.936305
  • Ogawa, M., & Okimori, Y. (2010). Pioneering works in biochar research, Japan. Australian Journal of Soil Research, 48, 489–500.10.1071/SR10006
  • Ogawa, K., Takeuchi, Y., & Katayama, M. (1988). Biomass production and the amounts of absorbed inorganic elements by crops in arable lands in Hokkaido, and its evaluation. Research Bulletin of the Hokkaido National Agricultural Experiment Station, 149, 57–91*.
  • Saito, K., Yamamoto, A., Sa, T., & Saigusa, M. (2005). Rapid, micro-methods to estimate plant silicon content by dilute hydrofluoric acid extraction and spectrometric molybdenum method: I. Silicon in rice plants and molybdenum yellow method. Soil Science and Plant Nutrition, 51, 29–36.10.1111/j.1747-0765.2005.tb00003.x
  • Senoo, K., Kosaki, Y., Ogawa, M., Ishikawa, M., & Umezawa, Y. (2009). Calculation of CO2 discharge in the rice husk carbonization plant at construction and operation. Paper presented at the annual meeting of Kansai Branch, Japan Society of Civil Engineers, Kobe. Retrieved from http://library.jsce.or.jp/jsce/open/00064/2009/51-07-0005.pdf***.
  • Shackley, S., Carter, S., Knowles, T., Middelink, E., Haefele, S., Sohi, S., … Haszeldine, S. (2012). Sustainable gasification-biochar systems? A case-study of rice-husk gasification in Cambodia, Part I: Context, chemical properties, environmental and health and safety issues. Energy Policy, 42, 49–58.10.1016/j.enpol.2011.11.026
  • Takata, Y., Leon, A., Nakai, M., Obara, H., & Kohyama, K. (2013). Estimation of carbon and nitrogen content in surface horizon using “Soil Information Web Viewer”. Journal of Japanese Society of Soil Physics, 123, 117–124**.
  • Wang, J., Xiong, Z., & Kuzyakov, Y. (2015). Biochar stability in soil: Meta-analysis of decomposition and priming effects. Global Change Biology Bioenergy, 8, 512–523.
  • Yagi, K., & Minami, K. (1990). Effect of organic matter application on methane emission from some Japanese paddy field. Soil Science and Plant Nutrition, 36, 599–610.