Literature DB >> 25089696

Carbon sequestration by Miscanthus energy crops plantations in a broad range semi-arid marginal land in China.

Jia Mi1, Wei Liu2, Wenhui Yang2, Juan Yan3, Jianqiang Li3, Tao Sang4.   

Abstract

Carbon sequestration is an essential ecosystem service that second-generation energy crops can provide. To evaluate the ability of carbon sequestration of Miscanthus energy crops in the Loess Plateau of China, the yield and soil organic carbon (SOC) changes were measured for three Miscanthus species in the experimental field in Qingyang of the Gansu Province (QG). With the highest yield of the three species, Miscanthus lutarioriparius contributed to the largest increase of SOC, 0.57 t ha(-1)yr(-1), comparing to the field left unplanted. Through modeling M. lutarioriparius yield across the Loess Plateau, an average increase of SOC was estimated at 0.46 t ha(-1)yr(-1) for the entire region. Based on the measurements of SOC mineralization under various temperatures and moistures for soil samples taken from QG, a model was developed for estimating SOC mineralization rates across the Loess Plateau and resulted in an average of 1.11 t ha(-1)yr(-1). Combining the estimates from these models, the average of net carbon sequestration was calculated at a rate of 9.13 t ha(-1)yr(-1) in the Loess Plateau. These results suggested that the domestication and production of M. lutarioriparius hold a great potential for carbon sequestration and soil restoration in this heavily eroded region.
Copyright © 2014 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Carbon sequestration; Energy crop; Loess Plateau; Marginal lands; Miscanthus lutarioriparius; Soil organic carbon

Mesh:

Substances:

Year:  2014        PMID: 25089696     DOI: 10.1016/j.scitotenv.2014.07.047

Source DB:  PubMed          Journal:  Sci Total Environ        ISSN: 0048-9697            Impact factor:   7.963


  10 in total

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2.  Sustainable bioenergy production with little carbon debt in the Loess Plateau of China.

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4.  The Coordination of Gene Expression within Photosynthesis Pathway for Acclimation of C4 Energy Crop Miscanthus lutarioriparius.

Authors:  Shilai Xing; Lifang Kang; Qin Xu; Yangyang Fan; Wei Liu; Caiyun Zhu; Zhihong Song; Qian Wang; Juan Yan; Jianqiang Li; Tao Sang
Journal:  Front Plant Sci       Date:  2016-02-09       Impact factor: 5.753

5.  Transcriptome analysis of genes involved in secondary cell wall biosynthesis in developing internodes of Miscanthus lutarioriparius.

Authors:  Ruibo Hu; Yan Xu; Changjiang Yu; Kang He; Qi Tang; Chunlin Jia; Guo He; Xiaoyu Wang; Yingzhen Kong; Gongke Zhou
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Authors:  Yasir Iqbal; Andreas Kiesel; Moritz Wagner; Christopher Nunn; Olena Kalinina; Astley F S J Hastings; John C Clifton-Brown; Iris Lewandowski
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7.  Systematic comparison of lncRNAs with protein coding mRNAs in population expression and their response to environmental change.

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8.  De novo Transcriptome Analysis of Miscanthus lutarioriparius Identifies Candidate Genes in Rhizome Development.

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9.  N2O and CH4 emission from Miscanthus energy crop fields in the infertile Loess Plateau of China.

Authors:  Jia Mi; Wei Liu; Xuhong Zhao; Lifang Kang; Cong Lin; Juan Yan; Tao Sang
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10.  Coexpression network revealing the plasticity and robustness of population transcriptome during the initial stage of domesticating energy crop Miscanthus lutarioriparius.

Authors:  Shilai Xing; Chengcheng Tao; Zhihong Song; Wei Liu; Juan Yan; Lifang Kang; Cong Lin; Tao Sang
Journal:  Plant Mol Biol       Date:  2018-07-13       Impact factor: 4.076

  10 in total

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