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| JunHong Zhang. Research on the succession of Artemisia ordosica community in Mu Us sandy land. Advanced Materials Research, 989-994 (2014) pp 975-977. |
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Accession number: 20143418083047 Title: Research on the succession of Artemisia ordosica community in Mu Us sandy land Authors: Zhang, Jun Hong1 Email author zhangjunhong2001@163.com Author affiliation: 1 Chongqing Water Resources and Electric Engineering College, Chongqing Institute of Water Resources and Science, Chongqing, 402160, China Corresponding author: Zhang, J. H. (zhangjunhong2001@163.com) Source title: Advanced Materials Research Abbreviated source title: Adv. Mater. Res. Volume: 989-994 Monograph title: Materials Science, Computer and Information Technology Issue date: 2014 Publication year: 2014 Pages: 975-977 Language: English ISSN: 10226680 E-ISSN: 16628985 ISBN-13: 9783038351733 Document type: Conference article (CA) Conference name: 4th International Conference on Materials Science and Information Technology, MSIT 2014 Conference date: June 14, 2014 - June 15, 2014 Conference location: Tianjin, China Conference code: 106909 Sponsor: Computer Science and Electronic Technology; Inst. of Mechatronics Eng., Tianjin Univ. of Technol. and Educ.; Trans Tech Publications inc. Publisher: Trans Tech Publications Ltd Abstract: Mu Us sandy land is an important ecological barrier in Northern China. Artemisia ordosica is the dominant species in Mu Us sandy land, the development of biological soil crust in Artemisia ordosica community seriously impediment precipitations, which result in the deterioration of soil water within 40cm, where most of Artemisia ordosica roots distribution. That led to the recession of Artemisia ordosica in the fixed sand dunes in a long time. © (2014) Trans Tech Publications, Switzerland. Number of references: 6 Main heading: Soil moisture Controlled terms: Materials - Materials science Uncontrolled terms: Artemisia ordosica - Biological soil crusts - Dominant species - Northern China - Sand dunes - Soil water Classification code: 483.1 Soils and Soil Mechanics - 951 Materials Science DOI: 10.4028/www.scientific.net/AMR.989-994.975 Database: Compendex Compilation and indexing terms, © 2014 Elsevier Inc. |

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