登录注册
Quick Links : Mindat手册The Rock H. Currier Digital LibraryMindat Newsletter [Free Download]
主页关于 MindatMindat手册Mindat的历史版权Who We Are联系我们于 Mindat.org刊登广告
捐赠给 MindatCorporate Sponsorship赞助板页已赞助的板页在 Mindat刊登 广告的广告商于 Mindat.org刊登广告
Learning CenterWhat is a mineral?The most common minerals on earthInformation for EducatorsMindat ArticlesThe ElementsThe Rock H. Currier Digital LibraryGeologic Time
搜索矿物的性质搜索矿物的化学Advanced Locality Search随意显示任何一 种矿物Random Locality使用minID搜索邻近产地Search Articles搜索词汇表更多搜索选项
搜索:
矿物名称:
地区产地名称:
关键字:
 
Mindat手册添加新照片Rate Photos产区编辑报告Coordinate Completion Report添加词汇表项目
Mining Companies统计会员列表Mineral MuseumsClubs & Organizations矿物展及活动The Mindat目录表设备设置The Mineral Quiz
照片搜索Photo GalleriesSearch by Color今天最新的照片昨天最新的照片用户照片相集过去每日精选照片相集Photography

ZENG, ZHAOTIAN, LU, HAIBO, ZHAO, YANLIN, QIN, YINGHONG (2020) ANALYSIS OF THE MINERAL COMPOSITIONS OF SWELL-SHRINK CLAYS FROM GUANGXI PROVINCE, CHINA. Clays and Clay Minerals, 68 (2). 161-174 doi:10.1007/s42860-019-00056-7

Advanced
   -   Only viewable:
Reference TypeJournal (article/letter/editorial)
TitleANALYSIS OF THE MINERAL COMPOSITIONS OF SWELL-SHRINK CLAYS FROM GUANGXI PROVINCE, CHINA
JournalClays and Clay Minerals
AuthorsZENG, ZHAOTIANAuthor
LU, HAIBOAuthor
ZHAO, YANLINAuthor
QIN, YINGHONGAuthor
Year2020 (April)Volume68
Page(s)161-174Issue2
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s42860-019-00056-7Search in ResearchGate
Mindat Ref. ID4570057Long-form Identifiermindat:1:5:4570057:6
GUIDfb0ff3f1-45ed-4eff-ae25-ecc897a73628
Full ReferenceZENG, ZHAOTIAN, LU, HAIBO, ZHAO, YANLIN, QIN, YINGHONG (2020) ANALYSIS OF THE MINERAL COMPOSITIONS OF SWELL-SHRINK CLAYS FROM GUANGXI PROVINCE, CHINA. Clays and Clay Minerals, 68 (2). 161-174 doi:10.1007/s42860-019-00056-7
Plain TextZENG, ZHAOTIAN, LU, HAIBO, ZHAO, YANLIN, QIN, YINGHONG (2020) ANALYSIS OF THE MINERAL COMPOSITIONS OF SWELL-SHRINK CLAYS FROM GUANGXI PROVINCE, CHINA. Clays and Clay Minerals, 68 (2). 161-174 doi:10.1007/s42860-019-00056-7
In(2020, April) Clays and Clay Minerals Vol. 68 (2) Springer Science and Business Media LLC

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Not Yet Imported: Cement and Concrete Research - journal-article : 10.1016/0008-8846(82)90087-4

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 12597
ASTM D 7928-2016 (2016). Standard Test Method for Particle-Size Distribution (Gradation) of Fine-Grained Soils Using the Sedimentation (Hydrometer) Analysis. US-ASTM.
Dai, S. B., Huang, J., & Xia, L. (2005). Analysis of mineral composition and chemical components of expansive soil in North Hubei. Rock and Mechanics, 26, 300–303.
Derjaguin, B.V. & Landau L. (1941). Theory of the stability of strongly charged lyophobic sols and of the adhesion of strongly charged particles in solutions of electrolytes. Acta Physico-Chimica URSS, 14, 633.
DL/T 5357-2006 (2006). Code for Chemical Analysis Test of Rock and Soil for Hydropower and Water Conservancy Engineering. National Development and Reform Commission (NDRC) of the People's Republic of China, Beijing.
Feng, Y. Y., Zhang, Y. S., Qu, Y. X., & Huang, C. B. (2001). Mechanism of embankment defects caused by expansive soils in Baise Basin, Nankun railway. Chinese Journal of Geotechnical Engineering, 23, 463–467.
GB/T 6730.67-2009. (2009). Iron Ores-Determination of Arsenic Content-Hydride Generation Atomic Absorption Spectrometric Method. Beijing: China National Standardization Management Committee.
Huang, B. L. (1987). Mineral Identification Manual of Differential Thermal Analysis. Beijing: Science Press.
JY/T 016-1996. (1996). General Rules for Wavelength Dispersive X-ray Fluorescence Spectrometry. Beijing: National education committee of the People's Republic of China.
Kong, L. W., Luo, H. X., & Yuan, J. X. (1995). Preliminary study on the effective cementation characteristics of the red clay. Chinese Journal of Geotechnical Engineering, 17, 42–47.
Li, S. L., Shi, B., & Du, Y. J. (1997). Study on the engineering geology of expansive soil in China. Ziran Zazhi, 19, 82–86.
Liao, S. W. (1984). Expansive Soil and Railway Engineering. Beijing: China Railway Press.
Lu, H. B., Zeng, Z. T., Yin, G. Q., & Zhao, Y. L. (2012). Analysis of mineral composition of red clay in Guangxi. Journal of Engineering Geology, 20, 651–656.
Lu, H. B., Zeng, Z. T., Ge, R. D., & Zhao, Y. L. (2013a). Experimental study of tensile strength of swell-shrink soils. Rock and Soil Mechanics, 34, 615–620.
Lu, H. B., Zeng, Z. T., Zhao, Y. L., Ge, R. D., Chen, C. Y., & Wei, C. F. (2013b). Function fitting on strength attenuation curve of swell-shrinking soils. Chinese Journal of Geotechnical Engineering, 35, 157–162.
Luo, H. X. (1983). The effect of amorphous materials on the mechanical property and structure of soil. Rock and Mechanics, 4, 69–74.
Mitchell, J. K., & Soga, K. (2005). Fundamentals of Soil Behavior (3rd ed.). Hoboken, New Jersey, USA: John Wiley & Sons.
Moore, D. M., & Reynolds, R. C. (1997). X-Ray Diffraction and the Identification and Analysis of Clay Minerals (2nd ed.). New York: Oxford University Press.
Not Yet Imported: Desalination - journal-article : 10.1016/j.desal.2006.03.533

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 17531
Qu, Y. X., Zhang, Y. S., Feng, Y. Y., & Zhang, J. G. (2002). Quantitative study on the clay mineral composition of expansive soils in China. Journal of Engineering Geology, 10, 416–422.
Shao, W. M., Tan, L. R., Zhang, M. Y., & Hua, L. L. (1994). The relation between mineral composition and swelling character of swelling soil. Rock and Mechanics, 15, 11–19.
SL 237-1999 (1999). Specification of Soil Test. Ministry of Water Resources of the People's Republic of China, Beijing.
Soil Mechanics teaching group of Department of Civil Engineering in Guangxi University (1977). A preliminary study on the evaluation index of expansion and contraction. Journal of Guangxi University (Natural Science Edition), 1, 21–38.
Sparks, D. L. (1986). Soil Physical Chemistry. Boca Raton, Florida, USA: CRC Press.
Sun, D. A., Liu, W. J., & Lu, H. B. (2014). Soil-water characteristic curve of Guilin lateritic clay. Rock and Soil Mechanics, 35, 3345–3351.
Tan, L. R. (1984). Quantitative analysis of clay minerals - A method study. Acta Mineralogical Sinica, 4, 71–77.
Tan, L. R. (1997). Study on mechanism of expansion and shrinkage of the montmorillonite crystal. Rock and Mechanics, 18, 13–18.
Tan, L. R., & Kong, L. W. (2001). Study on the swelling and shrinkage of montmorillonite crystal and its relationship with matrix suction. Science in China (Series D), 31, 119–126.
Tan, L. R., & Kong, L. W. (2006). Special Geotechnical Engineering Soil Science. Beijing: Science Press.
Van Olphen, H. (1977). An Introduction to Clay Colloid Chemistry. New York: Wiley chapter 7.
Verwey, E. J. W., & Overbeek, J. T. G. (1948). Theory of the Stability of Lyophobic Colloid. Amsterdam: Elsevier.
Wang, J. Z. (1983). The effects of free iron oxides on the engineering properties of red clay. Chinese Journal of Geotechnical Engineering, 5, 147–156.
Ye, Q. Y. (2017). A brief discussion on the differences between red clay and expansive soil in Guangxi province. Road Engineering, 2, 48–50.
Zhang, R. K., & Fan, G. (2003). Quantitative analytic method and experiments of X-ray diffraction period of clay minerals. Uranium Geology, 19, 180–185.
Zhu, Z.C., Li, J.W., Lin, F.L., Chen F., & Sun D.A. (2019). Experimental research on desorption curves of soil samples under different mineral compositions. Chinese Journal of Geotechnical Engineering, http://kns.cnki.net/kcms/detail/32.1124.TU.20190906.1031.020.html).


See Also

These are possibly similar items as determined by title/reference text matching only.

 
and/or  
Mindat Discussions Facebook Logo Instagram Logo Discord Logo
版权所有© mindat.org1993年至2024年,除了规定的地方。 Mindat.org全赖于全球数千个以上成员和支持者们的参与。
隐私政策 - 条款和条款细则 - 联络我们 - Report a bug/vulnerability Current server date and time: 2024.5.4 12:14:53
Go to top of page