<?xml version="1.0" encoding="UTF-8"?>
<doi_batch version="4.3.0" xmlns="http://www.crossref.org/doi_resources_schema/4.3.0" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.crossref.org/doi_resources_schema/4.3.0 http://www.crossref.org/schema/deposit/doi_resources4.3.0.xsd">
<head>
<doi_batch_id>e6b68fdc-ae5c-4e34-be6d-4fe62fbb71ed</doi_batch_id>
<depositor>
<name>beie</name>
<email_address>director@blueeyesintelligence.org</email_address>
</depositor>
</head>
<body>
<doi_citations>
<doi>10.35940/ijitee.D8442.0210421</doi>
<citation_list><citation key="ref0"><unstructured_citation>Vietnam geological and mineral map, scale 1/200000, paper An Bien - Soc Trang, Ca Mau - Bac Lieu, Long Xuyen</unstructured_citation></citation><citation key="ref1"><unstructured_citation>ASTM D2166: Standard Test Method for Unconfined Compressive Strength of Cohesive Soil</unstructured_citation></citation><citation key="ref2"><unstructured_citation>Hossein Moayedi, Bujang B. K. Huat, Fatemeh Moayedi, Afshin Asadi, Alireza Parsaie, Effect of Sodium Silicate on Unconfined Compressive Strength of Soft Clay, EJGE Vol 16 (2011). Bund.C</unstructured_citation></citation><citation key="ref3"><unstructured_citation>Fang HY, Daniels JL (2006). Introductory Geotechnical Engineering. An environmental perspective. Taylor and Francis, pp. 75-114.</unstructured_citation></citation><citation key="ref4"><journal_title>Applied Clay Science 15(1-2)</journal_title><author>Komori</author><first_page>241</first_page><cYear>1999</cYear><doi>10.1016/S0169-1317(99)00014-9</doi><article_title>Intercalation of alkylamines and water into kaolinite with methanol kaolinite as an intermediate</article_title><unstructured_citation>Komori, Y., Sugahara, Y., and Kuroda, K. (1999). Intercalation of alkylamines and water into kaolinite with methanol kaolinite as an intermediate. Applied Clay Science, 15(1-2), 241-252.</unstructured_citation></citation><citation key="ref5"><journal_title>Engineering Geology 117(1-2)</journal_title><author>Liu</author><first_page>114</first_page><cYear>2011</cYear><doi>10.1016/j.enggeo.2010.10.011</doi><article_title>Research on the stabilization treatment of clay slope topsoil by organic polymer soil stabilizer</article_title><unstructured_citation>Liu, J., Shi, B., Jiang, H., Huang, H., Wang, G., and Kamai, T. (2011). Research on the stabilization treatment of clay slope topsoil by organic polymer soil stabilizer. Engineering Geology, 117(1-2), 114-120.</unstructured_citation></citation><citation key="ref6"><unstructured_citation>Bujang B.K. Huat, Sina Kazemian &amp; Wong Lit Kuang, Effect of Cement-Sodium Silicate Grout and Kaolinite on Undrained Shear Strength of Reinforced Peat, EJGE Vol. 16 [2011], Bund. K</unstructured_citation></citation><citation key="ref7"><doi>10.1007/s13369-012-0315-1</doi><unstructured_citation>Sina Kazemian, Arun Prasad, Bujang B. K. Huat, Vahed Ghiasi, Soheil Ghareh, Effects of Cement-Sodium Silicate System Grout on Tropical Organic Soils, Arab J Sci Eng (2012) 37:2137-2148</unstructured_citation></citation><citation key="ref8"><unstructured_citation>Claude H. Hurley, Consulting Engineer; and Thomas H. Thornburn, SODIUM SILICATE STABILIZATION OF SOILS: A REVIEW OF THE LITERATURE, https://trid.trb.org/view/12188</unstructured_citation></citation><citation key="ref9"><unstructured_citation>Sina Kazemian, Bujang B. K. Huat, Arun Prasad and Maassoumeh Barghchi , Effect of peat media on stabilization of peat by traditional binders, International Journal of the Physical Sciences Vol. 6(3), pp. 476-481, 4 February, 2011</unstructured_citation></citation><citation key="ref10"><unstructured_citation>Available online at http://www.academicjournals.org/IJPS , DOI: 10.5897/IJPS10.478, ISSN 1992 - 1950 ©2011 Academic Journals</unstructured_citation></citation><citation key="ref11"><doi>10.1007/s10064-005-0030-1</doi><unstructured_citation>H. Chen, and Q. Wang, &quot;The behaviour of organic matter in the process of soft soil stabilization using cement,&quot; Bulletin Eng. Geol. Env., vol. 65, no. 4, pp. 445-448, 2006.</unstructured_citation></citation><citation key="ref12"><unstructured_citation>Mohd Yunus. N. Z, Wanatowski. D, and Stace. L. R (2012), &quot;Effects of humic acid and salt additives on the behaviour of lime-stabilised organic clay&quot;. Second International Conference on Geotechnique, Construction Materials and Environment, Kuala Lumpur, Malaysia, Nov. 14-16, 2012, ISBN: 978-4-9905958-1-4 C3051.</unstructured_citation></citation><citation key="ref13"><doi>10.3844/ajassp.2005.1113.1120</doi><unstructured_citation>B. Huat, S. Maail, and T. Ahmed Mohamed, &quot;Effect of chemical admixtures on the engineering properties of tropical peat soils,&quot; American J. App. Sciences, vol. 2, no. 7, pp. 1113-1120, 2005.</unstructured_citation></citation><citation key="ref14"><doi>10.1061/(ASCE)0887-3828(2009)23:2(100)</doi><unstructured_citation>D.-H. Chen, Z. Si, and M. Saribudak, &quot;Roadway Heaving Caused by High Organic Matter,&quot; J. Perf. Const. Facilities, vol. 23, no. 2, pp. 100-</unstructured_citation></citation><citation key="ref15"><unstructured_citation>108, 2009.</unstructured_citation></citation><citation key="ref16"><doi>10.1139/T09-045</doi><unstructured_citation>W. Zhu, C. F. Chiu, C. L. Zhang, and K. L. Zeng, (2009). &quot;Effect of humic acid on the behaviour of solidified dredged material,&quot; Can. Geot. J., vol. 46, no. 9, pp. 1093-1099, 2009.</unstructured_citation></citation></citation_list>
</doi_citations>
</body>
</doi_batch>
