
Journal of Chongqing Jiaotong University(Natural Science) ›› 2020, Vol. 39 ›› Issue (12): 111-116.DOI: 10.3969/j.issn.1674-0696.2020.12.18
• Port & Waterway · Hydraulic & Hydroelectric · Resources & Environment • Previous Articles Next Articles
JIANG Chaohua1,3,LI Zhicheng1,3,FANG Jiamin2,LI Han1,3
Received:2020-04-26
Revised:2020-10-16
Online:2020-12-18
Published:2020-12-18
Supported by:江朝华1,3,李智成1,3,方佳敏2,李函1,3
作者简介:江朝华(1972—),女,广西合山人,副教授,博士,主要从事港口航道方面的研究。E-mail:chaohuajiang@hhu.edu.cn
通信作者:李智成(1996—),男,海南澄迈人,硕士研究生,主要从事海港新材料的研究。E-mail:1486589849@qq.com
基金资助:CLC Number:
JIANG Chaohua1,3,LI Zhicheng1,3,FANG Jiamin2,LI Han1,3. Solidification Utilization of Waste Dredge Sand and Soil[J]. Journal of Chongqing Jiaotong University(Natural Science), 2020, 39(12): 111-116.
江朝华1,3,李智成1,3,方佳敏2,李函1,3. 废弃疏浚沙土固化利用研究[J]. 重庆交通大学学报(自然科学版), 2020, 39(12): 111-116.
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URL: http://xbzk.cqjtu.edu.cn/EN/10.3969/j.issn.1674-0696.2020.12.18
| [1] 张和庆,谢健,朱伟,等.疏浚物倾倒现状与转化为再生资源的研究——中国海洋倾废面临的困难和对策[J].海洋通报,2004,23(6):54-60. ZHANG Heqing, XIE Jian, ZHU Wei, et al. Present situation of dredged materials dumping and the study of transforming dredged mud into regenerative resources: Difficulties of refuses dumping in China seas and countermeasures to deal with these problems[J]. Marine Science Bulletin, 2004, 23(6): 54-60. [2] 陈云飞,潘金霞,赵有明.深圳港铜鼓航道工程设计选线回顾与探讨[J].水运工程,2006(10):145-150. CHEN Yunfei, PAN Jinxia, ZHAO Youming. Review and discussion about route selection for Tonggu channel engineering design of Shenzhen port [J]. Port & Waterway Engineering, 2006 (10): 145-150. [3] 陈玮琳,季晓檬.疏浚淤泥资源化利用技术综述[J].中国建筑科技,2013(1):50-53. CHEN Weilin, JI Xiaomeng. Overview on the resource utilization techniques of dredged mud[J]. China Building Materials Science & Technology, 2013(1): 50-53. [4] 张春雷,管非凡,李磊,等.中国疏浚淤泥的处理处置及资源化利用进展[J].环境工程,2014,32(12):95-99. ZHANG Chunlei, GUAN Feifan, LI Lei, et al. The progress in the reutilization treatment and disposal of dredged sediments in China[J]. Environmental Engineering, 2014,32(12): 95-99. [5] 姬凤玲,吕擎峰,马殿光.沿海地区废弃疏浚淤泥的资源化利用技术[J].安徽农业科学,2007,35(15):4593-4595. JI Fengling, L Qingfeng, MA Dianguang. Study on the utilization techniques of dredged mud as resource in coastal areas[J]. Journal of Anhui Agricultural Sciences, 2007, 35(15):4593-4595. [6] 李正昊,季晓檬.浅述疏浚淤泥的固化技术[J].中国建筑科技,2012(3):15-18. LI Zhenghao, JI Xiaomeng. Brief introduction of technologies about solidification of dredged silt[J]. China Building Materials Science & Technology, 2012(3): 15 -18. [7] 张伟,刘晓强,李顺群,等.天津临港疏浚土固化特性及强度预测分析[J].水利水电技术,2020,51(4):20-26. ZHANG Wei, LIU Xiaoqiang, LI Shunqun,et al. Analysis on prediction of solidifying characteristics and strength of dredged soil in port-vicinity area of Tianjin[J ]. Water Resources and Hydropower Engineering, 2020, 51(4): 20-26. [8] 杭天飞,唐斌斌.河道疏浚淤泥固化技术研究[J].水利科技与经济,2018,24(4):43-46. HANG Tianfei, TANG Binbin. Study on dredging technology of dredged sediment[J]. Water Conservancy Science and Technology and Economy, 2018, 24(4): 43-46. [9] 丁慧,孙秀丽,刘文化,等.固化疏浚淤泥作路基材料工程特性试验研究[J].土木建筑与环境工程,2017,39(2):11-18. DING Hui, SUN Xiuli, LIU Wenhua, et al. Experimental analysis of engineering properties of solidified sludge as roadbed filling material[J]. Journal of Civil, Architectural & Environmental Engineering, 2017, 39 (2): 11-18. [10] 彭以舟,邹胜勇,陈晓波,等.工业废渣联合固化疏浚淤泥填筑路基施工技术[J].建筑技术,2017,48(3):332-335. PENG Yizhou, ZOU Shengyong, CHEN Xiaobo, et al. Construction technology of highway subgrades for solidified dredged sludge with industrial wastes[J]. Architecture Technology, 2017, 48(3): 332-335. [11] 何俊,石小康,栗志翔.水玻璃-碱渣-矿渣固化高含水率淤泥的强度性质[J].工程地质学报,2019,27(4):729-736. HE Jun, SHI Xiaokang, LI Zhixiang. Strength properties of dredged silt at high water content treated with sodium silicate, soda residue and ground granulated blast furnace slag[J]. Journal of Engineering Geology, 2019, 27(4): 729-736. [12] 崔勇涛,刘文白.固化剂固化疏浚土的渗透性与微观机理研究[J].长江科学院院报,2017,34(5):109-114. CUI Yongtao, LIU Wenbai. Permeability and micro-mechanism of dredged mud solidified with curing agent[J].Journal of Yangtze River Scientific Research Institute, 2017, 34(5): 109-114. [13] 周瑆玥,朱书景.城市内河疏浚淤泥固化试验研究[C/OL]// 2019中国环境科学学会科学技术年会论文集:第二卷.西安:中国环境科学学会,2019:1103-1108[2020-01-10]. https://xueshu.baidu.com/usercenter/paper/Show?paperid=1n0u0rg0vr7 a0vr02k520tk0py284640. ZHOU Xingyue, ZHU Shujing. Experimental study on dredging silt solidification in urban inland rivers[C/OL]// Proceedings of the Science and Technology Annual Meeting of the Chinese Society for Env-ironmental Science: Ⅱ.Xian: Chinese Society for Environmental Sciences, 2019: 1103-1108. [2020-01-10]. https://xueshu.baidu.com/usercenter/paper/show?paperid= 1n0u0rg0vr7a0vr02k520tk0py284640. [14] 陈捷,张健.疏浚淤泥免烧砖基本力学特性试验研究[C/OL]//自动化集装箱码头应用技术交流会论文集.厦门:中国土木工程学会,2015:205-209[2020-01-12]. https://xueshu.baidu.com/usercenter/paper/show?paperid=3842bb98d67d0c28e3564db7f9 3734f5&site=xueshu_se. CHEN Jie, ZHANG Jian. Technology of brick-making with harbor dredging silt [C/OL]//Proceedings of the Technical Exchange Meeting on Application of Automated Container Terminals.Xiamen: China Society of Civil Engineering, 2015: 205-209 [2020-01-12]. https://xueshu.baidu.com/usercenter/paper/show? paperid=3842bb98d67d0c28e3564db7f93734f5&site=xueshu_se. [15] 周旻,侯浩波,张大捷,等.湖泊底泥改性固化的强度特性和微观结构[J].岩土力学,2008,29(4):1010-1014. ZHOU Min, HOU Haobo, ZHANG Dajie, et al. Strength characteristics and microstructure of solidified lake sludge[J]. Rock and Soil Mechanics, 2008, 29(4): 1010- 1014. [16] 任志,贺晓东,赵卫民,等.疏浚土混凝土路面砖配比研究[J].新型建筑材料,2020,47(6):141-143. REN Zhi, HE Xiaodong, ZHAO Weimin, et al. Research on mixing ratio of dredged soil concrete paving units[J]. New Building Materials, 2020, 47(6): 141-143. [17] 田涛,张乐跃,李玉赛,等.疏浚底泥湿法制备免烧骨料砖及其性能分析[J].天津科技大学学报,2019,34(5):63-67,80. TIAN Tao, ZHANG Yueyue, LI Yusai, et al. Performance analysis of non-sintered aggregate bricks prepared with dredged sediment through wet process[J]. Journal of Tianjin University of Science & Technology, 2019, 34(5): 63-67, 80. [18] 马丽清.利用海洋疏浚泥制备淤泥固化砖的研究[J].福建建材,2020(1):30-31. MA Liqing. Study on the preparation of silt-solidified bricks from marine dredged mud[J]. Fujian Building Materials, 2020(1): 30-31. [19] 邵玉芳,龚晓南,郑尔康,等.疏浚淤泥的固化试验研究[J].农业工程学报,2007,23(9):191-194. SHAO Yufang, GONG Xiaonan, ZHENG Erkang, et al. Experimental study on stabilization of dredged silts[J]. Transactions of the Chinese Society of Agricultural Engineering, 2007, 23(9): 191-194. [20] 邵玉芳,何超,楼庆庆.西湖疏浚淤泥的固化试验[J].江苏大学报(自然科学版),2007,28(5):442-445. SHAO Yufang, HE Chao, LOU Qingqing. Stabilization of dredged silt from West Lake[J]. Journal of Jiangsu University (Natural Science Edition), 2007, 28(5): 442- 445. [21] 张春雷,朱伟,李磊,等.湖泊疏浚泥固化筑堤现场试验研究[J].中国港湾建设,2007(1):27-29. ZHANG Chunlei, ZHU Wei, LI Lei, et al. Field test of dike construction with solidified lake dredged material[J]. China Harbor Engineering, 2007(1): 27-29. [22] 肖葳,陈永辉,张婉璐,等.航道疏浚土路基填料化处理应用研究[J].施工技术,2016,45(增刊1):356-359. XIAO Wei, CHEN Yonghui, ZHANG Wanlu, et al. Research on the improvement of waterway dredged soil as subgrade filling[J]. Construction Technology, 2016,45(Sup 1): 356-359. [23] 路洋,乐绍林,陈伟,等.疏浚泥固化处理填海筑岛现场试验研究[J].水道港口,2019,40(6):730-734. LU Yang, YUE Shaolin, CHEN Wei, et al. Field test study on filling artificial island by the solidification of dredged soil[J].Journal of Waterway and Harbor, 2019,40(6): 730-734. [24] MYMRIN V, PAN R C Y, ALEKSEEV K, et al. Overburden soil and marine dredging sludge utilization for production of new composites as highly efficient environmental management[J]. Journal of Environmental Management, 2019, 236: 206-213. [25] SHINSHA H, KUMAGAI T. Material properties of solidified soil grains produced from dredged marine clay[J]. Soils and Foundations, 2018, 58(3): 678-688. [26] BROUWERS H J H, AUGUSTIJN D C M, KRIKKE B, et al. Use of cement and quicklime to accelerate ripening and immobilize contaminated dredging sludge [J]. Journal of Hazardous Materials, 2007, 145(1): 8-16. [27] 寺師昌明.石灰セメント系安定処理土の基本的特性に関する研究(第2報)[J].港湾技术研究所报告,1980,19(1):33-62. SHISHI CHANGMING. Studies on the basic properties of stabilized soils treated with lime and cement: Ⅱ[J]. Report of the Harbor Institute of Technology, 1980,19 (1): 33-62. [28] 徐敏,陆培东.围海工程对邻近港区泥沙回淤的影响研究——以漳州港招商局中银码头区为例[J].海洋工程,2003,21(1):47-52. XU Min, LU Peidong. Effect of coastal reclamation on siltation in nearby Harbors: Zhongyin Dock of Zhangzhou Port taken as an example [J]. Ocean Engineering, 2003, 21(1): 47-52. [29] 薛世浩,汪竹茂.利用淤泥制砖的半工业性试验[J].砖瓦,1999(3): 26-27. XUE Shihao, WANG Zhumao. Preproduction experiments on the utilization of mud in brick-making [J]. Brick-tile, 1999(3):26-27. [30] 谢丹,黄之初,陈袁魁.利用淤泥制备水泥熟料的实验研究[J].新世纪水泥导报,2006(2):16-18,6. XIE Dan, HUANG Zhichu, CHEN Yuankui. Experimental study on cement clinker production with ooze [J]. Cement Guide for New Epoch, 2006(2): 16-18, 6. [31] 谢健,林鑫城,石萍,等.利用海洋疏浚泥生产轻质陶粒的研究[J].湛江海洋大学学报,2004,24(6):32-36. XIE Jian, LIN Xincheng, SHI Ping, et al. Study on using sea dredged mud to produce light weight aggregate[J]. Journal of Zhanjiang Ocean University, 2004, 24(6): 32-36. [32] HAMER K, KARIUS V. Brick production with dredged Harbor sediments: An industrial-scale experiment[J]. Waste Management, 2002, 22(5): 521-530. [33] 王智宇,翁晶晶,屠浩驰,等. 河道淤泥生产烧结砖的基础研究[J].新型建筑材料,2010,37(6):24-26. WANG Zhiyu, WENG Jingjing, TU Haochi, et al. Basic research on manufacturing sintered bricks from river silt [J]. New Building Materials, 2010, 37(6): 24-26. [34] 周超群,曾令可,程小苏,等.疏浚泥透水砖制备及性能研究[J].陶瓷,2017(2):12-16. ZHOU Chaoqun, ZENG Lingke, CHENG Xiaosu, et al. Dredged mud permeable brick preparation and performance of the research[J]. Ceramics, 2017(2): 12-16. [35] 钱耀丽,王琼,陈宁.疏浚淤砂蒸压灰砂砖的研制[J].新型建筑材料,2017,44(2):39-43. QIAN Yaoli, WANG Qiong, CHEN Ning. Development of autoclaved sand-lime bricks with dredged sand[J]. New Building Materials, 2017, 44(2): 39-43. [36] 张云升,倪紫威,李广燕.免烧淤泥砖的力学性能与微观结构[J].建筑材料学报,2013,16(2):298-305. ZHANG Yunsheng, NI Ziwei, LI Guangyan. Mechanical properties and microstructure of non-calcination sludge brick[J]. Journal of Building Materials, 2013, 16(2): 298-305. [37] MEZENCEVOVA A, YEBOAH N N, BURNS S E, et al. Utilization of Savannah Harbor river sediment as the primary raw material in production of fired brick[J]. Journal of Environmental Management, 2012, 113: 128-136. [38] AGOSTINI F, SKOCZYLAS F, LAFHAJ Z. About a possible valor-isation in cementitious materials of polluted sediments after treatment [J]. Cement & Concrete Composites, 2007, 29(4): 270-278. [39] LAFHAJ Z, SAMARA M, AGOSTINI F, et al. Polluted river sediments from the north region of France: Treatment with Novosol process and valorization in clay bricks [J]. Construction & Building Materials, 2008, 22 (5): 755-762. [40] 李明东,夏霆,刘洋洋,等.海港疏浚含盐淤泥烧结陶粒试验研究[J].重庆交通大学学报(自然科学版),2016,35(6):81-85. LI Mingdong, XIA Ting, LIU Yangyang, et al. Experimental research on sintering ceramsite of dredged saline sediment from seaport[J]. Journal of Chongqing Jiaotong University (Natural Science), 2016, 35(6): 81-85. [41] 林春绵,王建超,章泓立,等.基于混料设计的河道底泥制陶粒配方优化[J].浙江工业大学学报,2019,47(6):692-698. LIN Chunmian, WANG Jianchao, ZHANG Hongli, et al. Formula optimizations for preparations of ceramsite from river sediment via mixture design[J]. Journal of Zhejiang University of Technology, 2019, 47(6): 692-698. [42] 汝莉莉,陈刚,王德永.利用污泥生产建材用陶粒的工艺介绍[J].砖瓦,2019(11):76-79. RU Lili, CHEN Gang, WANG Deyong. Process of producing ceramsite for building materials by using sludge[J]. Brick-tile, 2019(11): 76-79. [43] AHMADI B, AL-KHAJA W. Utilization of paper waste sludge in the building construction industry[J]. Resources, Conservation and Recycling, 2001, 32(2): 105-113. [44] OZER-ERDOGAN P, BASAR H M, ERDEN I, et al. Beneficial use of marine dredged materials as a fine aggregate in ready-mixed concrete: Turkey example[J]. Construction & Building Materials, 2016, 124: 690-704. [45] DALTON J L, GARDNER K H, SEAGER T P, et al. Properties of Portland cement made from contaminated sediments[J]. Resources, Conservation and Recycling, 2004, 41(3): 227-241. |
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