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毕业论文网 > 任务书 > 化学化工与生命科学类 > 轻化工程 > 正文

棉机织物染整厂的节能减排方案设计任务书

 2020-05-11 23:39:17  

1. 毕业设计(论文)的内容和要求

染整工业一直以来都是耗能、废水排放大户,如何通过自身工艺改进、管道排布设计来完成节能减排的目标一直是企业努力的方向。本课题拟针对棉机织物染整厂,进行节能减排的设计,包括生产中管道蒸汽的热能利用、废水的二次回用,以及生产工艺的改良等。

2. 参考文献

[1] S.K. Gupta, M. Kumar, A. Guldhe et al.. Design and development of polyamine polymer for harvesting microalgae for biofuels production[J]. Energy Conversion and Management, 2014.
[2] Raft Steven, Koundakjian Edmund J, Quinones Herson et al.. Cross-regulation of Ngn1 and Math1 coordinates the production of neurons and sensory hair cells during inner ear development.[J]. Development (Cambridge), 2007, 134(24).
[3] A. Zabaniotou, K. Andreou, Development of alternative energy sources for GHG emissions reduction in the textile industry by energy recovery from cotton ginning waste[J]. Journal of Cleaner Production, 2010
[4] Gao Ting, Researches of Developing Strategies and Guarantee Mechanism of Energy Saving and Emission Reduction on Paper-making Enterprises-Case Study of ShandongHaiyun High-Efficiency Ecological Park[J]. Energy Procedia, 2011
[5] Ibrahim Yilmaz, Handan Akcaoz, Burhan Ozkan, An analysis of energy use and input costs for cotton production in Turkey
[6] Usman Ashraf, Tanveer Hussain, Abdul Jabbar, Effect of cotton fiber and yarn characteristics on color variation in woven fabric dyed with vat dyes, The Journal of The Textile Institute, 2014
[7] Subramanian Sundaramoorthy, PalaniswamyK. Nallampalayam, Sundaresan Jayaraman. Air permeability of multilayer woven fabric systems[J]. Journal of The Textile Institute, 2011, 102(3).
[8] Xu Wang, Qiao-Ling Zhang, Fu-Mei Wang. The Standard Friction Test Condition between Woven Fabric and Skin in Wet States[J]. Tribology Transactions, 2012, 55(6).
[9] P. S. Pa. Continuous finishing processes using a combination of burnishing and electrochemical finishing on bore surfaces[J]. The International Journal of Advanced Manufacturing Technology, 2010, 49(1).
[10] Gilsoo Cho, Namkyoo Lim, Yoonjung Yang. Integrated graphical presentation of fabric sound and mechanical properties[J]. Fibers and Polymers, 2010, 11(3).
[11] Yang Shen, A.J. Meir, Yanzhao Cao et al.. Finite element analysis of monofilament woven fabrics under uniaxial tension[J]. The Journal of The Textile Institute, 2015, 106(1).
[12] Yi Zhou, Xiaogang Chen, Garry Wells. Influence of yarn gripping on the ballistic performance of woven fabrics from ultra-high molecular weight polyethylene fibre[J]. Composites Part B, 2014.
[13] Alsaid Ahmed Almetwally, M.M. Mourad. Effects of spandex drawing ratio and weave structure on the physical properties of cotton/spandex woven fabrics[J]. The Journal of The Textile Institute, 2014, 105(3).
[14] M. Boljen, S. Hiermaier. Continuum constitutive modeling of woven fabrics[J]. The European Physical Journal Special Topics, 2012, 206(1).
[15] Damien Durville. Simulation of the mechanical behaviour of woven fabrics at the scale of fibers[J]. International Journal of Material Forming, 2010, 3(2).
[16] N. Ezaz Shahabi, S. Asghari Mooneghi, S. Saharkhiz et al.. Investigating the effect of weight reduction treatment on Poisson#8217;s ratio of microfiber polyester woven fabric[J]. Journal of The Textile Institute, 2012, 103(3).
[17] B. El Abed, S. Msahli, H. Bel Hadj Salah et al.. Study of woven fabric shear behaviour[J]. Journal of The Textile Institute, 2011, 102(4).
[18] M.I. Misnon, M.M. Islam, J.A. Epaarachchi et al.. Analyses of woven hemp fabric characteristics for composite reinforcement[J]. Materials and Design, 2015, 66.
[19] M. Moczulska, M. Bitar, W. #346;wi#281;szkowski et al.. Biological characterization of woven fabric using two- and three-dimensional cell cultures[J]. Journal of Biomedical Materials Research Part A, 2012, 100A(4).
[20] Xin Jia, Zheng-xiang Huang, Xu-dong Zu et al.. Experimental study on the performance of woven fabric rubber composite armor subjected to shaped charge jet impact[J]. International Journal of Impact Engineering, 2013, 57.

3. 毕业设计(论文)进程安排

起讫日期

设计(论文)各阶段工作内容

备 注

2.11

与导师见面,听导师对论文说明和布置任务

3.12-3.14

提交开题报告

3.15-3.19

查找文献

3.20-3.24

仔细阅读文献

3.25-4.4

理清思路

4.5-4.17

设计画图

4.18-5.19

论文撰写

5.20-5.24

修改

5.25-6.2

修改

6.3-6.7

论文修改、撰写

6.8-6.12

论文修改、撰写

6.15

论文答辩

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