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Artykuły w czasopismach na temat "Gong cheng wei yuan hui"

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Thanh Huyen, Le, Dao Sy Duc, Nguyen Xuan Hoan, Nguyen Huu Tho i Nguyen Xuan Viet. "Synthesis of Fe3O4-Reduced Graphene Oxide Modified Tissue-Paper and Application in the Treatment of Methylene Blue". VNU Journal of Science: Natural Sciences and Technology 35, nr 3 (20.09.2019). http://dx.doi.org/10.25073/2588-1140/vnunst.4883.

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Graphene-based composites have received a great deal of attention in recent year because the presence of graphene can enhance the conductivity, strength of bulk materials and help create composites with superior qualities. Moreover, the incorporation of metal oxide nanoparticles such as Fe3O4 can improve the catalytic efficiency of composite material. In this work, we have synthesized a composite material with the combination of reduced graphene oxide (rGO), and Fe3O4 modified tissue-paper (mGO-PP) via a simple hydrothermal method, which improved the removal efficiency of the of methylene blue (MB) in water. MB blue is used as the model of contaminant to evaluate the catalytic efficiency of synthesized material by using a Fenton-like reaction. The obtained materials were characterized by SEM, XRD. The removal of materials with methylene blue is investigated by UV-VIS spectroscopy, and the result shows that mGO-PP composite is the potential composite for the color removed which has the removal efficiency reaching 65% in acetate buffer pH = 3 with the optimal time is 7 h. Keywords Graphene-based composite, methylene blue, Fenton-like reaction. References [1] Ma Joshi, Rue Bansal, Reng Purwar, Colour removal from textile effluents, Indian Journal of Fibre & Textile Research, 29 (2004) 239-259 http://nopr.niscair.res.in/handle/123456789/24631.[2] Kannan Nagar, Sundaram Mariappan, Kinetics and mechanism of removal of methylene blue by adsorption on various carbons-a comparative study, Dyes and pigments, 51 (2001) 25-40 https://doi.org/10.1016/S0143-7208(01)00056-0.[3] K Rastogi, J. N Sahu, B. C Meikap, M. N Biswas, Removal of methylene blue from wastewater using fly ash as an adsorbent by hydrocyclone, Journal of hazardous materials, 158 (2008) 531-540.https://doi.org/10.1016/j.jhazmat.2008.01. 105.[4] Qin Qingdong, Ma Jun, Liu Ke, Adsorption of anionic dyes on ammonium-functionalized MCM-41, Journal of Hazardous Materials, 162 (2009) 133-139 https://doi.org/10.1016/j.jhazmat. 2008.05.016.[5] Mui Muruganandham, Rps Suri, Sh Jafari, Mao Sillanpää, Lee Gang-Juan, Jaj Wu, Muo Swaminathan, Recent developments in homogeneous advanced oxidation processes for water and wastewater treatment, International Journal of Photoenergy, 2014 (2014). http://dx. doi.org/10.1155/2014/821674.[6] Herney Ramirez, Vicente Miguel , Madeira Luis Heterogeneous photo-Fenton oxidation with pillared clay-based catalysts for wastewater treatment: a review, Applied Catalysis B: Environmental, 98 (2010) 10-26 https://doi.org/ 10.1016/j.apcatb.2010.05.004.[7] Guo Rong, Jiao Tifeng, Li Ruifei, Chen Yan, Guo Wanchun, Zhang Lexin, Zhou Jingxin, Zhang Qingrui, Peng Qiuming, Sandwiched Fe3O4/carboxylate graphene oxide nanostructures constructed by layer-by-layer assembly for highly efficient and magnetically recyclable dye removal, ACS Sustainable Chemistry & Engineering, 6 (2017) 1279-1288 https://doi.org/10.1021/acssuschemeng.7b03635.[8] Sun Chao, Yang Sheng-Tao, Gao Zhenjie, Yang Shengnan, Yilihamu Ailimire, Ma Qiang, Zhao Ru-Song, Xue Fumin, Fe3O4/TiO2/reduced graphene oxide composites as highly efficient Fenton-like catalyst for the decoloration of methylene blue, Materials Chemistry and Physics, 223 (2019) 751-757 https://doi.org/ 10.1016/j.matchemphys.2018.11.056.[9] Guo Hui, Ma Xinfeng, Wang Chubei, Zhou Jianwei, Huang Jianxin, Wang Zijin, Sulfhydryl-Functionalized Reduced Graphene Oxide and Adsorption of Methylene Blue, Environmental Engineering Science, 36 (2019) 81-89 https://doi. org/10.1089/ees.2018.0157.[10] Zhao Lianqin, Yang Sheng-Tao, Feng Shicheng, Ma Qiang, Peng Xiaoling, Wu Deyi, Preparation and application of carboxylated graphene oxide sponge in dye removal, International journal of environmental research and public health, 14 (2017) 1301 https://doi.org/10.3390/ijerph14111301.[11] Yu Dandan, Wang Hua, Yang Jie, Niu Zhiqiang, Lu Huiting, Yang Yun, Cheng Liwei, Guo Lin, Dye wastewater cleanup by graphene composite paper for tailorable supercapacitors, ACS applied materials & interfaces, 9 (2017) 21298-21306 https://doi.org/10.1021/acsami.7b05318.[12] Wang Hou, Yuan Xingzhong, Wu Yan, Huang Huajun, Peng Xin, Zeng Guangming, Zhong Hua, Liang Jie, Ren MiaoMiao, Graphene-based materials: fabrication, characterization and application for the decontamination of wastewater and wastegas and hydrogen storage/generation, Advances in Colloid and Interface Science, 195 (2013) 19-40 https://doi. org/10.1016/j.cis.2013.03.009.[13] Marcano Daniela C, Kosynkin Dmitry V, Berlin Jacob M, Sinitskii Alexander, Sun Zhengzong, Slesarev Alexander, Alemany Lawrence B, Lu Wei, Tour James M, Improved synthesis of graphene oxide, ACS nano, 4 (2010) 4806-4814 https://doi.org/10.1021/nn1006368.[14] Zhang Jiali, Yang Haijun, Shen Guangxia, Cheng Ping, Zhang Jingyan, Guo Shouwu, Reduction of graphene oxide via L-ascorbic acid, Chemical Communications, 46 (2010) 1112-1114 http://doi. org/10.1039/B917705A [15] Gong Ming, Zhou Wu, Tsai Mon-Che, Zhou Jigang, Guan Mingyun, Lin Meng-Chang, Zhang Bo, Hu Yongfeng, Wang Di-Yan, Yang Jiang, Nanoscale nickel oxide/nickel heterostructures for active hydrogen evolution electrocatalysis, Nature communications, 5 (2014) 4695 https:// doi.org/10.1038/ncomms5695.[16] Wu Zhong-Shuai, Yang Shubin, Sun Yi, Parvez Khaled, Feng Xinliang, Müllen Klaus, 3D nitrogen-doped graphene aerogel-supported Fe3O4 nanoparticles as efficient electrocatalysts for the oxygen reduction reaction, Journal of the American Chemical Society, 134 (2012) 9082-9085 https://doi.org/10.1021/ja3030565.[17] Nguyen Son Truong, Nguyen Hoa Tien, Rinaldi Ali, Nguyen Nam Van, Fan Zeng, Duong Hai Minh, Morphology control and thermal stability of binderless-graphene aerogels from graphite for energy storage applications, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 414 (2012) 352-358 https://doi.org/ 10.1016/j.colsurfa.2012.08.048.[18] Deng Yang, Englehardt James D, Treatment of landfill leachate by the Fenton process, Water research, 40 (2006) 3683-3694 https://doi.org/ 10.1016/j.watres.2006.08.009.
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Rozprawy doktorskie na temat "Gong cheng wei yuan hui"

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"「教會良心」抑「搞事份子」: 香港基督教工業委員會歷史之研究(1959-2004)". 2005. http://library.cuhk.edu.hk/record=b5896716.

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湯泳詩.
"2005年5月".
論文(神(道)學碩士)--香港中文大學, 2005.
參考文獻(leaves 53-57).
"2005 nian 5 yue".
Abstract also in English.
Tang Yongshi.
Can kao wen xian (leaves 53-57).
Lun wen (Shen (dao) xue shuo shi)--Xianggang Zhong wen da xue, 2005.
ABSTRACT --- p.I
論文撮要 --- p.III
謝辭 --- p.IV
Chapter 第一章 --- 引言 --- p.1
Chapter 第二章 --- 香港基督教工業委員會歷任主任生平與思想 --- p.4
Chapter 第一節 --- 簡美稼(1915-2003,1967-1969在任)的「勞資協調路線」 --- p.5
簡美稼的生平 --- p.5
簡美稼的工業宣教理念 --- p.7
Chapter 第二節 --- 馮煒文(1940-,1%9-1980在任)的「站在工人一邊立場」 --- p.9
馮煒文的生平 --- p.9
馮煒文的工業宣教理念 --- p.11
Chapter 第三節 --- 劉千石(1949- ,1980在任至今)的「走在社會最前線」 --- p.13
劉千石的生平 --- p.14
劉千石的工業宣教理念 --- p.16
附記(excursus)陸漢思(1936-,1968-1992在任)的「福音與勞工」 --- p.18
陸漢思的生平 --- p.19
陸漢思的工業宣教理念 --- p.20
Chapter 第三章 --- 香港基督教工業委員會的歷史發展(1959-2004) --- p.23
Chapter 第一節 --- 第一階段´ؤ´ؤ始創時期(1959-1969) --- p.23
學習及祈禱小組 --- p.24
以出版作爲與教會溝通的平台 --- p.25
勞工主日 --- p.25
聘請專職人員和草擬工作細則 --- p.25
Chapter 第二節 --- 第二階段´ؤ´ؤ重整時期(1969-1980) --- p.27
回應勞工問題及硏究 --- p.27
爭取訂立勞工法例 --- p.28
與教會聯繫 --- p.28
多樣化的勞工教育 --- p.28
出版事工 --- p.29
Chapter 第三節 --- 第三階段´ؤ´ؤ增長時期(1980-1990) --- p.29
建立教會情況 --- p.30
關注勞工問題 --- p.30
倡議行動 --- p.30
工潮及勞資糾紛 --- p.30
籌辦工會 --- p.31
工會教育 --- p.31
參與香港民主化進程 --- p.31
繼續勞工硏究與出版 --- p.32
Chapter 第四節 --- 第四階段´ؤ´ؤ轉折時期(1990-2004) --- p.33
中國事工組工作槪況 --- p.34
香港與國際事務 --- p.34
推動香港消費者運動 --- p.35
調硏出版 --- p.35
Chapter 第四章 --- 香港基督教工業委員會在香港教會的身分與角色 --- p.37
Chapter 第一節 --- 「搞事份子」身份的建立 --- p.37
Chapter 甲: --- 教會不願意接受工委會工作的原因 --- p.37
Chapter 一 --- 對工會的恐懼 --- p.37
Chapter 二 --- 手法強硬 --- p.37
Chapter 三 --- 缺乏程序 --- p.38
Chapter 乙: --- 教會拒絶工委會的事情 --- p.38
Chapter 一 --- 中華基督教會的退出 --- p.38
Chapter 二 --- 協進會要求獨立 --- p.39
Chapter 丙: --- 工委會對教會的態度 --- p.40
Chapter 一 --- 經濟支持 --- p.40
Chapter 二 --- 互相觀望 --- p.40
Chapter 丁: --- 工友對工委會與教會的意見 --- p.41
Chapter 一 --- 工委會受限於教會 --- p.41
Chapter 二 --- 中立的工會運動 --- p.41
Chapter 三 --- 傳福音的方法 --- p.42
Chapter 第二節 --- 「教會良心」身份的建立 --- p.43
Chapter 甲: --- 教會支持工委會的事情 --- p.43
Chapter 一 --- 馮煒文的神學反省 --- p.43
Chapter 二 --- 國際教會的支持 --- p.43
Chapter 乙: --- 工委會的基督教特質 --- p.44
Chapter 一 --- 工作動力從福音而來 --- p.44
Chapter 二 --- 一個屬乎上帝的組織 --- p.44
Chapter 三 --- 實踐信仰 --- p.45
Chapter 丙: --- 工委會的教會性質 --- p.46
Chapter 一 --- 出於上帝的恩寵和肩負獨有的職務 --- p.46
Chapter 二 --- 先知和僕人的樣式 --- p.47
附記(excursus)勞工教會的發展歷程 --- p.47
Chapter 第五章 --- 總結 --- p.50
附件一始創時期「工業委員會」的工作 --- p.52
徵引書目 --- p.53
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"From mobilisation to solidarity : a study of the role of non-union labour organisation in labour movement with special reference to the Hong Kong case". Chinese University of Hong Kong, 1986. http://library.cuhk.edu.hk/record=b5885656.

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Książki na temat "Gong cheng wei yuan hui"

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Xing zheng yuan gong gong gong cheng wei yuan hui (China), red. Zheng fu cai gou zheng yi chu li shi jian an yuan ji wen ti lei xing fen xi: Xing zheng yuan gong gong gong cheng wei yuan hui wei tuo yan jiu ji hua cheng guo bao gao. Taibei Shi: Xing zheng yuan gong gong gong cheng wei yuan hui, 2004.

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Nei Menggu Zizhiqu ren da chang wei hui Alashan Meng gong zuo wei yuan hui zhi bian zuan wei yuan hui. Nei Menggu Zizhiqu ren da chang wei hui Alxa Meng gong zuo wei yuan hui zhi (2005-2010 nian). Alxa Meng: Nei Menggu Zizhiqu ren da chang wei hui Alxa Meng gong zuo wei yuan hui zhi bian zuan wei yuan hui, 2011.

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China. Guo jia wen wu ju. Bo wu guan yu she hui wen wu si, red. Zhonghua wen ming tan yuan gong cheng wen ji: She hui yu jing shen wen hua juan. Beijing: Ke xue chu ban she, 2009.

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China (Republic : 1949-). Xing zheng su song ji cheng jie ting, red. Gong wu yuan cheng jie wei yuan hui yi jue shu: Fa guan, jian cha guan shou yi jue an li xuan ji. Taibei Shi: Si fa yuan, 2010.

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Dong, Xuemei. Gong gong li shi wen hua zi yuan de chan ye kai fa: Yi quan cheng Jinan wei ge an yan jiu. Beijing: Zhongguo qing nian chu ban she, 2013.

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Zhonggong Daqing shi you hua gong zong chang ji lü jian cha wei yuan hui. Daqing shi you hua gong zong chang ji jian jian cha zhi, 1961-1997. [Daqing: Zhonggong Daqing shi you hua gong zong chang ji lü jian cha wei yuan hui, 1998.

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Wuyi, Chen, Xia Jun i Zhu Jianyuan, red. Shui wen ni sha yan jiu xin jin zhan: Zhongguo shui li fa dian gong cheng xue hui shui wen ni sha zhuan ye wei yuan hui di ba jie xue shu tao lun hui. Beijing Shi: Zhongguo shui li shui dian chu ban she, 2010.

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Yuqin, Tie, red. Shenyang gu gong wen ji: Ji nian Shenyang gu gong jian cheng 355 zhou nian ji Shenyang gu gong bo wu yuan jian yuan 65 zhou nian xue shu tao lun hui lun wen zhuan ji. Tianjin: Nankai da xue chu ban she, 1992.

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Lieberthal, Kenneth. Central Documents and Politburo Politics in China. Ann Arbor: University of Michigan Press, 2020.

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Xing zheng yuan. Guo jia ke xue wei yuan hui. Ke xue ji shu zi liao zhong xin. Xing zheng yuan guo jia ke xue wei yuan hui yan jiu jiang zhu fei lun wen zhai yao: Zi ran ke xue ji shu xue, gong cheng ji ying yong ke xue, sheng wu ji yi nong xue, ren wen ji she hui ke xue. Tai bei shi: Xing zheng yuan guo jia ke xue wei yuan hui ke xue ji shu zi liao zhong xin, 1985.

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