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【资源及环境科学】英文文献模板
专栏:论文写作
发布日期:2019-10-17
阅读量:2143
作者:第2导师编辑
收藏:
Mulberry Dyke-Fish-Pond on the Zhujiang Delta-A Complete Artificial Ecosystem of Land-Water Interaction. Acta Geographica Sinica, 35(3), 200-211.[22] Guo, S. H., & Situ, S. (2010).

今天以资源及环境科学论文为例,为大家展示英文状态下的文献格式及标准!

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[1] Yuan, X. Z. (2014). The Inspiration of Chinese Ecological Wisdom-Take Dujiangyan Project as An Example. Science Population of University, 8(1), 25.
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[10] Chang, C. R., Li, M. H., & Chang, S. D. (2007). A Preliminary Study on the Local Cool Island Intensity of Taipei City Parks. Landscape and Urban Planning, (80), 386-395.
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[15] Jones, C. G., Lawton, J. H., & Shachak, M. (1994). Organisms as Ecosystem Engineers. Oikos, (69), 373-386.
[16] Pond Conservation. (2011). Creating Garden Ponds for Wildlife. Pond Conservation and World of Water, Oxford. Retrieved from http://freshwaterhabitats.org.uk/wp-content/uploads/2013/09/Creating-Garden-Ponds-for-Wildlife.pdf

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[17] Guan, Y. B. (2016). Hydrological Analysis of Ecological Environment in Southwest Minority villages. Guizhou Social Sciences, (1), 83-87.
[18] Yu, K. J., Jiang, Q. Z., Wang, Z. F., & Li, M. H. (2016). The Research Progress 
and Prospect of Bei Tang Landscape. Areal Research and Development, 34(3), 130-136.

[19] Zhou, B., Tan, X. M., Li, Y. P., & Wan, J. H. (2016). The Introduction and value Analysis of Quebei Irrigation Project. China Rural Water and Hydropower, (9), 57-61.
[20] Liu, Y. (2015). Quebei Listed on China's Important Agriculture and Cultural Heritage. Wanxi Journal, 11, 16.
[21] Zhong, G. F. (1980). Mulberry Dyke-Fish-Pond on the Zhujiang Delta-A Complete Artificial Ecosystem of Land-Water Interaction. Acta Geographica Sinica, 35(3), 200-211.
[22] Guo, S. H., & Situ, S. (2010). The value and Utilization of Mulberry-Dike-Fish-Pond in the Pearl Delta in Perspective of the Agricultural Heritage. Tropical Geography, 30(4), 452-458.
[23] Yin, C. Q., & Mao, Z. P. (2002). Nonpoint Pollution Control for Rural Areas of China with Ecological Engineering Technologies. Chinese Journal of Applied Ecology, 13(2), 229- 232.
[24] Yin, C. Q., & Shan, B. Q. (2001). Multipond Systems:A Sustainable Way to Control Diffuse Phosphorus Pollution. AMBIO:A Journal of the Human Environment, 30(6), 369-375.
[25] Yuan, X. Z., Zhang, Y. W., Liu, H., Sen, X., Li, B., & Deng, W. (2013). The Littoral Zone in the Three Gorges Reservoir, China:Challenges and Opportunities. 
Environmental Science and Pollution Research, (20), 7092-7102.

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[26] Mitsch, W. J., Lu, J. J., & Yuan, X. Z. (2008). Optimizing Ecosystem Services in China. Science, (322), 528.
[27] Bo, L., Yuan, X. Z., Xiao, H. Y., & Chen, Z. L. (2011). Design of the Dike-pond System in the Littoral Zone of a Tributary in the Three Gorges Reservoir, China. Ecological Engineering, (37), 1718-1725.
[28] Bo, L., Xiao, H. Y., Yuan, X. Z., Willison, J. H. M., Liu, H., Chen, Z. L., Zhang, Y. W., Deng, W., & Yue, J. S. (2013). Ecological and Commercial Benefits Analysis of a Dike-pond Project in the Drawdown Zone of the Three Gorges Reservoir. Ecological Engineering, (61), 1-11.
[29] Yue, J. S., Yuan, X. Z., Li, B., Ren, H. Q., & Wang, X. F. (2016). Emergy and Exergy Evaluation of a Dike-Pond Project in the Drawdown Zone (DDZ) of the Three Gorges Reservoir (TGR). Ecological Indicators, (71), 248-257.
[30] Li, B., Du, C. L., Yuan, X. Z., Willison, J. H. M., & Xiao, H. X. (2016). Suitability of Taxodium Distichum for Afforesting the Littoral Zone of the Three Gorges Reservoir. PLoS One, 11(1), 1-16.

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