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Featured researches published by Peng Shi-zhang.


international conference on energy and environment technology | 2009

Nitrogen Wet Deposition and Its Correlation with Ammonia Volatilization Losses from Rice Paddy during Crop Period: A Case Study in Taihu Lake Region

Xu Junzeng; Peng Shi-zhang; Yang Shihong

Atmospheric nitrogen deposition is one of the most important sources of nitrogen for surface water and eco-system. Ammonia volatilization is one of the most loss of nitrogen from rice paddy field and sources of atmospheric nitrogen. In order to quantify the nitrogen wet deposition and its correlation with ammonia volatilization losses from rice paddy during rice growth season, field experiments were carried out in high nitrogen input rice paddy in Taihu Lake region. Total wet deposition of total nitrogen, ammonia nitrogen and nitrate nitrogen are 16.04kg•hm-2, 7.40kg•hm-2 and 3.39kg•hm-2 in rice growth season. It equals to 37.7kg•hm-2 urea inputs to rice paddy and takes 3835t total nitrogen, 1730t ammonia and 793t nitrate into surface water of Taihu lake. Seasonal ammonia volatilization is estimated to be 95.21kg•hm-2, account for 23.6% of seasonal total nitrogen inputs. Urea applications leads to the sharply increase in ammonia volatilization, more than 90% ammonia volatilization emission occurs within one week after urea fertilization. Ammonia and total nitrogen contents in rainfall water are likely relevant to the fertilizer management, but ammonia and total nitrogen were determined both by the precipitation volumes and the nitrogen fertilizer management. Total nitrogen and ammonia nitrogen contents in rainfall water are confirmed high relative to synchronous three-day ammonia volatilization, but not nitrogen wet deposition. Controlled-release urea reduced seasonal ammonia volatilization to 28.97 kg•hm-2, it is reduced by 69.6% when compared with traditional urea. Widely application of controlled-release urea is efficient to cut off the ammonia volatilization and hence the nitrogen wet deposition.


Procedia Engineering | 2012

Error of Saturation Vapor Pressure Calculated by Different Formulas and Its Effect on Calculation of Reference Evapotranspiration in High Latitude Cold Region

Xu Junzeng; Wei Qi; Peng Shi-zhang; Yu Yanmei


Transactions of the Chinese Society of Agricultural Engineering | 2007

Estimation and verification of crop coefficient for water saving irrigation of late rice using the FAO-56 method

Peng Shi-zhang; Ding Jia-li; Mao Zhi; Xu Junzeng; Li Daoxi


Transactions of the Chinese Society of Agricultural Engineering | 2009

Improvement of stomatal conductance models of rice under water saving irrigation treatment.

Peng Shi-zhang; Pang GuiBin; Xu Junzeng; Zhang ZhengLiang


Transactions of the Chinese Society of Agricultural Engineering | 2009

Variation of nitrogen concentration in drainage water from paddy fields under controlled irrigation and drainage.

Peng Shi-zhang; Zhang ZhengLiang; Luo Yufeng; Jiao Xiyun; Sun Yong


Systems Engineering - Theory & Practice | 2009

Model for evaluating the regional drought index with the weighted Markov chain and its application

Peng Shi-zhang; Wei Zheng; Dou Chao-Yin; Xu Junzeng


Journal of Hohai University | 2006

Experimental study on evapotranspiration and crop coefficient of rice under controlled irrigation

Ding Jia-li; Peng Shi-zhang; Li Dao-xi


Archive | 2013

Pollution control and emission reduction method for farmland drainage

Peng Shi-zhang; Xu Junzeng; Yang Shihong; Wu Jia; He Yupu; Gao Xiaoli; Huang Wanyong


Archive | 2013

Open channel water meter based on stage-discharge relation

Luo Yufeng; Peng Shi-zhang; Gu Hong; Yang Shihong; Fu Haolong; Yan Xin; Xu Junzeng; Wang Weiguang; Li Jiang An; Sun Yong


Soils | 2010

Research Advances of Nitrogen Fertilizer Application Technologies in Chinese Rice Field

Peng Shi-zhang

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