Storing and removing nitrogen in drainage from paddy field by using aquatic crops wetland

被引:4
作者
Wei, Qi [1 ,2 ]
Liu, Jintao [3 ]
Peng, Yihao [2 ]
Xu, Junzeng [1 ,2 ]
Liao, Linxian [2 ]
Yang, Shihong [2 ]
机构
[1] Hohai Univ, State Key Lab Hydrol Water Resources & Hydraul En, Nanjing 210098, Peoples R China
[2] Hohai Univ, Coll Agr Sci & Technol, Nanjing 210098, Peoples R China
[3] China Inst Water Resource & Hydropower Res, Beijing 100038, Peoples R China
基金
美国国家科学基金会;
关键词
Nitrogen; Paddy field drainage; Aquatic crop wetland; Wetland storage depth; CONSTRUCTED WETLANDS; WATER; EFFICIENCY; NUTRIENTS; LOSSES; CARBON; PLANTS; HRT;
D O I
10.1007/s10333-020-00803-w
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Aquatic crop (Zizania latifolia Stapf-Ipomoea aquatica Forsk) wetlands were constructed to remove nitrogen (N) in drainage from paddy rice fields, with three different storage water depths (namely 4H, 7H and 10H, where H is the routine paddy drainage water depth). Concentrations of ammonium nitrogen (NH4+-N), nitrate nitrogen (NO3--N) and total nitrogen (TN) during the first two drainage events were reduced within 8-14d of storing by 82.3-92.8%, 84.5-94.3% and 74.9-92.4%, respectively. Generally, the higher N concentration in inlet water, the higher removal efficiency of nitrogen. The removal rate in wetland with 4H water storage was observed higher as compared to those at 7H and 10H. Overall, the aquatic crop wetlands at these storage water depths could intercept more than 93.2% of N output from paddy fields, and the removal efficiency was slightly better in wetland at 4H. For a routine drainage event (about 30-50 mm) occurred following a routine rainfall (about 100 mm at 5-10 years return period) with local water-level management practice in rice field, wetlands with 4H and 7H storage could effectively remove N in drainage by reusing it with aquatic crops. Nevertheless, the larger the proportion (low water depth in wetland for one drainage) of wetland to paddy field, the higher the production efficiency, because the value of aquatic vegetable is much higher than rice. The current results suggested that aquatic crop wetlands constructed in low-lying part within paddy fields could intercept a large amount of N output from paddy field, and with high economic return. Designing wetlands and paddy fields in a proper area ratio is vital important for balancing removal effect of nutrients in paddy drainage and the demand of food security.
引用
收藏
页码:587 / 594
页数:8
相关论文
共 50 条
[31]   Removal of Nitrogen and Phosphorus from Effluent of a Secondary Wastewater Treatment Plant Using a Pond–Marsh Wetland System [J].
Dong-Gill Kim ;
Joohyun Park ;
Dowon Lee ;
Hojeong Kang .
Water, Air, & Soil Pollution, 2011, 214 :37-47
[32]   Using Agricultural Mixed Waste as a Sustainable Technique for Removing Stable Isotopes and Radioisotopes from the Aquatic Environment [J].
Abdelhamid, Arwa A. ;
Badr, Mogeda H. ;
Mohamed, Ramadan A. ;
Saleh, Hosam M. .
SUSTAINABILITY, 2023, 15 (02)
[33]   Biological denitrification using rice washing drainage (RWD) as carbon source for removing nitrate from groundwater [J].
He, Qiaochong ;
Feng, Chuanping ;
Hu, Qili ;
Li, Rui ;
Chen, Nan .
DESALINATION AND WATER TREATMENT, 2016, 57 (46) :21990-21999
[34]   Nitrogen and phosphorus effluent loads from a paddy-field district adopting collective crop rotation [J].
Hama, T. ;
Aoki, T. ;
Osuga, K. ;
Sugiyama, S. ;
Iwasaki, D. .
WATER SCIENCE AND TECHNOLOGY, 2012, 66 (05) :1074-1080
[35]   Economic valuation of reduction in nitrogen outflow from a paddy field area equipped with a recycling irrigation facility [J].
Feng, YW ;
Shiratani, E ;
Yoshinaga, I ;
Hitomi, T .
WATER SCIENCE AND TECHNOLOGY, 2006, 53 (02) :147-153
[36]   Measurement and estimation of radiocesium discharge rate from paddy field during land preparation and mid-summer drainage [J].
Miyazu, Susumu ;
Yasutaka, Tetsuo ;
Yoshikawa, Natsuki ;
Tamaki, Shouhei ;
Nakajima, Kousei ;
Sato, Iku ;
Nonaka, Masanori ;
Harada, Naoki .
JOURNAL OF ENVIRONMENTAL RADIOACTIVITY, 2016, 155 :23-30
[37]   Effects of Contemporary Land Use Types and Conversions from Wetland to Paddy Field or Dry Land on Soil Organic Carbon Fractions [J].
Zhao, Di ;
Dong, Junyu ;
Ji, Shuping ;
Huang, Miansong ;
Quan, Quan ;
Liu, Jian .
SUSTAINABILITY, 2020, 12 (05)
[38]   LONG-TERM CHANGE IN LAND MANAGEMENT FROM SUBTROPICAL WETLAND TO PADDY FIELD SHIFTS SOIL MICROBIAL COMMUNITY STRUCTURE AS DETERMINED BY PLFA AND T-RFLP [J].
Wang, Wenwen ;
Niu, Jia ;
Zhou, Xiaoqi ;
Wang, Yanfen .
POLISH JOURNAL OF ECOLOGY, 2011, 59 (01) :37-44
[39]   Removal of Nitrogen and Phosphorus from Effluent of a Secondary Wastewater Treatment Plant Using a Pond-Marsh Wetland System [J].
Kim, Dong-Gill ;
Park, Joohyun ;
Lee, Dowon ;
Kang, Hojeong .
WATER AIR AND SOIL POLLUTION, 2011, 214 (1-4) :37-47
[40]   Paving the Way From the Lab to the Field: Using Synthetic Microbial Consortia to Produce High-Quality Crops [J].
Kong, Zhaoyu ;
Hart, Miranda ;
Liu, Hongguang .
FRONTIERS IN PLANT SCIENCE, 2018, 9