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Original Articles

Nitrous oxide production from strongly acid tea field soils

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Pages 835-844 | Received 23 Feb 2000, Accepted 05 Sep 2000, Published online: 04 Jan 2012

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Read on this site (9)

Wen-Yan Han, Jian-Ming Xu, Kang Wei, Ruan-Zhi Shi & Li-Feng Ma. (2013) Soil carbon sequestration, plant nutrients and biological activities affected by organic farming system in tea (Camellia sinensis (L.) O. Kuntze) fields. Soil Science and Plant Nutrition 59:5, pages 727-739.
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Wen-Yan Han, Jian-Ming Xu, Xiao-Yun Yi & Yi-Dong Lin. (2012) Net and gross nitrification in tea soils of varying productivity and their adjacent forest and vegetable soils. Soil Science and Plant Nutrition 58:2, pages 173-182.
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Oslan Jumadi, Yusminah Hala, Iswandi Anas, Alimuddin Ali, Kazunori Sakamoto, Masahiko Saigusa, Kazuyuki Yagi & Kazuyuki Inubushi. (2008) Community Structure of Ammonia Oxidizing Bacteria and Their Potential to Produce Nitrous Oxide and Carbon Dioxide in Acid Tea Soils. Geomicrobiology Journal 25:7-8, pages 381-389.
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Kazuhira Yokoyama & Tohru Ohama. (2005) Effect of Inorganic N Composition of Fertilizers on Nitrous Oxide Emission Associated with Nitrification and Denitrification. Soil Science and Plant Nutrition 51:7, pages 967-972.
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Oslan Jumadi, Yusminah Hala & Kazuyuki Inubushi. (2005) Production and Emission of Nitrous Oxide and Responsible Microorganisms in Upland Acid Soil in Indonesia. Soil Science and Plant Nutrition 51:5, pages 693-696.
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Shin-ichi Tokuda & Masahito Hayatsu. (2004) Nitrous oxide flux from a tea field amended with a large amount of nitrogen fertilizer and soil environmental factors controlling the flux. Soil Science and Plant Nutrition 50:3, pages 365-374.
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Shin-ichi Tokuda & Masahito Hayatsu. (2002) Soil microbial biomass and fluorescein diacetate hydrolytic activity in Japanese acidic tea field soils. Soil Science and Plant Nutrition 48:6, pages 865-869.
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Shin-ichi Tokuda & Masahito Hayatsu. (2001) Nitrous oxide emission potential of 21 acidic tea field soils in Japan. Soil Science and Plant Nutrition 47:3, pages 637-642.
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Articles from other publishers (32)

Chengyi Huang, Kairui Zhang, Wentao Guo, Huijuan Huang, Zhangyong Gou, Liu Yang, Yian Chen, Kokyo Oh, Conggang Fang & Ling Luo. (2023) The Effects of Partial Substitution of Fertilizer Using Different Organic Materials on Soil Nutrient Condition, Aggregate Stability and Enzyme Activity in a Tea Plantation. Plants 12:22, pages 3791.
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Chaobiao Meng, Yating Xing, Yu Ding, Qichun Zhang, Hongjie Di, Caixian Tang, Jianming Xu & Yong Li. (2023) Soil acidification induced variation of nitrifiers and denitrifiers modulates N2O emissions in paddy fields. Science of The Total Environment 882, pages 163623.
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Xiangde Yang, Sheng Tang, Kang Ni, Yuanzhi Shi, Xiaoyun Yi, Qingxu Ma, Yanjiang Cai, Lifeng Ma & Jianyun Ruan. (2023) Long-term nitrogen addition increases denitrification potential and functional gene abundance and changes denitrifying communities in acidic tea plantation soil. Environmental Research 216, pages 114679.
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Ruijie Tang, Yujie Hu, Tianyi Hu, Yan Zhao, Yanzheng Wu & Lei Meng. (2022) How Stand Age Affects Soil Nitrification and Nitrogen Gas Emissions in Tropical and Subtropical Tea Plantations. Agronomy 12:10, pages 2521.
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Feifei He, Haohao Yu, Dandan Liu & Zheng Li. (2022) Microorganism community composition analysis coupling with 15 N tracer experiments reveals the nitrification rate and N 2 O emissions in low pH soils in Southern China . Open Life Sciences 17:1, pages 55-63.
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Yuko ISHIBASHI & Manabu KASHIWABARA. (2022) Synthesis of nitrate selective anion exchange resin and denitrification of nitrate adsorbed on the resin. Environmental Monitoring and Contaminants Research 2:0, pages 120-127.
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Shaowen Xie, Fen Yang, Hanxiao Feng, Zhenzhen Yu, Chengshuai Liu, Chaoyang Wei & Tao Liang. (2021) Organic fertilizer reduced carbon and nitrogen in runoff and buffered soil acidification in tea plantations: Evidence in nutrient contents and isotope fractionations. Science of The Total Environment 762, pages 143059.
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Ziteng Wang, Yuanbo Geng & Tao Liang. (2020) Optimization of reduced chemical fertilizer use in tea gardens based on the assessment of related environmental and economic benefits. Science of The Total Environment 713, pages 136439.
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Cheng Ji, Shuqing Li, Yajun Geng, Yingcheng Miao, Ying Ding, Shuwei Liu & Jianwen Zou. (2020) Differential responses of soil N2O to biochar depend on the predominant microbial pathway. Applied Soil Ecology 145, pages 103348.
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Shaowen Xie, Hanxiao Feng, Fen Yang, Zhide Zhao, Xuedi Hu, Chaoyang Wei, Tao Liang, Haitao Li & Yuanbo Geng. (2018) Does dual reduction in chemical fertilizer and pesticides improve nutrient loss and tea yield and quality? A pilot study in a green tea garden in Shaoxing, Zhejiang Province, China. Environmental Science and Pollution Research 26:3, pages 2464-2476.
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B.G. Zhang, Q. Li, C.Y. Zhang, X.P. Chen, F.S. Zhang, J. Cao & Z. Song. (2018) Evaluation of nitrapyrin in lab and on-field of bitter gourd production. Acta Horticulturae:1192, pages 1-10.
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Ying Huang, Xu Xiao & Xien Long. (2017) Fungal denitrification contributes significantly to N2O production in a highly acidic tea soil. Journal of Soils and Sediments 17:6, pages 1599-1606.
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Meihua Deng, Mudan Hou, Naoko Ohkama-Ohtsu, Tadashi Yokoyama, Haruo Tanaka, Kenta Nakajima, Ryosuke Omata & Sonoko Dorothea Bellingrath-Kimura. (2017) Nitrous Oxide Emission from Organic Fertilizer and Controlled Release Fertilizer in Tea Fields. Agriculture 7:3, pages 29.
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Dan Chen, Yong Li, Cong Wang, Xiaoqing Fu, Xinliang Liu, Jianlin Shen, Yi Wang, Runlin Xiao, De Li Liu & Jinshui Wu. (2017) Measurement and modeling of nitrous and nitric oxide emissions from a tea field in subtropical central China. Nutrient Cycling in Agroecosystems 107:2, pages 157-173.
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B.G. Zhang, Q. Li, C.Y. Zhang, X.P. Chen, F.S. Zhang, J. Cao & Z. Song. (2017) Evaluation of nitrapyrin in lab and on-field of bitter gourd production. Acta Horticulturae:1192, pages 1-10.
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Yanzheng Wu, Yong Li, Xiaoqing Fu, Xinliang Liu, Jianlin Shen, Yi Wang & Jinshui Wu. (2016) Three-dimensional spatial variability in soil microorganisms of nitrification and denitrification at a row-transect scale in a tea field. Soil Biology and Biochemistry 103, pages 452-463.
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Mudan Hou, Naoko Ohkama-Ohtsu, Sohzoh Suzuki, Haruo Tanaka, Urs Schmidhalter & Sonoko Dorothea Bellingrath-Kimura. (2015) Nitrous oxide emission from tea soil under different fertilizer managements in Japan. CATENA 135, pages 304-312.
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Yi Cheng, Jin‐Bo Zhang, Jing Wang, Zu‐Cong Cai & Shen‐Qiang Wang. (2015) Soil pH is a good predictor of the dominating N 2 O production processes under aerobic conditions . Journal of Plant Nutrition and Soil Science 178:3, pages 370-373.
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Ying Huang, Xi-En Long, Stephen J. Chapman & Huaiying Yao. (2014) Acidophilic denitrifiers dominate the N2O production in a 100-year-old tea orchard soil. Environmental Science and Pollution Research 22:6, pages 4173-4182.
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Ying Huang, Yaying Li & Huaiying Yao. (2013) Nitrate enhances N2O emission more than ammonium in a highly acidic soil. Journal of Soils and Sediments 14:1, pages 146-154.
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Akinori Yamamoto, Hiroko Akiyama, Takuji Naokawa, Yasuhiro Miyazaki, Yusuke Honda, Yukimasa Sano, Yasuhiro Nakajima & Kazuyuki Yagi. (2013) Lime-nitrogen application affects nitrification, denitrification, and N2O emission in an acidic tea soil. Biology and Fertility of Soils 50:1, pages 53-62.
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Hui Xue, Xiaoyi Ren, Shiyu Li, Xu Wu, Hao Cheng, Bin Xu, Baojing Gu, Guofu Yang, Changhui Peng, Ying Ge & Jie Chang. (2013) Assessment of private economic benefits and positive environmental externalities of tea plantation in China. Environmental Monitoring and Assessment 185:10, pages 8501-8516.
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Kazuhira Yokoyama, Kensuke Jinnai, Yuka Sakiyama & Mitsuru Touma. (2012) Contribution of fungi to acetylene-tolerant and high ammonia availability-dependent nitrification potential in tea field soils with relatively neutral pH. Applied Soil Ecology 62, pages 37-41.
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Yurina Kwack & Kazuhiko Kobayashi. (2011) Application of DNDC model to estimate N2O emissions from green tea fields in Japan. Journal of Crop Science and Biotechnology 14:2, pages 157-162.
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Wen‐Yan Han, Li‐Feng Ma, Yuan‐Zhi Shi, Jian‐Yun Ruan & Sarah J Kemmitt. (2008) Nitrogen release dynamics and transformation of slow release fertiliser products and their effects on tea yield and quality. Journal of the Science of Food and Agriculture 88:5, pages 839-846.
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Nsalambi V. Nkongolo, Kanta Kuramochi & Hatano Ryusuke. (2008) Effect of Mechanized Tillage Operations on Soil Physical Properties and Greenhouse Gases Fluxes in Two Agricultural Fields. Research Journal of Environmental Sciences 2:2, pages 68-80.
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Kunihiko Nonaka, Yuhei Hirono & Iriki Watanabe. (2008) Effect of Expansion of Fertilization Width on Nitrogen Recovery Rate in Tea Plants. Chagyo Kenkyu Hokoku (Tea Research Journal) 2008:106, pages 53-62.
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. (2005) 茶園からの亜酸化窒素発生量削減技術. Chagyo Kenkyu Hokoku (Tea Research Journal) 2005:100, pages 45-48.
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Yasuhiro Nakajima, Shigehiro Ishizuka, Haruo Tsuruta, Anas Iswandi & Daniel Murdiyarso. (2005) Microbial processes responsible for nitrous oxide production from acid soils in different land-use patterns in Pasirmayang, central Sumatra, Indonesia. Nutrient Cycling in Agroecosystems 71:1, pages 33-42.
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K. Oishi & T. Kusuda. (2003) CHARACTERISTICS AND DISTRIBUTIONS OF NITROUS OXIDE-PRODUCING DENITRIFYING FUNGI IN NATURAL ENVIRONMENTS. Journal of Water and Environment Technology 1:1, pages 67-72.
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Yoshiteru BABA, Hiroshi MATSUO, Yuko ISHIBASHI, Yoshitaka NAGAFUCHI, Yoko TAKAHASHI, Shinichi NONAKA, Tatemasa HIRATA & Masataka NISHIKAWA. (2003) On-Site Purification of Nitrate-Polluted Groundwater Using Electrodialysis Reversal (EDR) System and Granule-Type Denitrification System. Journal of Japan Society on Water Environment 26:6, pages 361-367.
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Ikuo WATANABE, Shinichi TOKUDA & Kunihiko NONAKA. (2002) Nutrients Leaching Losses from Lysimeter-Grown Tea Plants Fertilized at Two Rates of Nitrogenライシメーターによる茶園土壌の窒素収支. Chagyo Kenkyu Hokoku (Tea Research Journal) 2002:94, pages 1-6.
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