Crop residue interactions with fertilizer rate enhances volatilization loss and reduces nitrogen use efficiency in irrigated maize and potato

Author:

Rahman Jahangir Mohammad Mofizur1,Rahman Safinur12,Uddin Shihab1,Mumu Nusrat Jahan13,Biswas Chanchal1,Jahiruddin Mohammad1,Müller Christoph45,Zaman Mohammad6

Affiliation:

1. Department of Soil Science, Bangladesh Agricultural University, Mymensingh, Bangladesh

2. Soil Resource Development Institute, Dhaka, Bangladesh

3. Department of Soil Science, Khulna Agricultural University, Khulna, Bangladesh

4. Institute of Plant Ecology (IFZ), Justus-Liebig University Giessen, Germany

5. School of Biology and Environmental Science and Earth Institute, University College Dublin, Dublin, Ireland

6. Soil and Water Management & Crop Nutrition, Joint FAO/IAEA Division of Nuclear Techniques in Food & Agriculture, Vienna, Austria

Funder

BAS-USDA

Publisher

Informa UK Limited

Subject

Soil Science,Agronomy and Crop Science

Reference54 articles.

1. Soil Greenhouse Gas and Ammonia Emissions in Long‐Term Maize‐Based Cropping Systems

2. Ahmed S, Jahiruddin M, Razia S, Begum RA, Bisws JC, Rahman ASMM, Ali MM, Islam KMS, Hossain MM, Gani MN, et al. 2018. Fertilizer recommendation guide-2018. Bangladesh Agricultural Research Council (BARC), Farmgate, Dhaka 1215, Bangladesh. p. 223.

3. Soil nitrogen storage and availability to crops are increased by conservation agriculture practices in rice–based cropping systems in the Eastern Gangetic Plains

4. BBS. 2020. Bangladesh bureau of statistics. Bangladesh Bureau of Statistics. Statistical Year Book Bangladesh 2019, Dhaka.

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