生态与农村环境学报 ›› 2013, Vol. 29 ›› Issue (5): 671-675.doi:

• 研究简报 • 上一篇    下一篇

施用生物质炭基肥对水稻产量及氮素利用的影响

陈琳,乔志刚,李恋卿,潘根兴     

  1. 南京农业大学农业资源与生态环境研究所
  • 收稿日期:2013-02-26 修回日期:2013-09-17 出版日期:2013-09-25 发布日期:2013-09-30
  • 通讯作者: 李恋卿 南京农业大学农业资源与生态环境研究所 E-mail:lqli@njau.edu.cn
  • 作者简介:陈琳(1987-),女,江苏泰州人,硕士生,主要研究方向为农业减排技术。E-mail:chenlin.2007.03@163.com
  • 基金资助:

    公益性行业(农业)科研专项(200903003)

Effects of Biochar-Based Fertilizers on Rice Yield and Nitrogen Use Efficiency

 CHEN  Lin, QIAO  Zhi-Gang, LI  Lian-Qing, PAN  Gen-Xing   

  1. Institute of Resource,Ecosystem and Environment of Agriculture,Nanjing Agricultural University
  • Received:2013-02-26 Revised:2013-09-17 Online:2013-09-25 Published:2013-09-30
  • Contact: LI Lian-Qing Institute of Resource,Ecosystem and Environment of Agriculture,Nanjing Agricultural University E-mail:lqli@njau.edu.cn

摘要: 利用小麦秸秆、玉米秸秆、花生壳、猪粪炭堆肥和生活废弃物这5种原料的生物质炭与化肥混合制作炭基复混肥,进行水稻生产的田间试验,分析不同生物质炭基肥处理下水稻产量与氮素利用率的变化。结果表明,与常规复混化肥比较,炭基肥处理施氮量减少19.94%,但水稻的经济产量提高6.70%以上,其中小麦秸秆炭基肥处理增产幅度最高,达39.34%。炭基肥处理可显著提高水稻每穗总粒数和单穗重,水稻籽粒与茎叶吸氮量比值提高11.64%(花生壳)~59.91%(生活废弃物),说明施用炭基肥可促进氮素向水稻籽粒的分配。施用炭基肥料可明显提高水稻的氮素偏生产力、氮素收获指数和氮素稻谷生产率,其中氮素偏生产力较常规复混化肥提高33.41%(玉米秸秆)~74.09%(小麦秸秆)。生物质炭基复混肥是一种可以替代传统有机无机配合施肥的节氮肥料,小麦秸秆碳基肥在减少肥料投入、提高水稻产量和氮肥利用率方面具有较好的推广潜力。

关键词: 炭基肥料, 水稻, 施肥量, 产量, 氮素利用率

Abstract: A field experiment was carried out on using biochar-based fertilizers (BCF) in rice production. The BCFs used in the experiment were kind of blends of chemical fertilizers(CF) and biochar prepared out of wheat straw, maize stalk, peanut shells, pig dung, and domestic waste, separately. The field experiment was designed to explore effects of the BCFs on rice yield and N recovery rate in a paddy field in Chizhou, Anhui Province. Results show that compared to CF, the BCFs reduced the dosage of N fertilizer by 19.94% and increased rice yield at least by 6.7% and even by 39.34% as a result of the use of wheat straw biochar. The BCFs also significantly increased the number and weight of grains per ear and the ratio of nitrogen content in grain/stem-and–leaf by 11.64% - 59.91%, indicating that the use of BCFs improved N distribution to grains, partial factor productivity of nitrogen by 33.41% -74.09%, and nitrogen harvest index and nitrogen grain production efficiency of the crop were improved as well. It is, therefore, concluded that BCF is a nitrogen-saving alternative to the traditional way of “chemical fertilizer plus organic manure”.Especially, the wheat straw biochar-based fertilizer has a significant extension potential in increasing rice yield and improving N using efficiency.

Key words: biochar-based fertilizers, fertilization rate, rice, yield, nitrogen use efficiency

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