4.7 Article

Multifunctional Environmental Smart Fertilizer Based on L-Aspartic Acid for Sustained Nutrient Release

Journal

JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY
Volume 64, Issue 24, Pages 4965-4974

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jafc.6b01133

Keywords

poly(aspartic acid); sustainable agriculture; sustained release; multifunctional fertilizer; water holding; water retention

Funding

  1. National Natural Science Foundation of China [51273086, 51503091, 51541304]
  2. Ministry of Education of China [20130211110017]
  3. Fundamental Research Funds for the Central Universities [lzujbky-2015-26]

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Fertilizer is one of the most important elements of modern agriculture. However, conventional fertilizer, when applied to crops, is vulnerable to losses through volatilization, leaching, nitrification, or other means. Such a loss limits crop yields and pollutes the environment. In an effort to enhance nutrient use efficiency and reduce environmental pollution, an environmental smart fertilizer was reported in the current study. Poly(aspartic acid) and a degradable macro-cross-linker based on L-aspartic acid were synthesized and introduced into the fertilizer as a superabsorbent to improve the fertilizer degradability and soil moisture-retention capacity. Sustained release behavior of the fertilizer was achieved in soil. Cumulative release of nitrogen and phosphorus was 79.8% and 64.4% after 30 days, respectively. The water-holding and water-retention capacities of soil with the superabsorbent are obviously higher than those of the control soil without superabsorbent. For the sample of 200 g of soil with 1.5 g of superabsorbent, the water-holding capacity is 81.8%, and the water-retention capacity remains 22.6% after 23 days. All of the current results in this study indicated that the as-prepared fertilizer has a promising application in sustainable modern agriculture.

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