4.5 Article

Growth and yield responses of crops and macronutrient balance influenced by commercial organic manure used as a partial substitute for chemical fertilizers in an intensive vegetable cropping system

Journal

PHYSICS AND CHEMISTRY OF THE EARTH
Volume 36, Issue 9-11, Pages 387-394

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.pce.2010.03.030

Keywords

Commercial organic manure (COM); Tomato-radish-pakchoi cropping systems; Market yield; Macronutrient balance

Funding

  1. National Major Science and Technology Project [2008ZX07101-006]
  2. National Key Basic Sciences Research Project [2007CB109305, 2002CB410807]
  3. Zhejiang Provincial Natural Science Foundation of China [R307153]

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A long-term field experiment was conducted with an annual rotation of tomato-radish-pakchoi to assess the effects of a commercial organic manure (CONI) used as a partial substitute for chemical fertilizers on crop yield and nutrient balance in an intensive vegetable cropping system. Four treatments as chemical fertilizers (T1), chemical fertilizers + lower rate of COM (T2), chemical fertilizers + medium rate of COM (T3), and chemical fertilizers + high rate of COM (T4) were designed in the present experiment. The supplied doses of N, P, and K were equal for all treatments. Results showed that there were no significant differences in shoot biomass and market yields of tomato, radish and pakchoi among treatments (P > 0.05). It was found that positive P and K balance existed in the tomato-radish-pakchoi cropping system of all treatments. Compared with no manure treatment (T1), application of medium rate of COM (T3) decreased N. P runoff losses, increased N. P. K contents in crop tissues except N. P in pakchoi shoot, and lessened P. K accumulation in soils, accordingly, improved the efficiency of macronutrient. It was concluded that appropriate COM used as a partial substitute for chemical fertilizers could not only meet the crops' nutrient requirement, but also improved the efficiency of macronutrient and remained positive balance of P and K in the intensive tomato-radish-pakchoi cropping system, which can be regarded as an effective measure for a contribution towards sustainable agriculture and a control pathway for reducing the potential risk of castoff to water environment. (c) 2010 Elsevier Ltd. All rights reserved.

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