Design and Application of a Solar Mobile Pond Aquaculture Water Quality-Regulation Machine Based in Bream Pond Aquaculture
Bream pond aquaculture plays a very important role in China's aquaculture industry and is the main source of aquatic products. To regulate and control pond water quality and sediment, a movable solar pond aquaculture water quality regulation machine (SMWM) was designed and used. This machine is...
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Published in | PloS one Vol. 11; no. 1; p. e0146637 |
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Main Authors | , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Public Library of Science
20.01.2016
Public Library of Science (PLoS) |
Subjects | |
Online Access | Get full text |
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Summary: | Bream pond aquaculture plays a very important role in China's aquaculture industry and is the main source of aquatic products. To regulate and control pond water quality and sediment, a movable solar pond aquaculture water quality regulation machine (SMWM) was designed and used. This machine is solar-powered and moves on water, and its primary components are a solar power supply device, a sediment lifting device, a mechanism for walking on the water's surface and a control system. The solar power supply device provides power for the machine, and the water walking mechanism drives the machine's motion on the water. The sediment lifting device orbits the main section of the machine and affects a large area of the pond. Tests of the machine's mechanical properties revealed that the minimum illumination necessary for the SMWM to function is 13,000 Lx and that its stable speed on the water is 0.02-0.03 m/s. For an illumination of 13,000-52,500 Lx, the sediment lifting device runs at 0.13-0.35 m/s, and its water delivery capacity is 110-208 m(3)/h. The sediment lifting device is able to fold away, and the angle of the suction chamber can be adjusted, making the machine work well in ponds at different water depths from 0.5 m to 2 m. The optimal distance from the sediment lifting device to the bottom of the pond is 10-15 cm. In addition, adjusting the length of the connecting rod and the direction of the traction rope allows the SMWM to work in a pond water area greater than 80%. The analysis of water quality in Wuchang bream (Parabramis pekinensis) and silver carp (Hypophthalmichthys molitrix) culture ponds using the SMWM resulted in decreased NH3(+)-N and available phosphorus concentrations and increased TP concentrations. The TN content and the amount of available phosphorus in the sediment were reduced. In addition, the fish production showed that the SMWM enhanced the yields of Wuchang bream and silver carp by more than 30% and 24%, respectively. These results indicate that the SMWM may be suitable for Wuchang bream pond aquaculture in China and that it can be used in pond aquaculture for regulating and controlling water quality. |
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Bibliography: | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Competing Interests: The authors helped obtain invention patents for this study. There are 3 invention patents related to the machine were authorized by China Intellectual Property Office, specified below. These patents are owned by Fishery Machinery and Instrument Research Institute, Chinese Academy of Fishery Science: (1) Yongjun Zhang, Haisheng Zhou, Guochang Xu, Xingguo Liu, Chao Chen: A sludge lifting device from deep water (ZL 2012 1 0310961.3). (2) Xingguo Liu, Hao Xu, Yongjun Zhang, Haisheng Zhou, Zongyong Yu, Guochang Xu:A solar aquaculture water quality-regulation machine (ZL 2012 1 0249913.8). (3) Xingguo Liu, Haoxu, Zongyong Yu, ChangFeng Tian, Guochang Xu: A system for pond sediments reuse (ZL 2011 1 0085672.3). This does not alter the authors' adherence to all the PLOS ONE policies on sharing data and materials. Conceived and designed the experiments: XGL HX ZJM YJZ CFT GFC HSZ SJL RT. Performed the experiments: XGL HX ZJM YJZ CFT GFC HSZ SML SJL RT. Analyzed the data: XGL SML CFT GFC. Contributed reagents/materials/analysis tools: XGL SML CFT HSZ GFC SJL. Wrote the paper: XGL SML. |
ISSN: | 1932-6203 1932-6203 |
DOI: | 10.1371/journal.pone.0146637 |