首页> 外文期刊>Science of the total environment >The potential of a salt-tolerant plant (Distichlis spicata cv. NyPa Forage) to treat effluent from inland saline aquaculture and provide livestock feed on salt-affected farmland
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The potential of a salt-tolerant plant (Distichlis spicata cv. NyPa Forage) to treat effluent from inland saline aquaculture and provide livestock feed on salt-affected farmland

机译:耐盐植物(Distichlis spicata cv。NyPa饲料)处理内陆盐水养殖的污水并在受盐影响的农田上提供牲畜饲料的潜力

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摘要

Dryland salinity is a major problem affecting food production from agricultural land in Australia and throughout the world. Although there is much interest in using saline groundwater to grow marine fish on salt-affected farmland, the disposal of nutrient enriched, saline aquaculture effluent is a major environmental problem. We investigated the potential of the salt-tolerant NyPa Forage plant (Distichlis spicata L Greene var. yensen-4a) to trap nutrients from saline aquaculture effluent and subsequently to provide a fodder crop for livestock. Sub-surface flow wetlands containing NyPa Forage were constructed and their efficacy in removing total nitrogen, ammonia, nitriteitrate, total phosphorus and orthophosphate was monitored under different levels of nutrients and salinity. The wetlands removed 60-90% of total nitrogen loads and at least 85% of ammonia, nitriteitrate, total phosphorus and ortho-phosphate loads, with greater efficiency at high nutrient and low salinity levels. The above-ground yield, sodium, crude protein (CP) and in vitro dry matter digestibility (DMD) of NyPa Forage plants were measured after fertilisation with different nutrient levels and cropping at different frequencies. Yield of plants increased with increased nutrient, while nutritive value was greater when nutrients were applied but did not differ among nutrient levels. Yield was not affected by cropping frequency, but nutritive value was greatest when plants were cropped at intervals of 21 or 42 days. At optimum nutrient addition and cropping levels, the plants had a mean CP content of 16.7% and an in vitro DMD of 67.6%, equivalent to an energy value of 9.5 MJ kg~(-1). Assuming an equivalent fibre content and voluntary food intake as grass hay, and no accumulation of other toxic minerals, these nutritive values would be sufficient for maintenance or moderate liveweight gains in dry adult sheep or cattle.
机译:旱地盐度是影响澳大利亚乃至全世界农地粮食生产的主要问题。尽管人们非常关注在含盐农田中使用盐水开采海水来养殖海水鱼,但是如何处理富含营养的盐水养殖养殖废水却是一个主要的环境问题。我们调查了耐盐NyPa饲用植物(Distichlis spicata L Greene var。yensen-4a)从盐水养殖废水中捕获营养物并随后为牲畜提供​​饲料作物的潜力。构造了含有NyPa饲草的地下流湿地,并在不同养分和盐分水平下监测了它们在去除总氮,氨,亚硝酸盐/硝酸盐,总磷和正磷酸盐方面的功效。湿地去除了总氮负荷的60-90%,以及至少85%的氨,亚硝酸盐/硝酸盐,总磷和正磷酸盐负荷,在高养分和低盐度水平下效率更高。施肥后,以不同的养分含量和不同的种植频率对NyPa草料植物的地上产量,钠,粗蛋白(CP)和体外干物质消化率(DMD)进行了测量。养分的增加使植物的产量增加,而施用养分时的营养价值更高,但养分水平之间没有差异。产量不受种植频率的影响,但每隔21天或42天种植一次,营养价值最大。在最佳养分添加和种植水平下,植物的平均CP含量为16.7%,体外DMD为67.6%,相当于能量值为9.5 MJ kg〜(-1)。假设纤维含量和自愿摄入的食物与草干草相当,并且没有其他有毒矿物质的积累,那么这些营养价值将足以维持成年干羊或牛的体重或使其适度增加体重。

著录项

  • 来源
    《Science of the total environment》 |2013年第15期|192-201|共10页
  • 作者单位

    Fish Health Unit and Freshwater Fish Croup, School of Veterinary and life Sciences, Murdoch University, South Street, Murdoch, WA 6150, Australia;

    Fish Health Unit and Freshwater Fish Croup, School of Veterinary and life Sciences, Murdoch University, South Street, Murdoch, WA 6150, Australia;

    Fish Health Unit and Freshwater Fish Croup, School of Veterinary and life Sciences, Murdoch University, South Street, Murdoch, WA 6150, Australia;

    Fish Health Unit and Freshwater Fish Croup, School of Veterinary and life Sciences, Murdoch University, South Street, Murdoch, WA 6150, Australia Australian Centre for Applied Aquaculture Research, Challenger Institute of Technology, 1 Fleet Street, Fremantle, WA 6160, Australia;

    CSIRO Animal, Food and Health Sciences, Private Bag 5, Wembley, WA 6193, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Salinity; Inland saline aquaculture; Effluent; Constructed wetlands; Saltland pasture; Agri-aquaculture;

    机译:盐度;内陆盐水养殖;废水人工湿地;盐田牧场;农业水产养殖;

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