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Nutrient uptakes and biochemical composition of Lemna minor in brackish water

机译:在咸水中的Lemna未成年人的营养上床和生化组成

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The freshwater plant species Lemna minor suffers significantly in nutrient uptake and biomass accumulation performance when grown in saline effluents, such as those produced in brackish aquaculture operations. To determine the exact impact of salinity to these plant traits, this study measured the nutrient uptakes and biochemical composition of L. minor grown in synthetic aquaculture medium of increasing salinity levels. The overall trend for biomass growth showed that higher salinity levels resulted in lower growth with a mass gain of about 13% in 12.5 ppt medium compared with 96% in the control. However, the NO3- uptake appeared to be unaffected by differences in salinity. NH4+ uptake was significantly affected only at salinity concentrations of 10 ppt and 12.5 ppt. The relationship between PO43- uptake and salinity was less clear, as PO43- levels appeared to decrease linearly for all test groups and were shown to be statistically insignificant. At the end of the experiment period, the control medium showed the lowest measured COD levels, 17 mg/L while the 12.5 ppt solution has the highest COD level, 61 mg/L. Protein content showed a decline with increasing salinity of growth medium, while carbohydrate content was shown to be increasing. These preliminary data identify the general relationship between salinity and the measured criteria of L. minor and will subsequently serve as the basis for further remediation studies and the development of salinity mitigation methods.
机译:淡水植物物种Lemna轻微在盐水流出物中生长时营养吸收和生物质积累性能显着,例如咸水水产养殖业务中生产的植物累积性能。为了确定盐度对这些植物特征的确切影响,该研究测量了盐度水平增加的合成水产养殖中的L. mins的营养上升和生化组成。生物质生长的总体趋势表明,较高的盐度水平导致较低的生长率,在12.5 ppt培养基中的质量增益约为13%,而对照中的96%。然而,NO3吸收似乎不受盐度差异的影响。 NH4 +摄取仅受10 ppt和12.5 ppt的盐度浓度受到显着影响。 PO43 - 摄取和盐度之间的关系较小,因为PO43似乎似乎为所有测试组线性降低,并且被证明是统计学上微不足道的。在实验期结束时,对照介质显示出最低测量的COD水平,17mg / L,而12.5 ppt溶液具有最高的COD水平,61mg / L。蛋白质含量随着生长培养基的含量增加而显示出下降,而碳水化合物含量显示出增加。这些初步数据识别盐度之间的一般关系和L. minor的测量标准,随后将作为进一步修复研究和盐度缓解方法的发展的基础。

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