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91.
Lakes Chivero and Manyame are amongst Zimbabwe’s most polluted inland water bodies. MEdium Resolution Imaging Spectrometry level 1b full resolution imagery for 2011 and 2012 were used to derive chlorophyll-a (chl_a) and phycocyanin (blue-green algae) concentrations using a semi-empirical band ratio model; total suspended matter (TSM) concentrations were derived from the MERIS processor. In-situ measured chl_a was used to validate the remotely sensed values. Results indicate that remote sensing measurements are comparable with in situ measurements. A strong positive correlation (R2 = 0.91; MAE = 2.75 mg/m3 (8.5%)) and p < 0.01 (highly significant)) between measured and modeled chl_a concentrations was obtained. Relationships between optically active water constituents were assessed. Measured chl_a correlated well with MERIS modeled phycocyanin (PC) concentration (R2 = 0.9458; p < 0.01 (highly significant)) whilst chl_a and TSM gave (R2 = 0.7344; p < 0.05 (significant)). Modeled TSM and PC concentrations manifested a good relationship with each other (R2 = 9047; p < 0.001 (very highly significant)). We conclude that remote sensing data allow simultaneous retrieval of different water quality parameters as well as providing near real time and space results that can be used by water managers and policy makers to monitor water bodies. 相似文献
92.
93.
4种海洋单胞藻生化组成的环境因子效应研究 总被引:15,自引:0,他引:15
在实验室模拟条件下,应用14C示踪法测定4种海洋单胞藻的光合作用速率,研究光、温度和营养盐等环境因子对藻类细胞生化组成的影响.结果表明,三角褐指藻、盐藻、中肋骨条藻和等鞭金藻适宜生长的光强范围为5.8×103~15×103lx.4种单胞藻光合作用速率随光强增加而增大,其中盐藻和等鞭金藻的光响应比较明显.随光强增加,4种单胞藻细胞的碳水化合物含量及其变化量呈增加趋势,而蛋白质含量及其变化量则减少,脂类含量变化很小.三角褐指藻、盐藻、中肋骨条藻和等鞭金藻最适生长温度分别为:14、26、21、26℃左右.在上述4个实验温度时,4种单胞藻光合作用速率最高,细胞内的碳水化合物、蛋白质、脂类含量及其变化量也达到最大值.三角褐指藻、盐藻、中肋骨条藻和等鞭金藻光合作用过程的表观活化能(E)分别为:23.2、38.5、22.4和61.7KJ/mol,温度系数(Q10)分别为:1.74、1.74.1.38和1.69.三角褐指藻和中肋骨条藻在氮磷比(N/P)为16时,盐藻和等鞭金藻在氮磷比为28时,光合作用速率最大.在N/P为16时,4种单胞藻细胞内的碳水化合物、蛋白质、脂类含量和变化量均达到最大值. 相似文献
94.
Nitrogen and phosphorus in New Zealand streams and rivers: Control and impact of eutrophication and the influence of land management 总被引:2,自引:0,他引:2
Abstract Given sufficient light and heat, the growth of aquatic macrophytes and algae associated with eutrophication is generally controlled by the concentration, form and ratio between nitrogen (N) and phosphorus (P). Data from 1100 freshwater sites monitored for the last 10 years by New Zealand's regional councils and unitary authorities were assessed for streams and rivers with mean nitrate/ nitrite‐N (NNN), dissolved reactive P (DRP), total N (TN) and total P (TP) concentrations in excess of New Zealand guidelines, and to generate a data set of N:P ratios to predict potential periphyton response according to the concentration of the limiting nutrient. The frequency of sites exceeding the guidelines varied from 0 to 100% depending on the parameter and region, but South Island regions were generally more compliant. The dissolved inorganic N (DIN) to dissolved reactive P (DRP) ratio was used to group data into three nutrient limitation classes: <7:1 (N‐limited), between 7:1 and 15:1 (co‐limited), and>15:l (P‐limited), by mass. P‐limitation was the most frequent scenario in New Zealand streams (overall, 76% of sites were P‐limited, 12% N‐limited, and 12% co‐limited). The mean concentration of the limiting nutrient for each site was combined with empirical relationships to predict periphyton densities (the average of N‐and P‐limited growth was used for sites with co‐limitation). This assessment predicted that 22 sites were likely to exceed the periphyton guideline for protecting benthic biodiversity (50 mg chlorophyll a m?2), but this assessment is likely to be highly changeable in response to climatic conditions and present and future land use. As an example, we modelled N and P losses from an average sheep and a dairy farm in Southland (South Island, New Zealand) in 1958, 1988, 2008 and 2028. We predicted that with time, as farm systems have and continue to intensify, N losses increase at a greater rate than P losses. Since the pathway for N to reach fresh waters may be more tortuous and take longer than P to reach a stream or river, focusing mitigation on P losses may have a quicker effect on potential algal growth. In addition, with time, it is expected that P‐limitation in New Zealand's rivers and streams will be more widespread as N‐losses are unabated. Hence, although strategies to decrease N losses should be practised, mitigating P losses is also central to preventing eutrophication. 相似文献
95.
通过对我国沿海多次野外实地考查以及文献报道,采用统计学的分析方法,研究了马尾藻属海藻资源的物种构成和区系分布特征.结果表明,马尾藻属种数在我国海域的水平分布呈现出北少南多的趋势,黄、东海仅17种,南海达到124种、占世界马尾藻总数的36.47%.其中,黄海西区、东海西区、南海北区和南海南区种数及小区单一分布种类数分别为10、13、82和61种及2、3、52和42种.我国特有种类为64种、占世界尾藻总数的18.82%.在我国沿海马尾藻的垂直分布特征为:高潮带2种,低潮带91种,潮下带78种. 相似文献
96.
采用水质监测方法对2008—2010年南太湖水域三个入湖口(小梅港、新塘港、大钱港)水体中蓝藻生物量、CODMn和DO的时空变化特征进行了监测和调查,并通过SPSS10.0软件对蓝藻生物量与CODMn和DO的相关性进行了分析。结果表明:(1)3年内南太湖入湖口蓝藻颗粒数在1.0×106个/L以上范围的频率每年超过50%,最高在3.0×107个/L左右;(2)南太湖入湖口CODMn指标大部分处于较高的污染水平,最高有6.5mg/L,最低约3.0mg/L;(3)蓝藻生物量与CODMn的相关性系数r介于0.3—0.7之间,呈现中低度正相关;(4)3年内蓝藻生物量与DO的相关性系数r介于0.30—0.50,呈现低度正相关,DO浓度有70%以上的频率大于6.0mg/L。结果表明,3个入湖口溶解氧指标能达Ⅱ—Ⅲ类地表水水质标准,但有机物污染已经不容忽视,并且与蓝藻暴发呈一定的相关性。 相似文献
97.
Trevor G. Dix 《新西兰海洋与淡水研究杂志》2013,47(1):13-16
Newly metamorphosed Evechinus chloroticus (Val.) were observed in three larval cultures 36, 30, and 28 days after fertilisation, indicating that the free swimming larval life may last about 1 month. 相似文献
98.
Oxygen consumption was estimated for two eutrophic New Zealand lakes using a simple 2‐layer model, from estimates of net changes in oxygen, phytoplankton photosynthesis, inflow and outflow, diffusion, eddy diffusion, and changes in the depth of the thermocline. Of the total oxygen consumption, 75–85% occurred in the epilimnia. Epilimetic oxygen consumption per m3 and per m2 in Lake Johnson were higher than in Lake Hayes, reflecting known differences in the trophic status of the lakes, but estimates for the hypolimnia of the two lakes were similar. Daily hypolimnetic areal deficits were sensitive to both the depths and time intervals chosen. In the epilimnia, monthly oxygen production by photosynthesis averaged 1.1 and 1.8 times the initial oxygen content in Lakes Hayes and Johnson respectively. Diffusion appeared to be of similar magnitude to photosynthesis in the isothermal period, but was less important during stratification. Losses to the hypolimnia by eddy diffusion were less than 10% of photosynthesis. Photosynthesis in the hypolimnia contributed 30–40% of the oxygen consumed there and eddy diffusion supplied a further 20%. In Lake Johnson a 3–5 m stratum of water in the metalimnion became anoxic for 2–3 months each summer while there were still up to 5.2 g.rer3 of oxygen remaining in the hypolimnion. Metalimnetic anoxia is attributed largely to oxygen consumption in situ, resulting from the highly eutrophic state of the lake and intense thermal stratification. Zooplankton respiration accounted for less than 10% of the maximum net decline in metalimnetic oxygen in 1970–71, but was more important in the other 2 years. Changes in the oxygen content of the hypolimnion indicate that Lake Hayes has become more eutrophic since 1954–55. In Lake Johnson low oxygen concentrations at the autumn overturn (<5 g.m‐3) represent a threat to the trout population. 相似文献
99.
M. J. Winterbourn 《新西兰海洋与淡水研究杂志》2013,47(3-4):271-281
The invertebrate fauna colonising wooden blocks placed in a beech forest stream was studied over a period of 1 year. At least 31 species were taken during the course of the study, with 3 species of Chironomidae predominating numerically. Most species were associated principally with fine particulate matter (FPM) deposited on the upper surfaces of blocks, although a stonefly, Spaniocerca zelandica, was most abundant on the barer surfaces. Of the Chironomidae, Paucispinig‐era approximata and Polypedilum canum had clearly defined life history patterns with emergence from February to April and October to January, respectively. Psectrocladius sp. had a poorly defined life history. Gut contents of 16 insect species showed that 4 were predominantly predatory, and the remainder were detritivores. The latter could be categorised as shredders (large particle detritivores) or collector‐browsers which mainly ingested particles in the dominant (<50 μm) size range. Oxygen consumption by fine stream sediments was similar at different times of year which suggests that the food quality of detritus may tie relatively constant at all times. 相似文献
100.
Max M. Tilzer 《新西兰海洋与淡水研究杂志》2013,47(3):401-412
In eutrophic lakes cyanobacteria are favoured relative to other phytoplankton, both under stratified and mixed conditions. During stratification, gas vacuole formation allows the accumulation of dense surface scums which attain the highest possible area‐specific photosynthetic rates in aquatic environments owing to high irradiances, near‐complete harvesting of impinging light, and minimal light inhibition and photo‐oxidation. During moderate mixing, high yields of biomass can be achieved by effective light harvesting for photosynthesis (aided by phycobilin pigments) and low maintenance energy requirements at low mean irradiances. Howevrr, nitrogen fixation competes for energy and reductant with photosynthesis, and leads to a decline of light‐saturated maximum growth rates. Wind‐driven vertical mixing and lateral advection are the main causes for the instability of cyanobacterial blooms in hyper‐eutrophic lake ecosystems. 相似文献