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Dewatering of Scenedesmus obliquus Cultivation Substrate with Microfiltration:Potential and Challenges for Water Reuse and Effective Harvesting
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作者 Marco Malaguti Lorenzo Craveri +3 位作者 Francesco Ricceri Vincenzo Riggio Mariachiara Zanetti Alberto Tiraferri 《Engineering》 SCIE EI CAS CSCD 2024年第7期155-163,共9页
In the microalgae harvesting process,which includes a step for dewatering the algal suspension,directly reusing extracted water in situ would decrease the freshwater footprint of cultivation systems.Among various alga... In the microalgae harvesting process,which includes a step for dewatering the algal suspension,directly reusing extracted water in situ would decrease the freshwater footprint of cultivation systems.Among various algae harvesting techniques,membrane-based filtration has shown numerous advantages.This study evaluated the reuse of permeate streams derived from Scenedesmus obliquus(S.obliquus)biomass filtration under bench-scale and pilot-scale conditions.In particular,this study identified a series of challenges and mechanisms that influence the water reuse potential and the robustness of the membrane harvesting system.In a preliminary phase of this investigation,the health status of the initial biomass was found to have important implications for the harvesting performance and quality of the permeate stream to be reused;healthy biomass ensured better dewatering performance(i.e.,higher water fluxes)and higher quality of the permeate water streams.A series of bench-scale filtration experiments with different combinations of cross-flow velocity and pressure values were performed to identify the operative conditions that would maximize water productivity.The selected conditions,2.4 m·s^(-1)and 1.4 bar(1 bar=105 Pa),respectively,were then applied to drive pilot-scale microfiltration tests to reuse the collected permeate as a new cultivation medium for S.obliquus growth in a pilot-scale photobioreactor.The investigation revealed key differences between the behavior of the membrane systems at the two scales(bench and pilot).It indicated the potential for beneficial reuse of the permeate stream as the pilot-scale experiments ensured high harvesting performance and growth rates of biomass in permeate water that were highly similar to those recorded in the ideal cultivation medium.Finally,different nutrient reintegration protocols were investigated,revealing that both macro-and micro-nutrient levels are critical for the success of the reuse approach. 展开更多
关键词 scenedesmus obliquus MICROFILTRATION Permeate reuse HARVESTING MICROALGAE PILOT-SCALE
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有机锡对斜生栅藻(Scenedesmus obliquu)的毒性影响试验研究 被引量:6
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作者 何炜 梁淑轩 +1 位作者 杜道彬 孟海涛 《农业环境科学学报》 CAS CSCD 北大核心 2007年第B03期75-78,共4页
有机锡对海洋环境有着很大的破坏作用,为此以一甲基氯化锡(CH3SnC l3)和二甲基氯化锡((CH3)2SnC l2)为代表,研究了不同浓度有机锡对斜生栅藻(Scenedesmus obliquus)的毒性影响,并且对两种有机锡的毒性进行了对比试验。结果表明,一甲基... 有机锡对海洋环境有着很大的破坏作用,为此以一甲基氯化锡(CH3SnC l3)和二甲基氯化锡((CH3)2SnC l2)为代表,研究了不同浓度有机锡对斜生栅藻(Scenedesmus obliquus)的毒性影响,并且对两种有机锡的毒性进行了对比试验。结果表明,一甲基氯化锡和二甲基氯化锡对斜生栅藻的生长均有一定抑制作用,且二甲基氯化锡的毒性大于一甲基氯化锡。当有机锡浓度为200μg.L-1时,对藻细胞的生长抑制达到20.4%;随着有机锡浓度的增加,抑制效应增大。 展开更多
关键词 有机锡 斜生栅藻(scenedesmus obliquus) 毒性
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壶状臂尾轮虫(Brachionus urceus)培养滤液对斜生栅藻(Scenedesmus obliquus)形态和多聚糖含量的影响 被引量:2
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作者 杨州 孔繁翔 +1 位作者 史小丽 张民 《生态学报》 CAS CSCD 北大核心 2008年第4期1857-1863,共7页
分离自太湖的壶状臂尾轮虫(Brachionus urceus (Linnaeus))按1000 ind.L-1的密度置于斜生栅藻(Scenedesmus obliquus)中培养24h后,用孔径0.10μm的微孔滤膜抽滤,得到壶状臂尾轮虫培养滤液。将壶状臂尾轮虫培养滤液以20%的比例添加到纯... 分离自太湖的壶状臂尾轮虫(Brachionus urceus (Linnaeus))按1000 ind.L-1的密度置于斜生栅藻(Scenedesmus obliquus)中培养24h后,用孔径0.10μm的微孔滤膜抽滤,得到壶状臂尾轮虫培养滤液。将壶状臂尾轮虫培养滤液以20%的比例添加到纯培养的斜生栅藻中,进行为期7d的试验。结果表明壶状臂尾轮虫培养滤液能显著地影响斜生栅藻的形态,处理组中诱发性多细胞群体增加,导致处理组中斜生栅藻种群平均每个个体的细胞数量显著高于对照组。斜生栅藻在壶状臂尾轮虫诱发下形成群聚体可以解释为一种诱发性的反牧食防御,同时也进一步证实了栅藻对浮游动物牧食的响应是一种广泛存在的现象。壶状臂尾轮虫培养滤液处理后的斜生栅藻在生长率上与对照组没有显著性差异,说明诱发性防御群聚体形成的代价没有体现在对生长的影响上。在壶状臂尾轮虫培养滤液诱发下,较多栅藻细胞聚积在一起形成群聚体后,栅藻溶解性胞外多聚糖和固着性胞外多聚糖均有显著提高,而胞内多聚糖略有下降。但从总多聚糖含量看,处理组明显高于对照组,这也说明轮虫培养滤液刺激了栅藻多聚糖合成的额外增加,且被分泌到胞外,充当细胞之间的粘合物,促使细胞容易聚合形成群聚体,有效防御象轮虫这些小型浮游动物的进一步牧食,保持种群得以延续。 展开更多
关键词 壶状臂尾轮虫Brachionus urceus (Linnaeus) 斜生栅藻(scenedesmus obliquus) 形态变化 群聚体形成 生长率 胞外多聚糖
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Bioaccumulation of Nickel by Various Scenedesmus Species in Culture Solution Containing Nickel 被引量:4
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作者 胡章立 黄玉山 谭凤仪 《Acta Botanica Sinica》 CSCD 2002年第8期978-982,共5页
Sixteen Scenedesmus species or strains have been employed to investigate the maximum capacity of nickel (Ni) accumulation in 10 mg/L Ni solution. The results showed that the capacity of accumulating Ni from aqueou... Sixteen Scenedesmus species or strains have been employed to investigate the maximum capacity of nickel (Ni) accumulation in 10 mg/L Ni solution. The results showed that the capacity of accumulating Ni from aqueous solution in 16 Scenedesmus species or strains showed the diversity. S. quadricauda freshwater algae culture collection of the Institute of Hydrobiology (FACHB) 44 and S. quadricauda FACHB 506 performed much more capacity of Ni accumulation than other species such as Scenedesmus sp. FACHB 416 and Scenedesmus sp. FACHB 489. Sequestration of Ni ions from aqueous solution was very efficient (26.7 mg Ni/g dry weight, in the 100 mg/L Ni solution) in S. quadricauda FACHB 44. The kinetics of Ni binding indicated that Ni bioaccumulation, in algal cell of S. quadricauda FACHB 44, possessed a rapid biosorption (5 min) and an slow bioaccumulation (2-3 h). More than 70% of Ni binding in algal cell were accumulated by biosorption and the remaining 20%-30% were bioaccumulated by energy_consumed transportation. It is much more higher ratio of energy_consumed transportation in S. quadricauda FACHB 44 than in other algae. Both the transmission electron microscope (TEM) and the energy_dispersive X_ray (EDX) microanalyses also revealed the different mechanisms of bioaccumulation in the various subcellular regions: a very fast adsorption in the cell wall; and a time_dependent absorption in protoplasm, specially in starch and chromatin. 展开更多
关键词 BIOACCUMULATION scenedesmus nickel (Ni)
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盐度对一株淡水栅藻Scenedesmus sp.生长及生化组成的影响 被引量:5
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作者 李嘉颖 李涛 +3 位作者 谭丽 吴嘉仪 向文洲 刘德海 《生物技术通报》 CAS CSCD 北大核心 2017年第7期155-161,共7页
通过管式光生物反应器培养,分析比较不同盐度(0-40‰)对一株淡水栅藻(Scenedesmus sp.)生长和生化特性影响,评价海水培养该藻株的产业化潜力,探讨其高盐适应机制,为进一步海水驯化研究提供理论参考。采用显微观察、索氏提取法、凯氏定... 通过管式光生物反应器培养,分析比较不同盐度(0-40‰)对一株淡水栅藻(Scenedesmus sp.)生长和生化特性影响,评价海水培养该藻株的产业化潜力,探讨其高盐适应机制,为进一步海水驯化研究提供理论参考。采用显微观察、索氏提取法、凯氏定氮法、苯酚硫酸法、气相色谱法及高效液相色谱法分别测定微藻生长及蛋白质、油脂、多糖含量以及色素、脂肪酸组成情况。结果表明,高盐条件下藻细胞明显增大,并出现自然沉降现象,可实现低成本采收。随盐度增加,栅藻生长逐步被抑制,40‰盐度条件下生长完全停止,但在3‰盐度下仍良好生长,培养末期生物量可达2.84 g/L。30‰盐度组蛋白质含量相对淡水组提高95.40%、产率与淡水组相近,加之高盐培养可较大幅度降低蛋白质的生产成本,因此,采用海水培养栅藻来开发蛋白资源具有一定的潜力。研究还表明,30‰盐度下藻细胞内β-胡萝卜素、虾青素、可溶性多糖等成分大量积累,可能是其适应高盐胁迫的重要生理基础。 展开更多
关键词 淡水栅藻 scenedesmus sp. 高盐胁迫 生长 生化组成
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Effects of silica nanoparticles on growth and photosynthetic pigment contents of Scenedesmus obliquus 被引量:17
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作者 Chenxi Wei, Yanbo Zhang, Jing Guo, Bing Han, Xu Yang, Junlin Yuan Hubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Huazhong Normal University, Wuhan 430079, China. 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第1期155-160,共6页
To assess the aquatic ecosystem safety for silica (SiO2) nanoparticles (NPs), the growth inhibition and photosynthetic pigment contents of Scenedesmus obliquus in logarithm growth phase exposed to SiO2 NPs and SiO... To assess the aquatic ecosystem safety for silica (SiO2) nanoparticles (NPs), the growth inhibition and photosynthetic pigment contents of Scenedesmus obliquus in logarithm growth phase exposed to SiO2 NPs and SiO2 bulk particles (BPs) suspensions were measured. SiO2 NPs with 10-20 nm diameters were found to be toxic. The 20% effective concentration (EC20) values for 72 and 96 hr were 388.1 and 216.5 mg/L, respectively. The contents of chlorophyll decreased significantly under moderate and high concentration (50, 100, and 200 mg/L) of SiO2 NPs after 96-hr exposure, but the carotenoids did not. SiO2 BPs were found to be nontoxic up to 200 mg/L. The toxicity of SiO2 NPs probablely due to their sorption to algal cells surface. The results imply that there is potential harm to aquatic environment by using SiO2 NPs, and it should deserve special concern. 展开更多
关键词 photosynthetic pigment scenedesmus obliquus silica nanoparticles
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Salt response of the freshwater microalga Scenedesmus obliquus(Turp.)Kutz is modulated by the algal growth phase 被引量:1
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作者 Taha Mohamed EL-KATONY Magda Faiz EL-ADL 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2020年第3期802-815,共14页
Growth and biochemical responses of the coenobial green alga Scenedesmus obliquus to salinity stress were monitored across different phases of growth.The alga was cultured on BG11 growth medium and subjected to 0,30,1... Growth and biochemical responses of the coenobial green alga Scenedesmus obliquus to salinity stress were monitored across different phases of growth.The alga was cultured on BG11 growth medium and subjected to 0,30,100,and 200 mmol/L NaCl for a period of 20 d,during which algal cultures were harvested at 4-d intervals.The salinity-induced inhibition of algal growth was accompanied with prolongation of timing of the different growth phases.The sharp and progressive salinity-induced inhibition of algal growth rate during the early phase of growth points to salt shock but moderation of inhibition at the subsequent stages of growth means algal acclimation to salinity.The concentrations of chlorophylls a and b,soluble sugars,proteins as well as those of K+and Na+in the alga exhibited peaks at the initiation of the exponential phase of growth,with increasing magnitude in proportion to the increase in the level of salinity.Nevertheless,whereas soluble sugars of the alga peaked at initiation of the exponential phase,starch concentration progressively increased with culture age,reaching saturation towards the stationary phase.Whereas the salinity-induced increase in soluble sugars was most evident at the early stages of growth the reverse was true for starch.The present results point to fast acclimation of S.obliquus to salt stress post a brief salt shock,utilizing soluble sugars,K+and Na+for osmotic adjustment.Increasing salinity from 0 to 200 mmol/L NaCl led to progressive increase in soluble sugars,proteins,K+and Na+concentrations of the algal cells,particularly at the early stages of growth.However,the salinity-induced increase in chlorophyll concentration approached a limit at 100 mmol/L NaCl whereas that in starch concentration was more evident at the later stages of growth. 展开更多
关键词 carbohydrates growth phase minerals protein SALT stress scenedesmus obliquus
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Effects of iron and humic acid on competition between Microcystis aeruginosa and Scenedesmus obliquus revealed by HPLC analysis of pigments 被引量:1
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作者 Miaomiao ZHAO Qiang HE +5 位作者 Chongtai CHEN Yaqi TIAN Jing WEI Pengfei DUAN Haiming WU Ming LI 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2021年第2期525-535,共11页
Iron is a vital micronutrient for growth of bloom-forming Microcystis aeruginosa and competition with other algae,and its availability is affected by humic acid.The effect of iron and humic acid on growth and competit... Iron is a vital micronutrient for growth of bloom-forming Microcystis aeruginosa and competition with other algae,and its availability is affected by humic acid.The effect of iron and humic acid on growth and competition between M.aeruginosa and Scenedesmus obliquus was assessed.The results showed the growth of M.aeruginosa and S.obliquus in mono-cultures was inhibited by humic acid at low iron concentrations(0.01 mg/L);the maximum inhibition ratios were 67.84%and 38.31%,respectively.The inhibition of humic acid on the two species was significantly alleviated when iron concentrations were 1.00 mg/L,with the maximum inhibition rate reduced to 5.82%for M.aeruginosa and to 23.06%for S.obliquus.S.obliquus was the dominant species in mixed cultures,and the mutual inhibition between M.aeruginosa and S.obliquus at low iron concentration was greater than that at high iron concentration.The inhibition of S.obliquus on M.aeruginosa was reduced at low iron concentrations;it increased at high iron concentrations,as concentrations of humic acid rose. 展开更多
关键词 MICROCYSTIS scenedesmus IRON humic acid COMPETITION pigment
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Split internal-loop photobioreactor for Scenedesmus sp.microalgae:Culturing and hydrodynamics
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作者 Laith S.Sabri Abbas J.Sultan Muthanna H.Al-Dahhan 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第5期236-248,共13页
In this study,the evaluation of the performance of the split internal loop photobioreactor for culturing a species of green microalgae,Scenedesmus sp.under different operating superficial gas velocity and during a dif... In this study,the evaluation of the performance of the split internal loop photobioreactor for culturing a species of green microalgae,Scenedesmus sp.under different operating superficial gas velocity and during a different time of growth(i.e.,starting for the first day until end day of the culturing process)was addressed.The evaluation of the performance of the split internal loop photobioreactor was included assessing the density,pH,temperature,viscosity,surface tension,the optical density,cell population,dry biomass,and chlorophyll of the culture medium of the microalgae culturing.Additionally,the hydrodynamics of a Split Internal-Loop Photobioreactor with microalgae culturing was comprehensively quantified.Radioactive particle tracking(RPT)and gamma-ray computed tomography(CT)techniques were applied for the first time to quantify and address the influence of microalgae culture on the hydrodynamic parameters.The hydrodynamics parameters such as local liquid velocity field,shear stresses,turbulent kinetic energy,and local gas holdup profiles were measured at different superficial gas velocities as well as under different times of algae growth.The obtained results indicate that the flow distribution may significantly affect the performance of the photobioreactor,which may have substantial effects on the cultivation process.The obtained experimental data can serve as benchmark data for the evaluation and validation of computational fluid dynamics(CFD)codes and their closures.This,in turn,allows us to develop efficient reactors and consequently improving the productivity and selectivity of these photobioreactors. 展开更多
关键词 scenedesmus MICROALGAE Cylindrical AIRLIFT PHOTOBIOREACTOR Physical properties Non-invasive GAMMA-RAY technique
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Removal of K^+,Na^+,Ca^(2+),and Mg^(2+) from saline-alkaline water using the microalga Scenedesmus obliquus
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作者 么宗利 应成琦 +4 位作者 陆建学 来琦芳 周凯 王慧 陈玲 《Chinese Journal of Oceanology and Limnology》 SCIE CAS CSCD 2013年第6期1248-1256,共9页
The capability ofScenedesmus obliquus to remove cations (K^+, Na^+, Ca^2+, Mg^2+) from saline- alkaline water was investigated at different salinities (0, 5, 10, 15, 20, 25) and carbonate alkalinities (0, 5, ... The capability ofScenedesmus obliquus to remove cations (K^+, Na^+, Ca^2+, Mg^2+) from saline- alkaline water was investigated at different salinities (0, 5, 10, 15, 20, 25) and carbonate alkalinities (0, 5, 10, 15, 20, 25, 30, 35 mmol/L). K^+, Na^+, Ca^2+, and Mg^2+ in saline-alkaline water were efficiently removed by S. obliquus. The maximum removal of the cations (29.37 mg for K^+, 185.85 mg for Na^+, 23.07 mg for Ca^2+, 66.14 mg for Mg^2+) occurred at salinity 25. The maximum removal of K^+ (2.28 mg), Na+ (6.62 mg), Ca^2+ (1.01 mg), and Mg2+ (0.62 mg) occurred at carbonate alkalinities of 25 mmol/L for K*, 35 mmol/L for Na+, 20 mmol/L for Ca2+, and 25 mmol/L for Mf+, respectively. Under a salinity stress, the concentration of Na' in S. obliquus increased significantly, while that of K~ decreased significantly. The concentrations of Ca^2+ and Mg2+ decreased as well. The ratios of K+/Na~, Ca2+/Na^+, and Mg^2+/Na^+ were significantly lower in all salinity treatments than those of the control. Under alkaline stress, the concentrations of Nan and K+ in S. obliquus decreased significantly and the ratios of K^+/Na^+, Ca2+/Na^+, and Mg^2+/Na^+ were significantly higher in all treatments than in the control. Moreover, the concentrations of Ca2+ and Mg2+ in S. obliquus at alkalinities of 5-10 mmol/L were significantly higher than those of the other treatments. The removal of Na+ by S. obliquus mainly occurs through biosorption, and Mg^2+ and Ca^2 + were removed through both biosorption and bioaccumulation. 展开更多
关键词 salinity carbonate alkalinity scenedesmus obliquus ion composition cation removal
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Infl uences of aeration induced turbulence on growth and competition of Microcystis and Scenedesmus in the presence of sediments with varying particle sizes
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作者 Qiang HE Yiyao WANG Ming LI 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2022年第1期142-152,共11页
Aeration is an important measure to prevent cyanobacterial growth in eutrophic lakes and reservoirs.The purpose of this study is to clarify the infl uence of aeration induced turbulence on growth and competition of Mi... Aeration is an important measure to prevent cyanobacterial growth in eutrophic lakes and reservoirs.The purpose of this study is to clarify the infl uence of aeration induced turbulence on growth and competition of Microcystis and Scenedesmus in the presence of sediments with varying particle sizes.Microcystis aeruginosa and Scenedesmus obliquus were selected as the model organisms.Sediments with varying particle sizes were added into mono and mixed cultures of the organisms.In the absence of sediment,both low-and high-intensity aerations(the turbulent dissipation rates were 1.60×10^(-6)and 1.16×10^(-5)m^(2)/s^(3),respectively)promoted the growth of Scenedesmus,but the growth of Microcystis was inhibited particularly obvious under the high-intensity aeration conditions.In the presence of sediment,Scenedesmus was promoted under all aeration conditions,while Microcystis was inhibited.The inhibition rate of Microcystis decreased with the increase of sediment size when treated with low-intensity aeration in the nighttime.The highest inhibition rate of M.aeruginosa(89.2%)was identifi ed under the condition of low-intensity aeration in the nighttime with small sediment addition.Furthermore,our results indicated that the impacts of sediment-induced light intensity reduction on algal growth were insignifi cant.In the mixed culture,the growth of Microcystis was inhibited by Scenedesmus in all treatments with aeration.Our results provided a theoretical basis for the practice in controlling cyanobacteria by aeration. 展开更多
关键词 aeration induced turbulence suspended sediment phytoplankton community CYANOBACTERIA scenedesmus
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High-efficiency 18S microalgae barcoding by coalescent,distance and character-based approaches: a test in Chlorella and Scenedesmus
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作者 ZOU Shanmei FEI Cong +3 位作者 YANG Weinan HUANG Zheng HE Meilin WANG Changhai 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2018年第5期1771-1777,共7页
The relatively conserved 18S is often used in the phylogenetic analysis of microalgae. However, whether it can really help in barcoding microalgae needs to be evaluated. In this study the multiple approaches of coales... The relatively conserved 18S is often used in the phylogenetic analysis of microalgae. However, whether it can really help in barcoding microalgae needs to be evaluated. In this study the multiple approaches of coalescent, distance and character-based barcoding are first employed in C hlorella and Scenedesmus to test the efficiency of 18S sequences for barcoding green microalgae. We show that most Chlorella and Scenedesmus species, including the cryptic species, can be distinguished by 18S sequences with all coalescent General Mixed Yule-coalescent(GMYC), poisson tree process(PTP), and P ID, distance(ABGD) and character-based approaches. Both GMYC and PTP analyses produce more genetic groups. The P ID and ABGD analyses only cluster some species. All species(apart from a few of lineages) can be separated in character-based barcoding analysis with more than three character attributes. In comparison with previous barcoding results with r bcL, tufA, ITS and 16 S, 18S produces good resolution in identifying Chlorella and Scenedesmus. Our results reveal that 18S is highly efficient in identifying taxa of green microalgae at species level, based on a combination of multiple barcoding approaches. Combining 18S with other gene markers may be useful in barcoding microalgae. 展开更多
关键词 General Mixed Yule-coalescent (GMYC) poisson tree process (PTP) and PID distance (ABGD)character-based DNA barcoding MICROALGAE 18S CHLORELLA scenedesmus
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Temperature-Induced Stress on Growth and Expression of Hsp in Freshwater alga Scenedesmus quadricauda
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作者 S. ZARGAR K. KRISHNAMURTHI +2 位作者 S. SARAVANA DEVI T. K. GHOSH T. CHAKRABARTI 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2006年第6期414-421,共8页
Objective To investigate the impact of various levels of sublethal temperature (26℃, 31 ℃, 33℃, 36℃, and 39℃) on growth and heat shock protein (hsp) expression in freshwater green alga Scenedesmus quadricauda... Objective To investigate the impact of various levels of sublethal temperature (26℃, 31 ℃, 33℃, 36℃, and 39℃) on growth and heat shock protein (hsp) expression in freshwater green alga Scenedesmus quadricauda. Methods Impact of selected levels of temperature on growth rate (based on optical density), population count, chlorophyll-a and biomass of the alga was evaluated in artificial growth medium for 19 days. To determine the induction of hsp in the alga, it was exposed to selected temperature levels for 3 h and further kept for 6 h at culturing condition at 26℃. Induction of hsp was confirmed by immuno-detection followed by SDS-polyacrylamide gel electrophoresis. Results The selected growth parameters such as growth rate, population count, chlorophyll-a and biomass were reduced significantly (P〈0.001) at 39℃. However, hsp 70 expression was observed only at 39℃. Conclusion Temperature up to 36℃ may be considered as the limit of safe exposure for thermal, stress for the alga Scenedesmus quadricauda. 展开更多
关键词 TEMPERATURE scenedesmus quadricauda Heat shock protein (Hsp)
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THE TOXICITY OF TWO NEWLY-SYNTHESIZED COMPOUNDS ON SCENEDESMUS OBLIQUUS KǖTZ
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作者 SHENG Xiu-Mei 1,2, XIONG Li1 and TANG Hong-Feng1 (1. College of Life Science, Central China Normal University, Wuhan, China, 430079 2. Department of Biochemistry, College of Clinic Technology, Jiangsu University, Zhenjiang, Jiangsu, China, 212001) 《水生生物学报》 CAS CSCD 北大核心 2006年第6期676-679,共4页
LY-04 and WSQIF are newly-synthesized compounds which were presented by the Institute of Pesticides Chemistry, Central China Normal University. LY-04 belongs to α-oxophosphonic acid derivatives, while WSQIF is an aro... LY-04 and WSQIF are newly-synthesized compounds which were presented by the Institute of Pesticides Chemistry, Central China Normal University. LY-04 belongs to α-oxophosphonic acid derivatives, while WSQIF is an aromatic acetyl oxophosphonic acid derivative. In this study, the toxicity of LY-04 and WSQIF on Scenedesmus obliquus Kütz was examined. The EC 50 of LY-04 and WSQIF were determined in S. obliquus cells at 24h, 48h, 72h, 96h represented by cell density. Our data showed that the 24h, 48h, 72h, 96h EC 50 of LY-04 were 1983mg/L, 2943mg/L, 240mg/L and 65.0mg/L acetone, respectively, and the 24h, 48h, 72h, 96h EC 50 of WSQIF were 15.9mg/L, 53.0mg/L, 98.0mg/L and 28.8mg/L respectively. LY-04 displayed a higher insecticidal activity, while WSQIF showed a higher phytocidal activity. As LY-04 and WSQIF were designed to act as insecticide and herbicide, respectively, the results were in contrast to the anticipated ones. According to the toxicant classification standard, EC 50 of both substances was far higher than 3mg/L, while the toxicity of LY-04 and WSQIF to aquatic algae were fairly low, indicating that these two pesticides are rather safe to the aquatic ecosystem. 展开更多
关键词 LY-04 and WSQIF scenedesmus obliquus Kütz TOXICITY
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Nutrient Removal and Algal Community Variation from Urban River with the Isolated Microalgal Strains <i>Chlorella</i>sp. and <i>Scenedesmus</i>sp.
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作者 Weiju Zhu Yajun Li +1 位作者 Xiaowen Fei Xiaodong Deng 《Journal of Water Resource and Protection》 2018年第9期884-895,共12页
The objectives of this study were to determine nutrient removal rates and algal community variation using the isolated microalgal strains Chlorella sp. and Scenedesmus sp. from an urban river water. The concentration ... The objectives of this study were to determine nutrient removal rates and algal community variation using the isolated microalgal strains Chlorella sp. and Scenedesmus sp. from an urban river water. The concentration of total nitrogen (TN) and total phosphorus (TP) in river water declined after pouring into Chlorella sp. and Scenedesmus sp., it was indicated that the Scenedesmus sp. had respective advantage in removing nitrogen (86% removal rate) and Chlorella sp. in removing phosphorous (95% removal rate). The algae community composition showed extreme sensitivity to change in the joint of the Scenedesmus or Chlorella, respectively, the lower diversity and higher dominance of algae can be observed in Scenedesmus group, there existed an opposite tendency in Chlorella group. The results demonstrated that the high potential of using Chlorella sp. and Scenedesmus sp. for nutrient removal from riverwater. 展开更多
关键词 Nutrient Removal Algae Community CHLORELLA scenedesmus EUTROPHICATION
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Culture of Scenedesmus acuminatus in Corn Steep Liquor
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作者 Cristiane Tomas Kubo] Rafael Luan Sehn Canevest +2 位作者 Edson Antonio da Silva , Nyamien Yahaut Sebastien Tatiana Rodrigues da Silva Baumgartner 《Journal of Agricultural Science and Technology(B)》 2017年第5期346-350,共5页
Microalgae have been evaluated as a source of lipids for biodiesel production. They can be grown on effluent and produce biomass while removing organic and mineral components from the medium. The use of agro-industria... Microalgae have been evaluated as a source of lipids for biodiesel production. They can be grown on effluent and produce biomass while removing organic and mineral components from the medium. The use of agro-industrial wastes for the production of microalgae is an alternative to reduce the costs related to the composition of the culture medium, thus reducing operational costs considerably. This work was conceived as a research about the cultivation of microalgae Scenedesmus acuminatus on the substrate composed by corn steep liquor. A central composite design (CCD) was carried to study the influence of the effluent and inoculum concentration on the chemical oxygen demand (COD) of the culture. Statistical analysis indicated that the percentage of inoculum and effluent had an influence on the COD. The cultivation, together with the coagulation procedure, was efficient for the removal of organic matter, verified through the COD reduction and changing of pH value. These two parameters reached the appropriate level according to the standard required by current legislation. 展开更多
关键词 scenedesmus com steep liquor chemical oxygen demand BIOMASS microalgae.
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Enhancement of Cell Growth and Lipid Content of a Freshwater Microalga <i>Scenedesmus</i>sp. by Optimizing Nitrogen, Phosphorus and Vitamin Concentrations for Biodiesel Production
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作者 Neumara L. S. Hakalin Amanda P. Paz +1 位作者 Donato A. G. Aranda Lídia Maria P. Moraes 《Natural Science》 2014年第12期1044-1054,共11页
The effects of nitrogen, phosphorus and vitamin on growth and lipid content of a freshwater microalgae Scenedesmus sp. were investigated under indoor conditions. Nitrogen, phosphorus and vitamin presented significant ... The effects of nitrogen, phosphorus and vitamin on growth and lipid content of a freshwater microalgae Scenedesmus sp. were investigated under indoor conditions. Nitrogen, phosphorus and vitamin presented significant statistical effect on lipid content, and a maximum lipid content of 29.3% was obtained, corresponded to increases of 90% when compared to those obtained with the original nutrients medium. On the other hand, only nitrogen and phosphorus presented significant statistical effect on cell growth, achieving ash free dry biomass, algal density, and specific growth rate of 1.3 g·L-1, 1.5E+07 cells mL-1, and 0.62 d-1, respectively. By the use of the desirability function, it was possible to maximize the cell growth and lipid content simultaneously. The fatty acid composition of the microalgal lipid comprises over 80% of saturated and monounsaturated fatty acids. Thus, Scenedesmus sp. biomass could be used as suitable feedstock for biodiesel production. 展开更多
关键词 scenedesmus sp. Phototrophic Cultivation Nutrient Optimization LIPID Accumulation Algal Biodiesel
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Nutrients Extracted from Chicken Manure Accelerate Growth of Microalga <i>Scenedesmus obliquus</i>HTB1
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作者 Xiaotian Han Nicole Rusconi +2 位作者 Pervaiz Ali Kevin Pagkatipunan Feng Chen 《Green and Sustainable Chemistry》 2017年第2期101-113,共13页
Sustainable development using wastes as resources is a new paradigm. Chicken manure contains rich amounts of nitrogen and phosphorus and has been used as crop fertilizer. However, little is known about whether nutrien... Sustainable development using wastes as resources is a new paradigm. Chicken manure contains rich amounts of nitrogen and phosphorus and has been used as crop fertilizer. However, little is known about whether nutrients of chicken manure are suitable and efficient to support the rapid growth of microalgae. In this study, we explore the possibility of using nutrient extracted from chicken manure to grow microalgae. We used an algal strain Scenedesmus sp. HTB1, which is an oleaginous species with high CO2 tolerance capability. The growth performance of HTB1 on various media amended with nutrient extracted from three different chicken manure sources was monitored and compared to the growth rate of HTB1 grown in the standard medium BG11. Meanwhile, the changes of total nitrogen (N) and phosphorus (P), both organic and inorganic, were measured during the growth period. Culture media enriched with the nutrient extracted from two chicken manure sources outperformed the standard culture medium BG11 in terms of algal biomass production. When cultivated with manure nutrient, HTB1 utilized inorganic N efficiently, but consumed very little organic N during the experimental growth period. However, HTB1 was able to utilize both organic and inorganic phosphorus. We demonstrate that nutrient extracted from chicken manure support rapid growth and high biomass yield in microalgae?Scenedesmus obliquus?HTB1. Therefore chicken manure holds great promise to be used as a cost-effective and efficient fertilizer for large-scale production of microalgae. 展开更多
关键词 MICROALGAE scenedesmus Chicken MANURE Nutrient Recycle
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Assessment of Biomass Productivities of Chlorella vulgaris and Scenedesmus obliquus in Defined Media and Municipal Wastewater at Varying Concentration of Nitrogen
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作者 Omowunmi Fadeyi Kudjo Dzantor Ekundayo Adeleke 《Journal of Water Resource and Protection》 2016年第2期217-225,共9页
Microalgae are emerging as one of the most promising long-term sustainable sources of renewable energy. Studies were conducted on two freshwater Chlorophytes, Chlorella vulgaris and Scenedesmus obliquus to evaluate he... Microalgae are emerging as one of the most promising long-term sustainable sources of renewable energy. Studies were conducted on two freshwater Chlorophytes, Chlorella vulgaris and Scenedesmus obliquus to evaluate heterotrophic growth rate and biomass productivity in filter-sterilized defined medium (BG 11) and municipal wastewater, both with varying concentrations of nitrogen (N). For each isolate, cultures were separately incubated in triplicate at room temperature with constant agitation on a shaker at 150 rpm for 9 days. In 0.25 mg N/L BG11 medium, the growth rate and biomass productivity of C. vulgaris were 0.28 day<sup>-1</sup> and 3.5 g·L<sup>-1</sup>, respectively. In wastewater, the same amount of N addition resulted in a higher growth rate 0.44 day<sup>-1</sup> and associated biomass productivity of 4.96 g·L<sup>-1</sup>. Increasing N levels to 0.5 mg N/L in BG11 caused an increase in growth rate (0.37 day<sup>-1</sup>) and biomass productivity (4.28 g·L<sup>-1</sup>), while the increase in N in wastewater caused growth to decline to 0.32 day<sup>-1</sup> with decreased biomass productivity of 2.19 g·L<sup>-1</sup>. A further increase in N to 1.0 mg N/L in BG11 caused an increase in the growth rate (0.43 day<sup>-1</sup>) and a decrease in biomass productivity (3.64 g·L<sup>-1</sup>), while in wastewater, growth rate and productivity of C. vulgaris were 0.32 day<sup>-1</sup> and 2.31 g·L<sup>-1</sup>, respectively. Overall, C. vulgaris grew faster and produced greater biomass than S. obliquus under comparable conditions. Based on high growth rate and biomass productivity of C. vulgaris, it could be a potential candidate for further consideration for simultaneous wastewater treatment and biofuel production. 展开更多
关键词 MICROALGAE BIOMASS Wastewater Treatment Chlorella vulgaris scenedesmus obliquus
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Osmotic Stress Effect over Carbohydrate Production in a Native Starin of Scenedesmus sp.
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作者 Pilar Bremauntz Luis C.Fernandez-Linares Rosa O.Canizares-Villanueva 《Natural Resources》 2014年第1期5-9,共5页
The production of biofuels is currently presented as a possible answer in the search for sustainable alternatives for the total or partial substitution of fossil fuels. One of the most successful biofuels that have be... The production of biofuels is currently presented as a possible answer in the search for sustainable alternatives for the total or partial substitution of fossil fuels. One of the most successful biofuels that have been developed is bioethanol. However, bioethanol production has been limited since it relies on the use of sugar cane or cereals. These materials are important sources of food and their demand as both a biofuel and a foodstuff has led to the price increase and may lead to possible shortages. Our group has focused on searching for native microalgae as sources of carbohydrates and bioethanol, with the goal of finding a sustainable source of bioethanol. Currently, twelve different strains which reach growth rates between 0.7 - 1.8 g/L and present carbohydrate production under osmotic shock conditions have been isolated. In this work, we demonstrate the results obtained with the Chlorella sp. [1] strain and the results obtained with the Scenedesmus sp. strain. The Scenedesmus sp. strain showed an increase in the production from 22 to 650 mg/sugar/g of biomass (dry weight), after 24 hours of osmotic shock with 0.1 M NaCl. The osmolytes which were produced after osmotic shock were identified as sucrose and trehalose, both of which are fermentable. These results demonstrate that this strain, through the photosynthetic pathway and osmotic shock, is a potential source of fermentable sugars. 展开更多
关键词 Biofuels BIOETHANOL MICROALGAE scenedesmus sp. Carbohydrates
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