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首页> 外文期刊>Environmental Progress & Sustainable Energy >Effects of CO2 on South African Fresh Water Microalgae Growth
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Effects of CO2 on South African Fresh Water Microalgae Growth

机译:二氧化碳对南非的影响淡水微藻生长

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摘要

South Africa obtains over 80% of its energy needs from fossil fuels. Latest research indicate that South Africa emits over 500 million tons of carbon dioxide (CO2) per year and is therefore ranked number eight as the world's CO2 emitter. Unabated or controlled emission of CO2 and other green house gases has largely contributed to detrimental global warming and adverse climatic change. Microalgae are capable of converting hazardous CO2 into valuable biomass. A high CO2 tolerating microalgae was collected from fob annesburg Zoo Lake and identified as Desmodemus sp. Batch cultures were grown in 1000 mL. Erlenmeyer flasks. CO2 was bubbled into the microalgae culture media. The media contained optimal nutrients, an optimal photoperiod and light intensity and controlled pH. CO2 concentrations of 100%, 50%, 25%, 10%, and 5% and total gas flow rates of 20, 50 and 100 mL/min were used. The aim of this study was to determine the effective flow rate and CO2 concentration that gave optimal microalgae growth. Microalgae dry mass contain 50% carbon and carbon is known to be a limiting factor when all other nutrients and environmental conditions are presents. When atmospheric air was supplied at 50 mL/min the growth rate was 0.1151 per day and it increased drastically by almost 5 folds when 100% CO2 was supplied at 50 mL/min. Using a gas flow rate of 20 mL/min and 10% CO2, growth rate increased to 1.42 per day with a dry biomass yield of 809.96 mg/L after 12 days of growth. At a gas flow rate of 50 mL/min, 5% CO2 and the highest growth rate was 1.993 per day and an overall biomass yield of 1200 mg/L and the average pH was 6.36. At 100%) CO2 the growth rate was 1.265 per day and dry biomass yield obtained was 469.81 mg/L while the average pH was 5.12. When gas flow rate was increased to 100 mL/min using 5% CO2 the growth rate slightly reduced to 1.30 per day with a dry biomass yield of 1000 mg/L. A growth rate was 0.34 and dry biomass yield of 279-47 mg/L at an average pH of 5.09 were achieved at 100%) CO2. Higher flow rates and higher concentrations resulted in slightly reduced growth due to low pH. These investigations indicate that the species under study is CO2 tolerant and it presents a viable CO2 abatement strategy.
机译:南非获得超过80%的能源需求从化石燃料。南非排放超过5亿吨二氧化碳(CO2),因此每年排名八成为世界二氧化碳排放国。不减或控制排放的二氧化碳和其他在很大程度上导致了温室气体全球变暖以及不良气候不利改变。有害的二氧化碳转化为宝贵的生物质。容忍微藻收集离岸价湖和确认为Desmodemus annesburg动物园sp。批文化是生长在1000毫升。厄伦美厄烧瓶。微藻类培养基。最佳光周期和最佳的营养光强度和控制博士二氧化碳浓度为100%,50%,25%,10%,5%,总气体流速20、50和100毫升/分钟被使用。有效的流量和二氧化碳浓度这给了最优微藻的生长。干燥质量含有50%的碳和碳当所有其他营养素是一个限制因素和环境条件是礼物。大气是提供在50毫升/分钟每天增长速度是0.1151,它增加了当100%的二氧化碳大大了近5倍提供在50毫升/分钟。20毫升/分钟,10%的二氧化碳,增长率提高到1.42每天干生物量产量为809.96mg / L经过12天的增长。50毫升/分钟,5%二氧化碳和最高的增长率1.993每天和一个总体生物量产量1200 mg / L和平均pH值为6.36。二氧化碳增长率为1.265每天和干燥生物质产量为469.81 mg / L,而获得的平均pH值为5.12岁。增加到100毫升/分钟使用5%二氧化碳的增长率略有降低到1.30每天干生物质产量1000 mg / L。0.34干燥生物质产量279 - 47的mg / L平均pH值5.09二氧化碳达到100%)。更高的流速和浓度更高导致轻微减少由于低增长这些调查表明,博士物种正在研究是宽容和二氧化碳提出了一种可行的二氧化碳减排策略。

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