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RF-O2熒光光纖氧氣測(cè)量技術(shù)——氧氣測(cè)量全面解決方案
RF-O2熒光光纖氧氣測(cè)量技術(shù)是基于REDFLASH光極傳感器技術(shù)的氧氣測(cè)量技術(shù),由歐洲Pyroscience公司及Graz大學(xué)等科學(xué)家研制生產(chǎn),由光極氧氣傳感器、測(cè)量?jī)x及軟件組成,廣泛應(yīng)用于環(huán)境科學(xué)、生態(tài)科學(xué)、植物科學(xué)、動(dòng)物科學(xué)、海洋科學(xué)、生物醫(yī)學(xué)、生物技術(shù)、食品科學(xué)等各個(gè)領(lǐng)域,其主要功能特點(diǎn)如下
測(cè)量原理:
REDFLASH光極O2傳感器技術(shù),利用*的O2敏感REDFLASH指示劑,通過(guò)610-630nm調(diào)制紅光激發(fā),REDFLASH指示劑發(fā)出760-790nm紅外熒光,熒光強(qiáng)度隨接觸的O2分子濃度升高而發(fā)生熒光淬滅,這種熒光動(dòng)態(tài)通過(guò)光纖傳輸?shù)綔y(cè)量?jī)x,測(cè)量?jī)x靈敏地檢測(cè)其相位漂移并據(jù)此換算成O2濃度
應(yīng)用領(lǐng)域:
技術(shù)指標(biāo):
應(yīng)用案例:
案例1:法國(guó)Bordeaux大學(xué)利用FSO2 4通道熒光光纖氧氣測(cè)量?jī)x,對(duì)Aquitaine海岸沉積樣芯耗氧進(jìn)行了測(cè)量分析,以研究海洋底棲動(dòng)物活動(dòng)(bioirrigation)對(duì)海岸帶生態(tài)系統(tǒng)生態(tài)過(guò)程及生物地理化學(xué)功能(如沉積有機(jī)物的再礦化)的影響。
案例2:芬蘭Turku大學(xué)利用FSO2和430μm光極氧探針,對(duì)南瓜類囊體懸浮液光合放氧進(jìn)行了測(cè)量分析。
案例3:美國(guó)Woods Hole海洋學(xué)研究所,利用RF-O2非接觸式光極氧氣傳感器(sensor spot),對(duì)海洋無(wú)脊椎動(dòng)物呼吸代謝進(jìn)行了測(cè)量分析,以研究其固有的生物鐘與環(huán)境脅迫的關(guān)系,這些海洋無(wú)脊椎動(dòng)物體重只有0.5-50mg。圖中為翼足類軟體動(dòng)物在不同濃度CO2條件下的耗氧率。
案例4:澳大利亞海洋科學(xué)研究所、瑞典Gothenburg大學(xué)等組成的科學(xué)小組,利用Pyroscience的REDFLASH氧氣測(cè)量技術(shù),對(duì)河鱸(Perca fluviatilis)呼吸代謝進(jìn)行測(cè)量分析,以研究其熱耐受性和適應(yīng)性的生理機(jī)制。他們選擇波羅的海核電站附近的一個(gè)瀉湖,核電站排出的熱水進(jìn)入該瀉湖,在過(guò)去30年大量魚類因?yàn)椴贿m應(yīng)水溫升高而滅絕,但河鱸卻得以繁盛,該地成為理想的研究氣候變暖對(duì)魚類種群影響的“天然實(shí)驗(yàn)室”。他們測(cè)量河鱸呼吸代謝率的同時(shí),還測(cè)量其靜脈血液在溫度升高狀態(tài)下的氧分壓,靜脈血是河鱸心臟供氧的主要來(lái)源,高溫條件下靜脈血氧氣含量被認(rèn)為是其心臟功能的重要限制因子。
案例5:德國(guó)Ulm大學(xué)利用FSO2測(cè)量?jī)x和50μm可伸縮式RFO2探針,對(duì)患者腦脊髓液(CSF)樣品溶解氧進(jìn)行測(cè)量分析,以研究探討神經(jīng)紊亂及神經(jīng)炎等疾病的生理和診斷。
案例6:德國(guó)農(nóng)業(yè)科學(xué)與景觀研究機(jī)構(gòu),利用FSO2測(cè)量?jī)x和RFO2探針,對(duì)土壤氧氣進(jìn)行測(cè)量,以評(píng)估不同種類蚯蚓在低氧條件下對(duì)土壤改良的效率。
案例7:西班牙Valladolid大學(xué)利用RFO2熒光光纖氧氣測(cè)量技術(shù),監(jiān)測(cè)葡萄酒橡木桶O2吸收——對(duì)葡萄酒品質(zhì)至關(guān)重要但一直以來(lái)缺乏科學(xué)的了解。葡萄酒在橡木桶內(nèi)(3-24個(gè)月)的過(guò)程溶解氧至關(guān)重要,因?yàn)镺2調(diào)節(jié)了葡萄酒整個(gè)的熟化過(guò)程。
近期部分參考文獻(xiàn):
2015
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