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首页> 外文期刊>Fuel >Concomitant extraction of bio-oil and value added polysaccharides from Chlorella sorokiniana using a unique sequential hydrothermal extraction technology
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Concomitant extraction of bio-oil and value added polysaccharides from Chlorella sorokiniana using a unique sequential hydrothermal extraction technology

机译:使用独特的顺序水热提取技术同时提取索氏小球藻生物油和增值多糖

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To make algal bio-fuel economically viable, extraction of value added co-products along with oil, appears absolutely necessary. The major barrier in algal co-product development is the lack of an efficient separation technology. To address this issue a unique two-step sequential hydrothermal liquefaction (SEQHTL) technology for the simultaneous production of value-added polysaccharides and bio-oil from algal-biomass was developed. The first step involves the subcritical water extraction of valuable algal (Chlorella sorokiniana) polysaccharides at 160 ℃. The polysaccharide rich water extract was removed and precipitated with ethanol. In the next step, the extracted biomass was liquefied to bio-oil at 300 ℃. The yield of bio-oil by SEQHTL was 24% of the dry weight. In addition, this method also extracted 26% of the polysaccharides present whereas; direct hydrothermal liquefaction (DIRHTL) only generated 28% bio oil. In the SEQHTL method bio-char formation was remarkably low, and as such, SEQHTL produce 63% less bio-char than DIRHTL The yield of bio-char production is negatively correlated to polysaccharide content (p > 0.98) suggesting majority of carbohydrates present in algal biomass were converted into bio-char. This conversion did not significantly influence the bio-oil production. Comparative GC-FID, GC-MS, NMR, FT-IR analysis and ESI-MS of the bio-oil extracted by SEQHTL with DIRHTL showed no significant differences. Elemental analysis of the SEQHTL bio-oil demonstrated that it contained 70% carbon, 0.8% nitrogen, and 11% oxygen. This method demonstrates an important proof-of-concept step towards the concomitant production of value added co-products, along with bio-oil, from algal biomass.
机译:为了使藻类生物燃料在经济上可行,与石油一起提取增值副产品似乎是绝对必要的。藻类副产物开发的主要障碍是缺乏有效的分离技术。为了解决这个问题,开发了一种独特的两步顺序水热液化(SEQHTL)技术,用于同时从藻类生物质生产增值多糖和生物油。第一步是在160℃下亚临界水萃取有价值的藻类(Chlorella sorokiniana)多糖。除去富含多糖的水提取物,并用乙醇沉淀。下一步,将提取的生物质在300℃液化为生物油。 SEQHTL的生物油产率为干重的24%。另外,该方法还提取了存在的26%的多糖,而直接水热液化(DIRHTL)仅产生28%的生物油。在SEQHTL方法中,生物炭的形成非常低,因此SEQHTL产生的生物炭比DIRHTL少63%。生物炭的产量与多糖含量呈负相关(p> 0.98),表明其中存在的大部分碳水化合物藻类生物质转化为生物炭。这种转化没有显着影响生物油的生产。 SEQHTL和DIRHTL提取的生物油的比较GC-FID,GC-MS,NMR,FT-IR分析和ESI-MS显示无显着差异。 SEQHTL生物油的元素分析表明,它含有70%的碳,0.8%的氮和11%的氧。此方法证明了从藻类生物质伴随生产增值副产品以及生物油的重要概念验证步骤。

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