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菱角的梯级利用:酚类物质、磷和糖的回收。

Cascade utilization of water chestnut: recovery of phenolics, phosphorus, and sugars.

机构信息

Graduate School of Engineering, Tottori University, 4-101, Koyama-minami, Tottori, 680-8552, Japan.

出版信息

Environ Sci Pollut Res Int. 2013 Aug;20(8):5373-8. doi: 10.1007/s11356-013-1547-7. Epub 2013 Feb 14.

Abstract

Overgrowth of aquatic plants, such as water chestnut, has been reported as a regional problem in various areas. We proposed cascade utilization of water chestnut through the recovery of phenolics, phosphorus, and sugars. Phenolics were extracted using 50 g (wet weight) of biomass with 300 mL of acetone, methanol, or hot water, and the yields of total phenolics were 80.2, 56.2, and 49.7 mg g(-1) dry weight of native biomass, respectively. The rate of eluted phosphorus in the phenolic extraction step was 8.6, 14.8, and 45.3 % of that in the native biomass, respectively, indicating that the use of polar organic solvents suppressed phosphorus elution at the phenolic extraction step. Extraction of phosphorus following the phenolic extraction was combined with alkaline pretreatment (1 % NaOH solution) of biomass for saccharification; 64.1 and 51.0 % of phosphorus in the native biomass were extracted using acetone and methanol for the phenolic extraction, respectively. Saccharification following the alkaline pretreatment showed that the glucose recovery rates were significantly increased (p<0.05) with the phenolic extraction step compared to alkaline pretreatment alone. This finding indicates that extraction of phenolics not only provides another useful material but also facilitates enzymatic saccharification.

摘要

水生植物(如水菱)的过度生长已被报道为各个地区的区域性问题。我们提出通过回收多酚、磷和糖来实现水菱的梯级利用。使用 50 g(湿重)生物质和 300 mL 丙酮、甲醇或热水提取多酚,总多酚的产率分别为天然生物质干重的 80.2、56.2 和 49.7 mg/g。在多酚提取步骤中洗脱的磷的比例分别为天然生物质中磷的 8.6、14.8 和 45.3%,表明使用极性有机溶剂在多酚提取步骤中抑制了磷的洗脱。在提取多酚后,将磷的提取与生物质的碱性预处理(1%NaOH 溶液)结合用于糖化;对于用丙酮和甲醇进行的多酚提取,分别有 64.1%和 51.0%的天然生物质中的磷被提取出来。碱性预处理后的糖化表明,与单独进行碱性预处理相比,多酚提取步骤显著提高了葡萄糖的回收率(p<0.05)。这一发现表明,多酚的提取不仅提供了另一种有用的材料,而且还促进了酶糖化。

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