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Utilization of Noxious Weed Water Hyacinth Biomass as a Potential Feedstock for Biopolymers Production: A Novel Approach

机译:利用有毒杂草水风信法生物量作为生物聚合物生产的潜在原料:一种新方法

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摘要

This study aims to utilize a noxious weed water hyacinth biomass (WH) for polyhydroxybutyrate (PHB) production. Alkaline and peracetic acid pretreatment was employed for the hydrolysis of WH and consequently enzymatic saccharification to produce fermentable sugars for PHB production. The pretreatment competence was determined using various operational parameters. By applying ambient conditions, alkaline pretreatment gave higher lignin removal of 65.0%, with 80.8% hydrolysis yield, and on enzyme hydrolysis (40 FPU/g of dry WH), produced total reducing sugar of about 523 mg/g of WH. The resulted WH enzymatic hydolysates were evaluated for the production of PHB by Ralstonia eutropha (ATCC 17699). The WH hydrolysates cultivation was compared to synthetic hydrolysates that contain a similar carbon composition in terms of bacterial growth and PHB synthesis. The effects of various supplements to enhance PHB production were estimated. Supplementation of corn steep liquor (CSL) as a cheap nitrogen source with WH hydrolysates favored a higher amount of PHB synthesis (73%), PHB titer of 7.30 g/L and PHB yield of 0.429 g/g of reducing sugar. Finally, using standard analytical tools, the physical and thermal characteristics of the extracted PHB were evaluated. The findings revealed WH was a promising and technically feasible option for transforming biomass into sustainable biopolymer conversion on a large scale.
机译:本研究旨在利用一种用于多羟基丁酸酯(PHB)生产的有毒杂草水葫芦生物量(WH)。碱性和过乙酸预处理用于WH的水解并因此酶促糖化,以产生PHB生产的可发酵糖。使用各种操作参数确定预处理能力。通过施加环境条件,碱性预处理较高的木质素去除65.0%,水解产率为80.8%,以及酶水解(40fpu / g WH),产生约523mg / g的总还原糖。得到了所得WH酶羟羟羟羟乙酸酯,用于通过Ralstonia Eutropha(ATCC 17699)的PHB产生。将WH水解培养培养与合成水解产物相比,含有类似碳组合物的细菌生长和PHB合成。估计各种补充剂来增强PHB生产的影响。玉米陡液(CSL)作为具有WH水解产物的廉价氮源,优量为较高量的PHB合成(73%),PHB滴度为7.30g / L,PHB产率为0.429g / g的还原糖。最后,使用标准分析工具,评估提取的PHB的物理和热特性。结果揭示了WH在大规模上将生物质转化为可持续的生物聚合物转化率的有前途和技术上可行的选择。

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