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Utilization of vinasse for production of poly-3-(hydroxybutyrate-co-hydroxyvalerate) by Haloferax mediterranei

机译:利用酒糟生产地中海嗜盐杆菌(Haloferax mediterranei)生产聚3-(羟基丁酸酯-共-羟基戊酸酯)

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摘要

Vinasse, a highly polluting waste of the ethanol industry was utilized for the production of polyhydroxyalkanoate (PHA) by the extremely halophilic archaeon, Haloferax mediterranei in shake-flasks. Following pre-treatment through adsorption on activated carbon, 25%-50% (v/v) pre-treated vinasse was utilized leading to 70% maximum accumulation of PHA. Maximum PHA concentration of 19.7 g/l, product yield coefficient (based on total carbohydrates) of 0.87 and 0.21 g/l h volumetric productivity were achieved. Concomitant lowering of BOD5 of pre-treated vinasse by at least 78% and COD by at least 80% was attained at the end of this process. The PHA was recovered by osmotic lysis of the cells and purification by sodium hypochlorite and organic solvents. Through UV–vis spectroscopy, gas chromatography, differential scanning calorimetry and nuclear magnetic resonance spectroscopy, the PHA was identified as poly-3-(hydroxybutyrate-co-hydroxyvalerate). The 3-hydroxyvalerate content was 12.36 mol % (utilizing 25% pre-treated vinasse) and 14.09 mol % (utilizing 50% pre-treated vinasse). High salt concentration in the medium allowed this process without sterile conditions and thus reduction in costs of sterilization can be envisaged. Activated charcoal pre-treatment of vinasse is economical than competing processes such as ultrafiltration of whey, extrusion and enzymatic treatment of rice and corn starch. Without impacting sugar prices, this process can easily be integrated into a distillery that has fermentation equipment and trained personnel. High PHA content, productivity, zero-cost carbon source, low-cost isolation of a high-purity product and potential integration into ethanol manufacturing unit with concomitant wastewater treatment should merit further development of this process to higher scales.
机译:Vinasse是一种乙醇工业的高污染废物,被极度嗜盐的古细菌Haloferax mediterranei用摇瓶用于生产聚羟基链烷酸酯(PHA)。在通过吸附在活性炭上进行预处理之后,使用了25%-50%(v / v)的预处理酒糟,导致PHA的最大积累量达到70%。最大PHA浓度为19.7μg/ l,产品产量系数(基于总碳水化合物)为0.87,体积生产率为0.21μg/ l·h。在此过程结束时,可以同时降低预处理酒糟的BOD5至少78%和COD至少80%。通过对细胞进行渗透裂解并通过次氯酸钠和有机溶剂纯化来回收PHA。通过紫外可见光谱法,气相色谱法,差示扫描量热法和核磁共振波谱法,PHA被鉴定为聚-3-(羟基丁酸酯-共-羟基戊酸酯)。 3-羟基戊酸酯的含量为12.36摩尔%(使用25%的预处理的酒糟)和14.09摩尔%(使用50%的预处理的酒糟)。培养基中的高盐浓度使得该过程无需无菌条件,因此可以考虑降低灭菌成本。与其他竞争性方法(如乳清的超滤,膨化和大米和玉米淀粉的酶处理)相比,酒醋的活性炭预处理经济。在不影响糖价的情况下,此过程可以轻松地集成到具有发酵设备和训练有素的人员的酿酒厂中。高PHA含量,高生产率,零成本碳源,低成本分离高纯度产品以及可能与废水处理相结合的乙醇生产装置,应使该工艺进一步发展到更大规模。

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