首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Utilization of wastewater originated from naturally fermented virgin coconut oil manufacturing process for bioextract production: Physico-chemical and microbial evolution
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Utilization of wastewater originated from naturally fermented virgin coconut oil manufacturing process for bioextract production: Physico-chemical and microbial evolution

机译:利用天然发酵的初榨椰子油生产工艺产生的废水进行生物提取物生产:理化和微生物进化

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Production of virgin coconut oil via natural fermentation has led to large amount of wastes being generated, i.e., coconut pulp and wastewater containing coconut crème. Objective of this study is to gain more insight into the feasibility of utilization of such wastes as raw materials together with several types of wastes such as fish waste and/or pineapple peel for bioextract production. Chemical, physico-chemical and biological changes including phytotoxicity of the fermented mixture were closely monitored. Physical observation suggested that fermentation of bioextract obtained with fish waste appeared to be complete within the first month of fermentation while bioextract obtained using pineapple waste seemed to be complete after 8 months post-fermentation. Fermentation broth is of blackish color with alcoholic as well as acidic odour with no gas bubble and/or yeast film present on top of the surface. During the whole fermentation interval, several attributes of both bioextracts, e.g., pH, chemical oxygen demand (COD) and organic acids, were statistically different. Further, the total bacteria and lactic acid bacteria present in pineapple bioextract were statistically higher than those of the fish bioextract (p < 0.01). The highest germination indices of 123 and 106 were obtained at 21 and 14 days post-fermentation for fish and pineapple bioextracts, respectively. In addition, qualities of both bioextracts conformed well with those specified by the Thai standard for liquid biofertilizer after 1 month fermentation. Results further showed that wastewater derived from virgin coconut oil manufacturing process could effectively be employed together with other types of wastes such as fish waste and pineapple peel for bioextract production. However, for the best bioextract quality, fermentation should be carefully planned since over fermentation led to bioextract of low qualities.
机译:通过自然发酵生产原始椰子油导致产生大量废物,即椰子浆和含有椰子乳的废水。这项研究的目的是更深入地了解将此类废物用作原料以及几种类型的废物(如鱼废和/或菠萝皮)用于生物提取的可行性。密切监测发酵混合物的化学,物理化学和生物学变化,包括植物毒性。物理观察表明,从鱼粪中获得的生物提取物的发酵在发酵的第一个月内似乎已完成,而从菠萝粪中获得的生物提取物在发酵后8个月后似乎已完成。发酵液呈黑色,带有酒精和酸性气味,表面无气泡和/或酵母膜。在整个发酵间隔中,两种生物提取物的几个属性,例如pH,化学需氧量(COD)和有机酸在统计上是不同的。此外,菠萝生物提取物中存在的细菌总数和乳酸菌总数统计上高于鱼类生物提取物中的细菌总数和乳酸菌总数(p <0.01)。鱼和菠萝生物提取物分别在发酵后21天和14天获得最高发芽指数123和106。此外,两种生物提取物的质量与发酵1个月后的泰国液体生物肥料标准规定的质量非常一致。结果还表明,原始椰子油生产过程中产生的废水可以有效地与其他类型的废物(如鱼废和菠萝皮)一起用于生物提取物的生产。但是,为了获得最佳的生物提取质量,应仔细计划发酵,因为过度发酵会导致低质量的生物提取。

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