Development of Nipa (Nypa fruticans) Sap Closed Collection Vessel

J. P. Madigal, B. G. S. Calixto, Michael Duldulao, T. Ubiña, S. Agrupis
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引用次数: 2

Abstract

The ultimate goal of the present study was to develop a secure, safe, and hygienic nipa sap collection system for bioethanol production, with the aim of preserving its physico-chemical properties such as physical appearance, pH and sugar brix by reducing the rate of fermentation while attached to the peduncle. The developed collection system was evaluated in terms of the physical and chemical properties of nipa sap collected and ethanol yield in comparison to the traditional and existing collection system used by the nipa community which utilizes bamboo shingle as their collector. Physical appearance of the sap collected using the designed collection system had no foreign materials after harvesting while the traditional collection system had shown traces of insect infestation. The sap that was produced for both of the designed and traditional collection system was milky-white and yellowish-white in color respectively. There was a significant difference in terms of pH concentration of the sap collected using the designed collection system compared to the sap collected using the traditional system overtime. Sugar brix of nipa sap collected using designed collection system is significantly higher than the sap collected using traditional system. A total ethanol yield of 32.25% and 75.54% was obtained for the designed and traditional collection system respectively. Cost Analysis revealed that the designed collection system was found to be cheaper (PhP 11.93) than the traditional collection system (PhP. 20.00). The developed closed collection system can preserved the chemical properties of the nipa sap and could prevent acceleration of fermentation and the deterioration of its potential to yield more ethanol.
尼帕(尼帕果)树液封闭收集容器的研制
本研究的最终目标是开发一种安全、安全、卫生的nipa树液收集系统,用于生物乙醇生产,目的是通过降低附着在花序梗上的发酵速率来保留其物理化学特性,如物理外观、pH值和糖糖度。对所开发的收集系统进行了物理和化学性质的评价,并将其与传统和现有的以竹瓦为收集剂的收集系统进行了比较。使用设计的采集系统采集的树液在收获后的物理外观上没有异物,而传统的采集系统则显示出昆虫侵染的痕迹。设计采集系统和传统采集系统所产生的汁液颜色分别为乳白色和黄白色。使用设计的收集系统收集的树液的pH浓度与使用传统系统收集的树液的pH浓度有显著差异。设计的采集系统采集的树液糖度明显高于传统采集系统采集的树液。设计的收集系统和传统收集系统的乙醇总得率分别为32.25%和75.54%。成本分析表明,设计的收集系统比传统的收集系统(PhP 11.93)更便宜。20.00)。所开发的封闭收集系统可以保留nipa树液的化学特性,并可以防止发酵加速和其产生更多乙醇的潜力的恶化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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