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The effect of low sulphur wax residique (LSWR) and sorbitan monooleate (SPAN-80) to the emulsion fuel stability

机译:低硫蜡渣油(LSWR)和脱水山梨糖醇单油酸酯(SPAN-80)对乳液燃料稳定性的影响

摘要

The world oil resources are getting low daily. However, the usage still increasing due to the technology advancement nowadays. Yet, the world still did not find any suitable replacement for this resource which can give high energy at affordable cost, also it must be easy to use by all people. The most efficient resource of energy that can be replacing oil is nuclear power. Nuclear power has it all, efficient, clean, long lasting, but the downside is not every country has ability to build this technology and it is considered as a highly dangerous source of energy as it produces not only explosion but also radiation. Then this study was conducted to give more time for oil energy era before it become completely extinct. More time for the world to find an efficient source of energy that can be used by the people like this oil energy. The basic of this study is to create a combination of oil and water as an emulsion fuel. Oil and water are immiscible due to polar molecule having in the water. They need some element that can combine and stabilize them together and that element is the emulsifier. Emulsifier functioning as a binding element for the diesel and water to combine, the emulsifier used in this study are Span-80 and LSWR. The materials used in this study were Diesel oil, water, Span-80 and LSWR. This study consists of two parts, finding suitable ratio and analyzing characterization. For finding suitable ratio, 20:80, 30:70 and 40:60 of water in oil ratio with 1%, 1.5% and 2% emulsifier percentage each, were used. By using a propeller the oil were agitated with the emulsifier for about 5 minutes at 2000 rpm, then the water slowly poured into the solution and agitatedudmore for 10 minutes. The emulsion fuel then putted into a measuring cylinder and take the stability data at 3, 6, 24, 48 and 120 hours. For analyzing characterization, the water droplets size was checked with microscope lOx lens, viscometer to check shear rate,. shear stress, viscosity.udFrom the study, Span-80 emulsifier is more stable than LSWR. Based from data for 20:80 water in oil and using 1.5% emulsifier. For SPAN-80 about 73.5% of emulsion fuel, maintain its state after 120 hours. The rest, 1 .5% turned into oil and 25% turned into oil in water layer.udDifferently for LSWR about 80.6% of the emulsion fuel, maintain its state after 120 hr. However, almost 38 mL from 40 mL of water was dispersed at the bottom layer. Meaning the LSWR has high ability to hold most of the oil but not the water.
机译:世界石油资源每天都在减少。但是,由于当今技术的进步,使用量仍在增加。然而,世界上仍没有找到合适的替代品来以可承受的成本提供高能量的这种资源,而且它必须易于所有人使用。可以替代石油的最有效能源是核能。核电具有高效,清洁,持久的所有功能,但不利的一面不是每个国家都有能力建造这项技术,而且核能不仅会产生爆炸,还会产生辐射,因此被视为极危险的能源。然后进行了这项研究,以便为石油能源时代提供更多时间,使其完全灭绝。世界上有更多的时间来寻找一种有效的能源,像这种石油能源一样可供人们使用。这项研究的基础是创建油和水的混合物作为乳化燃料。由于水中含有极性分子,因此油和水不混溶。他们需要一些可以将它们结合并稳定在一起的元素,而该元素就是乳化剂。乳化剂充当柴油和水结合的结合元素,本研究中使用的乳化剂是Span-80和LSWR。本研究中使用的材料是柴油,水,Span-80和LSWR。这项研究包括两个部分,找到合适的比例和分析表征。为了找到合适的比例,使用油/水的比例为20:80、30:70和40:60,其中乳化剂的百分比分别为1%,1.5%和2%。通过使用螺旋桨,将油与乳化剂在2000 rpm下搅拌约5分钟,然后将水缓慢倒入溶液中,并再搅拌10分钟。然后将乳化燃料放入量筒中,并在3、6、24、48和120小时获取稳定性数据。为了分析表征,用显微镜10X透镜,粘度计检查水滴尺寸以检查剪切速率。剪切应力,粘度。 ud根据研究,Span-80乳化剂比LSWR更稳定。基于油中20:80的数据和使用1.5%乳化剂的数据。对于SPAN-80,约73.5%的乳化燃料,在120小时后保持其状态。其余的1.5%变成油,而25%变成水包油。 uds对于LSWR,大约80.6%的乳化燃料在120小时后保持其状态。但是,从40毫升水中几乎有38毫升分散在底层。意味着LSWR具有很高的容纳大部分油的能力,但不能容纳水。

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