{"title":"GREEN SYNTHESIS NANOPARTIKEL GRAPHENE DENGAN AGEN PEREDUKSI URIN MANUSIA DAN APLIKASINYA SEBAGAI ADITIF BIONANOLUBRICANT BERBASIS CPO (CRUDE PALM OIL)","authors":"A. Irawan, Robiah Robiah","doi":"10.32502/JD.V2I2.1201","DOIUrl":null,"url":null,"abstract":"Graphene is a nanomaterial that has been widely applied to various fields because of the uniqueness of the material, therefore this material is very interesting to be developed as an additive in lubricant. This study aims to determine the optimum additive weight ratio and obtain optimum operating conditions in the graphene dispersion process in base oil. This research is divided into 2 stages: preliminary research and main research. The preliminary study aims to transform the chemical structure of crude palm oil (CPO) through a three-stage reaction into a polyol as a base oil. The main research is the process of making bionanolubricant. Graphene is synthesized using a combination technique with a human urine as reducing agent. The formulations are known by varying the weight of the additive and the time of the dispersion. Variation of additive weight was 0% (A1), 0.25% (B1), 0.5% (C1), 1% (D1) while for dispersion time variation ranged from 0 min (A2), 60 min (B2), 90 minutes (C2) and, 120 minutes (D2). Based on the SEM-EDX test results, the SEM image formed graphene and spectrum layers on EDX show that the oxide in graphene has been successfully reduced. Bionanolubricant was tested for quality with 7 parameters. The composition of base oil formula 250 gr and graphene nanoparticles 0.5% w / w is the optimum additive weight ratio for C1 sample code whereas the economical dispersion time is 60 minutes. The result of the viscosity index test is 121,72, its pour point is 10,4oC, flash point equal to 228oC with lubrication capability tested through four ball tester got scar diameter equal to 0,87 mm. This Bionanolubricant belongs to the SAE 250 class and is classified as a GL-4 lubricant based on the quality level of API (American Petroleum Institute) performance test.","PeriodicalId":403093,"journal":{"name":"Jurnal Distilasi","volume":"6 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2018-11-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Jurnal Distilasi","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.32502/JD.V2I2.1201","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Graphene is a nanomaterial that has been widely applied to various fields because of the uniqueness of the material, therefore this material is very interesting to be developed as an additive in lubricant. This study aims to determine the optimum additive weight ratio and obtain optimum operating conditions in the graphene dispersion process in base oil. This research is divided into 2 stages: preliminary research and main research. The preliminary study aims to transform the chemical structure of crude palm oil (CPO) through a three-stage reaction into a polyol as a base oil. The main research is the process of making bionanolubricant. Graphene is synthesized using a combination technique with a human urine as reducing agent. The formulations are known by varying the weight of the additive and the time of the dispersion. Variation of additive weight was 0% (A1), 0.25% (B1), 0.5% (C1), 1% (D1) while for dispersion time variation ranged from 0 min (A2), 60 min (B2), 90 minutes (C2) and, 120 minutes (D2). Based on the SEM-EDX test results, the SEM image formed graphene and spectrum layers on EDX show that the oxide in graphene has been successfully reduced. Bionanolubricant was tested for quality with 7 parameters. The composition of base oil formula 250 gr and graphene nanoparticles 0.5% w / w is the optimum additive weight ratio for C1 sample code whereas the economical dispersion time is 60 minutes. The result of the viscosity index test is 121,72, its pour point is 10,4oC, flash point equal to 228oC with lubrication capability tested through four ball tester got scar diameter equal to 0,87 mm. This Bionanolubricant belongs to the SAE 250 class and is classified as a GL-4 lubricant based on the quality level of API (American Petroleum Institute) performance test.
石墨烯是一种纳米材料,由于材料的独特性被广泛应用于各个领域,因此这种材料作为润滑剂添加剂的开发是非常有趣的。本研究旨在确定石墨烯在基础油中分散过程的最佳添加剂重量比,并获得最佳操作条件。本研究分为前期研究和主要研究两个阶段。初步研究的目的是通过三个阶段的反应将粗棕榈油(CPO)的化学结构转化为作为基础油的多元醇。主要研究了生物润滑剂的制备过程。石墨烯是用人类尿液作为还原剂的组合技术合成的。配方是通过改变添加剂的重量和分散的时间来确定的。分散时间的变化范围为0 min (A2)、60 min (B2)、90 min (C2)和120 min (D2)。基于SEM-EDX测试结果,石墨烯形成的SEM图像和EDX上的光谱层表明石墨烯中的氧化物已被成功还原。采用7个参数对生物润滑剂进行了质量检测。以250克基础油配方和0.5% w / w的纳米石墨烯为基础油配方的最佳添加剂配比,经济分散时间为60分钟。粘度指数测试结果为121.72,其倾点为10.4 oc,闪点为228oC,润滑性能通过四球试验机测试得到疤痕直径为0.87 mm。该bionanlubrication属于SAE 250级,根据API (American Petroleum Institute)性能测试的质量等级,被归类为GL-4润滑油。