Hermin Hardyanti Utami, Setyawati Yani, Zakir Sabara
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摘要

布顿沥青砂或通常被称为asbuton是在苏拉威西岛东南部的布顿岛发现的天然沥青砂矿床。石棉储量约为1.791亿吨,假设石油资源量为10,577,64.6万升。石棉有可能被用作非常规石油的替代原料。在印度尼西亚,从石棉中提取的非常规石油可以作为耗尽的常规石油资源的替代品。沥青是沥青沥青砂中的一种重烃物质,可从沥青砂的矿物中提取沥青制备非常规石油。然后,沥青可以进一步加工以生产非常规石油。人们对用各种溶剂提取沥青进行了各种研究。本研究采用直接萃取法和正己烷溶剂索氏萃取法来获得最佳的沥青含量。直接提取法通过改变温度(40、45、50、55、60℃)和沥青与正己烷溶剂的重量比(1:20;1: 30;1时;1:50)。根据已有的研究结果,直接萃取法的沥青收率最高,为40℃,比例为1:20,为88.60%。当索氏溶剂萃取比为1:40时,沥青得率最高,达90.97%。之后,在1423.47区域用强吸光度的FTIR进行特征分析;1033.85;873.75;709.80 cm-1表示C-H和C = H基团。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pengaruh Proses N-Hexane Solvent Extraction pada Ekstraksi Bitumen dari Aspal Buton sebagai Bahan Baku Minyak Bumi Nonkonvensional
Buton tar sand or commonly known as asbuton is a natural tar sand deposit found in Buton Island, Southeast Sulawesi. The reserve of asbuton is approximately 179.1 million tons with a hypothetical resource of oil amounting to 10,577,646,000 liters. Asbuton is potentially used as an alternative raw material for non-conventional oil. Non-conventional oil from asbuton could be used as a substitute to the depleted resources of conventional oil in Indonesia. Asbuton non-conventional oil could be prepared by extracted bitumen, a heavy hydrocarbon material in asbuton tar sand from its mineral. The bitumen then could be further processed to produce non-conventional oil. Various studies have been carried out to extract bitumen with various solvents. This study uses direct extraction and soxhlet extraction methods with n-hexane solvent to obtain the most optimum percentage of bitumen. Direct extraction method is done by varying the temperature (40, 45, 50, 55, 60oC) and the weight ratio of asphalt and n-hexane solvent (1:20; 1: 30; 1:40; 1:50). Based on the results of research that has been done, the highest percentage of bitumen yield is formed at 40oC and at a ratio of 1:20 that is 88.60% for the direct extraction method. The 1:40 ratio of soxhlet solvent extraction has the highest bitumen yield of 90.97%. After that, a characteristic analysis was carried out using FTIR with a strong absorbance in the area of 1423.47; 1033.85; 873.75; 709.80 cm-1 representing the C-H and C = H groups.
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