甘蔗渣被修改为加入四环素:利用柱法

Gatut Ari Wardani, Adinda Nur Octavia, Mochamad Fathurohman, Taufik Hidayat, Estin Nofiyanti
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引用次数: 0

摘要

目前,抗生素被认为是环境污染物,因为它们对人类健康和环境有不良影响,包括抗生素的废物盐酸四环素。另一方面,甘蔗渣是一种农业废弃物,没有经济价值。本研究旨在研究甘蔗渣活性炭的特性,并利用甘蔗渣作为壳聚糖改性活性炭,采用柱法测定吸附剂高度、流速、溶液酸度对甘蔗渣吸附剂吸附盐酸四环素能力的影响。甘蔗渣在350°C的温度下经过碳化过程,直到形成木炭。下一道工序是使用2m磷酸进行活化,并根据SNI 06-3730-1995对技术活性炭进行比较。用傅里叶变换红外测定官能团,用扫描电子显微镜测定吸附剂形态,用x射线衍射测定结晶度。采用紫外可见分光光度计测定吸附前后盐酸四环素的浓度。吸附过程中吸附剂高度为14 cm(99%)、流速为0.5mL/min(92%)、pH为4(93%)时吸附效果最佳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Arang Aktif Ampas Tebu Termodifikasi Kitosan sebagai Adsorben Tetrasiklin: Pemanfaatan Metode Kolom
Currently, antibiotics are considered environmental pollutants because of their undesirable effects on human health and the environment, including the waste of antibiotics tetracycline hydrochloride. While on the other hand, bagasse is an agricultural waste that has no economic value. This study aims to study the characteristics of activated charcoal from bagasse and the use of bagasse as chitosan-modified activated charcoal using the column method to determine the variation of adsorbent height, flow rate, and acidity of the solution in the ability of the bagasse adsorbent to adsorb tetracycline hydrochloride. Bagasse goes through a carbonation process using a furnace at a temperature of 350°C until charcoal is formed. The next process is activation using 2 M phosphoric acids and compared based on SNI 06-3730-1995 regarding technically activated charcoal. Determination of functional groups using Fourier Transform Infra-Red, adsorbent morphology using Scanning Electron Microscope, and crystallinity using X-Ray Diffraction. The concentration of tetracycline hydrochloride before and after adsorption was measured using an Ultra Violet-Visible spectrophotometer. The best absorption results in the adsorption process were found at the adsorbent height of 14 cm (99%), the flow rate of 0.5mL/minute (92%), and pH 4 (93%).
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