Modifikasi Sirkulasi Air Pendingin Alat Destilasi pada Proses Pembuatan Akuades

M. Marjuni, Ori Minarto, S. Wahyono
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引用次数: 2

Abstract

Distilled water in the laboratory is highly important since it is a basic requirement in the lab work and/or research. The large use of distilled water in the Faculty of Mathematics and Natural Sciences University of Lambung Mangkurat (FMIPA ULM) obliged to depend on its own by providing the equipment to produce distilled water. The efficiency of water is low during producing one liter distilled water due to 35 liters is needed. Several studies have conducted focusing on the energy efficiency and the use of alternative energy in the distilled water production. Efficiency is not only limited on the heating energy sources, but also the cooling component. One of the attempts is modifying the cooling water circulation in the distillation equipment. It aimed that the cooling water is not wasted but is returned to the circuit. In this study, a cooling water circulation modification was carried out by adding a radiator set, submersible pump and storage tank. The distilled water produced from this circuit will be compared with distilled water from distillation equipment without modification. The parameters compared which are: temperature, volume, electrical conductivity and pH. Our research results show that the modified distillation equipment series is feasible to apply since the electrical conductivity of the resulting distilled water is lower than before modification process and also the sediment attached to the boiler wall is formed slower than the distillation equipment without modification. With the need for a lower volume of raw water, a series of modified distillation equipment is also suitable for use in the dry season or during water distribution is not smooth.
水冷通风调节水冷适配器对水貂的制造过程
蒸馏水在实验室是非常重要的,因为它是实验室工作和/或研究的基本要求。兰邦曼库拉特大学数学和自然科学学院(FMIPA ULM)大量使用蒸馏水,不得不依靠自己提供生产蒸馏水的设备。在生产1升蒸馏水的过程中,水的效率很低,因为需要35升蒸馏水。针对蒸馏水生产中的能源效率和替代能源的使用进行了几项研究。效率不仅局限于加热能源,还包括冷却部件。其中一项尝试是改进蒸馏设备中的冷却水循环。它的目标是冷却水不被浪费,而是被送回回路。在本研究中,通过增加散热器组、潜水泵和储罐进行冷却水循环改造。该回路生产的蒸馏水将与蒸馏设备生产的蒸馏水进行比较,而无需进行改造。对温度、体积、电导率、ph等参数进行了比较。研究结果表明,改造后的蒸馏水电导率比改造前低,锅炉壁面沉积物形成速度也比未改造的蒸馏水设备慢,是可行的。随着原水需水量的减少,一系列改进型蒸馏设备也适合在旱季或配水不顺畅时使用。
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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