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Use of sorption minerals to remove petroleum substances from water

机译:使用吸附性矿物从水中去除石油物质

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Purification of water from petroleum compounds is a very complex process depending on many factors. De-oiling of water is a very complex process, which is affected by a number of factors: variety of oils, nature of the oil-water emulsion (mechanical or chemical), degree of dispersion, presence of other compounds such as surfactants or other emulsifiers and stabilizers in water. For this reason, there are no universal de-oiling systems that can be used in any case. One of the methods that deserves special attention is the use of porous materials, that is, sorbents, which are readily available, simple to use, cheap and, which is important, non-toxic to the environment. The most accessible materials are natural. The aim of the work was to demonstrate the effectiveness of sorption minerals during the process of removing petroleum from water and to assess the absorbance capacity of the minerals studied. The removal process in presented studies was carried out using two natural sorbents: pumice and clinoptylolite. The pumice used was obtained from crushed and sifted natural pumice, while clinoptylolite came from tuffs mined in Slovakia. The study was conducted on simulated water (distilled water with a mixture of diesel and gasoline). The research was carried out to determine the efficiency of removal of petroleum substances by static and dynamic methods applying sorbents: pumice, clinoptylolite, and a mixture of clinoptylolite with pumice. Absorptivity of a given sorbent was tested and the value of mineral oil index was determined using gas chromatography. The absorption capacity of minerals was investigated by weighing a given sorbent before and after the test. The most absorptive material turned out to be the pumice that absorbed most of the solution: 199.8% - which was almost twice as much sorbate than the weight of the sorbent. The weakest absorption characteristics were revealed by clinoptylolite with the highest value being 70.3%, whereas for the mixture of clinoptylolite with pumice, the value was moderate -152.5%.
机译:从石油化合物中纯化水是非常复杂的过程,具体取决于许多因素。水的除油是一个非常复杂的过程,受许多因素的影响:各种油,油水乳液的性质(机械或化学),分散程度,是否存在其他化合物(例如表面活性剂)或其他水中的乳化剂和稳定剂。因此,在任何情况下都无法使用通用的除油系统。值得特别注意的一种方法是使用多孔材料,即吸附剂,该材料易于获得,使用简单,价格便宜,并且重要的是对环境无毒。最容易获得的材料是天然的。这项工作的目的是证明从水中去除石油的过程中吸附矿物的有效性,并评估所研究矿物的吸收能力。本研究中的去除过程是使用两种天然吸附剂进行的:浮石和斜发沸石。所用的浮石是从粉碎和筛分的天然浮石中获得的,而斜晶石则来自斯洛伐克开采的凝灰岩。该研究是在模拟水(蒸馏水与柴油和汽油的混合物)上进行的。进行了这项研究,以确定使用吸附剂(浮石,斜发沸石和斜发沸石与浮石的混合物)的静态和动态方法去除石油物质的效率。测试了给定吸附剂的吸收率,并使用气相色谱法测定了矿物油指数的值。在测试之前和之后,通过称重给定的吸附剂来研究矿物的吸收能力。结果表明,最具吸收性的物质是吸收了大部分溶液的浮石:199.8%-几乎是吸附剂重量的两倍。斜发沸石显示出最弱的吸收特性,最高值为70.3%,而斜发沸石与浮石的混合物的吸收值为中等-152.5%。

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