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Calcined Mussel Shell Powder (CMSP) via Modification with Surfactants: Application for Antistatic Oil-Removal

机译:表面活性剂改性煅烧贻贝壳粉(CMSP):在抗静电除油中的应用

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摘要

Biomass is known to efficiently adsorb pollutants from wastewater. In this paper, we demonstrated that a new antistatic oil-cleaning material can be prepared and assembled by using two surfactants, alkyl polyglucosides (APG) and dimethyl octadecyl hydroxy ethyl ammonium nitrate (SN), to modify calcined mussel shell powder (CMSP) through a two-step hydrotherm-assisted adsorption. The pore size and structure of CMSP was measured by BET and a contact angle meter was used to characterize the surface wetting ability. XRD, FTIR, XPS, SEM, TEM, and HRTEM were employed to determine the surface structure of CMSP modified by surfactants APG and SN (MMO). In order to further characterize properties of the surface morphology and crystal structure, the HRTEM was employed to show that the MMO surface had a single crystal structure: calcite, with a crystal plane spacing of 0.2467 nm. The surface of MMO appeared to be fluffy and disperse. The antistatic and degreasing ability of as-prepared samples (MMO) was evaluated by a ZC-36 high resistance meter and BD-457 whiteness meter. The results showed that when the calcination temperature of CMSP reached 1000 °C, and the addition amount of APG and SN was 0.8 g and 0.16 g, it had an optimum antistatic effect with a surface resistivity (Rs) of 1.35 × 108 Ω, and a detergency rate to oil of 17.35%. This study aims to embrace a green solution to reduce environmental pressure and make use of waste, which is of great significance to environmental protection.
机译:众所周知,生物质能有效地吸收废水中的污染物。在本文中,我们证明了可以通过使用两种表面活性剂烷基聚葡糖苷(APG)和二甲基十八烷基羟乙基硝酸铵(SN)来制备和组装新型抗静电清洁油材料,以通过煅烧贻贝壳粉(CMSP)改性两步水热辅助吸附。通过BET测量CMSP的孔径和结构,并使用接触角仪表征表面润湿能力。 XRD,FTIR,XPS,SEM,TEM和HRTEM用于测定表面活性剂APG和SN(MMO)改性的CMSP的表面结构。为了进一步表征表面形态和晶体结构的特性,使用HRTEM来显示MMO表面具有单晶结构:方解石,晶面间距为0.2467 nm。 MMO的表面似乎蓬松且分散。通过ZC-36高电阻仪和BD-457白度仪评估所制备样品(MMO)的抗静电和脱脂能力。结果表明,当CMSP的煅烧温度达到1000℃,并且APG和SN的添加量为0.8g和0.16g时,其具有最佳的抗静电效果,表面电阻率(Rs)为1.35×10 sup 8 Ω,对油的去污率达到17.35%。这项研究旨在采用一种绿色解决方案来减轻环境压力并利用废物,这对环境保护具有重要意义。

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