NaOH/KOH混合溶液原位聚合合成沸石及其在水稻土中固定化Cd(II)的应用前景

IF 1.1 4区 地球科学 Q4 CHEMISTRY, PHYSICAL Clay Minerals Pub Date : 2021-06-01 DOI:10.1180/clm.2021.29
Di Wu, Yi Huang, Guqing Xiao, Xuan Li, Xia Yao, Zixuan Deng, Rui Tan
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引用次数: 1

摘要

摘要地聚合物在一定的合成条件下可转化为沸石。然而,沸石形成并不经常报道在koh活化的地聚合物。本研究尝试以NaOH/KOH混合碱性溶液为活化剂,在固化时间为24 h的条件下,通过地聚合法制备沸石,并将其用于水稻土中Cd(II)的固定化。得到了K2O/ M2O-H2O /SiO2和K2O/ M2O-OH - /SiO2二元沸石结晶相图。在较低的K2O/M2O摩尔比(0 ~ 0.2)下形成A型沸石、辉石和钠石,在K2O/M2O摩尔比为0.2 ~ 0.4时形成铁铁沸石,在K2O/M2O摩尔比为0.6时形成K-I型沸石和F-K型沸石(均为k型沸石)。地聚合物负载的沸石具有微孔和介孔,比表面积为44.2 ~ 74.8 m2 g-1。在沸石添加量为4-6 wt.%时,该材料具有较高的Cd(II)固定化效率(55.6-58.7%)。
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In situ synthesis of zeolites by geopolymerization with NaOH/KOH mixed solution and their potential application for Cd(II) immobilization in paddy soil
Abstract Geopolymers can be transformed into zeolites under certain synthesis conditions. However, zeolite formation is not frequently reported in KOH-activated geopolymers. This study attempted to explore zeolite synthesis through geopolymerization for a curing time of 24 h using mixed NaOH/KOH alkaline solution as an activator, and then applying the geopolymer-supported zeolites to immobilize Cd(II) in paddy soil. The K2O/M2O–H2O/SiO2 and K2O/M2O–OH–/SiO2 binary zeolite crystallization phase diagrams were obtained. Zeolite A, faujasite and sodalite formed at lower K2O/M2O molar ratios (0–0.2), ferrierite formation was favoured at a K2O/M2O molar ratio of 0.2–0.4 and zeolite K-I and zeolite F-K (both K-zeolites) were observed at a K2O/M2O molar ratio of 0.6. The geopolymer-supported zeolites had micropores and mesopores and specific surface area values of 44.2–74.8 m2 g–1. The material displayed a considerable Cd(II) immobilization efficiency (55.6–58.7% at 4–6 wt.% addition of zeolite).
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来源期刊
Clay Minerals
Clay Minerals 地学-矿物学
CiteScore
3.00
自引率
20.00%
发文量
25
审稿时长
6 months
期刊介绍: Clay Minerals is an international journal of mineral sciences, published four times a year, including research papers about clays, clay minerals and related materials, natural or synthetic. The journal includes papers on Earth processes soil science, geology/mineralogy, chemistry/material science, colloid/surface science, applied science and technology and health/ environment topics. The journal has an international editorial board with members from fifteen countries.
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