功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
22期
22021-22025
,共5页
CO2%吸附%层状双氢氧化物%去离子水%氨基
CO2%吸附%層狀雙氫氧化物%去離子水%氨基
CO2%흡부%층상쌍경양화물%거리자수%안기
carbon dioxide%adsorption%layered double hydroxide%deionized water%amine
以共沉淀方法合成了十二烷基磺酸钠插层的Mg/A l层状双氢氧化物,并采用超声剥落方法进行氨基改性。利用元素分析、X 射线衍射技术和扫描电镜表征所得样品的成分、结构以及形貌特征,利用热重分析技术表征样品在30℃、1.013×105 Pa 下对 CO2的吸附能力以及吸附-脱附循环再生性能。在氨基改性过程的超声剥落环节引入一定量的去离子水,重点考察了去离子水对氨基改性层状双氢氧化物的氨基负载量和CO2吸附性能的影响规律。结果表明,当改性过程中加入的去离子水量为0.1 mL/g 时,样品 Mg/Al 0.1 N1和Mg/Al 0.1 N2的CO2吸附容量均为最大,分别为1.21和 1.02 mmol/g(30℃,纯 CO2环境)。
以共沉澱方法閤成瞭十二烷基磺痠鈉插層的Mg/A l層狀雙氫氧化物,併採用超聲剝落方法進行氨基改性。利用元素分析、X 射線衍射技術和掃描電鏡錶徵所得樣品的成分、結構以及形貌特徵,利用熱重分析技術錶徵樣品在30℃、1.013×105 Pa 下對 CO2的吸附能力以及吸附-脫附循環再生性能。在氨基改性過程的超聲剝落環節引入一定量的去離子水,重點攷察瞭去離子水對氨基改性層狀雙氫氧化物的氨基負載量和CO2吸附性能的影響規律。結果錶明,噹改性過程中加入的去離子水量為0.1 mL/g 時,樣品 Mg/Al 0.1 N1和Mg/Al 0.1 N2的CO2吸附容量均為最大,分彆為1.21和 1.02 mmol/g(30℃,純 CO2環境)。
이공침정방법합성료십이완기광산납삽층적Mg/A l층상쌍경양화물,병채용초성박락방법진행안기개성。이용원소분석、X 사선연사기술화소묘전경표정소득양품적성분、결구이급형모특정,이용열중분석기술표정양품재30℃、1.013×105 Pa 하대 CO2적흡부능력이급흡부-탈부순배재생성능。재안기개성과정적초성박락배절인입일정량적거리자수,중점고찰료거리자수대안기개성층상쌍경양화물적안기부재량화CO2흡부성능적영향규률。결과표명,당개성과정중가입적거리자수량위0.1 mL/g 시,양품 Mg/Al 0.1 N1화Mg/Al 0.1 N2적CO2흡부용량균위최대,분별위1.21화 1.02 mmol/g(30℃,순 CO2배경)。
The preparation of the organic surfactant (sodium laurylsulfonate)intercalated Mg/Al layered double hydroxides (Mg/Al LDH)were prepared via a co-precipitation method.Then an exfoliation and grafting meth-od was utilized for synthesizing amine modified Mg/Al LDH.The materials were characterized by element anal-ysis,X-ray diffraction,scanning electron microscopy and thermogravimetric analysis.The adsorption behavior and the adsorption-desorption regeneration experiments for these layered double hydroxides was investigated by TGA at 30 ℃ and one bar pressure.In the process of amine modified,a amount of deionized water was aided during exfoliation.The influence rule of the amount of water with amine loading and CO2 absorption capacity were particularly studied.The results show that the optimum amount of deionized water of 3-(trimethoxysilyl) propylamine and N-(amino-ethyl)-amino-propyl trimethoxy silane was both 0.1 mL/g with the adsorption ca-pacity of 1.21 and 1.02 mmol/g for sample Mg/Al 0.1 N1 and Mg/Al 0.1 N2 in pure CO2 at 30 ℃.