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    • 61. 发明申请
    • SOLIDOTHERMAL SYNTHESIS OF ZEOLITIC MATERIALS AND ZEOLITES OBTAINED THEREFROM
    • 由此获得的ZEOLITIC MATERIALS和ZEOLITES的固体合成
    • WO2016058541A1
    • 2016-04-21
    • PCT/CN2015/091979
    • 2015-10-15
    • BASF SEBASF (CHINA) COMPANY LIMITED
    • MAURER, StefanMUELLER, UlrichXIAO, Feng-ShouMENG, XiangjuWU, Qinming
    • C01B39/00C01B37/00
    • C01B39/48C01B37/02C01B39/087C01B39/40
    • Provided is a process for preparing a zeolitic material comprising YO 2 in its framework structure, wherein Y stands for a tetravalent element. The process comprises the steps of: (1) providing a mixture comprising one or more sources for YO 2 , one or more fluoride containing compounds, and one or more structure directing agents; (2) crystallizing the mixture obtained in step (1) for obtaining the zeolitic material; wherein the mixture provided in step (1) and crystallized in step (2) contains 35 wt.% or less of H 2 O based on 100 wt.% of YO 2 . Also provided are a zeolitic material obtained according to the process, and a zeolitic material per se comprising SiO 2 in its framework structure, wherein the ratio of the total integration value of the peaks associated to Q3 signals to the total integration value of the peaks associated to Q4 signals is in the range of from 0:100 to 20:80 in the 29 Si MAS NMR spectrum of the zeolitic material. Further provided is use of the aforementioned zeolitic materials.
    • 提供了一种制备其框架结构中包含YO 2的沸石材料的方法,其中Y代表四价元素。 该方法包括以下步骤:(1)提供包含一种或多种用于YO 2,一种或多种含氟化合物和一种或多种结构导向剂的来源的混合物; (2)使步骤(1)中得到的混合物结晶得到沸石材料; 其中在步骤(1)中提供并在步骤(2)中结晶的混合物含有基于100重量%的YO 2的35重量%或更少的H 2 O。 还提供了根据该方法获得的沸石材料,并且沸石材料本身在其骨架结构中包含SiO 2,其中与Q3信号相关联的峰的总积分值与与峰相关的峰的总积分值的比率 Q4信号在沸石材料的29Si MAS NMR光谱中在0:100至20:80的范围内。 进一步提供使用上述沸石材料。
    • 62. 发明申请
    • METHOD AND DEVICE FOR FILLING A STORAGE TANK BY RECIRCULATION OF GAS
    • 通过气体回收填充储存罐的方法和装置
    • WO2015169939A1
    • 2015-11-12
    • PCT/EP2015/060152
    • 2015-05-08
    • BASF SE
    • WEICKERT, MathiasMARX, StefanMUELLER, UlrichKUPKE, StefanLYNCH, JosephSANTAMARIA, MichaelLACK, AdamDOLAN, William
    • F17C11/00
    • F17C11/007
    • The present invention is related to a method for filling a storage tank (82) for adsorbed natural gas (ANG), refilling arrangements for refilling a storage tank (82) for ANG. During a first rapidly performed filling phase (14), said storage tank (82) is filled up to a pressure level (26), at which an adsorbed material (84) of the storage tank (82) reaches at least 50% of its saturation level. During a second subsequent filling phase (16) of said storage tank (82), a flow-through circulation of cold gas is established through said storage tank (82) at a pressure level substantially corresponding to a pressure level (26) at the end of step a) and optionally, in a third filling phase (18), the storage tank (82) is filled as soon as possible to its final pressure level (28).
    • 本发明涉及一种填充用于吸附天然气(ANG)的储罐(82),再填充用于ANG的储罐(82)的再填充装置的方法。 在第一快速进行的填充阶段(14)期间,所述储罐(82)被填充到压力水平(26),在该压力水平(26),储存罐(82)的吸附材料(84)达到其至少50% 饱和度水平。 在所述储罐(82)的第二个随后的填充阶段(16)中,通过所述储罐(82)在基本上对应于末端的压力水平(26)的压力水平建立冷气体的流通循环 的步骤a),并且可选地,在第三填充阶段(18)中,储罐(82)尽可能快地填充到其最终压力水平(28)。