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    • 46. 发明申请
    • CHEMICAL ACTIVATION OF CARBON WITH AT LEAST ONE ADDITIVE
    • 碳化合物与至少一种添加剂的化学活化
    • WO2015017200A1
    • 2015-02-05
    • PCT/US2014/047728
    • 2014-07-23
    • CORNING INCORPORATED
    • FAGAN, James GerardGADKAREE, Kishor PurushottamKUMAR, AtulOWUSU, Samuel OdeiREDDY, Kamjula Pattabhirami
    • C01B31/12
    • C01B31/125C01B32/342C01B32/348H01G11/34
    • The disclosure relates, in various embodiments, to methods for forming activated carbon comprising (a) providing a feedstock mixture comprising a carbon feedstock, at least one activating agent chosen from alkali metal hydroxides, and at least one additive chosen from fats, oils, fatty acids, fatty acid esters, and polyhydroxylated compounds to form a feedstock mixture; (b) optionally heating the feedstock mixture to a first temperature, and when a step of heating the feedstock mixture to a first temperature is performed, optionally holding the feedstock mixture at the first temperature for a time sufficient to react the at least one activating agent with the at least one additive; (c) optionally milling and/or grinding the feedstock mixture; (d) heating the feedstock mixture to an activation temperature; and (e) holding the feedstock mixture at the activation temperature for a time sufficient to form activated carbon.
    • 在各种实施方案中,本公开涉及形成活性炭的方法,其包括(a)提供包含碳原料,至少一种选自碱金属氢氧化物的活化剂和至少一种选自脂肪,油,脂肪的添加剂的原料混合物 酸,脂肪酸酯和多羟基化合物以形成原料混合物; (b)任选地将原料混合物加热至第一温度,并且当进行将原料混合物加热至第一温度的步骤时,任选地将原料混合物保持在第一温度足以使至少一种活化剂 与至少一种添加剂; (c)任选研磨和/或研磨原料混合物; (d)将原料混合物加热至活化温度; 和(e)将原料混合物保持在活化温度足以形成活性炭的时间。
    • 48. 发明申请
    • SUPERIMPOSING OPTICAL TRANSMISSION MODES
    • 超光传输模式
    • WO2014093194A1
    • 2014-06-19
    • PCT/US2013/073788
    • 2013-12-09
    • CORNING INCORPORATEDALFANO, Robert R.MILIONE, GiovanniNOLAN, Daniel Aloysius
    • ALFANO, Robert R.MILIONE, GiovanniNOLAN, Daniel Aloysius
    • H04J14/04H04B10/2581
    • H04B10/2569H04B10/0795H04B10/0799H04B10/2581H04J14/04
    • A method of transmitting N optical signals along a multimode optical fiber where each of the N signals comprises N distinct superimposed transmission modes (M1, M2,...) and a portion of each of the N propagating optical signals is sampled at a receiving end of the data transmission network. N 2 - 1 distinct measurement conditions are derived from a transmission matrix T and a special unitary matrix group SU(N) corresponding to the superimposed transmission modes (M1, M2,...) at the receiving end of the data transmission network, and N 2 -1 measurements are extracted from the sampled signals. The extracted N 2 -1 measurements are used to solve a matrix equation ( T ⋅ Λ ) \ V ) = τ\ V ) where A represents generated SU(N) matrices, τ represents the extracted measurements, and |V> represents principal state eigenvectors of an output matrix corresponding to the N optical signals at the receiving end of the data transmission network.
    • 一种沿着多模光纤发送N个光信号的方法,其中N个信号中的每一个包括N个不同的叠加传输模式(M1,M2,...),并且N个传播光信号中的每一个的一部分在接收端被采样 的数据传输网络。 N2-1个不同的测量条件是从数据传输网络接收端的传输矩阵T和对应于叠加的传输模式(M1,M2,...)的特殊的酉矩阵组SU(N)导出的,N2 从采样信号中提取-1个测量值。 提取的N2-1测量用于求解矩阵方程(T⋅Λ)\ V)=τ\ V)其中A表示生成的SU(N)矩阵,τ表示提取的测量值,| V>表示主状态特征向量 对应于数据传输网络的接收端处的N个光信号的输出矩阵。