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    • 9. 发明申请
    • METHOD AND APPARATUS FOR MEASURING PARTICLE SIZE
    • 用于测量颗粒尺寸的方法和装置
    • WO1998021561A1
    • 1998-05-22
    • PCT/NL1997000619
    • 1997-11-12
    • TECHNISCHE UNIVERSITEIT DELFTWILLEMSE, Alexander, WillemMERKUS, Henk, GerardSCARLETT, Brian
    • TECHNISCHE UNIVERSITEIT DELFT
    • G01N15/02
    • G01J3/4412G01N15/0205
    • Described is a method for measuring the particle size of ultra-small particles (202) which are suspended in a fluid. Laser light (121, 123) is guided via a first optical path (160) to a suspension (201), and light (125) scattered by the particles (202) in the suspension (201) is guided to an optical detector (140) via a second optical path (170). The optical detector (140) generates an electrical measuring signal (Sm) which is presented to a signal processing device (300). According to the concept of the invention, the signal-to-noise ratio of the measuring signal (Sm) is lowered by presenting to the optical detector (140) a noise signal in the form of a light signal (126) via a third optical path (180), so that the measuring signal (Sm) is always a heterodyne measuring signal. As a result, the uniformity, reliability and accuracy of the measuring signal is improved.
    • 描述了一种用于测量悬浮在流体中的超小颗粒(202)的粒度的方法。 激光(121,123)经由第一光路(160)被引导到悬架(201),并且由悬架(201)中的颗粒(202)散射的光(125)被引导到光学检测器(140) )经由第二光路(170)。 光检测器(140)产生呈现给信号处理装置(300)的电测信号(Sm)。 根据本发明的概念,通过经由第三光学器件向光学检测器(140)呈现光信号(126)形式的噪声信号来降低测量信号(Sm)的信噪比, 路径(180),使得测量信号(Sm)总是外差测量信号。 结果,提高了测量信号的均匀性,可靠性和精度。
    • 10. 发明申请
    • ROTARY REACTOR AND USE THEREOF
    • 旋转反应器及其用途
    • WO1998001222A1
    • 1998-01-15
    • PCT/NL1997000379
    • 1997-07-03
    • TECHNISCHE UNIVERSITEIT DELFTBAKKER, Wridzer, Jan, WillemKAPTEIJN, FrederikMOULIJN, Jacob, Adriaan
    • TECHNISCHE UNIVERSITEIT DELFT
    • B01J19/28
    • B01J19/2485B01J15/005B01J19/2425B01J19/28B01J2208/00017C10K1/30
    • The invention relates to a rotary reactor consisting of a number of tubular reaction compartments (A), each provided with a first end and a second end, a ceramic first reactor end plate (B) in which said first ends are received, and a second end plate (B) in which said second ends are received, which end plates (B, B) are further provided with means for supplying and/or discharging gases, and wherein against the first end plate a first ceramic flange (D) is arranged of the same material as said first end plate (B), which flange (D) is provided with openings for supply and discharges of gases, which openings correspond at least partly to openings in said first end plate (B), and wherein the assembly of flange (D) and said first end plate (B, B) are disposed against each other under pressure while rotating relative to each other.
    • 本发明涉及一种由多个管状反应室(A)组成的旋转反应器,每个管状反应室(A)分别设置有第一端和第二端,陶瓷第一反应器端板(B),其中所述第一端被容纳在其中,第二端 端板(B),其中所述第二端被接纳,所述端板(B,B)还设置有用于供应和/或排出气体的装置,并且其中抵靠所述第一端板,布置有第一陶瓷凸缘(D) 与所述第一端板(B)相同的材料,所述法兰(D)设置有用于供应和排出气体的开口,所述开口至少部分对应于所述第一端板(B)中的开口,并且其中所述组件 的凸缘(D)和所述第一端板(B,B)在相对于彼此旋转的同时相对于彼此设置。