摘要:
Provided are an airborne microbial measurement apparatus and a method of measuring the same. The airborne microbial measurement apparatus includes a particle separation device including a main body having a flow space in which airborne microorganism flows and a collection unit separably coupled to one side of the main body to collect the airborne microorganism, a reagent container in which a lysis reagent reacting with the airborne microorganism collected in the collection unit and a luminous material are stored, and a luminescence measurement device for measuring intensity of light emitted after the airborne microorganism reacts with the lysis reagent and the luminous material.
摘要:
An airborne microbial measurement apparatus and a measurement method thereof are provided. An airborne microbial measurement apparatus according to an embodiment includes a discharge apparatus including a discharge electrode and a voltage supply unit applying a high voltage to the discharge electrode. A substrate is provided to a side of the discharge apparatus to collect an airborne microbe from air by a high voltage applied to the discharge electrode. A reagent injection apparatus supplies a dyeing reagent to the microbe collected on the substrate or a DNA of the microbe. A light emission measurement apparatus senses a quantity of light generated from the DNA to which the dyeing reagent is supplied. The discharge apparatus includes a controller controlling the voltage supply unit so that the voltage is applied to collect the airborne microbe or destroy an external wall of the collected airborne microbe.
摘要:
An antimicrobial composition containing a ginseng extract and a green tea extract, an antimicrobial filter, and a method for manufacturing the same are provided, which maximize antimicrobial and antiviral effects and exhibit antimicrobial and antiviral effects using a single filter, thus advantageously having little pressure loss and enabling production at low cost in comparison to the related art, which uses two filers.
摘要:
Provided is an air cleaning system and a method of controlling the same. The air cleaning system includes a particle separation device for suctioning indoor air to separate microbial particles from air particles, a collection device collecting the micro-bial particles separated by the particle separation device, a luminescence measurement device for detecting an amount or intensity of light emitted from the microbial particles collected in the collection device, and at least one air cleaning device that selectively operates on the basis of contamination of the microbial particles detected by the luminescence measurement device.