A: Raw materials used by BioSum ACR Bag is “sub-nanometer photocatalyst" and is finer than 10-9 molecular materials. When matter is as small as 1 to 100 nanometers, many of its features will easily change and have many unique features both different from macro-matters and single atoms due to the quanta effect, regional confinement of matter, and huge surface or interface effects. The final objective of nanometer technology is to produce products of special functions with new physical and chemical features by making atoms, molecules and matters presenting their features directly in the length of a nanometer: for example, the strength of ten times of iron could be very light, all information in a library could be stored in a chip the size of a sugar cube, and tumors the sizes of only several cells can be detected.
Theoretically, when photocatalyst absorbs radiation from sunlight or illuminated light source (like fluorescent lamps), it will produce pairs of electrons and holes. The electron of the valence band becomes excited when illuminated by light. The excess energy of this excited electron promoted the electron to the conduction band therefore creating the negative-electron (e-) and positive-hole (h+) pair. This stage is referred as the semiconductor's 'photo-excitation' state.
Simply speaking, ACR Bag absorbs light and produces energy to excite the bag’s inner coating elements to build into a specific energy wave frequency to break the toxic chemical bond residue in fruits and vegetables so as to decompose their toxic elements.
A:BioSum 健康蔬果袋原料为”次奈米光触媒”,是一种比10-9还要细微分子材料,它就像宇宙的黑洞一样,能吸收光线,产生能源,让周围分子产生剧烈运动,其特定波频可以打断蔬果农药中有毒物质的分子键,使其毒性分解消失。其实,它就是太阳能的一种运用