Addition of Bio-Additive as a Catalyst of Burning Vegetable Oil Influenced by 4 Pole Magnetic Field

Gatot Soebiyakto, I. Wardana, N. Hamidi, L. Yuliati
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引用次数: 1

Abstract

The application of the combustion process influenced by magnetic circle 4 poles sequentially (N-S-N-S) against premixed combustion of vegetable-aromatic oil at an equivalence ratio approaching stoichiometry is studied. The reactant reaction causes the heat transfer to be characterized by the increase in temperature and has the main strength that combines the metal atoms due to the interesting pull (N-S) and (S-N) causing the electrons to move freely due to energy electron. Electron interaction induces the separation of atoms from the reactants, followed by atomisation and fuel transfer into a droplet and then collisions into a smaller droplet, smoother and isolated forming cellular-cellular APIs. The results of the study reported that the magnetic field makes a premixed combustion reaction more intense as the magnetic field makes the spin of the electron and the proton hydrogen become more energetic. More energetic electrons and protons are more actively changing the structure of carbon bonds in saturated and unsaturated fatty acids, both long and short chains. Long-chain saturated fatty acids and polar forms are more active than short and straight because they have a stronger polarity and a more free electron movement. Magnetic field administration makes fire more reactive, faster in the vines, because paramagnetic O 2 is emitted more across the fire from the South Pole (S) to the North (N) while the heat carried by H 2 O that is diamagnetic is emitted more across the fire from the North Pole (N) to the South (S). This event occurs in the shift of magnetic coil U and S. Consequently, in the area of switching, there is the formation of cellular-cellular fire and the growth of radius equivalence
四极磁场对生物添加剂作为植物油燃烧催化剂的影响
研究了磁环4极序(N-S-N-S)对植物芳香油在接近化学计量的等效比下预混合燃烧过程的影响。反应物反应导致传热的特征是温度升高,主要强度是由于有趣的拉力(N-S)和(S-N)而结合金属原子,由于能量电子而使电子自由移动。电子相互作用诱导原子从反应物中分离出来,接着是原子化和燃料转移到一个液滴中,然后碰撞成一个更小的液滴,更平滑和隔离,形成细胞-细胞api。研究结果报告说,磁场使预混燃烧反应更加激烈,因为磁场使电子和质子氢的自旋变得更有能量。能量更高的电子和质子更积极地改变饱和和不饱和脂肪酸中碳键的结构,包括长链和短链。长链饱和脂肪酸和极性脂肪酸比短链和直链脂肪酸更活跃,因为它们具有更强的极性和更多的自由电子运动。磁场管理使火更加被动,更快的葡萄,因为顺O 2排放更火对面的南极(S)北(N),而热量由H 2 O抗磁性是释放更多的火对面北极(N)南(年代)。这一事件发生在电磁线圈的转变U和S .因此,在开关领域,形成cellular-cellular火和等效半径的增长
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