CN101954165A - Extinguishing agent of plurality of electronic conductive materials - Google Patents

Extinguishing agent of plurality of electronic conductive materials Download PDF

Info

Publication number
CN101954165A
CN101954165A CN 201010192651 CN201010192651A CN101954165A CN 101954165 A CN101954165 A CN 101954165A CN 201010192651 CN201010192651 CN 201010192651 CN 201010192651 A CN201010192651 A CN 201010192651A CN 101954165 A CN101954165 A CN 101954165A
Authority
CN
China
Prior art keywords
fire
extinguishing
polyelectron
absorb
conductive material
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN 201010192651
Other languages
Chinese (zh)
Inventor
杜志刚
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to CN 201010192651 priority Critical patent/CN101954165A/en
Publication of CN101954165A publication Critical patent/CN101954165A/en
Pending legal-status Critical Current

Links

Landscapes

  • Fire-Extinguishing Compositions (AREA)

Abstract

The invention relates to an extinguishing agent of a plurality of electronic conductive materials, in particular to a polar water extinguishing agent formed from common water through a strong magnetic field. Polar water is easier to be absorbed and attracted by firing flames, smoke formed by fire and firing combustible materials in a firing, combustion and oxidization process so as to physicochemically extinguish the fire; and the stronger the physical absorption, the better the heat-absorbing and evaporating effects. Meanwhile, the polar water is easy to absorb heat in a firing place to form hydroxyl ions and hydrogen ions which are easy to absorb a great amount of firing heat to form C-H compounds and C-O compounds as well as the hydrogen ions so that the chemical extinguishing effect is better.

Description

Polyelectron conductive material extinguishing chemical
Technical field: polyelectron conductive material extinguishing chemical belongs to the public fire protection field, is specially adapted to the fire of common daily life workplace.
Background technology: at present, extinguishing chemical commonly used has powder extinguishing agent, foaming extinguishing chemical and aqua extinguishing chemical, its common characteristic is heat absorption, cooling, sealing burning things which may cause a fire disaster and starvation, based on the physics extinguishing method, its shortcoming is that blow-off velocity is slow, fire-fighting efficiency is low, and the aqua fire extinguishing procedure at high temperature easily produces water-gas blast, thereby easily causes the expansion accident, for addressing the above problem, we have invented polyelectron conductive material extinguishing chemical.
Summary of the invention: fire burns is a kind of chemical process, present fire extinguishing is a process of handling chemical reaction with the method for physics, it itself is exactly the irrational method of a kind of poor efficiency, and the high temperature burning things which may cause a fire disaster is an oxidizing process, next in superhigh temperature is plasma process, therefore all be the process that loses electronics, polyelectron conductive material extinguishing chemical feature is: the polar water extinguishing chemical that light water is formed by high-intensity magnetic field; Polar water is at the flame that the easier quilt of combustion oxidation process that catches fire catches fire, and the flue gas that forms that catches fire, the combustible that catches fire absorb, absorption, and carries out the physical chemistry fire extinguishing; Physical absorption is stronger, heat absorption, evaporation effect is better, simultaneously, polar water forms hydroxide ion and hydrogen radical ion owing to being easy to absorb the fire area temperature, and hydroxide ion and hydrogen radical ion are easy to a large amount of temperature formation carbon compound and char combustion compound and hydrogen radical ions that catch fire that absorb thereby inhibition better effects if.
The feature of polyelectron conductive material extinguishing chemical is: roll up in the scope of catching fire and have the free electron extinguishing chemical, lose in the oxidation reaction process of electronics catching fire, by increasing electronics in the extinguishing chemical fire extinguishing procedure, oxidation reaction is progressively stopped, and transform to the reduction reaction process, thereby realize the effect of inhibition, at the superhigh temperature plasma process, roll up high temperature resistant conduction pulvis, its objective is neutralize ions, the absorption reaction energy reduces plasma reaction speed, thereby realizes the effect of fire extinguishing.
Polyelectron conductive material extinguishing chemical compared with prior art has following advantage:
1, inhibition is changed in present simple physical fire extinguishing, blow-off velocity and fire-fighting efficiency are faster, better.
2, fire extinguishing procedure realizes that electronics shifts, and has eliminated simple oxygen barrier, cooling, the water-gas blast when having stopped the aqua fire extinguishing.
3, changed fire extinguishing in the past and gradually reduced the fire district from outside to inside, progressively controlled the extinguishing method of the intensity of a fire, the main fire district that realized going out earlier tackles the major problem, controls the intensity of a fire, quickens fire extinguishing.
4, realize the combination of multiple extinguishing method, existing physics method for extinguishing fire more has the extinguishing method of chemical reaction, has enlarged fire extinguishing kind scope under different fire, has caught the principal contradiction of fire extinguishing procedure, realizes that fire extinguishing procedure is directly rapid.
5, can eliminate the smog of fire extinguishing procedure, visibility is brought up to more than 70%.
6, can absorb various combustible gases more than 25%, reduce the danger that fire extinguishing procedure is blasted.
7, various combustibles and the toxic and harmful that combustion process discharges be can absorb, poisoning and injures and deaths reduced scene of a fire periphery personnel.
8, can absorb scene of a fire ambient oxygen, reduce the oxygen content in the zone, the scene of a fire, cut off the oxygen supply passage, realize the effect of physical chemistry Combined extinguishing, have the effect of prevention subsequent explosion simultaneously.
9, fire district's ambient atmosphere pressure is reduced, the balance fire heating air pressure reduces air and supplies with, and makes fire district periphery be in low energy area, further consumes and reduces fire district burning capacity, quickens fire extinguishing.
10, constitute by conduction polar water extinguishing chemical owing to polyelectron conductive material extinguishing chemical by high-intensity magnetic field, common people can not expect can producing very beyond thought effect with containing the fire extinguishing of combustible material, particularly increased new extinguishing chemical kind again, and enlarged its range of application at fire-fighting domain.
The specific embodiment: polyelectron conductive material extinguishing chemical is made of the conduction polar water extinguishing chemical by high-intensity magnetic field, and with in its pressure bottle of packing into, and aligning burning things which may cause a fire disaster ejection fire extinguishing gets final product under inert gas pressure, also can extinguishing chemical directly be sprayed to the fire district, thereby realize the optimal efficacy of electronic conductive material extinguishing chemical by electrodynamic pump.

Claims (4)

1. polyelectron conductive material extinguishing chemical is characterized in that the polar water extinguishing chemical that light water is formed by high-intensity magnetic field.
2. polyelectron conductive material extinguishing chemical according to claim 1 is characterized in that: polar water is at the flame that the easier quilt of combustion oxidation process that catches fire catches fire, and the flue gas that forms that catches fire, the combustible that catches fire absorb, absorption, and carries out the physical chemistry fire extinguishing.
3. according to claim 1,2 described polyelectron conductive material extinguishing chemicals, it is characterized in that physical absorption is stronger, heat absorption, evaporation effect is better, simultaneously, polar water forms hydroxide ion and hydrogen radical ion owing to being easy to absorb the fire area temperature, and hydroxide ion and hydrogen radical ion are easy to a large amount of temperature formation carbon compound and char combustion compound and hydrogen radical ions that catch fire that absorb thereby inhibition better effects if.
4. according to claim 1,2,3 described polyelectron conductive material extinguishing chemicals, it is characterized in that in the scope of catching fire, rolling up and have the free electron extinguishing chemical, lose in the oxidation reaction process of electronics catching fire, by increasing electronics in the extinguishing chemical fire extinguishing procedure, oxidation reaction is progressively stopped, and transform to the reduction reaction process, thereby realize the effect of inhibition, at the superhigh temperature plasma process, roll up high temperature resistant conduction pulvis, its objective is neutralize ions, the absorption reaction energy reduces plasma reaction speed, thereby realizes the effect of fire extinguishing.
CN 201010192651 2010-05-23 2010-05-23 Extinguishing agent of plurality of electronic conductive materials Pending CN101954165A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN 201010192651 CN101954165A (en) 2010-05-23 2010-05-23 Extinguishing agent of plurality of electronic conductive materials

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN 201010192651 CN101954165A (en) 2010-05-23 2010-05-23 Extinguishing agent of plurality of electronic conductive materials

Publications (1)

Publication Number Publication Date
CN101954165A true CN101954165A (en) 2011-01-26

Family

ID=43481910

Family Applications (1)

Application Number Title Priority Date Filing Date
CN 201010192651 Pending CN101954165A (en) 2010-05-23 2010-05-23 Extinguishing agent of plurality of electronic conductive materials

Country Status (1)

Country Link
CN (1) CN101954165A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103161490A (en) * 2013-02-23 2013-06-19 杜志刚 Method of preventing coal from catching fire and quenching fire in natural fire region through chemical reaction by means of high pressure nozzle nebulization

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
《中国科学》 20080930 庞晓峰,邓波 水在磁场作用后的特性变化研究 1205-1213 1-4 第38卷, 第9期 2 *
《哈尔滨电工学员学报》 19961231 林家齐,孙晶华,傅荔韬 磁场对水结构的影响 470-472 1-4 第19卷, 第4期 2 *
《现代物理知识》 20010228 李冠成,康永林,李明,卢佃清,邵礼堂 水在电场、磁场作用下物理性质变化及其影响 30-31 1-4 第13卷, 第2期 2 *

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103161490A (en) * 2013-02-23 2013-06-19 杜志刚 Method of preventing coal from catching fire and quenching fire in natural fire region through chemical reaction by means of high pressure nozzle nebulization

Similar Documents

Publication Publication Date Title
KR101562715B1 (en) New method for extinguishing fire
EP2143471B1 (en) Bi-directional horizontal spraying aerosol fire-extinguishing apparatus
CN102824717B (en) Fire extinguishing agent
KR102015288B1 (en) Fire-fighting apparatus
CN103147786A (en) Method for realizing chemical reaction to prevent coal fight catching and to extinguish fire on digging work surface by using high-pressure inert gas atomization
CN101954165A (en) Extinguishing agent of plurality of electronic conductive materials
CN103041532A (en) Multi-electron conductive material extinguishing agent
CN103055463A (en) Polyelectron electronic conductive material fire extinguishing agent
CN103041531A (en) Multi-electron conductive material extinguishing agent
CN103041537A (en) Multi-electron conductive material extinguishing agent
CN103028222A (en) Multi-electron conductive material extinguishing agent
CN103041530A (en) Multi-electron conductive material extinguishing agent
CN103041535A (en) Multi-electron conductive material extinguishing agent
CN103041529A (en) Multi-electron conductive material extinguishing agent
CN103041536A (en) Multi-electron conductive material extinguishing agent
CN103028221A (en) Multi-electron conductive material extinguishing agent
CN103041528A (en) Multi-electron conductive material extinguishing agent
CN103041533A (en) Multi-electron conductive material extinguishing agent
CN103041539A (en) Multi-electron conductive material extinguishing agent
CN103806932A (en) Method for realizing coal ignition prevention and extinguishment through chemical reactions in goafs by using high-pressure spray head atomization
CN103041538A (en) Multi-electron conductive material extinguishing agent
CN103041534A (en) Multi-electron conductive material extinguishing agent
CN103790620A (en) Method for realizing chemical reaction to prevent coal from catching fire and extinguish fire in fire area by high-pressure nozzle atomization
CN103790611A (en) Method for realizing chemical reaction to prevent coal from catching fire and extinguish fire in coal face by high-pressure nozzle atomization
CN103806929A (en) Method for realizing coal ignition prevention and extinguishment through chemical reactions on mining faces by using high-frequency oscillation

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C12 Rejection of a patent application after its publication
RJ01 Rejection of invention patent application after publication

Application publication date: 20110126