Construction of electronic cigarettes
An
There are three main types of e-cigarettes: cigalikes, looking like cigarettes; eGos, bigger than cigalikes with refillable liquid tanks; and mods, assembled from basic parts or by altering existing products.
As the e-cigarette industry continues to evolve, new products are quickly developed and brought to market.[20] First-generation e-cigarettes tend to look like traditional cigarettes and so are called "cigalikes".[18] Most cigalikes look like cigarettes but there is some variation in size.[15] Second-generation devices are larger overall and look less like traditional cigarettes.[21] Third-generation devices include mechanical mods and variable voltage devices.[18] The fourth-generation includes sub ohm tanks and temperature control devices.[22] The voltage for first-generation e-cigarettes is about 3.7[23] and second-generation e-cigarettes can be adjusted from 3 V to 6 V,[24] while more recent devices can go up to 8 V.[23] The latest generation of e-cigarettes are pod mods,[25] which provide higher levels of nicotine than regular e-cigarettes[26] through the production of aerosolized protonated nicotine.[27]
E-liquid is the mixture used in vapor products such as e-cigarettes[28] and usually contain propylene glycol, glycerin, nicotine, flavorings, additives, and differing amounts of contaminants.[29] E-liquid formulations greatly vary due to fast growth and changes in manufacturing designs of e-cigarettes.[15] The composition of the e-liquid for additives such as nicotine and flavors vary across and within brands.[30] The liquid typically consists of a combined total of 95% propylene glycol and glycerin, and the remaining 5% being flavorings, nicotine, and other additives.[31] There are e-liquids sold without propylene glycol,[32] nicotine,[33] or flavors.[34] The flavorings may be natural, artificial,[30] or organic.[35] Over 80 chemicals such as formaldehyde and metallic nanoparticles have been found in the e-liquid.[36] There are many e-liquids manufacturers in the US and worldwide,[37] and more than 15,500 flavors existed in 2018.[38] Under the US Food and Drug Administration (FDA) rules, e-liquid manufacturers are required to comply with a number of manufacturing standards.[39] The revision to the EU Tobacco Products Directive has some standards for e-liquids.[40] Industry standards have been created and published by the American E-liquid Manufacturing Standards Association (AEMSA).[41]
Uses
Function
An
The e-liquid reaches a temperature of roughly 100-250 °C within a chamber to create an
Perception
Vaping is different from
Compared to traditional cigarettes, the general e-cigarette puff time is much longer, and requires a more forceful suction than a regular cigarette.[44] The volume of vapor created by e-cigarette devices in 2012 declined with vaping.[1] Thus, to create the same volume of vapor increasing puff force is needed.[1] Later-generation e-cigarettes with concentrated nicotine liquids may deliver nicotine at levels similar to traditional cigarettes.[45] Many e-cigarette versions include a power control to adjust the volume of vapor created.[11] The amount of vapor produced is controlled by the power from the battery, which has led some users to adjust their devices to increase battery power.[7] Larger percentages of glycerin in e-liquid also increase vapor production.[46]
Disposable Vape Components
The disposable vape consists of several key components that work together to enable the vaping process. These include the battery, atomizer, and e-liquid, each playing a crucial role in the device's functionality.[47]
Battery
The battery is the heart of the disposable vape, providing the necessary power to heat the e-liquid. It is typically a small, non-rechargeable lithium-ion cell that is activated when the user draws on the device. The battery's role is crucial because it initiates the vaping process by powering the atomizer.
Atomizer
The atomizer acts as the heating element, responsible for converting the e-liquid into vapor. Once the battery activates the atomizer, it rapidly heats to a specific temperature, causing the e-liquid to evaporate. This component is key to the efficiency of the disposable vape, ensuring that the e-liquid is vaporized quickly and evenly for inhalation.
E-liquid
The e-liquid, or vape juice, is a solution comprising propylene glycol (PG), vegetable glycerin (VG), flavorings, and optionally nicotine. It is pre-filled in the disposable vape and is designed to produce vapor when heated by the atomizer. The combination of PG and VG affects the throat hit and vapor production, while the flavorings determine the taste.
Construction
E-cigarettes come in many variations,[11] such as cigarette-shaped, pen-shaped, and tank-shaped styles.[10] Some e-cigarettes look like traditional cigarettes, but others do not.[9] There are three main types of e-cigarettes: cigalikes, looking like cigarettes; eGos, bigger than cigalikes with refillable liquid tanks; and mods, assembled from basic parts or by altering existing products.[13]
E-cigarette components include a mouthpiece, a cartridge (liquid storage area), a heating element/atomizer, a microprocessor, a battery, and some have a LED light on the end.[3] E-cigarettes are sold in disposable or reusable variants.[13] Most versions are reusable, though some are disposable.[48] They range in cost from under $10 to over $200.[49] An entry-level reusable e-cigarette costs around $25.[50]
Disposable e-cigarettes are discarded once the liquid in the cartridge is used up, while rechargeable e-cigarettes may be used indefinitely.
E-cigarettes are typically designed as one, two, three or multiple pieces.[55] A disposable e-cigarette lasts to around 400 puffs.[56] Reusable e-cigarettes are refilled by hand or exchanged for pre-filled cartridges, and general cleaning is required.[11] A wide range of disposable and reusable e-cigarettes exist.[42] Disposable e-cigarettes are offered for a few dollars, and higher-priced reusable e-cigarettes involve an up-front investment for a starter kit.[9] Some e-cigarettes have a LED at the tip to resemble the glow of burning tobacco.[45] The LED may also indicate the battery status.[1] The LED is not generally used in personal vaporizers or mods.[3]
First-generation e-cigarettes usually simulated smoking implements, such as cigarettes or cigars, in their use and appearance.
The increasing numbers of new vaping products combined with unrelated functions attest to a clear trend toward customization of e-cigarettes.[66] It seems that experienced users like to adopt the e-cigarette to their (inhalation) needs, leading to e-cigarettes with adjusted airflow inlet using atomizer heads with different sized air holes.[66] This is applied in the most recently introduced models, which are activated by a pressure difference when the user inhales from the e-cigarette, avoiding pressing a button to heat the device.[66] Other interesting new e-cigarette-like devices provide a combined function with other electronic products such as a Bluetooth e-cigarette, which combines vaping with listening to music or calling friends and another device can be used both as e-cigarette and mobile phone.[66]
Smartphone applications were introduced that track the number of e-cigarette puffs taken, calculate cost savings and increased life expectancy, and have features such as auto-shut down and password protection safety.[66] In line with this, Philip Morris International has filed a patent for an e-cigarette that is Wi-Fi connected, and thus would be able to connect to other devices.[66] This device could potentially synchronize to a smartphone application that is intended to help people quit smoking, and carefully track their progress.[66] A similar product is the Vaporcade Jupiter, a "cellular vaporizer," combining a smartphone with an e-cigarette.[66] This allows the user to monitor the e-cigarette use, the e-liquid remaining, and the flavor used.[66]
Device generations
As the e-cigarette industry continues to evolve, new products are quickly developed and brought to market.[20] The early devices looked like a traditional cigarette, often including a small light on the tip that lit when the user puffed.[67] These early systems were generally inefficient at delivering nicotine, in part because the particle sizes of the aerosol were too large to penetrate deep into the lungs.[67] Newer versions feature replaceable or refillable reservoirs and rechargeable batteries that generate smaller particles and more efficient nicotine delivery.[67] Since e-cigarettes are not regulated in many countries, the device designs can change often.[68] There is wide differences in the quality of e-cigarettes, such as the airflow rate, aerosol production, and leaking of e-liquid cartridges.[69]
First-generation
First-generation e-cigarettes started off as patents in periods of 1927-1936 and 1963-1998, but becoming commercially mainstream in 2003.[70] They tend to look like tobacco cigarettes and so are called "cigalikes".[18] The three parts of a cigalike e-cigarette initially were a cartridge, an atomizer, and a battery.[15] A cigalike e-cigarette currently contains a cartomizer (cartridge atomizer), which is connected to a battery.[15] Most cigalikes look like cigarettes but there is some variation in size.[15]
They may be a single unit comprising a battery, coil and filling saturated with e-liquid in a single tube to be used and discarded after the battery or e-liquid is depleted.[18] They may also be a reusable device with a battery and cartridge called a cartomizer.[21] The cartomizer cartridge can be separated from the battery so the battery can be charged and the empty cartomizer replaced when the e-liquid runs out.[18]
The battery section may contain an electronic
Charging is commonly accomplished with a USB charger that attaches to the battery.[72] Some manufacturers also have a cigarette pack-shaped portable charging case (PCC), which contains a larger battery capable of recharging the individual e-cigarette batteries.[73] Reusable devices can come in a kit that contains a battery, a charger, and at least one cartridge.[73] Varying nicotine concentrations are available and nicotine delivery to the user also varies based on different cartomizers, e-liquid mixtures, and power supplied by the battery.[10]
These manufacturing differences affect the way e-cigarettes convert the liquid solution to an aerosol, and thus the levels of ingredients, that are delivered to the user and the surrounding air for any given liquid.[10] First-generation e-cigarettes use lower voltages, around 3.7 V.[23]
Second-generation
Second generation devices started in 2013, and tend to be used by people with more experience.[21] They are larger overall and look less like tobacco cigarettes.[21] They usually consist of two sections, basically a tank and a separate battery. Their batteries have higher capacity, and are not removable.[18] Being rechargeable, they use a USB charger that attaches to the battery with a threaded connector. Certain batteries have a "passthrough" feature so they can be used even while they are charging.[4][74]
Second-generation e-cigarettes commonly use a tank or a "clearomizer".[21] Clearomizer tanks are meant to be refilled with e-liquid, while cartomizers are not.[18] Because they're refillable and the battery is rechargeable, their cost of operation is lower.[18] They can also use cartomizers, which are pre-filled only.[18]
Some cheaper battery sections use a microphone that detects the turbulence of the air passing through to activate the device when the user inhales. Other batteries like the eGo style can use an
Third-generation
The third-generation started in 2013, it included mechanical mods and variable voltage devices.[76][77] Battery sections are commonly called "mods," referencing their past when user modification was common.[18] Mechanical mods do not contain integrated circuits.[77] They are commonly cylindrical or box-shaped, and typical housing materials are wood, aluminium, stainless steel, or brass.[78] A larger "box mod" can hold bigger and sometimes multiple batteries.[78]
Mechanical mods and variable devices use larger batteries than those found in previous generations.[79] Common battery sizes used are 18350, 18490, 18500 and 18650.[80] The battery is often removable,[77] so it can be changed when depleted. The battery must be removed and charged externally.[77]
Variable devices permit setting wattage, voltage, or both.[4][77] These often have a USB connector for recharging; some can be used while charging, called a "passthrough" feature.[4][81]
The power section may include additional options such as screen readout, support for a wide range of internal batteries, and compatibility with different types of atomizers.[21] Third-generation devices can have rebuildable atomizers with different wicking materials.[18][21] These rebuildables use handmade coils that can be installed in the atomizer to increase vapor production.[79] Hardware in this generation is sometimes modified to increase power or flavor.[82]
The larger battery sections used also allow larger tanks to be attached that can hold more e-liquid.[78] Recent devices can go up to 8 V, which can heat the e-liquid significantly more than earlier generations.[23]
Fourth-generation
A fourth-generation e-cigarette became available in the United States in 2014.[45] Fourth-generation e-cigarettes can be made from stainless steel and pyrex glass, and contain very little plastics.[22] Included in the fourth-generation are sub ohm tanks and temperature control devices.[22] The e-cigarette user can breathe in large puff volumes, which results in a significant usage of e-liquid per puff.[83] Usually used by experienced e-cigarettes users.[84]
Atomizer and tank
An atomizer consists of a small heating element that vaporizes e-liquid and a wicking material that draws liquid onto the coil. Along with a battery and e-liquid the atomizer is the main component of every personal vaporizer.[21] When activated, the resistance wire coil heats up and vaporizes the liquid, which is then inhaled by the user.[85]
The
Atomizer coils made of kanthal usually have resistances that vary from 0.4Ω (
Wicking materials vary from one atomizer to another.
Cartomizers
A "cartomizer" (a
Cartomizers can be used on their own or in conjunction with a tank that allows more e-liquid capacity.[4] The portmanteau word "cartotank" has been coined for this.[89] When used in a tank, the cartomizer is inserted in a plastic, glass or metal tube and holes or slots have to be punched on the sides of the cartomizer so liquid can reach the coil.[4]
Clearomizers
The clearomizer was invented in 2009 that originated from the cartomizer design.
Clearomizers are made with adjustable air flow control.[92] Tanks can be plastic or borosilicate glass.[93] Some flavors of e-liquid have been known to damage plastic clearomizer tanks.[93]
Rebuildable atomizers
A rebuildable atomizer (RBA) is an atomizer that allows the user to assemble or "build" the wick and coil themselves instead of replacing them with off-the-shelf atomizer "heads".[18] They are generally considered advanced devices.[94] They also allow the user to build atomizers at any desired electrical resistance.[18]
These atomizers are divided into two main categories; rebuildable tank atomizers (RTAs) and rebuildable dripping atomizers (RDAs).[95]
Rebuildable tank atomizers
RTAs have a tank to hold liquid that is absorbed by the wick.[96] They can hold up to 4 ml of e-liquid.[97] The tank can be either plastic, glass, or metal.[93] One form of tank atomizers was the Genesis style atomizers.[96] They can use ceramic wicks, stainless steel mesh or rope for wicking material.[96] The steel wick must be oxidized to prevent arcing of the coil.[96] Another type is the Sub ohm tank.[97] These tanks have rebuildable or RBA kits.[97] They can also use coil heads of 0.2 ohm, 0.4 ohm, and 0.5 ohm.[97] These coil heads can have stainless steel coils.[98]
Rebuildable dripping atomizers
RDAs are atomizers where the e-liquid is dripped directly onto the coil and wick.[99] The common nicotine strength of e-liquids used in RDA's is 3 mg and 6 mg.[99] Liquids used in RDA's tend to have more vegetable glycerin.[99] A fully saturated wick can give you as many as 10-20 puffs.[100] They typically consist only of an atomizer "building deck", commonly with three posts with holes drilled in them, which can accept one or more coils.[82] The user needs to manually keep the atomizer wet by dripping liquid on the bare wick and coil assembly, hence their name.[99]
Resistance elements
Kanthal wire is used in RDA's, RBA's, RTA's, in addition to clearomizers, tanks, and cartomizers.[4] Nickel wire or titanium wire can be used for temperature control.[99]
Squonk mods
The origins of a squonk mod bottom-feeding system go as far back as 2009.[101] A member of the E-Cigarette Forum (ECF) named "Carlos49" was largely credited with developing the first squonker available in the marketplace.[101] Squonk mods differ from other mod boxes with their construction.[101] Squonk mods have a 510 connection that have been modified with the use of an e-liquid bottle placed inside the mod.[4] The user squeezes an e-liquid bottle through an opening in the device to send e-liquid through a tube into the attached atomizer.[101] Extra liquid goes back into the bottle when it is unsqueezed.[101]
Pod mods
Pod mods heat up a liquid containing nicotine, flavors, and other ingredients that creates an aerosol.[27] Pod mods are lightweight, portable,[102] small, and reusable.[27] Pod mods do not require pushing a button.[103] A pod mod does not require much of a learning curve.[103] With the majority of pod mods, users can just open their new package, put a pod into the device, and begin vaping.[27] They are charged using a USB port.[103] There are numerous pod mods in the marketplace[104] and there are many kinds of pod mods.[105]
The three categories for the different kinds of pod mods are an open system, a closed system, or those that use both.[105] Pod mods come in varying colors and flavors.[106] Many devices rely on replaceable liquid pods that may contain propylene glycol, glycerin, benzoic acid, nicotine, and artificial flavors.[107] Some pod mods can be refillable, with flavors such as cotton candy, donut cream, and gummy bear.[104] Pod mods that contain tetrahydrocannabinol (THC), the primary psychoactive chemical of cannabis, are being sold.[104]
Pod mods can look like USB flash drives, cell phones, credit card holders, and highlighters.[108] Because pod mods are small and generate less aerosol, it makes it easy to hide them.[109] There are pod mods that can be concealed in the palm of a person's hand.[109] Later-generation pod mods are small like a Sharpie pen.[103] Pod mods cost about half as much as larger e-cigarettes.[103]
The latest generation of e-cigarettes, "pod products", such as Juul, have the highest nicotine content (59 mg/mL), in protonated salt, rather than the free-base nicotine form found in earlier generations, which makes it easier for less experienced users to inhale.[25] Pod mods deliver higher levels of nicotine than regular e-cigarettes.[26] One nicotine pod, in terms of nicotine, is roughly equivalent to one pack of regular cigarettes.[110] The labels on products state pods contain 59 mg/mL of nicotine, but the levels can be considerably greater such as 75 mg/mL of nicotine.[104] Some pod mods contained greater levels of nicotine than Juul which were as high as 6.5%.[111] In June 2015, Juul introduced a pod mod device.[112] British American Tobacco told to The Verge in 2018 that "They've been incorporated in our Vuse e-liquid in the US since 2012."[113]
Research on nicotine salts is limited.[102] Tests show that the pod mods Juul, Bo, Phix, and Sourin contain nicotine salts in a solution with propylene glycol and glycerin.[102] A nicotine base and a weak acid such as benzoic acid or levulinic acid is used to form a nicotine salt.[114] Benzoic acid is the most used acid to create a nicotine salt.[111] A free-base nicotine solution with an acid reduces the pH, which makes it possible to provide higher levels of nicotine without irritating the throat.[115] Nicotine salts are thought to amplify the level and rate of nicotine delivery to the user.[102]
The speed of nicotine salts uptake into the body is close to the speed of nicotine uptake from traditional cigarettes.[116] Nicotine salts are less harsh and less bitter, and as a consequence e-liquids that contain nicotine salts are more tolerable even with high nicotine concentrations.[111] Traditional cigarettes provide high levels of nicotine, but with the bad taste of smoking.[27] Pod mods, however, can provide high levels of nicotine without the negative smoking experience.[27]
Power
Variable power and voltage devices
Variable devices are variable wattage, variable voltage or both.
They are often rectangular but can also be cylindrical.[78] They usually have a screen to show information such as voltage, power, and resistance of the coil.[118] To adjust the settings, the user presses buttons or rotates a dial to turn the power up or down.[62] Some of these devices include additional settings through their menu system such as: atomizer resistance meter, remaining battery voltage, puff counter, and power-off or lock.[119] The power source is the biggest component of an e-cigarette,[19] which is frequently a rechargeable lithium-ion battery.[11]
Smaller devices contain smaller batteries and are easier to carry but typically require more repeated recharging.[11] Some e-cigarettes use a long lasting rechargeable battery, a non-rechargeable battery or a replaceable battery that is either rechargeable or non-rechargeable for power.[42] Some companies offer portable chargeable cases to recharge e-cigarettes.[42] Nickel-cadmium (NiCad), nickel metal-hydride (NiMh), lithium ion (Li-ion), alkaline and lithium polymer (Li-poly), and lithium manganese (LiMn) batteries have been used for the e-cigarettes power source.[42]
Temperature control devices
Temperature control devices allow the user to set the temperature.[99] There is a predictable change to the resistance of a coil when it is heated.[120] The resistance changes are different for different types of wires, and must have a high temperature coefficient of resistance.[120] Temperature control is done by detecting that resistance change to estimate the temperature and adjusting the voltage to the coil to match that estimate.[121]
Nickel, titanium, NiFe alloys, and certain grades of stainless steel are common materials used for wire in temperature control.[99] The most common wire used, kanthal, cannot be used because it has a stable resistance regardless of the coil temperature.[120] Nickel was the first wire used because it has the highest coefficient of the common metals.[120]
The temperature can be adjusted in Celsius or Fahrenheit.[122] The Evolv's DNA40 and YiHi's SX350J are control boards used in temperature control devices.[123] Temperature control can stop dry wicks from burning, or e-liquid overheating.[123]
Mechanical devices
Mechanical PVs or mechanical "mods", often called "mechs", are devices without integrated circuits, electronic battery protection, or voltage regulation.[77] They are activated by a switch.[99] They rely on the natural voltage output of the battery and the metal that the mod is made of often is used as part of the circuit itself.[124]
The term "mod" was originally used instead of "modification".[18] Users would modify existing hardwares to get better performance, and as an alternative to the e-cigarettes that looked like traditional cigarettes.[62] Users would also modify other unrelated items like flashlights as battery compartments to power atomizers.[62][78] The word mod is often used to describe most personal vaporizers.[4]
Mechanical PVs have no power regulation and are unprotected.[99] Because of this ensuring that the battery does not over-discharge and that the resistance of the atomizer requires electric current within the safety limits of the battery is the responsibility of the user.[124]
E-cigarette liquid
Composition
E-cigarette liquid, E-Cig liquid,[7] e-liquid, juice, vapor juice, vape juice, smoke juice,[11] vaping fluid,[126] vaping juice,[127] e-juice,[128] e-fluid[13] or vape oil[129] is the mixture used in vapor products including e-cigarettes.[28] Since e-cigarettes are not regulated in many countries, the composition of the liquid can change often.[68] There is a great amount of variability in e-liquid formulations due to fast growth and changes in the manufacturing designs of e-cigarettes.[notes 1][15] The composition of the e-liquid for additives such as nicotine and flavors vary across and within brands.[30] E-liquids come in many variations, including different nicotine strengths and many different flavors.[131]
The main ingredients are propylene glycol, glycerin, and flavorings; and most often, nicotine in liquid form.[132] The liquid typically consists of a combined total of 95% propylene glycol and glycerin, and the remaining 5% being flavorings, nicotine, and other additives.[31] The most frequently used e-liquid solvents are propylene glycol and glycerin.[133] Flavorings may contain menthol, sugars, esters, and pyrazines.[133]
Flavor components include eucalyptol, camphor, methyl salicylate, pulegone, ethyl salicylate, cinnamaldehyde, eugenol, diphenyl ether, coumarin,[133] diacetyl, acetoin, 2,3-pentanedione, cyclohexanone, benzaldehyde, cresol, butyraldehyde, and isoamyl acetate.[84] Sugars are frequently used in e-liquids to provide a sweet flavor.[134] Diacetyl, acetoin, and 2,3-pentanedione are used for buttery flavoring.[84] Camphor and cyclohexanone are used for minty flavoring.[84] Benzaldehyde is used for cherry or almond flavoring.[84] Cinnamaldehyde is used for cinnamon flavoring.[84] Cresol is used for leathery or medicinal flavoring.[84]
Butyraldehyde is used for chocolate flavoring.[84] Isoamyl acetate is used for banana flavoring.[84] E-liquids named coffee, tea, chocolate, or energy drinks, typically contain caffeine at levels considerably less than in comparison with dietary products.[135] E-liquids are available with vitamins or cannabis flavors.[66] Specific e-cigarettes (mods) are available that allow for not only liquids but also herbs, oils, or fruits to be vaped.[66] Dual-function devices handle both concentrates and e-liquids using multiple cartridges.[66]
E-liquid can be made with or without nicotine, with more than 90% of e-liquids containing some level of nicotine.
It is uncertain whether the nicotine used in e-liquid is manufactured using a
Over 80 chemicals such as formaldehyde and metallic nanoparticles have been found in the e-liquid.[36] E-liquids typically contain nicotine, propylene glycol, glycerin, 1,3-butanediol, 1,3-propanediol, ethylene glycol, menthol, safrole, ethyl vanillin, camphor, α-thujone, coumarin, and diethylene glycol, according to a 2017 review.[143] E-liquid can contain a range of toxicants and can contain impurities.[144] A 2013 study found the e-liquids tested had as high as five times the upper threshold permitted levels of impurities.[144] E-liquids have been found to contain low levels of some of the toxicants found in tobacco smoke, as well as small concentrations of carcinogens.[145]
In 2009, the FDA analyzed e-liquid cartridge samples which were found to contain
2013 studies of other e-liquids had not detected diethylene glycol.[145] The majority of the e-liquids analyzed contained NNN from 0.34 to 60.08 μg/L and contained NNK from 0.22 to 9.84 μg/L.[149] The FDA issued warnings to several e-cigarette companies for selling e-cartridges and refill solutions containing active pharmaceutical ingredients such as rimonabant (Zimulti) for the purpose of losing weight and reducing smoking addiction, and tadalafil (the active ingredient in Cialis) for the purpose of increasing sexual capacity.[150] FDA analyses of these e-cartridges and solutions showed the presence of amino-tadalafil and not tadalafil, and the presence of an oxidative product of rimonabant, as well as rimonabant.[150]
The e-liquid often contain other substances unknown and/or undisclosed to the user.[151] The specific origin of the e-liquid ingredients is often unclear.[152] When content information is given on the packaging, it is usually incomplete.[30] Contamination with various compounds in e-liquids is a result of poor quality control.[30] Some nicotine and TSNAs have been found in e-liquids labelled as 'no nicotine'.[30] Nicotine content information on labels for some e-liquid companies may be vague, inaccurate or absent.[145] E-liquid were found to contain low levels of anthracene, phenanthrene, 1-methyl phenanthrene and pyren.[153] Diethylene glycol, ethylene glycol, hydrocarbons, ethanol, terpenic compounds and aldehydes, particularly formaldehyde and acrolein were found in the e-liquid.[154] Diethylene glycol is a potential byproduct of propylene glycol.[15]
A 2014 study showed that e-liquids from a specific manufacturer contained greater amounts of ethylene glycol than glycerin or propylene glycol, which was likely a result of improper manufacturing methods.
Levels of aldehydes in e-liquid
Company | Code | Formaldehyde | Acetaldehyde | Propionaldehyde | Crotonaldehyde | Butyraldehyde | Benzaldehyde | Hexaldehyde |
---|---|---|---|---|---|---|---|---|
LOD | 0.060 | 0.030 | 0.043 | 0.053 | 0.077 | 0.035 | 0.036 | |
Janty | H60339 | 0.497 | 0.728 | 0.043 | <0.053 | <0.077 | <0.035 | <0.036 |
Ecigexpress | H60346 | 0.161 | 1.74 | <0.043 | <0.053 | 0.186 | 0.160 | <0.036 |
Vapor4Life | H60349 | 0.776 | 0.507 | 0.089 | <0.053 | 0.217 | 40.0 | <0.036 |
Totally Wicked | H60352 | 0.532 | 0.129 | <0.043 | <0.053 | <0.077 | 0.821 | <0.036 |
Sedansa | H60355 | 0.813 | 1.25 | 0.167 | <0.053 | 0.164 | <0.035 | <0.036 |
Johnson Creek | H60360 | 0.356 | 2.58 | 0.122 | <0.053 | <0.077 | 0.291 | <0.036 |
TECC | H60364 | 0.467 | 0.235 | <0.043 | <0.053 | <0.077 | 0.078 | <0.036 |
Intellicig | H60369 | 0.114 | 4.05 | 0.083 | <0.053 | <0.077 | 0.581 | <0.036 |
e-cigarettes.fr | H60370 | 0.257 | 0.413 | <0.043 | <0.053 | <0.077 | 0.104 | 0.068 |
CigLib | H60373 | 0.274 | 0.421 | <0.043 | <0.053 | <0.077 | 0.035 | 0.089 |
V2 Cigs | H60374 | 0.411 | 0.332 | 0.045 | <0.053 | <0.077 | 0.146 | 0.115 |
e-liquide.com | H60375 | 9.00 | 3.14 | <0.043 | <0.053 | <0.077 | 0.145 | 0.100 |
Tasty Vapor | H60376 | 3.52 | 2.37 | <0.043 | <0.053 | <0.077 | 305 | 0.532 |
e-cig.com | H60379 | 0.226 | 0.393 | 0.047 | <0.053 | <0.077 | 0.062 | 0.132 |
∗A 2013 analysis tested a total of 42 bottles of e-liquids.[157]
Contents
The e-liquid is sold in bottles, pre-filled disposable cartridges, or as a kit for consumers to make their own e-liquids.[158] E-liquids are made with various tobacco, fruit, and other flavors,[10] as well as variable nicotine concentrations (including nicotine-free versions).[132] The standard notation "mg/ml" is often used on labels to denote nicotine concentration, and is sometimes shortened to "mg".[159] Some flavors are created to resemble the flavors used in traditional cigarettes such as tobacco and menthol-tobacco.[138] Adults in general also preferred sweet flavors (though smokers like tobacco flavor the most) and disliked flavors that elicit bitterness or harshness.[160] Young adults overall preferred sweet, menthol, and cherry flavors, while non-smokers in particular preferred coffee and menthol flavors.[160]
In surveys of regular e-cigarette users, the most popular e-liquids had a nicotine content of 18 mg/ml, and the preferred flavors were largely tobacco, mint and fruit.[145] Men tend to favor flavors with tobacco, while women tend to favor chocolate or sweet flavors.[152] The most favorite flavors among regular e-cigarette users reported in a 2017 UK survey were fruit, tobacco, and menthol/mint.[161] The survey also found 2.6% regular e-cigarette users used no flavors.[161] A 2013 study examined 33 countries and found that only 1% of the adult smokers exclusively used non-nicotine e-cigarettes.[160] A cartridge may contain 0 to 20 mg of nicotine.[162]
Refill liquids are often sold in the size range from 15 to 30 ml.
A user does not normally consume a whole cartridge in a single session.[9] Most e-liquids are produced by a few manufacturers in China, the US, and Europe.[145] An e-cigarette user will usually obtain 300 to 500 puffs per ml of e-liquid.[163] A 2017 survey found that 62.2% of everyday e-cigarette users stated using lower than 4 ml daily and 1.5% used higher than 10 ml daily.[169] 18.1% of everyday e-cigarette users were not aware of the amount of e-liquid they use.[169]
Manufacturing
E-liquids are manufactured by many producers, both in the US and across the world.[37] First tier manufacturers use lab suits, gloves, hair covers, inside of certified clean rooms with air filtration similar to pharmaceutical-grade production areas.[37]
Standards
E-liquid manufacturing requirements under the US Food and Drug Administration (FDA) rules include report user fee information, pay user fees, register their establishment and submit list of products, including labeling and advertisements, submit health documents, submit ingredient listing, include required warning statements on packages and advertisements, submit quantities of harmful and potentially harmful constituents, and submit a modified risk tobacco product application.[39] The revision to the EU Tobacco Products Directive has some standards for e-liquids.[40]
Standards for e-liquid manufacturing have been created by American E-liquid Manufacturing Standards Association (AEMSA), which is trade association dedicated to creating responsible and sustainable standards for the safe manufacturing of e-liquids used in vapor products.[170] AEMSA has published a comprehensive list standards and best known methods, which are openly available for use by any manufacturer of e-Liquids.[41] The AEMSA standards cover nicotine, ingredients, sanitary manufacturing rooms, safety packaging, age restrictions, and labeling.[41] AEMSA guidelines recommend that the nicotine levels in e-liquids be within the amount of ±10% from the levels stated on the label.[149]
Regulation
Effective August 8, 2016, under the FDA rules, a company that mixes or prepares e-liquids is regulated as a tobacco product manufacturer.[171] Under the same regulation, a company that sells e-liquids is regulated as a tobacco retailer.[171] Companies who import or try to sell for import into the US must conform to the Federal Food, Drug, and Cosmetic Act.[172] The 2016 FDA ruling did not incorporate regulation concerning flavoring of e-cigarettes.[173] Industry standards have been created and published by the American E-liquid Manufacturing Standards Association (AEMSA).[41] The FDA authority to regulate e-liquids was announced in May 2016.[174][175] The FDA has sought to regulate e-liquid in 2014[176] through use of the Family Smoking Prevention and Tobacco Control Act,[177] passed into law in June 2009.[178] In April 2014, the FDA issued its "Deeming" proposals for public comment, which would cover e-liquids manufacturing.[179]
Manufacturers of e-liquid in the UK are required to inform the Government regarding the content in each liquid.[180] The EU Tobacco Products Directive requires e-liquids to be tested 6 months before they are sold.[181]
The Tobacco Products Directive in the EU limits the sale of e-liquid.[182] It can only be sold in 10 ml bottles, which need to have a child-proof closure.[182] They have to be pre-registered to the Medicines and Healthcare products Regulatory Agency before sale.[182] There is also a limit on the nicotine content, meaning the nicotine strength of any e-liquid cannot exceed 20 mg/ml (2.0%).[182] Refill liquids in the EU with more than 20 mg/ml of nicotine may be sold with prior authorization from the pharmaceutical regulation.[40]
As of January 2020, the Food and Drug Administration put new regulations on the flavor of e-liquids. They ban companies from manufacturing any juices or pre-filled pods that contained fruity or minty flavors. This restriction also banned stores from selling any flavors of e-liquid that are fruity or minty that could have been imported from a different country.[183]
Nicotine yield
Smoking a traditional cigarette yields between 0.5 and 1.5 mg of nicotine,[184] but the nicotine content of the cigarette is only weakly correlated with the levels of nicotine in the smoker's bloodstream.[185] The amount of nicotine in the e-cigarette aerosol varies widely either from puff-to-puff or among devices of the same company.[8] In practice e-cigarette users tend to reach lower blood nicotine concentrations than smokers, particularly when the users are inexperienced[184] or using first-generation devices.[18] Nicotine in cigarette smoke is absorbed into the bloodstream rapidly, and e-cigarette aerosol is relatively slow in this regard.[18]
Vaping typically gives a lower amount of nicotine per puff than smoking cigarettes.[186] E-liquids contain nicotine in a variety of different strengths.[187] From no nicotine[188] to 36 mg/ml.[189] On average a regular cigarette contains 6–28 mg of nicotine or the user will inhale about 1.1 to 1.8 mg of nicotine if just a portion is used.[citation needed] On average an e-cigarette contains 0.5-15.4 mg of nicotine per 15 puffs.[citation needed] In practice, the nicotine concentration in an e-liquid is not a reliable guide to the amount of nicotine that reaches the bloodstream.[190]
Notes
Bibliography
- McNeill, A; Brose, LS; Calder, R; Bauld, L; Robson, D (February 2018). "Evidence review of e-cigarettes and heated tobacco products 2018" (PDF). UK: Public Health England. pp. 1–243.
- Stratton, Kathleen; Kwan, Leslie Y.; Eaton, David L. (January 2018). Stratton, Kathleen; Kwan, Leslie Y.; Eaton, David L. (eds.). Public Health Consequences of E-Cigarettes (PDF). )
- McNeill, A; Brose, LS; Calder, R; Hitchman, SC; Hajek, P; McRobbie, H (August 2015). "E-cigarettes: an evidence update" (PDF). UK: Public Health England. pp. 1–113.
- Weingarten, A (March 2018). "Welcome to the World of Sub-Ohm Vaping" USA: Industry Trades
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