国产精品日韩欧美一区二区_精品久久人人做人人爽综合_国产在线第一_制服丝袜美腿一区二区_日日夜夜一区二区_中文字幕亚洲精品无码

Application analysis of water for hydrogen production and methanol reforming

2023-08-08 20:55:08Industry trends1667

As the global focus on climate change is increasing, the national carbon neutral carbon peak policy is increasingly implemented. In the process of energy transition, hydrogen, as a kind of clean energy, production, storage and transportation are increasingly difficult. Electrolyzing water for hydrogen production and methanol reforming for hydrogen production, as two common hydrogen production methods, have been widely concerned by both inside and outside the industry. This paper will compare these two hydrogen production methods, discuss their advantages and disadvantages and applicable scenarios, in order to provide reference for the energy transition.

Electrolytic water for hydrogen production

Electrolysis of water to produce hydrogen is a process of using electricity to decompose water (H2O) into hydrogen (H2) and oxygen (O2). This method has the following advantages: 

1. Clean and environmental protection: the process of water electrolytic hydrogen production does not involve any combustion reaction, and does not produce harmful gas emissions.

2. High purity hydrogen: electrolysis of water to produce hydrogen can obtain high purity hydrogen, high purity, a little purification can be directly used in fuel cell and other applications.

3. Utilization of renewable energy: Electrolysis of water can be combined with renewable energy (such as solar and wind energy) to realize sustainable utilization of energy by converting renewable energy into hydrogen for storage and utilization.

However, there are some challenges with water lysis:

 1. High energy consumption: Electrolysis of water for hydrogen production requires a lot of electricity, and the high power demand for hydrogen makes this type of hydrogen production uneconomical in areas where fossil fuels can generate electricity, and it also has the problem of high emissions.

2. Hydrogen storage and transportation: Hydrogen storage and transportation is relatively difficult, which involves high-pressure hydrogen storage or liquefied hydrogen storage technologies, which increases the complexity and cost of the system.

3. High cost: The current cost of hydrogen hydrogen electrolysis technology is relatively high, mainly from the cost of electrolysis equipment and KWH.

Methanol reforming hydrogen production

Methanol reforming to produce hydrogen is a process of catalyst methanol (CH3OH) through a chemical reaction at high temperature to produce hydrogen. This method has the following characteristics: 

1. Convenient storage and transportation: Compared with hydrogen in the gas state, liquid methanol is easier to store and transport, which reduces the cost and safety problems caused by hydrogen storage and transportation.

2. Benefit from the old refueling network facilities: the storage, transportation and methanol filling can make use of the existing liquid fuel infrastructure, without building new hydrogenation stations, which can effectively reduce the infrastructure input required for the energy transition.

3. Wide sources of raw materials and low price: methanol, as a fuel with diversified production methods, can be obtained through biomass synthesis or fossil energy, with a wide range of sources, and is one of the fuels with the largest stock in China.

However, methanol reforming for hydrogen production also faces the following challenges: 

a) carbon emission problem: If the methanol production process involves the use of fossil fuels, it has a certain amount of carbon emissions, but the carbon emission closed loop can be realized through the application of green alcohol made from renewable resources.

b) Low purity of hydrogen: the hydrogen produced by methanol reforming may contain certain impurities, which needs to be treated later to obtain high purity hydrogen. However, the online output of high purity hydrogen can be realized by carrying the palladium film purification device.

At present, liquid sunshine methanol production technology is available to cope with the carbon emission dilemma of methanol application. Liquid sunlight is the combination of hydrogen produced from solar / wind energy with captured carbon dioxide to produce methanol. The methanol generated by this route can store hydrogen in liquid form, convenient transportation, safe and efficient, and can also achieve closed loop carbon emissions, so as to achieve the goal of carbon neutrality.

For the impurities produced in the process of methanol reforming for hydrogen production, there are some common purification techniques on the market to purify hydrogen:

Pressure molar adsorption (Pressure Swing Adsorption, short) for PSA: PSA is a method of separating impurity gas based on adsorbent. In the PSA process, when hydrogen passes through the adsorbent bed layer, the adsorbent selectively adsorbs other gas components, such as methane and carbon monoxide, so as to realize the purification of hydrogen.

Membrane separation (Membrane Separation): Membrane separation is a process of separating gases by molecular size or solubility using a specific semi-permeable membrane. In the purification process of hydrogen, choosing the appropriate membrane material and operating conditions can separate the impurity gas from the hydrogen.

Normal temperature adsorption (Temperature Swing Adsorption, TSA): TSA uses the adsorption selectivity of different component gas at room temperature to achieve separation. The impurity gas can be separated from the hydrogen by regulating the adsorption rate and affinity of the different gases on the adsorbents.

Usually, methanol hydrogen produces hydrogen in the form of large chemical industry, and through chemical reforming catalytic hydrogen production enters PSA pressure adsorption system for purification, which has certain regional limitations. The hydrogen produced also needs to be stored and transported in the form of high pressure or liquefaction, and the cost problem of storage and transportation end still cannot be solved.

The methanol online hydrogen production system independently developed by Guangdong Nengchuang Technology can effectively solve the problem of hydrogen storage and transportation in methanol hydrogen production in large chemical industry. Meanol online hydrogen production system is to integrate the methanol reforming module and palladium film purification module, to replace the large chemical industry with small equipment, high structural strength, can realize methanol online hydrogen production in projects that need to move or usable small footprint, that is, production and use. Among them, the palladium film purification technology developed by the company can effectively purify the hydrogen containing impurities to the standard purity of hydrogen for fuel cell in a small volume. Based on the current methanol futures price of 2200-2500 yuan, the cost of hydrogen production per kilogram is only 16-18 yuan. At the same time, methanol is also the optimal liquid carrier of hydrogen. Through the online hydrogen production of methanol, the cost of hydrogen at the storage and transportation end can be greatly reduced, so as to reduce the cost of hydrogen for end users.

In conclusion, hydrogen electrolysis and methanol reforming are potential hydrogen production methods. Hydrogen production by electrolysis of water has the advantages of clean environmental protection, high purity hydrogen and renewable energy utilization, which is suitable for areas with abundant renewable energy and stable power supply. Methanol reforming hydrogen production has the advantages of convenient storage and transportation, utilization of infrastructure and wide range of application, and is suitable for promotion and application in areas with relatively developed liquid fuel infrastructure. In practical application, the most appropriate hydrogen production method is selected according to regional renewable energy resources, energy demand, carbon emission reduction targets and application scenarios, so as to promote energy transformation and achieve the goal of carbon neutrality.

主站蜘蛛池模板: 蜜桃av免费看_国产日韩在线播放_一级毛片在线观看网站_在线观看无码视频_亚洲操bb_中文字字幕在线中文无码_国产精品女同一区三区五区_国产福利小视频 | 18勿入网站免费永久_91色综合网_国产欧美在_女人体1963毛片a级_久久久老熟女一区二区三区_亚洲依依成人亚洲社区_激情爱爱网站_中国XXXX真实偷拍 | 视频二区不卡_麻豆性视频_wwww亚洲_久久这里有精品视频_亚洲一区二区国产_免费午夜爽爽爽www视频十八禁_九一视频免费看_换脸国产AV一区二区三区 | 日韩第一视频_香蕉影院在线_无套内射无矿码免费看黄_千金不装了短剧免费观看_九九久久国产_爆乳2把你榨干哦无码_三级小说一区_国产在线观看91一区二区三区 | 亚洲最大的AV无码网站_午夜剧场图片亚洲_成人性生交大片免费看小忧_日韩成人av影院_亚洲中字在线观看_欧美白妞大战非洲大炮_四虎久草_欧美性精品220 | 亚洲国产初高中生女AV_久久bt_国产在线91精品入口首页_免费日韩一级片_国产乱淫av片免费观看_99久久精品一区二区_色伊人色_女性高爱潮视频 | 日日操天天_二区视频在线观看_一级欧美一级日韩_成人综合网在线_日本黄色片在线观看_www.17c.com小草影视_青青草手机在线观看视频_日韩新片王网 | 国产精品99久久99久久久_欧美韩日精品_久久的久久爽亚洲精品aⅴ_善良的人妻被水电工侵犯_国产精品亚洲产品一区二区三区_日本欧美一区二区三区在线观看_久久久久国产亚洲AV麻豆_中国一级簧片 | 日本免费一区二区三区四区五六区_在线观看日韩视频_国产福利视频奶水在线_无码AV岛国片在线观看免_国产精品午夜未成人免费观看_妺妺窝人体色777777仙人掌_www色日本_国产亚洲精品久久久玫瑰 | 亚洲欧美国产成人综合不卡_YYY6080韩国三级理论久久_欧美www777_久久99精品久久久久婷婷暖_久久久久在线观看_91福利无码国产正在播放_大肉大捧一进一出好爽视频_视频一区二区在线播放 | 国产精品国产三级国产有见不卡_国产在线激情视频_免费精品国产人妻国语三上悠亚_中文字幕人妻熟女人妻A片_日本无码一区二区三区在线_黄色片视频国产_精品久久人人做人人爱_欧美性大战xxxxx久久久 | 四虎永久在线精品国产馆v视影院_永久免费观看美女裸体视频的网站_女教师の爆乳bd在线观看_亚洲加勒比无码一区二区_性欧美牲交xxxxx视频欧美_五月色婷婷在线影院_国产人伦视频_粉嫩av一区二区三区在线 成人一在线视频日韩国产_超碰在线公开97_久久亚洲精品国产一区_国产精品久久不能_午夜亚洲精品专区高潮日w_kaori肉感在线播放_www.四虎影视.com_欧美日韩久 | 国产亚洲情侣一区二区无_亚洲精品视频免费观看_樱桃视频大全免费观看_撕开奶罩揉吮奶头高潮av_成人免费精品网站在线观看影片_va在线观看_欧美爆乳精品国产一区二区三区_久久久久亚洲AV无码A片男男 | 久久亚洲99精品2021_亚洲无码偷拍福利_日批视频在线观看网站_俄罗斯freeⅹ性欧美_操欧美丝袜_最好看免费中文字幕2018_国产精品丝袜黑色高跟鞋_天天草天天干 | 天天操综合_疯狂撞击丝袜人妻_中文无码视频播放_好吊色一区二区_av一区二区三_警告国产专区_日日噜噜夜夜爽爽_国产精品日韩一区二区免费视频 | 曰韩免费视频_中文字幕丝袜第1页_视频精品久久_久久国产午夜精品理论片_成人免费国产精品视频大全_人妻被丑老头玩的潮喷_亚洲av无码国产一区二区三区不卡_天堂亚洲欧美在线中文 | 欧美14一16sex性处_精品无码AV一区二区三区不卡_国产人妻久久精品二区三区特黄_福利视频欧美一区二区三区_日本丰满熟妇有毛_超碰在线视屏_国产自产V一区二区三区c_欧美18videos极品 | 不卡国产_色综合另类小说图片区_午夜久久久久久久久久久_亚洲AV日韩AV鸥美在线观看_挺进邻居丰满少妇的身体_12306影视午夜入口_被男人吃奶很爽的毛片_免费在线视频欧美 | 性做久久久久_性一交一乱一伧老太_国产成a人_8x海外华人永久免费_一级日韩毛片_国产无码AV在线播放_午夜小片_91在线精品一区二区三区 | 欧美国产日韩一区在线观看_国产精品入口免费视_国产精品一区二区女厕厕_91精神视频在线_国产乱子伦普通话对白_亚洲一卡二卡三卡四卡_国产女人高潮视频在线观看_欧美一级视频网站 | 91综合久久_亚洲精品福利网站_国产成人麻豆精品午夜福利在线_野花社区日本免费图片_九九热视频精品在线_CAOPORN国产精品免费视频_成人午夜a级毛片免费_亚洲欧洲日本精品一区二区三区 | www.久_国产成人在线网址_小视频在线看_91视频免费看片_欧美裸体XXXX极品少妇_免费国产精品视频_草逼网页_99热中文 | 欧美日韩另类一区二区_人人人人人你人人人人人_国产精品久久久久av免费_亚洲精品无码久久千人斩_欧美日韩在线精品一区二区三区激情综合_久久精品视频播放_午夜影院在线免费观看_国产黄片av毛片系列 | 亚洲a一区_看全色黄大色大片免费久久久_国产呻吟对白刺激无套视频在线_69pao视频_久久伊人精品天天_精品久久久久久久久久_伊人久久精品无码二区麻豆_善良的女儿在线观看 | 亚洲超碰人人_国产在线视频欧美一区二区三区_天天av导航_日韩精品一区二区三区在线视频_日本激情在线视频_免费看a的网站_日韩午夜一区二区三区_视色视频 | 欧美激情高潮无遮挡_成人无码区免费a片www_成年女人免费视频播放人_2015天堂网_精品一二三区视频_久久久天堂国产精品女人_成人无码潮喷在线观看_亚洲AV永久无码天堂网毛片 | 又黄又爽的成人免费视频_caopeng在线_国产精品自在线_亚洲精品美女久久久久久久久久_久久久久久国产精品免费_中国wwwxxxx_精品国产天堂_成年女人午夜毛片免费视频 | 国产成人精品网站_亚洲国产精选_国产露脸精品产三级国产av_人妻精油按摩BD高清中文字幕_久草日韩_337p粉嫩大胆噜噜噜_亚洲国产制服丝袜先锋_国产专区亚洲精品无码 | 亚洲九九九九_久久久久国产A免费观看RELA_俺去俺来也www色官网cms_av地址在线观看_国产亚洲99影院_久久亚洲精品国产精品_一级毛片成人免费看免费不卡_新91网站 | 精品国产第一区二区三区的特点_日韩中文无码av超清_久久入口_亚洲特黄视频_国产精品欧美一区二区三区_日韩一级免费大片_99视频久_日本91看片 | 四虎永久在线精品国产馆v视影院_永久免费观看美女裸体视频的网站_女教师の爆乳bd在线观看_亚洲加勒比无码一区二区_性欧美牲交xxxxx视频欧美_五月色婷婷在线影院_国产人伦视频_粉嫩av一区二区三区在线 成人一在线视频日韩国产_超碰在线公开97_久久亚洲精品国产一区_国产精品久久不能_午夜亚洲精品专区高潮日w_kaori肉感在线播放_www.四虎影视.com_欧美日韩久 | 亚洲av无码专区青青草原_亚洲性射射_欧美乱子伦XXXX12在线_亚洲AV无码精品色午夜果冻_91精品国产综合久久久蜜臀图片_非她不可短剧免费观看_国产精品人成在线播放新网站_av一区二区免费 | 亚洲福利视频网址_一级做a爰片久久毛片免费看_成人aaaa免费全部观看_18禁无码永久免费无限制网站_久久AV无码专区亚洲AV桃花岛_国产50部艳色禁片无码_日本不卡一_777亚洲精品乱码久久久久久 | 国产一区二区三区精品视频_偷拍一区二区三区在线婷婷_欧美孕妇色xxxxx_厨房里边做饭边啪啪爱爱_亚洲精品成人久久_亚洲日韩AV无码不卡一区二区三区_久在线观看福利视频_国产在线高潮流白浆免费观看 | 999精品在线观看_97午夜理论片影院在线播放_亚洲精品美女久久17c_亚洲丝袜制服美女av_中文乱码字幕高清一区二区_国精一区二区三区_久久精品视频网址_日韩AV无码久久精品免费 | 青草青青在线_麻豆出品必属精品_日本草逼视频_v2ba最新地址入口_久久99爱视频_黑鬼大战白妞高潮喷白浆_色婷婷综合缴情综免费观看_亚洲AV综合色区无码另类小说 | 少妇高潮太爽了在线视频_波多野结衣无码视频在线观看_欧美精品momssexxxx_美女被强遭的免费网站视频_久久国产精品视频免费看_亚洲精品高清国产一线久久_高清三区_91综合在线视频 | 最新综合精品亚洲网址_粉嫩绯色av一区二区在线观看_91视频插插插_日日操爱视频_久久精品牌麻豆国产大山_久久精品视频网_日韩精品一区二区在线观看视频_亚洲精品一区二区三天美 | 一区二区日韩视频_古装激情偷乱人伦视频_日本免费一二三区_日本三级动作片_成人午夜福利视频后入_国产超污精品A级毛片_久久不色_中国精品久久精品三级 | 日韩av黄色网址_久久99国产精品一区二区_国产自在自线午夜精品视频在_韩国久草_91爱网_免费看成人毛片无码视频_娇喘抽搐高潮喷水A片免费观看_亚洲国产精品久久久久久女王 | 成人福利在线观看视频_a天堂在线观看_欧美中文网_欧美性13_在线免费视频一区_婷婷久久无码欧美人妻_黄色录像一级片子_99热在线精品观看 |