久久riav二区三区_国产一卡一卡_日日噜噜夜夜狠狠爱视频免费樱桃_久久青草网站_一级片毛片_狠狠插日日干

THE EFFECTS OF MAN-MADE GLOBAL WARMING ALREADY IMPACT THE LIVELIHOOD OF MILLIONS OF PEOPLE TODAY.

Impacts of building elements on overall embodied CO2

  • Superstructure • 63.68%
  • External Finishes • 14.46%
  • Internal Finishes • 9.84%
  • Fitting Elements • 9.50%
  • Substructure • 2.40%
  • External Works • 0.12%

Industry, architects and engineers alike are now tasked with incorporating low carbon products and sustainable solutions into their projects, and much can be done to that effect;

  • Incorporation of supplementary cementitious materials (SCMs) in concrete mixes
  • Enabling smart designs to build more with less
  • Building durable structures for an extended service life
  • Driving the circular economy and recycling of building materials
  • Specifying low carbon footprint solutions
  • Introducing greener products and decarbonize production

As temperatures continue to rise over the next century, natural disasters like floods, hurricanes, droughts, and heat waves will intensify, eventually making parts of our planet uninhabitable.

To limit the global temperature increase to 1.5 degrees Celsius above pre-industrial levels as agreed under the Paris Agreement, the Glasgow Climate Pact (COP26) aims for a 45% reduction in global carbon dioxide emissions by 2030 relative to the 2010 level, and to net zero by mid–century. Even so, the world will likely witness an increase of 2.4°C by 2100.

With a contribution of 8%, the global cement industry is the second-largest producer of CO2 and thus one of the main focus points of the COP26 climate targets. Recognizing this, Canada, Germany, India, the UAE and the UK have already pledged to attain net zero in the “major public construction” use of concrete and steel by 2050. In line with these goals, 40 global concrete and cement manufacturers under the GCCA are now committed to cutting CO2 emissions in half by 2030 on the path to achieving net zero by 2050.

Since the concrete structure provides the lion’s share (ca. 66%) of a building’s embodied carbon, concrete is the most pressing issue to address. As the carbon footprint of water and aggregates is negligible, the carbon footprint of concrete is determined almost entirely by cement (0.93kg CO2/kg), making it the largest contributor to embodied carbon in the built environment. In addition, cement production also generates high nitrogen oxide (NOx) and sulphur oxide (SOx) emissions, which contribute to acid rain, a further deterioration of public health and global climate change.

The time has come for urgent and bold action. This is how PENETRON can help.

THE GLOBAL 2050 CHALLENGE

A multi-disciplinary challenge to achieve net zero embodied carbon by 2050. Mission alignment with:

Carbon Leadership Forum SE2050 Architecture 2030 World Green Building Council

Penetron Admix packaging

PENETRON ADMIX
Reducing the carbon footprint of your project

PENETRON ADMIX is a sustainable, crystalline admixture that reduces concrete permeability. By providing comprehensive protection against concrete deterioration caused by chemical attack, corrosion, and freeze-thaw cycles, PENETRON ADMIX extends the service life of concrete structures. Easily mixed in during batching and unaffected by climatic conditions, it helps reduce the overall carbon footprint of concrete mixes and construction projects.

PROVEN. RELIABLE.
SUSTAINABLE.

Benefits

  • Reduces carbon footprint of concrete mixes and applications
  • Replaces unsustainable waterproofing solutions
  • Extends service life of concrete structures
  • Provides self-healing capability
  • Makes concrete impermeable
  • Minimizes any future waterproofing-related maintenance
  • Helps maintain or shorten construction schedules
  • Increased protection against rebar corrosion and carbonation
  • Increased chemical resistance (pH3-11)
  • Non-toxic and ideal for potable water applications (NSF-61 certified)
  • Sustainable: EPD and GreenGuard Gold approved
Microscopic image of crystal network

How It Works

Concrete microcracks, pores, and capillaries
Concrete is porous and consists of microcracks, pores, and capillaries, which typically have a width between 0.1-0.5mm.

Water entering concrete capillary matrix
Water and water-borne chemicals enter the concrete through the capillary matrix.

PENETRON ADMIX added to concrete
When PENETRON ADMIX is added to the concrete, the active ingredients react to generate an insoluble crystal network.

PENETRON ADMIX sealing voids and microcracks
This network seals voids and microcracks against water penetration, even under high hydrostatic pressure.

Water is unable to pass through the PENETRON ADMIX treated concrete
Water is unable to pass through the crystal formations and the concrete is now impermeable.

PENETRON ADMIX self-healing new hairline cracks
PENETRON ADMIX provides a self-healing capability as new hairline cracks that form throughout the life of the concrete are sealed as soon as water enters.

In-Depth Waterproofing and Self-Healing

PENETRON ADMIX provides up to 100% permeability reduction. This maintains the proper alkaline environment necessary to keep the embedded steel passivated and prevent corrosion.

With water being the main cause for concrete deterioration, PENETRON’s permanent waterproofing protection largely eliminates the need for maintenance of concrete structures throughout their service life and the carbon footprint that comes with that.

Equally, by enabling self-healing of cracks up to 0.5mm throughout the service life of concrete, preventing water ingress and corrosion, the need for maintenance of concrete structures is largely avoided.

The ICRI Committee 160 notes that the most effective sustainability strategy for concrete and masonry structures is to avoid the need for repairs.

In the UK, the annual cost of repairing reinforced concrete structures near coastal areas is £755 million. Corrosion accounts for 80% of all damage to reinforced concrete structures. In the United States alone, repairing such structures costs an estimated $300 billion annually.

PENETRON ADMIX
seals cracks in as few as 4 days

Cracked cement before PENETRON is applied
Before

Repaired cement after PENETRON is applied
After

SLS - P (10%) @ XX years

Deterministic Service Life (years)

The table above shows how PENETRON ADMIX-treated concrete designed for 50 or 100 years of service life, requires little or no maintenance – and allows a reduction in concrete cover – despite exposure to corrosion by chlorides or carbonation.

As a result, fewer maintenance cycles compared to conventional concrete reduce the building’s maintenance CFP by a minimum of 40% (3 in 5 cycles) and up to 300% (0 in 3 cycles).

Average CFP reduction: 90% on maintenance for typical projects

Durability/Service Life Extension

A sustainable circular economy optimizes the use of natural resources and energy to minimize CO2 emissions. Conventional concrete, the second most consumed product in the world, consists of durable natural materials but fails when exposed to aggressive environments, resulting in frequent and costly repairs or replacement. This increases the use and processing of raw materials and energy, which increases CO2 emissions.

The embodied carbon footprint (CFP) of a building is the sum of:

  • (A) CFP of all construction materials (from cradle to gate)
  • (B) CFP of all construction operations
  • (C) CFP of all maintenance operations
  • (D) CFP of demolishing operations and disposal of used materials.

By using a durable concrete mix with self-healing properties, the service life of a structure - defined as the number of years corrosion probability remains at ≤10% - can be extended by 60 years and more. At the end of its intended service life, a building may either stay in service as is, or receive a new fa?ade, M&E upgrades and be re-purposed to serve a similar design life. As a result, (A), (B), (C), and (D) are either dramatically reduced or done away with entirely, effectively providing two structures with the CFP of a single structure.

Resulting CFP reduction: up to 50% and more

Compatible with SCMs

With the global cement and concrete industry committed to Net Zero Carbon by 2050, and cement being the main carbon culprit, the obvious path forward is to reduce cement consumption by using supplementary cementitious materials (SCMs) such as fly ash, blast furnace slag, silica fume, volcanic ash, etc. As these SCMs are by-products of the coal and steel industry, they do not add to the CFP of building projects and add value beyond their binding ability. SCMs are increasingly embraced by the industry and also increasingly in short supply.

PENETRON ADMIX is fully compatible with the use of SCMs. It works equally well with OPC and SCM/OPC mixes, enabling a great reduction in the embodied carbon of the structure.

Reducing Cement Content

PENETRON ADMIX enables the use of a lower grade concrete while achieving the same or better durability. This allows for the use of a lighter, more flexible and yes, cheaper concrete to satisfy the same performance specifications.

Durability tests of concrete under attack from chloride penetration and carbonation were performed, with a maximum CFP value for PENETRON ADMIX of 4.9kgeqCO2/m3.1

The CFP of concrete mixes was adopted from research carried out by the Building Services Research and Information Association (BSRIA) and the University of Bath1, both in the UK. The research provides a large CFP database for the most common construction materials, including concrete (with and without supplementary cementitious materials) with a range of 28-day compressive strength2 test results.

1 Technical report RAA0036A-01 | 2 https://ghgprotocol.org/Third-Party-Databases/Bath-ICE

Protection Against Chloride Migration

Concrete durability can be determined as a function of the chloride migration coefficient and the concrete cover (Fick’s 2 nd Law of Diffusion).

The research cited here shows that PENETRON ADMIX mixed with a low-grade concrete provides better protection against chloride migration than a BS 8500-1 compliant mix with 40kg more cementitious materials, designed for a service life of 50 years.

Component and Chloride Migration Coefficient charts

Further, concrete cover may be reduced significantly with no reduction in the structure’s service life due to corrosion induced by chlorides for a low-grade concrete mix containing PENETRON ADMIX.

The results of the simulations comparing the prescribed mix of BS 8500-1 (control mix, prescribed mix) and the mix containing PENETRON ADMIX are reported in the following graphs, with cover thickness varying from the target cover thickness for 100 years (65 mm) to the target cover thickness for 50 years (50 mm) according to BS 8500 for exposure to seawater. The initial chloride content corresponds to a typical harbor structure subjected to saline fog.

Probability of Corrosion charts

For each assigned value of the concrete cover, the service life limit due to corrosion induced by chloride penetration of a low-grade concrete mix containing PENETRON ADMIX is greater than the corresponding higher-grade concrete prescribed by BS 8500-1.1

These test results point to a potential 10% reduction in cementitious content, resulting in a lighter, more flexible, and cheaper concrete.2

Resulting CFP reduction: 10 %3

1 Technical report RAA0036A-01 | 2 Technical report RAA0036A-01 | 3 MIX A - CFP = 369 kg eq-CO2/m3 | MIX B - CFP = 325 + (3.80 ÷ 4.00)*4.9 = 330 kg eq-CO2/m3

Protection Against Carbonation

The role of PENETRON ADMIX in extending the service life of reinforced concrete exposed to carbonation was measured by comparing a low-grade concrete mix containing PENETRON ADMIX with a designated concrete mix (class XC3/XC4) as required by BS 8500-1. The latter is a durable concrete mix with a nominal concrete cover of 30 mm for a service life of 50 years, and contains 35 kg more cementitious materials.

Protection of carbonation

Climatic Chamber
Climatic chamber with prisms for accelerated carbonation (Swiss SIA 262/1-X standard)

The carbonation coefficient (K) values obtained for the two mixes after 90 days confirms that the lower grade concrete with PENETRON ADMIX provides superior protection against carbonation;

DESIGNATED CONCRETE PER BS 8500
K = 1.64 MM/√ YEARS

LOWER GRADE CONCRETE WITH PENETRON ADMIX
K = 0.85 MM/√ YEARS

XC3

XC4

Mean Cover / Years

The research results1 concluded that for each given value of mean concrete cover, the time to reach the service life limit due to corrosion induced by carbonation is many times greater for a low-grade concrete mix containing PENETRON ADMIX than the corresponding higher grade concrete mix prescribed by BS 8500-1. Moreover, this result allows a notable reduction in concrete cover.2

Resulting CFP reduction: 10 %3

1 Technical report RAA0036A-01 | 2 Disclaimer : This research was done under laboratory conditions. Project engineers should calculate mixes and concrete cover based on a project’s concrete performance requirements. | 3 Calculating CFP of mix A, which is a nominal C40/50 and of mix B which is a nominal C32/40; MIX A - HIGHER GRADE - CFP = 369 kg eq-CO2/m3 | MIX B - LOWER GRADE - CFP = 329 + (3.15 ÷ 4.00)*4.9 = 330 kg eq-CO2/m3

Eliminating High Carbon Emission Products

Conventional waterproofing solutions for below-grade concrete structures often include one of the surface treatment options noted below, with their corresponding carbon footprints (CFPs).1

Concrete waterproofing carbon footprint comparison

The CFP of PENETRON ADMIX is assumed here as the CFP of clinker2 and CFP of proprietary materials3. Considering the maximum dosage anticipated for the product in high performance concrete (4.0 kg/m3),? the maximum value of CFP for PENETRON ADMIX is 4.9 kgeqCO2/m3.

The tables on the right compare the CFPs of different concrete mixes with PENETRON ADMIX on a m2 basis for an average wall thickness between 0.25 and 0.35 m to the same mixes with the conventional surface treatments mentioned above.?

In summary, the removal of polymer-based, non-sustainable, waterproofing solutions for below-grade structures and replacement with crystalline technology (in combination with pozzolan cements used with Portland cement) reduces the carbon footprint per square meter of conventionally waterproofed concrete vs. self-healing concrete by an average of 20%, and up to 27%?.

Resulting substructure CFP reduction: 20 %

1 CFP values are adopted from comparative environmental life cycle impact of waterproofing solutions for flat roofs. Application of the studied solutions in the rehabilitation of military infrastructure (Miriana Gon?alves – MSc’s Thesis – Tecnico Lisboa, 2015) | 2 0.93 kgeqCO2/kg | 31.514 kgeqCO2/kg | ?1% of 400 kg/m3 of binder | ? Technical report RAA0036A-01

Accelerating Construction Scheduling

Multiple benefits are derived by avoiding the use of topical waterproofing treatments, especially for basements. A smaller excavation footprint, eliminating the need for waterproofing contractors to apply membranes, and no wait for ideal climatic conditions to install, etc. These factors contribute to optimized construction scheduling and reducing the structure’s CFP.

By combining the pouring and waterproofing stages, we can significantly accelerate the construction schedule, save resources and reduce the carbon footprint of the project.

Reducing your CFP with PENETRON ADMIX

Depending on the level of commitment towards achieving net zero carbon concrete by 2050, the following carbon footprint reductions can be achieved with PENETRON ADMIX:

For concrete structures

  • Service life extension: 50%CFP reduction
  • Reducing cement content: 10% CFP reduction

For different components:

  • Maintenance: 90% reduction on maintenance and repair work
  • Replacing waterproofing membranes: 20% CFP reduction for underground structures1

Unquantified CFP reductions

  • Compatibility with a range of SCMs
  • Shorter construction schedules

Bottom line: up to 65% CFP reduction for the overall concrete structure

1 20% reduction on substructure accounts for 5% on whole structure if basement concrete volume remains equal or greater than 25% of whole structure concrete volume

Winning LEED Certification with PENETRON

US Green Building Council Penetron International, Ltd. is ISO 9001:2015 and ISO 14001:2015 certified with TUV Rheinland of North America.

Penetron products, including PENETRON ADMIX, play a role in helping projects with their credit realization while achieving a range of internationally recognized standards such as Singapore Green Label, EPD, CDPH and GreenGuard Gold.

Here is how Penetron can support your LEED accreditation.

LEED v4 BD+C
(Building Design and Construction)

Sustainable Sites (SS)

SS Credit: Site Development – Protect or restore habitat (up to 2 points)

Less excavation is necessary when using PENETRON ADMIX as the need for space to apply a surface material (e.g. membrane) is eliminated. PENETRON ADMIX is added directly into the concrete.

SS Credit: Heat Island Reduction (up to 2 points)

A PENETRON or PENETRON ADMIX-treated concrete roof slab acts as the base of a roof garden system preventing water penetration through the slab.

Materials and Resources (MR)

MR Credit: Building Life-Cycle Impact Reduction (up to 6 points)

PENETRON products assist in the rehabilitation, waterproofing and protection of existing structures increasing both concrete durability and service life.

MR Credit: Construction and Demolition Waste Management (up to 2 points)

PENETRON products eliminate waste, as they can be recycled together with the concrete after demolition whereas environmentally unfriendly petroleum-based products like membranes go into the landfill or have to be disposed of otherwise. Penetron packaging is fully recyclable.

Indoor Environment Quality (EQ)

EQ Credit: Low-emitting materials (1 point)

Category: Interior paints and coatings applied on site;
Penetron products are certified green products that contain zero VOC.

EQ Credit: Construction Indoor Air Quality Management Plan (1 point)

PENETRON products contain zero VOC and thus will not expose construction workers to any odorous, irritating and/or harmful contaminants.

Innovation (IN)

IN Credit: Innovation (1 point)

Penetron Admix is proven to slow down chloride diffusion and therefore prolongs corrosion of the reinforcement as measured and calculated by the 2nd Fick Law of Diffusion. This results in an extension of the service life of the concrete by up to 60 years in critical environments.

LEED v4 ID+C
(Interior Design and Construction)

Materials and Resources (MR)

MR Credit: Construction and Demolition Waste Management (2 points)

Option 2: Reduction of Total Waste Material;
Penetron products are recycled together with the concrete after demolition whereas environmentally unfriendly petroleum-based products like membranes go into the landfill or have to be disposed of otherwise.

Indoor Environment Quality (EQ)

EQ Credit: Low-emitting materials (1 point)

Category: Interior paints and coatings applied on site;
Penetron products are certified green products that contain zero VOC. Applying Penetron will therefore not negatively affect the air quality on the project in regard to odorous, irritating and/or harmful contaminants.

Innovation (IN)

IN Credit: Innovation (1 point)

Penetron Admix is proven to slow down chloride diffusion and therefore prolongs corrosion of the reinforcement as measured and calculated by the 2nd Fick Law of Diffusion. This results in an extension of the service life of the concrete by up to 60 years in critical environments.

GREENGUARD
GreenLabel Singapore
ISO 14001 ANSI-RAB QMS
EPD
主站蜘蛛池模板: 轻轻草在线观看|国产美女遭强高潮网站|色综合视频在线观看|久久久久久久久久久久久久久|www久久艹|久久国产传媒 | 免费线上=av|成人欧美精品一区二区|色人阁网站|欧美精品一区二区免费视频|日韩综合色|国产黄色精品视频 | 日本中文一区二区|成年女人高潮免费播放|xx69视频|午夜h片|久久99热这里只有精品国产|亚洲一区二区视频 | www.超碰在线.com|日本在线观看无码不卡V|免费观看日本污污ww网站|一区2区|91福利区|国产精品久久久久久238 | 日本中文一区二区|成年女人高潮免费播放|xx69视频|午夜h片|久久99热这里只有精品国产|亚洲一区二区视频 | 91精品国产福利一区二区三区|精品国产区一区|亚洲国产三区|高挑美女被遭强高潮视频|无码熟妇αⅴ人妻又粗又大|国产真实夫妇6p酒店交换 | 亚洲日本乱码一区二区产线一∨|我要看WWW免费看插插视频|老师课后辅导乳揉搓H在线观看|视频一区二区三区波多野结衣|中文字幕在线资源|精品国产第一页 | 亚洲国产精品推荐|日韩欧美视频观看|国内老熟妇对白XXXXHD|亚洲综合精品香蕉久久网|国产男女免费完整视频网页|亚洲=av高清手机在线 | 吃奶摸下的激烈视频|亚洲人成网站18禁止中文字幕|无码=aV天堂一区二区三区|男人猛躁进女人视频免费播放|精品一区在线观看视频|欧美午夜=a级限制福利片 | 国产这里只有|斗罗之斗淫大陆h污文小舞白丝|真人做爰高潮全过程免费视看|久久丁香|777色情在线无码|91九色视频在线播放 | 美国=a级黄色大片|国内露脸少妇精品视频|日本免费在线一区|欧美一区影院|高清黄色毛片|在线中文一区 | 日本公交车上xxxxhd少妇|五月开心六月伊人色婷婷|97国产suv精品一区二区62|久久99精品久久久久久久清纯|精品国产欧美日韩|黄色网页入口 | 成人一区在线视频|成人一区二区在线播放|新婚少妇毛茸茸的性|永久免费黄色大片|欧美精品一区在线观看|国产情侣久久久久=aⅤ免费 | 免费极品=aV一视觉盛宴|大陆少妇xxxx做受|懂色一区二区二区=av免费观看|女人的超长巨茎人妖在线视频|欧美激情国产精品视频一区二区|精产国品久久一二三产区区别 | 成人=av一区二区三区在线观看|欧美日韩中文字幕一区二区三区|#NAME?|青青草视频网|日韩=av在线一区二区三区|老司机在线精品视频播放 | 午夜dj福利|免费看黄在线观看|天堂=a在线|亚洲中文字幕人成影院|亚洲精品久久久久77777|天天躁夜夜踩很很踩2022 | 成人一区二区三区免费视频|日本=a=a=a=a片毛片免费观蜜桃|在线观看亚洲欧美|日本一夲道无码不卡免费视频|穿乳环蒂环上锁调教老师|国产成人综合一区二区三区 | 老汉=av免费一区二区三区|国产又大又黑又粗免费视频|黄大片日本一级在线=a|成年人黄色毛片|亚洲精品一区二区三区免|国产精品91大屁股白浆一区二区 | www.亚洲日本|麻豆=av久久一区二区三区|成人国产视频在线观看|日韩精品久久一区|一本到在线观看视频|日本精品一区在线观看 | 国内一级片在线观看|精品成人佐山爱一区二区|色偷偷9999WWW|午夜香吻免费观看视频在线播放|久久任你操|国=a产久v久伊人 | 模特写真福利内部视频|性高朝久久久久久久3小时|天天插夜夜爽|亚州综合视频|日韩免费一区二区三区|九九热线有精品视频99 | 国产精品婷婷色综合www在线|丰满风流护士长BD=a片|国产精品福利片|农村人伦偷精品视频=a人人澡|久热免费在线视频|18禁美女黄网站色大片免费网站 | 国产精品视频专区|国产在线国产|精品一区二区三区成人精品|国产不卡在线观看免费视频|蜜桃综合|欧美精品日韩一区 | 国产草草影院|欧美性生交大片免费看|67194熟妇在线观看永远免费|偷偷碰偷偷鲁免费视频|欧美性生交xxxx乱大交3|激情麻豆视频 | 狠狠色狠狠色狠狠五月|在线看片国产|午夜院线|国产一区二区三区免费观看视频|#NAME?|深夜男人你懂的六月婷婷天堂 | 亚洲高清炮|99国精产品灬源码1688钻|人与拘一级=a毛片|精品无人区麻豆乱码久久久|国产精品色视频xxx|国产日产成人免费观看软件 | 亚洲欧美日韩精品综久久久久久|99热这里只有精品99|国产成人综合精品|无码人妻一区二区三区免费N鬼逝|无码人妻=aⅤ一区二区三区麻豆|69xx×在线观看 | 49vv亚洲|成人一级网站|九月婷婷人人澡人人添人人爽|国产精品69毛片高清亚洲|五月婷婷天堂|特黄=a级毛片免费视频 | 97久久精品人人澡人人爽|亚洲人成图片小说网站|99久久精品毛片免费播放高潮|夜夜操网站|三区在线|69看片 | 欧美在线中文字幕|亚洲天堂成人|国产一区二区精品久久91|精品人妻无码一区二区三区GIF|久久亚洲精品情侣|国产成人在线影院 | 亚洲αv久久久噜噜噜噜噜|国产乱码精品一区二区三|哈哈操影院|#NAME?|国产看片网址导航|欧美V亚洲V日韩V最新在线 | 最新国产精品毛片在线|和少妇做爰3p视频|www.youjizz.com在线观看|成人在线观看国产|成人久久精品|免费观看h视频 | 欧美人与禽猛交乱配|黑人添美女bbb添高潮了|91久久精品日日躁夜夜躁国产|99久久婷婷国产综合亚洲|久久影院视频免费|成人在线视屏 | 精品乱久久|www亚洲成人|麻豆91爱爱|99日韩精品|免费看日韩大片|国产精品视频一区视频二区 | 亚洲欧洲国产视频|麻豆视频xxx|日本在线观看一区|亚洲成=aV人片无码不卡播放器|麻豆性生活视频|欧美视频一区二区三区四区 日韩网站中文字幕|国产精品入口在线观看|少妇高潮喷水久久久影院|丰满爆乳无码一区二区三区|一区二区日本在线|婷婷777 | 日韩精品成人=av|午夜精品一区二区三区免费视频|亚洲精品国产综合久久一线|国产三级=aV在在线观看|GV无码免费无禁网站男男|欧美videos另类极品 | 午夜自产精品一区二区三区|日本高清一区|亚洲中文欧美日韩在线|一级一级一级一级毛片|国产对白视频|无套无码孕妇啪啪 | 欧美一区二区三区视频在线观看|日韩不卡高清|成人午夜视频无码免费视频|一道本道加勒比天天看|欧美成年人视频在线观看|日本中文字幕乱码免费 51久久夜色精品国产水果派解说|国产欧美日韩视频免费|国产96在线亚洲|人妻无码中文字幕免费视频蜜桃|成人=a片产无码免费视频奶头鸭度|亚洲已满18点击进入在线看片 | 国产最新网站|亚洲美女一区|亚洲V欧美V国产V在线观看|国产精品乱码久久久久久1区2区|大地影视资源在线观看|国产精品扒开腿做爽爽爽日本无码 | 干亚洲美女|亚洲视频精选|91国自视频|亚洲一级影片|韩国三级在线中文字幕无码|xxx黄色片 | 麻豆精品蜜桃|黄网wwwccc|色自拍偷拍|久久亚洲精品无码网站|国产成人免费视频在线网站2|久久久老熟女一区二区三区91 |