Model: YHZS25
Rated Productivity(m³/h): 25
Concrete Mixer: JS500
Aggregate Bin Volume(m³): 3.2
Total power(KW): 50Kw
Gross weight(T): 12
Discharging height(M): 2.8 m
Mixer Discharging capacity(L): 500
Model: YHZS35
Rated Productivity(m³/h): 55
Concrete Mixer: JS750
Aggregate Bin Volume(m³): 7.3
Total power(KW): 64Kw
Gross weight(T): 16
Discharging height(M): 2.8 m
Mixer Discharging capacity(L): 750
Model: YHZS50
Rated Productivity(m³/h): 50
Concrete Mixer: JS1000
Aggregate Bin Volume(m³): 3.2
Total power(KW): 85Kw
Gross weight(T): 20
Discharging height(M): 2.8 m
Mixer Discharging capacity(L): 1000
Conclusion In conclusion, we learned a lot of reasons why recycling is important in our community and especially at school. We learned about waste and how some waste can be reused or recycled into other products. I hope that this class will stick by their pledge ...
It is simply human nature to build, rebuild, deconstruct, and start all over. That means that used construction materials are an inevitable part of any developed society. Unfortunately, this waste is both unsightly and environmentally harmful in many cases. Luckily, there are options for recycling certain construction materials when there is a facility in the area that has such a program.
5 Tips for Recycling Your Construction Waste. Published May. 26, 2015 by Rachel Burger in Construction Management. ... In buying fewer new materials, recycling waste without having to transport it, or reselling it where is has market value, there are positive economic as well as environmental consequences.
Construction and Building Materials provides an international forum for the dissemination of innovative and original research and development in the field of construction and building materials and their application in new works and repair practice. The journal publishes a wide range of innovative research and application papers which describe ...
Building material and components play a crucial role in solar buildings construction and planning. The literature review of the research emphasize that solar architecture and building integration is in need of some productive design strategies which focuses on reuse of recycled building materials.
Jul 27, 2009 · Recycling is one of the most important actions currently available to reduce these impacts and represents one of the most dynamic areas in the plastics industry today. Recycling provides opportunities to reduce oil usage, carbon dioxide emissions and the quantities of waste requiring disposal.
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Using Wood for Sustainable Design + Construction Wood is a historic, classic, and durable building material that has leant longevity, aesthetics, and a natural flair to buildings for thousands of years. And while wood has long been considered an environmentally friendly resource, more and more focus is being placed on the recycling and ...
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Aug 30, 2017 · Why Recycling Construction Materials is Important for Your Business . With the environment becoming an increasingly popular topic of discussion, recycling construction materials is more important than ever. The most common method of disposing of C&D waste in the past has been sending it to landfills.
Recycling and reuse of waste such as building rubble, concrete lumps, etc. generated at construction and demolition sites form part of a wider, complex issue, primarily relating to …
The revised EU Waste Framework Directive (WFD) includes a 70 % target for recovery of construction and demolition (C&D) waste. In order to study the potential change in the resource management of the main C&D waste fractions, as a consequence of fulfilling the WFD target, a Nordic project (ENCORT-CDW) has been performed. Waste fractions studied included asphalt, concrete, bricks, track ballast ...
Maximizing Reuse and Recycling of Construction Materials Abdol R. Chini, Ph.D., P.E. University of Florida Gainesville, Florida Nippun Goyal, MSBC Pyro Industries Chandigarh, India The demolition of building structures produces significant amounts of
Sep 05, 2017 · If the waste materials can be used again, it will not only cut down on mining but also save on extra costing, which is a win-win situation for both environment and people. Another reason for recycling bricks can be the goal to prevent more landfills from being built as the construction waste materials take up a large amount of space in landfills.
65% of construction leftovers is inert waste (stones, demolition waste, bricks, glass…). Once sorted and recycled, they can be used as embankment or backfill. Non hazardous material (wood, cardboard, plastic, metal, plaster…) are sent to a different recycling branch for recovery.
iii Abstract All around the globe the consumption of raw materials by the construction industries is accumulating day by day resulting with an depletion of natural resources, increasing the environmental impacts and CO2 emissions all over the surroundings. emissions all over the surroundings.
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The construction industry contributes around 18% of greenhouse gas emissions, 40% of depletion of natural resources, and 25% of wastes globally. To reduce these impacts, construction industries can adopt low-carbon alternatives for construction materials and waste minimisation strategies, including the recycling of construction and demolition waste. However, a comprehensive understanding of ...
That's why the construction materials experts from the ALBA Group sort waste materials, process them and then sell on the resulting high-quality secondary raw materials. These can be reused for a variety of purposes, including civil engineering and landscape gardening. All of which helps close material recycling loops and conserve natural ...
researches have come to a conclusion that waste plastics can be used in modifying roads. If we use plastics in road construction, we can reduce the cost of road construction and pollution index of environment to an appreciable extent. We can use plastics as binder with bitumen.
The Construction & Demolition Recycling Association (CDRA) promotes and defends the environmentally sound recycling of the more than 583 million tons of recoverable construction and demolition (C&D) materials that are generated in the United States annually.
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In areas where construction or renovation is minor, the impact on local landfills and other solid waste facilities is major. That’s why we use recycled asphalt as much as possible. Recycling asphalt saves more than 60 million cubic yards of landfill space, according to the National Asphalt Pavement Association.
Conclusion Not only the problem of hundreds of thousands of tons of construction debris can be solved by recycling and reusing the building wastes, but also the issue of shortage of natural aggregates can be addressed. Recycled aggregate concrete have
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Jul 14, 2017 · The construction industry is responsible for 50% of the solid waste generated worldwide. Governments around the world formulate legislation and regulations concerning recycling and re-using building materials, aiming to reduce waste and environmental impact. Researchers have also been developing strategies and models of waste management for construction and demolition of buildings. The ...
Dec 19, 2016 · Recycling is most often prevalent in homes, schools, and some office parks. The kind of recycling that occurs is putting used paper products into blue bins and hauling them away for reuse. This impact is rather small compared to the massive amounts of waste and deforestation taking place on an industrial-type level.
The recycling and reuse of construction & demolition wastes seems feasible solution in rehabilitation and new constructions after the natural disaster or demolition of old structures. This becomes very important especially for those countries where national and local ...
Model |
Belt Type |
||
YHZS-25 |
YHZS-35 |
YHZS-50 |
|
Theoretical Productivity (m³/h) |
25 |
35 |
50 |
Mixer Model (Mixer Output L) |
JS500 |
JS750 |
JS1000 |
Mixer Power (kW) |
18.5 |
30 |
2×18.5 |
Mixing Cycle Period (s) |
67 |
72 |
72 |
Rated Input Volume (Model of Batching Machine L) |
800 |
1200 |
1600 |
Max.Aggregate Size (mm) |
Φ60 |
Φ60 |
Φ60 |
Standard Aggregate Bin Capacity (m³) |
2×3 |
2×5 |
3×5 |
Category of Aggregate |
2002/3/4 |
||
Powder Storage Silo (ton) (Optional) |
1×50 |
2×50 |
1×100 |
Max. Discharging Height (m) |
3.8 |
3.8 |
4.1 |
Weighing Range & Accuracy of Aggregate (kg) |
(300~1500)±2% |
(300~1500)±2% |
(300~3000)±2% |
Weighing Range & Accuracy of Cement (kg) |
(100~300)±1% |
(100~300)±1% |
(250~900)±1% |
Weighing Range & Accuracy of Water (kg) |
(60~150) |
(60~150) |
(80~300)±1% |
±1% |
±1% |
||
Weighing Range & Accuracy of Additive (kg) |
/ |
(8~20) |
(8~20) |
±1% |
±1% |
||
Overall Weight (ton) |
≈15 |
≈22 |
≈26 |
Installation Power (kW) |
≈61 |
≈73 |
≈92 |
Power Supply |
380V/220V/415/440V, 50/60HZ, 3Phase |
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