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1.
An increasing trend towards the use of sustainable processes has led to recycled materials being incorporated into concrete. It is generally recognised that crushed recycled construction aggregate material produces concrete of a lower compressive strength, when used as an aggregate replacement due to deleterious materials within the aggregate.It is generally accepted that in the UK, freeze/thaw attack is, after chloride-induced corrosion, the most common cause of concrete deterioration. This paper addresses the freeze/thaw durability of recycled aggregate concrete using a paired comparison test based upon weight loss and final compressive strength.Recycled aggregate concrete was found to be of at least equal durability to concrete manufactured with virgin aggregates. This was due to careful selection of the replacement aggregate and treatment prior to batching.Durability is an important material property and recycled aggregates need to be widely tested to gain confidence for use within the industry and this work shows future possibilities.  相似文献   

2.
The present work deals with the investigation of the potential use of recycled tire rubbers in cement matrices. This facilitates the development of concrete with a lesser environmental impact. Thus, it contributes to developing construction in a sustainable way. Concrete formulations were produced with the replacement of 10% sand aggregate by recycled tire rubber using conventional rubber and rubber modified with alkaline activation and silica fume addition to improve the mechanical properties. The water/cement ratio (or composition) and the testing age were used as additional variables. The concrete characterization was performed by testing the compressive strength, elastic modulus, density and microstructure (SEM). The recycled tire rubber proved to be an excellent aggregate to use in the concrete. It was observed that its compressive strength was reduced by only 14% (28 days), in comparison to the conventional concrete, reaching 48 MPa for the mixture with higher resistance. The concrete compositions were found to be lighter and a reduced interface was observed between the rubber and cement matrix after the chemical treatment. The rubberized concrete can support construction sustainability, minimize the consumption of natural resources by using an industrial residue and produce a material with special features.  相似文献   

3.
采用进口移动式破碎-磁选-筛分设备,将混凝土类建筑垃圾加工成再生骨料,并掺入制备混凝土、干混砂浆、道路无机混合料。检测结果表明,再生制品性能可满足使用要求,再生骨料替代天然骨料比例可达到50%以上。  相似文献   

4.
我国城镇化进程持续深入推进,大规模城市更新建造活动消耗了大量水泥等建筑材料.以深圳市为例,采用自下而上的物质流分析方法估算了自特区建设以来(1979~2018年)城市房屋建筑中的水泥存量和流量,并分析了其产生的综合环境影响(以碳排放当量为度量指标).研究结果表明:1979~2018年间,深圳市建筑水泥历史累积消耗约为8...  相似文献   

5.
Environmental problems have been considered to be serious in the construction industry. Waste management pressures are pressing very hard with alarming industrial warming signals. Among the different types of construction and demolition wastes, concrete is about 81 percent of the volume of construction and demolition waste in Australia. To minimize the concrete waste generated from construction activities, recycling of concrete waste is one of the best methods to improve the environment. However, situations of concrete recycling in different countries vary considerably. Japan is a leading country in recycling concrete waste, with 100 percent recycling of the wastes that are used for new structural applications. This paper investigates the current concrete recycling situations in Australian and Japanese construction industries. A questionnaire survey and structured interviews were conducted. In comparing the current concrete recycling situations between Australia and Japan, it should be noted that major difficulties found from Australian and Japanese construction industries are on different phases of the transition to recycling of construction wastes. Therefore, it is suggested that the Australian construction industry should be: i) developing a unified policy in concrete recycling; ii) providing financial governmental support; iii) developing clear technical specifications or standards on the use of recycled aggregate for structural applications.  相似文献   

6.
再生骨料混凝土的研究和应用能解决日益发展的建筑业带来的环境问题,通过对乌鲁木齐地区建筑业进行调研,具体分析了乌鲁木齐地区废弃混凝土的现状,提出其再生骨料混凝土技术在乌鲁木齐地区推广应用中存在的问题,进行了再生骨料混凝土应用的技术经济可行性分析,并对乌鲁木齐地区再生骨料混凝土的应用提出相应对策。  相似文献   

7.
再生混凝土的应用,不仅能够减少废弃混凝土填埋导致的环境污染,而且能解决天然石料资源不足和废弃混凝土如何再利用的问题,其中,力学性能是再生混凝土研究领域的重要内容。对国内外再生混凝土力学性能的研究进展进行了总结,介绍了再生混凝土的抗压强度、抗拉强度、抗折强度、弹性模量、泊松比和应变的影响因素及其最新研究成果,并分析了目前研究的不足,以期为未来再生混凝土的研究提供新思路。  相似文献   

8.
废弃混凝土的循环再生利用已日益成为人类关注的重要话题,符合环境保护与可持续发展战略的迫切要求。利用废弃混凝土破碎产生的再生细骨料部分取代天然细骨料来配制干混砂浆。通过试验证明:在固定配合比条件下,再生骨料替代率为50%时,干混砂浆抗压强度、保水率和抗冻融性、强度损失率等均符合M5.0中保水的指标要求。  相似文献   

9.
汪振双  苏昊林 《中国环境科学》2018,38(10):3801-3807
基于生命周期评价方法,考虑混凝土重复再生利用的环境影响分配,对重复再生混凝土的性能和环境影响进行研究,并基于功效系数法优化出混凝土最佳重复再生次数.研究结果表明,再生混凝土的坍落度,强度和电通量随着重复再生循环次数的增加而下降,经3次重复再生后,混凝土28d立方体抗压强度为33.3MPa,满足设计要求,而坍落度和电通量与普通混凝土相比,分别减小和增大了38.9%和85.7%;混凝土材料的生态效率随着混凝土重复再生次数的增加而提高,混凝土材料的GWP、CED和CMR的值均随着混凝土重复再生次数的增加而降低,降低幅度从高到低依次为:CMR > GWP > CED;综合考虑混凝土的坍落度,混凝土抗压强度、电通量、GWP、CED和CMR等6个指标,4种混凝土配合比情景中,混凝土总功效系数从高到低依次为:一次再生混凝土 > 二次再生混凝土 > 三次再生混凝土 > 普通混凝土.  相似文献   

10.
碱矿渣水泥基铬渣固化体的性能研究   总被引:11,自引:0,他引:11  
使用碱矿渣水泥基材料对含铬废渣进行了固化研究,并力图使固化体能够用作建材制品。结果表明,用碱矿渣水泥基材固化铬渣是可行的,固化体抗压强度达到了50MPa以上,且具有良好的抗渗性能和较低的六价铬离子浸出率,能够用作建筑材料。  相似文献   

11.
研究了再生砖骨料的取代率对再生骨料GRC的影响及变化规律,并进一步采用正交设计方法,研究了粉煤灰、硅灰及再生混凝土骨料对GRC的影响。结果表明:再生骨料GRC的强度随废混凝土取代率的提高先增长后下降,当废混凝土取代天然砂30%,可达到或超过天然砂GRC的力学性能;当粉煤灰取代水泥10%,同时硅灰取代水泥10%,废混凝土取代天然砂30%时,其抗折、抗压强度值最大。  相似文献   

12.
Contaminated by heavy metals, organics and other compounds, granular wastes such as construction and demolition waste (CDW) and municipal solid waste incinerator (MSWI) bottom ash have negative effects on the environment. On the other hand, stony components in these waste streams have similar physical properties and chemical compositions as natural raw building materials. Therefore, such materials have potential application as secondary raw building material but for recycling to occur in an environmentally sound manner, decontamination using mining separation techniques is essential. In order to remove or reduce contaminants to acceptable levels, the selection of appropriate strategies is important. Based on the information about mining separation techniques, as well as contaminants properties, the general guidelines followed to select treatment techniques and processes are described in this paper.  相似文献   

13.
混凝土是建筑工程和海岸工程中使用量最大、应用范围最广的建筑材料。将矿物掺合料作为辅助胶凝材料加入混凝土中,既能废物利用提高环境效益,还可以提升混凝土的部分性能。为准确评估矿物掺合料混凝土安全性、耐久性和环境友好性,提出了一种矿物掺合料混凝土综合评价方法。基于环境影响生命周期评估(LCA)理论,通过实景数据与资料调研建立了粉煤灰、粒化高炉矿渣粉、煤矸石粉、赤泥、玻璃粉5种矿物掺合料的环境影响清单和矿物掺合料混凝土对于7种环境影响指标的计算方法。采用社会支付意愿法(WTP),以环境保护税、资源税为框架,将不同环境影响指标统一货币化,并结合混凝土的强度和耐久性指标提出矿物掺合料混凝土的性能与环境效益综合评价方法,以期为发展环境友好高性能混凝土提供定量评价依据。  相似文献   

14.
Fibre reinforced polymer (FRP) materials are being increasingly used in several applications, but especially in the construction and transportation industries. The composites industry is now producing a wide range of FRP products that include strengthening strips and sheets, reinforcing bars, structural profiles, sandwich panels, moulded planks and piping. The waste management of FRP materials, in particular those made with thermosetting resins, is a critical issue for the composites industry because these materials cannot be reprocessed. Therefore, most thermosetting FRP waste is presently sent to landfill, in spite of the significant environmental impact caused by disposing of it in this way. Because more and more waste is being produced throughout the life cycle of FRPs, innovative solutions are needed to manage it. This paper first presents a state-of-the-art review of the present alternatives available to manage FRP waste. It then describes an experimental study conducted on the technical feasibility of incorporating the fine waste generated during the manufacturing of glass fibre reinforced polymer (GFRP) composites in concrete mixtures. Tests were carried out to evaluate the fresh-state and hardened-state properties of concrete mixes in which between 0% and 20% of sand was replaced by GFRP fine waste. Although the incorporation of high proportions of GFRP waste was found to worsen concrete performance in terms of both mechanical and durability-related properties, it seems feasible to incorporate low proportions and reuse GFRP fine waste in concrete, particularly in non-structural applications such as architectural concrete or pavement slabs, where good mechanical properties are less important.  相似文献   

15.
本文主要讲述了建筑与建筑拆除废弃物回收的基础工具,包括建筑废弃物管理的基本元素、废弃物材料的重新使用、回收的团队管理、回收培训和管理方案、循环材料的运输几个方面的内容。  相似文献   

16.
采用正交设计方法设计试验,从而配置再生骨料透水性混凝土。以再生骨料透水性混凝土的抗压强度、透水系数、孔隙率为主要考核指标,分别研究了水灰比、骨灰比、砂率、再生骨料粒径等因素及其不同的水平对再生骨料透水性混凝土各性能指标的影响。并对各考核指标的主要影响因素进一步细分,结果表明,再生骨料透水性混凝土的透水系数和孔隙率的主要影响因素是水灰比;抗压强度的主要影响因素是骨灰比。水灰比的变化与透水系数和孔隙率之间呈现相同的规律,都出现先上升后下降的趋势;骨灰比的变化与抗压强度之间呈现线性下降的趋势。当水灰比介于0.37~0.43之间,骨灰比介于4.0~4.5之间时,混凝土拌和物和易性较好,混凝土的强度较高,透水性较好。  相似文献   

17.
Construction utilization of foamed waste glass   总被引:5,自引:0,他引:5  
Foamed waste glass (FWG) material is newly developed for the purpose to utilize the waste glassware and other waste glass. FWG has a multi-porous structure that consists of continuous or discontinuous voids. Hence lightweight but considerable stiffness can be achieved. In the present study, the manufacture and engineering properties of FWG are introduced first. Then, the utilizations of FWG are investigated in laboratory tests and field tests. Some case studies on design and construction work are also reported here. Through these studies we know that the discontinuous void material can be utilized as a lightweight fill material, ground improvement material and lightweight aggregate for concrete. On the other hand, the continuous void material can be used as water holding material for the areenina of around slope and rooftop, and as clarification material for water.  相似文献   

18.
肖衡林  徐谦 《环境工程》2012,(Z2):313-316
随着焚烧技术在垃圾处理方式中普遍采用,焚烧产生的灰渣数量也日益增加。灰渣与飞灰中有毒的重金属及有机物质会污染土壤与地下水,对人类健康造成极大的影响。本文对各类垃圾焚烧灰渣的物理化学性质及重金属浸出特性进行了详细的阐述,介绍了灰渣的毒性分析与控制方法。通过分析可知:为了避免灰渣二次污染应该重点控制铬、镉、铍、铅等重金属和二恶英、呋喃等有机物的污染;处置后的灰渣有害离子浸出能力降低,根据灰渣物理和工程性质,可以成为再生资源充当填充材料和混凝土与沥青路面骨料等。  相似文献   

19.
城市烂尾楼拆除有助于提升城市总体形象,但拆除后的建筑废弃物又会对城市环境造成严重的污染,为此提出一种针对烂尾楼建筑废弃物有效处理及二次利用的方法研究.基于循环经济理论及废弃物破损理论,设计了一种建筑废弃物再生利用工艺方法,利用建筑废弃物再生设备将废弃物破碎后再进行筛分处理,详尽分析了影响废弃物再生的各项工艺因素,提高废弃物再生骨料的性能,实现对烂尾楼建筑废弃物的二次有效利用.结果表明,提出的方法研究性能稳定、可靠、可以降低烂尾楼拆除成本,具有一定的推广价值.  相似文献   

20.
我国城市生活垃圾处理行业发展与驱动力分析   总被引:1,自引:0,他引:1  
我国特许经营制度化后,城市生活垃圾处理行业快速发展.通过对行业政策、经济投入、处理能力建设和处理技术四个方面进行分析,将我国城市生活垃圾处理行业的发展历程划分为五个阶段,并分析了用于固定资产建设的前补贴和用于购买行业服务及资源化产品的后补贴在行业发展历程中的作用,识别出后补贴机制是城市生活垃圾处理行业快速发展的直接驱动力.在我国城市垃圾静脉产业中,除了生活垃圾处理行业,还包括餐厨垃圾和建筑垃圾处理行业,但后两者发展滞后.应利用后补贴制度,针对利用餐厨垃圾生产的生物柴油、甲烷燃气等产品建立购销体系,对利用建筑垃圾资源化产品的建设和生产项目给与价格补贴,以激活产业快速发展.  相似文献   

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