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1.
This paper emphasizes the significant challenges facing the sustainable environment, including managing and handling plastic waste and reducing carbon footprints. To tackle these challenges, it is essential to identify people's awareness levels of waste handling techniques and their pro-environmental behaviors. The study focuses on Guwahati, one of the most important cities in Northeast India, which generates increasing plastic waste daily. The paper aims to identify the factors contributing to the reduction of carbon footprints resulting from plastic waste management activities. The data collected from 1326 respondents was analyzed using factor analysis, and the reliability of the dataset was confirmed using Cronbach's alpha (0.84 for the awareness level of waste management techniques and 0.780 for the prevalent mode of plastic waste management techniques). KMO (0.796), Bartlett's test of sphericity (p < 0.001), and determinant score (0.019) were used to assess the data adequacy and factorability of the dataset, and the results were found to be satisfactory. Principal component analysis, exploratory factor analysis, and varimax orthogonal rotation method were used to identify high-loaded factors by reducing the number of variables. The results showed that two highly loaded components, namely awareness level of waste management techniques (AWMT) and prevalent mode of plastic waste management techniques (PWMT), explained 27.53% and 24.34% of the total variance, respectively, with eigenvalues of 3.35 and 2.88. The regression model confirmed the statistical significance of these factors (p < 0.001) and their relationship with the dependent variable, greenhouse reduction (GHGR). The study proposes that minimizing carbon footprints in the environment can be achieved by focusing on a limited number of controllable factors such as AWMT and PWMT. This study provides valuable insights to the authorities in controlling waste generation and achieving a pollution-free environment.  相似文献   
2.
In most of the world's building material industries, the control of flue gas pollutants mainly focuses on a single pollutant. However, given the large capacity and high contribution of China's building materials industry to global air pollution, the need to develop multi-pollutant emission reduction technology is urgent. Recently, China has focused on reducing the emissions of flue gas pollutants in the building materials industry, established many key research and development projects, and gradually implemented more stringent pollutant emission limits. This project focuses on the most recent advances in flue gas emission control technology in China's building materials industry, including denitration, dust removal, desulfurization, synergistic multi-pollutant emission reduction, and the construction of pilot research and demonstration projects for pollutant removal in several building material industries. On this basis, revised pollutant limits in flue gas emitted in China's building material industry are proposed.  相似文献   
3.
分析了数据管理系统在生态环境领域的应用现状,以及页岩气开发生态环境数据的特性和管理需求,提出了基于地理信息系统和关系型数据库有效集成的数据管理系统框架,实现对页岩气开发区域水环境、土壤环境、环境空气及污染源负荷在时间和空间尺度的分析与评价,指出大数据、物联网技术的运用是系统发展的重要方向.  相似文献   
4.
The inhibition effect of heptafluoropropane (CF3CHFCF3) on methane explosions under different inhibitor concentrations in a closed vessel was studied. A high-speed camera and a pressure sensor were adopted respectively to record flame propagation characteristics and pressure data. Results indicate that the relationship between flame propagation and pressure rising was correlated. As the equivalent ratio (ϕ)≤1, the pressure presented a trend of rising firstly and then decreasing with increasing CF3CHFCF3 concentration, and it was found that there existed a critical concentration for pressure decrease. As ϕ > 1, the pressure exhibited a decreasing trend. Although the pressure appeared to seemingly increase, the moment that the pressure began to rise (trise) and the moment that the maximum explosion overpressure appeared (tPmax) were obviously delayed. The average rate of pressure rise ((dP/dt)ave) was decreased as the concentration of CF3CHFCF3 increased. It indicates that CF3CHFCF3 can effectively reduce the explosion reaction rate. The critical concentration of CF3CHFCF3 for complete inhibition was determined. Meanwhile, the synergy of CF3CHFCF3-inert gas can improve the inhibition effect. Compared with CF3CHFCF3–N2, the synergy of CF3CHFCF3–CO2 presented a better inhibition effect, and the inhibition effect was increased with increasing inert gas concentration. And the mechanisms of physical and chemical effects on explosion inhibition were analyzed.  相似文献   
5.
Chemical industry park plays an important role in optimizing the allocation of resources, but an emergency may make a great deal of personnel casualty and property loss. Many casualties are not the result of accidents but are caused by extreme behavior because of the non-adaptive psychology of the evacuees. Panic is one of the non-adaptive psychological behaviors during an evacuation, which is influenced by a variety of factors. Based on the consideration of the disaster environment and the evolution of crowd emotion, a system dynamics model of panic spread is established by using Anylogic software, and simulation experiments are carried out for different disaster severity, visibility, and groups. The results show that the number of people with severe panic increase when visibility decreases or disaster diffuses. Besides, the appropriate proportion of groups can effectively reduce the cooling time of crowd and ease the fears. However, continue to increase the number of groups has no significant effect on the panic control. This work can provide some reasonable guidance for regional emergency evacuation in chemical park.  相似文献   
6.
为保障某跨燃气管道现浇梁施工安全,建立现浇梁BIM模型进行动态施工模拟,找出影响现浇梁施工的风险因素,从地质条件、外界影响、安全管理3个方面建立了跨燃气管道现浇梁施工风险评价体系;结合“熵”理论和层次分析法综合确定各影响因素权重并对现浇梁施工风险进行模糊综合评价;研究表明:①通过BIM动态模拟,直观全面地识别出施工风险,对现场施工风险超前预报。②通过结合层次分析法与熵理论,对4座桥墩施工风险进行模糊综合评价,左幅23#属于严重Ⅳ,右幅23#属于严重Ⅳ,左幅22#属于中等Ⅲ,右幅22#属于不严重Ⅱ。③根据风险评估结论提出了应对措施和策略,为安全施工明确了方向。  相似文献   
7.
依据石灰窑烟气的特点,提出了一种新型的烟气治理工艺——SDS干法脱硫+布袋除尘脱硝一体化技术;分析了该技术的工艺流程、技术优势和关键系统。工程案例表明,该技术处理效果好、运行成本低,适用于我国石灰窑烟气的治理。  相似文献   
8.
基于活性炭吸附剂存在再生成本高、高温吸附能力差以及在高湿高温下脱附后性能严重下降等问题,研究采用MCM-41材料作为新型烟气脱硫吸附材料,该材料具有表观均匀、比表面积大、耐高温、脱附后能高效利用等优点,该研究设计了一种基于MCM-41材料的烟气脱硫吸附装置。介绍了该烟气脱硫吸附装置的结构、工作原理,并对MCM-41材料和活性炭在烟气中二氧化硫吸附效果进行了对比实验研究。研究结果表明:MCM-41吸附剂脱硫性能优异,相比活性炭吸附剂,脱硫效率提高了4%~8.4%,基于MCM-41材料的烟气脱硫吸附装置结构紧凑、占地面积小、吸附剂更换方便、脱硫效率高,在烟气排放量较小的各类工业企业脱硫系统中具有广泛的应用前景。  相似文献   
9.
为提高油气管道安全风险评估的准确性,以含内表面缺陷管道为研究对象,利用ABAQUS软件线弹性及弹塑性分析不同尺寸缺陷对裂纹萌生特征的影响;采用扩展有限元法,建立管道3点弯曲模型与全尺寸静载物理试验,并非线性拟合裂纹扩展尺寸,研究内表面缺陷处裂纹扩展情况。研究结果表明:内表面缺陷中心处极易萌生裂纹,随着缺陷尺寸的增大,裂纹萌生所需外力在缺陷相对长度为0.08、相对深度为0.4时的增长趋势变化较大,且缺陷深度对裂纹萌生的影响更大;对比数值模拟与全尺寸物理试验,发现在小于70 mm位移载荷或147.25 kN外力下裂纹尺寸快速扩展,之后呈变缓的趋势;非线性拟合裂纹尺寸,得到较为准确的裂纹扩展尺寸的预测结果。  相似文献   
10.
为研究瓦斯对煤体力学特性的影响,设计不同瓦斯压力条件下煤体单轴压缩试验,研究煤样力学参数及变形特征随瓦斯压力的变化趋势,探讨瓦斯对煤体力学性质的影响机制,得出单轴压缩下煤样力学参数,并记录煤样的破坏形态。研究结果表明:随瓦斯压力增大,应力-应变曲线压实阶段增大,弹性阶段缩小,失稳破坏后曲线缓慢下降,抗压强度和弹性模量单调减小,峰值应变单调增大;不含瓦斯煤样受载破坏产生的裂纹较为单一,含瓦斯煤样受载破坏后出现明显主裂纹及多向分叉裂纹,并出现局部煤体脱落现象。  相似文献   
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