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1.
The reaction of HCHO with Beijing winter's real ambient particulate matter(PM) inside a 3.3 m~3 Teflon Chamber was conducted in this study. NO_2, O_3 and H_2O gases were removed from the ambient aerosol before entering into the chamber. The decays of HCHO were monitored(acetylacetone spectrophotometry method) during the reactions at different PM number concentrations(N_a) and relative humidities(RHs), and the formed particulate formate was detected by IC and XPS techniques. The results showed that when RH was10%–15%, the decay rate of HCHO in the chamber was higher with the existence of PM from relatively clean days(with number concentration(N_a) 200,000 particle/L, 0.35–22.5 μm)compared to dirty days(N_a 200,000 particle/L, 0.35–22.5 μm). When RH increased to 30%–45%, PM can hardly have significant influences on the decay of HCHO. The formations of formate on the reacted PM were consistent with the HCHO decay rates at different ambient PM N_aand RH conditions. This is a first study related to the "real" ambient PM reacted with HCHO and suggested that in the clean and low RH days, PM could be an effective medium for the conversion of HCHO to formate.  相似文献   
2.
以聚丙烯腈(PAN)和g-C_3N_4为原料,采用超声波辅助分散的溶液浸渍法及煅烧法制备了具有共轭结构的预氧化聚丙烯腈/g-C_3N_4复合光催化剂(CPAN/g-C_3N_4),采用XRD、SEM、FTIR、UV-Vis DRS、EIS等技术对光催化剂进行了表征,考察了CPAN/g-C_3N_4对罗丹明B(Rh B)的可见光催化降解性能。结果表明:CPAN与g-C_3N_4具有良好的协同作用,使g-C_3N_4片状结构堆叠体颗粒显著减小,明显增强了光催化剂在全部光谱范围内的光吸收,有效提高了光生电子-空穴分离效率;在PAN与g-C_3N_4质量比为1∶200、煅烧温度250 ℃、煅烧时间1 h条件下所制备的CPAN/g-C_3N_4光催化活性最高,且具有良好的光催化活性稳定性。超氧自由基和光生空穴为CPAN/g-C_3N_4复合光催化剂光降解罗丹明B的主要活性物种。  相似文献   
3.

Plastic pollution is a major environmental issue worldwide, calling for advanced methods to recycle waste plastics in the context of the circular economy. Here we review methods and strategies to convert waste plastics into value-added carbon materials, with focus on sources, properties, pretreatment of waste plastics, and on preparation of carbon materials. Pretreatment techniques include mechanical crushing, plastic stabilization and electrospinning. Carbon materials such as carbon nanotubes, graphene, carbon nanosheets, carbon spheres and porous carbon are prepared by oxygen-limited carbonization, catalytic carbonization, the template-based method, and pressure carbonization. We emphasize the conversion of polyethene terephthalate, polyethylene, polypropylene, polystyrene, halogenated plastics, polyurethane and mixed plastics.

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4.

Microbial communities are important for high composting efficiency and good quality composts. This study was conducted to compare the changes of physicochemical and bacterial characteristics in composting from different raw materials, including chicken manure (CM), duck manure (DM), sheep manure (SM), food waste (FW), and vegetable waste (VW). The role and interactions of core bacteria and their contribution to maturity in diverse composts were analyzed by advanced bioinformatics methods combined sequencing with co-occurrence network and structural equation modeling (SEM). Results indicated that there were obviously different bacterial composition and diversity in composting from diverse sources. FW had a low pH and different physiochemical characteristics compared to other composts but they all achieved similar maturity products. Redundancy analysis suggested total organic carbon, phosphorus, and temperature governed the composition of microbial species but key factors were different in diverse composts. Network analysis showed completely different interactions of core bacterial community from diverse composts but Thermobifida was the ubiquitous core bacteria in composting bacterial network. Sphaerobacter and Lactobacillus as core genus were presented in the starting mesophilic and thermophilic phases of composting from manure (CM, DM, SM) and municipal solid waste (FW, VW), respectively. SEM indicated core bacteria had the positive, direct, and the biggest (>?80%) effects on composting maturity. Therefore, this study presents theoretical basis to identify and enhance the core bacteria for improving full-scale composting efficiency facing more and more organic wastes.

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5.
水资源的过度开发导致了水短缺和水生态退化,因此,提供适宜的生态流量对维护河流健康具有重要意义.以往研究聚焦断面尺度的生态流量及其保障程度,尚未有效剥离上游子流域的影响.本研究以松辽流域为研究对象,运用VMF法、Tessmann-adapted法和Smakhtin-adapted法3种水文学法核算二级水资源区生态流量及1...  相似文献   
6.
掌握土壤污染物的空间变异特征及其影响因素是开展土壤污染防治的前提.基于189个表层(0~20 cm)土壤样品,运用经典统计学和地统计学方法分析了成都平原核心区土壤中w(As)的空间分布特征,并探讨了成土母质、水系和土地利用方式对土壤中w(As)的影响.结果表明:①研究区土壤中w(As)在3.74~35.32 mg/kg之间,平均值为14.64 mg/kg,其中超过GB 15618-2018《土壤环境质量农用地土壤污染风险管控标准(试行)》风险筛查值的采样点仅占总采样点的7.53%.②地累积指数分析结果表明,研究区土壤As处于无污染至轻度污染状态.③研究区土壤中w(As)总体呈西高东低的趋势,高值主要分布在都江堰市的南部、崇州市的东北部以及邛崃市与新津县接壤处.土壤As的块金系数为26.60%,属于中等程度变异,受结构性因素和随机性因素的共同影响.④由于人类活动的增强,成土母质对土壤中w(As)的影响已经不显著.距水系越近,土壤中w(As)越高.土地利用方式对土壤中w(As)空间变异的影响程度最大,不同土地利用方式下土壤中w(As)差异显著,表现为园林地>农林地>水稻-小麦轮作>水稻-油菜轮作>水稻-蔬菜轮作.研究显示,成都平原核心区土壤中w(As)总体偏低,高值区主要分布在都江堰市的南部、崇州市的东北部和邛崃市与新津县接壤一带;土地利用方式对土壤中As空间变异的影响超过水系和成土母质.   相似文献   
7.
Environmental Science and Pollution Research - Determining the effect of ridge-furrow cultivation mode on 13C carbon isotope discrimination, photosynthetic capacity, and leaf gas exchange...  相似文献   
8.
以西蓝花为对象,研究了露地菜田不同施肥方式下土壤氮转化酶、氮转化功能基因及氮吸收量的差异,监测了西蓝花生育期内不同时期0~100 cm 土壤硝态氮含量动态变化.结果表明:①施氮处理(CF、CU80%和CU60%)土壤脲酶活性是缺氮处理(PK)的1.78~3.11倍,差异显著(p<0.05),并且其AOA、AOB、nir...  相似文献   
9.
以乙二胺和抗坏血酸为原料,通过一步水热法制备了水溶性的氮掺杂碳量子点(N-CQDs).研究了N-CQDs的形貌特征、光学性能和应用分析.表征结果说明,N-CQDs形态为均匀分散的球形,有明显的晶格条纹,抗光漂白性能良好,表面富有含氧官能团,具有良好的水溶性.此外发现N-CQDs还具有优良的荧光性能和荧光稳定性,量子产率可以高达12.29%.分析得出,Hg2+对N-CQDs在1.0—120μmol·L-1范围内有一定的猝灭效应,可作为Hg2+的荧光探针,检出限达230 nmol·L-1.  相似文献   
10.
随着城市化的发展,城市降尘污染日益得到人们的关注。本文从城市大气降尘概念入手,阐述了城市降尘的理化特征,重点探讨城市大气降尘污染研究现状和大气降尘重金属污染来源示踪研究,以期为大气环境污染的有效整治和改善城市生态环境的决策与管理提供科学参考依据。  相似文献   
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