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491.
对铁碳处理硝基酚废水的研究   总被引:1,自引:0,他引:1  
铁碳降解水中难降解有机污染物的影响因素、最佳工艺参数及处理效果;初步探讨了氧化降解污染物的作用机理;通过分析污染物降解的中间产物,提出了污染物降解的可能途径.探讨了pH、铁碳用量、温度以及锰矿物的粒径等对处理效果的影响,在最佳的工艺条件下,CODCr的去除率达到95%以上,TOC测定表明:大部分硝基酚被氧化降解为H2O和CO2.对硝基酚的降解途径主要是微电解将对硝基酚还原为对氨基酚,对氨基酚在酸性条件下被软锰矿氧化为H2O和CO2做探索性研究.  相似文献   
492.
Many national exposure programmes have been performed in tropical and subtropical climates during the last 50 years. However, ambitious programmes involving more than a few countries are scarce. In this paper a recently formed network of test sites is described involving 12 test sites in Asia (India, Vietnam, Thailand, Malaysia and China including Hong Kong) and four test sites in Africa (South Africa, Zambia and Zimbabwe). This effort is part of the 2001–2004 Swedish International Development Agency (SIDA) funded Programme on Regional Air Pollution in Developing Countries (RAPIDC). Corrosion attack after one (2002–2003) year of exposure (carbon steel, zinc, copper, limestone and paint coated steel) are presented together with environmental data (SO2, NO2, HNO3, O3, particles, amount and pH of precipitation, temperature and relative humidity) for all the test sites. The obtained corrosion values are substantially higher than expected for limestone, higher than expected for carbon steel and lower than expected for zinc compared to values calculated using the best available dose–response functions.  相似文献   
493.
采用固定床动态吸附实验,用改性活性碳纤维(ACF)吸附去除CO2原料气中的H2S。通过改变改性剂种类、反应温度和原料气中CO2浓度,找出用改性ACF去除CO2原料气中H2S的规律。实验结果表明:常温下,可用NaON改性的ACF来消除CO2的酸性对去除H2S的不利影响;随着反应温度的升高,CO2与ACF形成的C(O*)中间产物增多,CO2的存在有利于改性ACF去除H2S;而当反应温度过高时,CO2与ACF形成的C(O*)中间产物发生分解,导致ACF碳化,不利于H2S的吸附去除。  相似文献   
494.
本研究建立了一种用空气-乙炔火焰原子吸收分光光度法测定浸渍活性炭中银含量的分析方法,对酸介质浓度、共存元素的干扰进行了探讨,在0—1.0ml沪范围内,银含量与吸光度呈线性关系,相关系数为0.9999。对09型浸渍活性炭标准物质进行测定,测定结果的相对标准偏差为0.191%(n=10),加标回收率为97.5%-101.4%。  相似文献   
495.
利用纳米材料TiO2对室内甲醛进行了治理研究。测定了TiO2在不同吸附剂量、吸附时间时的吸附效率、穿透时间和吸附容量。将TiO2、活性炭对甲醛的吸附效果进行了对比,结果表明,纳米材料TiO2对甲醛的吸附率比相同质量的活性炭高10%-15%;当吸附时间为13h时,TiO2对甲醛的吸附量比活性炭高28%;穿透时间比活性炭长2h。利用SEM图谱进行了机理分析。  相似文献   
496.
Abstract: Dissolved inorganic nitrogen (DIN) retention‐transport through a headwater catchment was synthesized from studies encompassing four distinct hydrologic zones of the Shingobee River Headwaters near the origin of the Mississippi River. The hydrologic zones included: (1) hillslope ground water (ridge to bankside riparian); (2) alluvial riparian ground water; (3) ground water discharged through subchannel sediments (hyporheic zone); and (4) channel surface water. During subsurface hillslope transport through Zone 1, DIN, primarily nitrate, decreased from ~3 mg‐N/l to <0.1 mg‐N/l. Ambient seasonal nitrate:chloride ratios in hillslope flow paths indicated both dilution and biotic processing caused nitrate loss. Biologically available organic carbon controlled biotic nitrate retention during hillslope transport. In the alluvial riparian zone (Zone 2) biologically available organic carbon controlled nitrate depletion although processing of both ambient and amended nitrate was faster during the summer than winter. In the hyporheic zone (Zone 3) and stream surface water (Zone 4) DIN retention was primarily controlled by temperature. Perfusion core studies using hyporheic sediment indicated sufficient organic carbon in bed sediments to retain ground water DIN via coupled nitrification‐denitrification. Numerical simulations of seasonal hyporheic sediment nitrification‐denitrification rates from perfusion cores adequately predicted surface water ammonium but not nitrate when compared to 5 years of monthly field data (1989‐93). Mass balance studies in stream surface water indicated proportionally higher summer than winter N retention. Watershed DIN retention was effective during summer under the current land use of intermittently grazed pasture. However, more intensive land use such as row crop agriculture would decrease nitrate retention efficiency and increase loads to surface water. Understanding DIN retention capacity throughout the system, including special channel features such as sloughs, wetlands and floodplains that provide surface water‐ground water connectivity, will be required to develop effective nitrate management strategies.  相似文献   
497.
Voluntary markets transacted over $66 million USD of forest carbon offsets in 2016, according to Forest Trends, and over 99% of those offset projects were audited to a standard, primarily the Verified Carbon Standard (VCS). We provide a table characterizing all 70 validated and verified forest carbon projects employing the VCS version 3.0 currently-in-use (December 2011–July 2017). We also examine two separate aspects of the audit process––impact and thoroughness––to assess the effectiveness of the costly audit process, which can consume up to one-third of offset revenue. Audit impact we measure in terms of reduction in the number of offsets from ex ante estimated to ex post approved. Audit thoroughness we measure both directly in terms of the number of auditor hours worked per project and also indirectly in terms of the total number of Corrective Action Requests (CARs)/Non-Conformity Reports (NCRs) auditors prescribe. In terms of impact, we find that Afforestation/Reforestation/Restoration (A/R/R) and Improved Forest Management (IFM) projects, though only constituting 5% of total verified offsets, demonstrate significant (p < = 0.05) reductions from ex ante estimated to ex post approved offsets, likely because auditors can easily scrutinize carbon stocks/emission factors for the commercial tree species involved in these project types. In terms of thoroughness, we find that higher ex ante estimates correlate with more total auditor hours worked and total CARs/NCRs prescribed for three of four project activity types, likely because auditors perceive larger ex ante projects as higher risk. We conclude with recommendations for the VCS to empower auditors to scrutinize carbon stocks/emissions factors from avoided deforestation projects, and also to continue to flag high ex ante projects as higher risk.  相似文献   
498.
The Model of Humus Balance was used to estimate the influence of climate effects and changing agricultural practices on carbon (C) levels in soddy–podzolic soils in the Russian Federation for the years 2000–2050. The model was linked with a spatial database containing soil, climate and farming management layers for identification of spatial change of C sequestration potential. Analysis of relationships between C, soil texture and climate indicated that compared with a business-as-usual scenario, adaptation measures could increase the number of polygons storing soil organic carbon (SOC) by 2010–2020. The rate of possible C loss is sensitive to the different climate scenarios, with a maximum potential for SOC accumulation expected in 2030–2040, thereafter decreasing to 2050. The effect is most pronounced for the arid part of the study area under the emission scenario with the highest rate of increase in atmospheric CO2 concentration, supporting findings from the dynamic SOC model, RothC. C sequestration during the study period was permanent for clay and clay loam soils with a C content of more than 2%, suggesting that C sequestration should be focused on highly fertile, fine-textured soils. We also show that spatial heterogeneity of soil texture can be a source of uncertainty for estimates of SOC dynamics at the regional scale. Figures in color are available at  相似文献   
499.
针对各地公路碳排放的空间差异与关联特征,制定合理的低碳策略,实现各地协同碳减排,是行业可持续发展的热点问题。以江西省为研究对象,采用空间自相关、社会网络分析和引力模型等分析11地市公路行业碳排放的空间差异与关联,识别社会网络的结构特征及其演变趋势,明确不同地市在网络中的地位和作用,结果显示:(1)公路货运是公路行业碳排放的最主要来源;(2)江西省公路行业碳排放整体上呈现空间随机分布,不存在全局的空间聚集性,且局部空间聚集特征不断变化;(3)公路行业碳排放网络逐渐从南昌、新余双中心结构演变为南昌为主的单中心结构,网络的协同作用整体呈减弱趋势,核心地市对外围地市的影响力和带动作用不足。  相似文献   
500.
控制以CO2为主的温室气体排放,“力争2030年前实现碳达峰,争取2060年前实现碳中和”是我国近年来面临的重大任务。碳排放研究是实现“双碳”目标的基础和前提,从碳排放测算、碳排放影响因素分析、行业碳排放研究三个方面对我国碳排放研究现状进行梳理,对近年来研究的重点方向、主要成果和目前存在的主要问题进行分析,并结合我国的“双碳”目标提出现阶段我国“以完善政策标准与加大政府扶持为基础,以产业结构调整与新兴产业发展、能源结构调整与新能源技术发展为核心,以探索CCUS(碳捕集、利用与封存)技术和增加碳汇及对居民低碳消费倾向的引导和培养为导向”的碳减排路径。  相似文献   
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