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Call for Papers from Journal of Future Foods
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《食品科学》 EI CAS 北大核心 2025年第2期I0015-I0015,共1页
Journal of Future Foods(ISSN 2772-5669.Owner:Beijing Academy of Food Sciences.Production and Hosting:Elsevier B.V.on behalf of KeAi Communications Co.,Ltd.)is an international,peer-reviewed open access journal belongi... Journal of Future Foods(ISSN 2772-5669.Owner:Beijing Academy of Food Sciences.Production and Hosting:Elsevier B.V.on behalf of KeAi Communications Co.,Ltd.)is an international,peer-reviewed open access journal belonging to the discipline of food science and technology.The aim of the journal is to report latest research results of high-tech in food science.We welcome submissions that drive the field of food science towards whole food nutrition,intelligence and high technology. 展开更多
关键词 paperS technology. JOURNAL
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Call for Papers from Journal of Future Foods
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《食品科学》 EI CAS 北大核心 2025年第1期I0005-I0005,共1页
Journal of Future Foods(ISSN 2772-5669.Owner:Beijing Academy of Food Sciences.Production and Hosting:Elsevier B.V.on behalf of KeAi Communications Co.,Ltd.)is an international,peer-reviewed open access journal belongi... Journal of Future Foods(ISSN 2772-5669.Owner:Beijing Academy of Food Sciences.Production and Hosting:Elsevier B.V.on behalf of KeAi Communications Co.,Ltd.)is an international,peer-reviewed open access journal belonging to the discipline of food science and technology.The aim of the journal is to report latest research results of high-tech in food science.We welcome submissions that drive the field of food science towards whole food nutrition,intelligence and high technology. 展开更多
关键词 paperS technology. JOURNAL
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The ways to prevent pollution of the pulp and paper industry in China
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作者 Yan HongbangNational Environmental Protection Agency, No. 115, Xizhimennei Nanxiaojie, Beijing 100035, China 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 1992年第1期117-122,共6页
Water pollution from the pulp and paper industry is one of the most serious environment problems in China. In order to prevent and treat pollution of the pulp and paper industry, the following works have been done in ... Water pollution from the pulp and paper industry is one of the most serious environment problems in China. In order to prevent and treat pollution of the pulp and paper industry, the following works have been done in recent years: 1. Making necessary policies, measures and regulations; 2. Making overall planning and rational layout; 3. Relying mainly on internal treatment developing external treatment as supplement; 4. Improving the technology of treating wastewater of the pulp and paper industry. 展开更多
关键词 water pollution pulp industry paper industry.
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Remediation of Pulp and Paper Industry Effluent Using Electrocoagulation Process 被引量:1
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作者 Dushyant Kumar Chhaya Sharma 《Journal of Water Resource and Protection》 2019年第3期296-310,共15页
Electrocoagulation of pulp and paper industry effluent with SS-304 electrode has been carried out under varying process variable such as pH, current density, time and dose of electrolyte to find out the optimum condit... Electrocoagulation of pulp and paper industry effluent with SS-304 electrode has been carried out under varying process variable such as pH, current density, time and dose of electrolyte to find out the optimum conditions. Maximum reduction efficiency of Chemical Oxygen Demand (COD) 82% and color more than 99% from pulp and paper industry wastewater at the following conditions pH = 7, current density = 24.80 mA/cm2 time = 40 min and dose of electrolytes = 1.0 g/L. Moreover, effects of electrolytes dosage on electricity consumption were observed and found to be that NaCl is better in comparison of Na2SO4 in respect of lower down the electricity consumption. But application of NaCl causes the formation of hazardous compounds as secondary pollutants within treated water. Therefore, Na2SO4 could be a potent replacement of NaCl to enhance the conductivity of paper industry effluent treated by EC process. The treated water has been compared with standard of Central Pollution control board (CPCB) and World Health organization, and found to be suitable for the reuse in irrigation. 展开更多
关键词 PULP paper industry ELECTROCOAGULATION Treatment Wastewater REUSE Chemical Oxygen DEMAND Color
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Ecofriendly Remediation of Pulp and Paper Industry Wastewater by Electrocoagulation and Its Application in Agriculture 被引量:1
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作者 Dushyant Kumar Vivek Kumar Gaurav Chhaya Sharma 《American Journal of Plant Sciences》 2018年第12期2462-2479,共18页
In the present study pulp and paper industry effluent was treated with the help of aluminum electrode using electrocoagulation (EC) process with feasible sludge management. The influences of pH, time, current density ... In the present study pulp and paper industry effluent was treated with the help of aluminum electrode using electrocoagulation (EC) process with feasible sludge management. The influences of pH, time, current density and electrolytes dose were investigated and optimum conditions were established to reduce the maximum amount of Chemical Oxygen Demand (COD) and color. At optimum conditions 70% of COD and 98% of color were removed. Additionally, the behavior of electrolytes (NaCl and Na2SO4) was determined;it has shown that Na2SO4 results in the generation of less secondary pollutants than that NaCl and thereby could be used as better replacement in paper industries for electrocoagulation mediated treatment of wastewater. The residual amount of operational parameters in EC treated water was compared to the World Health Organization (WHO) and Central Pollution Control Board (CPCB) of India. It was found to be safe for utilization in irrigation. Furthermore, sludge produced during the EC process has been analyzed for physicochemical characteristics. To understand the physical and elemental phases of sludge, the analytical technique such as field emission electron microscope coupled with energy dispersive spectroscopy has been used to find out the possible management alternative. 展开更多
关键词 PULP and paper Wastewater ELECTROCOAGULATION REUSE Irrigation Sustainable SLUDGE Management
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2019 Annual Report of China's Paper Industry 被引量:1
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作者 China Paper Association 《Paper And Biomaterials》 2020年第3期70-80,共11页
According to the 2019 annual report of China's Paper Industry by China Paper Association(CPA),in 2019,there were about 2700 paper&board manufacturers in China's Mainland.The total production of paper&b... According to the 2019 annual report of China's Paper Industry by China Paper Association(CPA),in 2019,there were about 2700 paper&board manufacturers in China's Mainland.The total production of paper&board was 107.65 million tons,increased by 3.16%and the total consumption was 107.04 million tons,increased by 2.54%compared with 2018,respectively,paper&board per capita consumption was 75 kg(counted in 1.4 billion people).This report includes a rather elaborate analysis of the China's paper industry and is provided for the readers'reference. 展开更多
关键词 annual report China's paper industry PRODUCTION CONSUMPTION
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Status, Prospects & Perspectives of Indian Paper Industry 被引量:2
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作者 Rakesh Kumar Jain Vikas Kumar 《Paper And Biomaterials》 2019年第1期57-64,共8页
Indian paper industry has been showing a positive demand growth unlike Europe and USA,despite couple of issues being confronted by the paper industry such as availability of good quality raw material,scale of operatio... Indian paper industry has been showing a positive demand growth unlike Europe and USA,despite couple of issues being confronted by the paper industry such as availability of good quality raw material,scale of operation,cost reduction and environment.In view of the increasing competition among the domestic and the global players,sustainability,green production gaining significance,there is a growing need to upgrade,develop and adopt appropriate advanced technologies tailer made to the requirement of Indian paper industry.In light of above,UNIDO implemented a project supported by DIPP,Govt.of India aimed towards capacity building of the Nodel Research Institute(CPPRI),Indian paper industry’s associations and Indian paper industry.The present article highlights key findings of various activities carried out under the project such as diagnostic assessment of the paper industry,demonstration of identified technologies,dissemination of the findings among the industries and twinning with the international institutions having relevant expertise and training. 展开更多
关键词 INDIAN paper industry RAW material scale of operation environment
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Enzymatic Method for Rapid Determination of Oxalic Acid in Bleaching Filtrates from the Pulp and Paper Industry
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作者 洪枫 SJ(O|¨)DE Anders +1 位作者 NILVEBRANT Nils-Olof J(O|¨)NSSON Leif J 《Journal of Donghua University(English Edition)》 EI CAS 2005年第5期64-68,共5页
Bleaching with oxygen-containing agents and recirculation of process streams in the pulp and paper industry has increased the accumulation of oxalic acid and danger for precipitation of calcium oxalate encrusts, scali... Bleaching with oxygen-containing agents and recirculation of process streams in the pulp and paper industry has increased the accumulation of oxalic acid and danger for precipitation of calcium oxalate encrusts, scaling. Analysis and control of oxalic acid in bleaching filtrates is therefore becoming increasingly important in the pulp and paper industry. Chromatographic methods, such as IC and HPLC, are generally more time-consuming but are valuable as standard methods for determination of oxalic acid. However, the instrumentation needed is expensive and stationary. In this study, an enzymatic method based on oxalate oxidase and peroxidase was developed to determine oxalic acid in authentic bleaching filtrates using a spectrophotometer. The results showed that bleaching filtrates contain some compounds interfering with the enzymatic method. Pretreatment of the samples with activated charcoal was a successful approach for decreasing problems with interference. By using dilution followed by charcoal treatment, the results obtained from five bleaching filtrates with the colorimetric method correlated very well with those obtained using IC. This study offers a selective, fast and mobile analysis method to determine oxalic acid in bleaching fiRrates from the pulp and paper industry, The convenient enzyme-based method improves the possibilities for control of critical oxalic acid concentrations in closed-loop bleaching streams. 展开更多
关键词 oxalic acid oxalate oxidase colorimetric method bleaching filtrates activated charcoal the pulp and paper industry
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Starch-based Surface-sizing Agents in Paper Industry:An Overview 被引量:3
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作者 Qiulin Wei Hao Zheng +3 位作者 Mengni Zhu Xiao Han Yao Li Jinghui Zhou 《Paper And Biomaterials》 CAS 2021年第4期54-61,共8页
Natural starch is an abundant and inexpensive polysaccharide biopolymer that is widely used as a surface-sizing agent in the paper industry.The surface sizing of paper improves its water and abrasion resistance,as wel... Natural starch is an abundant and inexpensive polysaccharide biopolymer that is widely used as a surface-sizing agent in the paper industry.The surface sizing of paper improves its water and abrasion resistance,as well as its physical strength and printing adaptability.However,natural starch presents some disadvantages,such as high viscosity,poor fluidity,poor filmforming properties,and easy coagulation.Therefore,starch is usually modified and blended with various components to achieve better sizing performance.This article reviews approaches for the surface sizing of paper and modification of starch using enzymes or chemical methods,such as oxidation,cationization,and graft copolymerization.This article also discusses the application of starch-based multiphase systems(obtained by blending starch with various components)as surface-sizing agents. 展开更多
关键词 STARCH surface sizing of paper modified starch starch-based multiphase system
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Biological Degradation of Some Organic Compounds Enrolled in Paper Industry—A Pollution Prevention Approach
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作者 RIFAATABDELWAHAAB 《Biomedical and Environmental Sciences》 SCIE CAS CSCD 2000年第1期56-68,共13页
Evaluation of the elimination and the “ultimate” biodegradation by aerobic microorganisms of some organic compounds commonly used in paper manufacturing technology was investigated. Biodegradation lines of nine orga... Evaluation of the elimination and the “ultimate” biodegradation by aerobic microorganisms of some organic compounds commonly used in paper manufacturing technology was investigated. Biodegradation lines of nine organic compounds were determined as percentage removal of chemical oxygen demand (COD) over 7 days incubation. The results of the biodegradability test clearly revealed that some of the organic compounds under investigation are highly biodegradable, while others rank from fairly to even non biodegradable. Significant biodegradation results were recorded for anti coating ester (95.0%), basoplast 200D (85.3%) and basoplast PR 8050(87.6%). A bleaching agent (formamidin sulfinic acid), ukanol BSA and solidurit KM demonstrate moderate biodegradation results of 62.1%, 76.2% and 69.8%, respectively. Poor biodegradation results for Hedifix M/35 (12.7%), basazol orange (34.9%) and basazol brown (29.0%) were recorded. Accordingly, appropriate precaution should be taken into consideration when using these compounds for industrial applications. 展开更多
关键词 Bacteria Aerobic BIODEGRADATION Environmental Pollutants industry Organic Chemicals OXYGEN paper Refuse Disposal
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Mutagenicity of Wastewater Extracts from Pulp and Paper Industry
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作者 Samira Umme Aiman Abdul Malik 《Journal of Environmental Protection》 2017年第2期206-213,共8页
Wastewater samples were collected from pulp and paper mill located in Kashipur (India) and were extracted using dichloromethane (DCM), chloroform and hexane solvents (all were HPLC-grade). The extracts were assayed fo... Wastewater samples were collected from pulp and paper mill located in Kashipur (India) and were extracted using dichloromethane (DCM), chloroform and hexane solvents (all were HPLC-grade). The extracts were assayed for their mutagenic potential using Ames Salmonella mutagenicity assay. TA98 strain was found to be the most responsive, in terms of induction factor (Mi) and slope (m) of the initial linear dose-response curve as determined by linear regression analysis up to the increasing doses indicating the presence of frame shift mutagens in the test samples. Mutagenicity of different extracts is arranged as follows: dichloromethane extracted water samples > hexane extracted water samples > chloroform extracted water samples. Hexane extract exhibited maximum mutagenic index of 13.0 and induction factor (Mi) 2.48 with TA98. The order of responsiveness based on the mutagenic index and induction factor for the test samples was in the following order: TA98 > TA97a > TA100 > TA102 > TA104. Our findings suggest that TA97a, TA98, TA100, TA102, TA104 were sensitive towards the wastewater extracts and showed considerable mutagenicity. 展开更多
关键词 MUTAGENICITY PULP and paper industry WASTEWATER EXTRACTS
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2021 Annual Report of China’s Paper Industry
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作者 China Paper Association 《Paper And Biomaterials》 CAS 2022年第4期44-54,共11页
According to statistics,the total production of pulp,paper&board,and paper products was 280.21 million tons in 2021,increased by 9.89%compared with 2020.In which,the production of paper&board was 121.05 millio... According to statistics,the total production of pulp,paper&board,and paper products was 280.21 million tons in 2021,increased by 9.89%compared with 2020.In which,the production of paper&board was 121.05 million tons,increased by 7.50%;the production of pulp was 81.77 million tons,increased by 10.83%;the production of paper products was 77.39 million tons,increased by 12.81%.The industry's operating income was RMB 1.50 trillion,increased by 14.74%;the total profit was RMB 88.5 billion,increased by 6.92%compared with 2020. 展开更多
关键词 annual report China's paper industry PRODUCTION CONSUMPTION
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Grim Situation and Way Out for China's Paper Industry
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作者 Ding Yi 《China's Foreign Trade》 1996年第2期20-20,共1页
Although 1995 will see anincrease of 10 percent in China’spaper output,the gap betweentotal demand and total supplyis getting wider,along with thesharp growth in the demandfor paper on the domesticmarket.As a result,... Although 1995 will see anincrease of 10 percent in China’spaper output,the gap betweentotal demand and total supplyis getting wider,along with thesharp growth in the demandfor paper on the domesticmarket.As a result,largequantities of paper have to beimported to offset the shortsupply.So,the price of paperon the domestic market remainshigh. 展开更多
关键词 WILL Grim Situation and Way Out for China’s paper industry
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Research on Carbon Peak and Carbon Neutrality Technological Pathways in the Chinese Papermaking Industry
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作者 Zaifeng Zhou Fuxiang Wei 《Paper And Biomaterials》 CAS 2023年第4期69-79,共11页
Against the backdrop of the dual carbon goals,the papermaking industry in China faces significant pressure to reduce emissions and lower carbon intensity.Based on historical data of energy consumption in the pulp and ... Against the backdrop of the dual carbon goals,the papermaking industry in China faces significant pressure to reduce emissions and lower carbon intensity.Based on historical data of energy consumption in the pulp and paper industry in China from 2000 to 2020,this study analyzed the current status of paper production and energy consumption in China.Two methods were employed to predict the growth trend of paper production in China,and three carbon dioxide emission accounting methods were compared.The study used an accounting method based on the industry’s overall energy consumption and predicted the carbon dioxide(CO_(2))emissions of the Chinese papermaking industry from 2021 to 2060 under three scenarios.The study identified the timing for achieving carbon peak and proposed the measures for carbon neutrality.The results indicated that:(1)the CO_(2)emissions of the Chinese papermaking industry in 2020 were 111.98 million tons.(2)Under low-demand,high-demand,and baseline scenarios,the papermaking industry is expected to achieve carbon peak during the“14th Five-Year Plan”period.(3)In 2060,under the three scenarios,CO_(2)emissions from the papermaking industry will decrease by 11%-31%compared to the baseline year.However,there will still be emissions of 72-93 million tons,requiring reductions in fossil energy consumption at the source,increasing forestry carbon sequestration and utilization of Carbon Capture,Utilization and Storage(CCUS)technology,and taking measures such as carbon trading to achieve carbon neutrality. 展开更多
关键词 pulp and paper industry carbon dioxide emissions scenario analysis and prediction carbon peak and carbon neutrality decarbonization pathway
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Energy Conservation Opportunities in Pulp &Paper Industry
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作者 Ashok Kumar Pandey Ravi Prakash 《Open Journal of Energy Efficiency》 2018年第4期89-99,共11页
Industrial sector is the largest user of energy in India and in many parts of the world. The pulp and paper industry accounted for 6% of total global industrial energy consumption, being the fourth largest energy cons... Industrial sector is the largest user of energy in India and in many parts of the world. The pulp and paper industry accounted for 6% of total global industrial energy consumption, being the fourth largest energy consumer worldwide. For India, energy audit of a paper carton manufacturing unit was earlier reported with the following results. The specific electrical and thermal energy consumption was estimated as 91.85 kWh/ton and 1619 MJ/ton paper respectively. Annual energy saving potential was found to be 5.9% of the total annual energy consumption. With a view to identifying energy conservation and CO2 mitigation opportunities in writing, tissue, and craft paper production, this article presents energy auditing of a paper industry (Orient Paper Mills) in Amlai, Shahdol, Madhya Pradesh, India. The specific energy consumption of the typical paper industry in India was evaluated as 34.3 GJ per ton paper and specific CO2 emissions as 3.4 tons CO2 per ton paper. Some energy conservation opportunities for this industry were identified with significant energy saving (nearly 3.5%) and money saving potential with payback periods not exceeding 2 years in general. 展开更多
关键词 ENERGY BENCHMARKING PULP & paper industry ENERGY CONSERVATION Carbon Emissions
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Adhesives for the Paper Packaging Industry: An Overview
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作者 Ravindra Vilas Indubai Gadhave Chaitali Ravindra Gadhave 《Open Journal of Polymer Chemistry》 CAS 2022年第2期55-79,共25页
Today, packaging plays a crucial role in maintaining the quality of products during uses by providing safeguarding against physical, chemical and environmental challenges. While polymer-based packaging material has be... Today, packaging plays a crucial role in maintaining the quality of products during uses by providing safeguarding against physical, chemical and environmental challenges. While polymer-based packaging material has been very extensively used, there has been a recent move to paper-based packaging products because of their economic and environmentally-friendly nature. Currently, Paper and paper-based board materials have been used as packaging material for food products, and e-commerce business. Adhesives in packaging industries are critical to the structure of most paper and paper board packaging, whether applied during the process of conversion and on the packaging line. From a production point of view, adhesive choice can significantly affect process line efficiency and production performance. Adhesive types used in paper industries are water-based adhesives both synthetic and bio-polymer based (starch, cellulose, protein and itaconic acid), Solvent-based adhesives (polyurethane and acrylic-based) and 100% solids adhesives like heat sealing adhesive and hot melts. More recently, water-based heat-expandable adhesive having thermally insulative and cushion-like properties has been provided for use in protective packages and wrap. Here, we aim to present an overview of the research trend of adhesives in the paper packaging industry. The overview summarizes the different adhesives for paper packaging industries. 展开更多
关键词 paper PACKAGING Bio-Based ADHESIVE EXPANDABLE
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Industrial Sustainability Index and Its Possible Improvement for Paper Industry
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作者 Ashok Kumar Pandey Ravi Prakash 《Open Journal of Energy Efficiency》 2018年第4期118-128,共11页
This paper proposes a new index for assessing sustainability of the industrial sector i.e. the Industrial Sustainability Index (ISI) and demonstrates its utility by applying it to an energy intensive industry. The pro... This paper proposes a new index for assessing sustainability of the industrial sector i.e. the Industrial Sustainability Index (ISI) and demonstrates its utility by applying it to an energy intensive industry. The proposed index incorporates all the three major dimensions of sustainability viz. economic, environmental, and social. It represents the socio-economic benefit of an industry per unit of its carbon emissions. The specific energy consumption or energy intensity (with commensurate carbon emissions), which is usually reported as a measure of environmental impact of various industries, does not include the social and economic parameters. The proposed ISI also overcomes the difficulties in assessing specific energy consumption such as allocation in case of multiple products and its variability with the type and scale of production. To illustrate, the proposed index has been evaluated for a typical paper industry in India. Further, opportunities for its improvement by fuel substitution and repowering through combined cycle power generation have been examined. With existing ISI of 16 units to an improved ISI of 78 units, approximately five times improvement in ISI was observed, indicating a potential for significant improvement in industrial sustainability through such measures. 展开更多
关键词 industry SUSTAINABILITY CO2 Emissions INDUSTRIAL SUSTAINABILITY Index SOCIO-ECONOMIC BENEFIT
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Significant contributions of the petroleum industry to volatile organic compounds and ozone pollution:Insights from year-long observations in the Yellow River Delta 被引量:1
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作者 Jinghao Tang Hengqing Shen +7 位作者 Hong Li Yuanyuan Ji Xuelian Zhong Min Zhao Yuhong Liu Mingzhi Guo Fanyi Shang Likun Xue 《Atmospheric and Oceanic Science Letters》 CSCD 2024年第6期39-44,共6页
The petroleum industry is a significant source of anthropogenic volatile organic compounds(VOCs),but up to now,its exact impact on urban VOCs and ozone(O_(3))remains unclear.This study conducted year-long VOC ob-serva... The petroleum industry is a significant source of anthropogenic volatile organic compounds(VOCs),but up to now,its exact impact on urban VOCs and ozone(O_(3))remains unclear.This study conducted year-long VOC ob-servations in Dongying,China,a petroleum industrial region.The VOCs from the petroleum industry(oil and gas volatilization and petrochemical production)were identified by employing the positive matrix factorization model,and their contribution to O_(3) formation was quantitatively evaluated using an observation-based chemical box model.The observed annual average concentration of VOCs was 68.6±63.5 ppbv,with a maximum daily av-erage of 335.3 ppbv.The petroleum industry accounted for 66.5%of total VOCs,contributing 54.9%from oil and gas evaporation and 11.6%from petrochemical production.Model results indicated that VOCs from the petroleum industry contributed to 31%of net O_(3) production,with 21.3%and 34.2%contributions to HO_(2)+NO and RO_(2)+NO pathways,respectively.The larger impact on the RO_(2) pathway is primarily due to the fact that OH+VOCs ac-count for 86.9%of the primary source of RO_(2).This study highlights the critical role of controlling VOCs from the petroleum industry in urban O_(3) pollution,especially those from previously overlooked low-reactivity alkanes. 展开更多
关键词 Petroleum industry Volatile organic compounds Ozone pollution Positive matrix factorization Observation-based model
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An Integrated Analysis on the Synergistic Reduction of Carbon and Pollution Emissions from China’s Iron and Steel Industry 被引量:1
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作者 Quanyin Tan Fei Liu Jinhui Li 《Engineering》 SCIE EI CAS CSCD 2024年第9期111-121,共11页
Decarbonization and decontamination of the iron and steel industry(ISI),which contributes up to 15%to anthropogenic CO_(2) emissions(or carbon emissions)and significant proportions of air and water pollutant emissions... Decarbonization and decontamination of the iron and steel industry(ISI),which contributes up to 15%to anthropogenic CO_(2) emissions(or carbon emissions)and significant proportions of air and water pollutant emissions in China,are challenged by the huge demand for steel.Carbon and pollutants often share common emission sources,indicating that emission reduction could be achieved synergistically.Here,we explored the inherent potential of measures to adjust feedstock composition and technological structure and to control the size of the ISI to achieve carbon emission reduction(CER)and pollution emission reduction(PER).We investigated five typical pollutants in this study,namely,petroleum hydrocarbon pollutants and chemical oxygen demand in wastewater,particulate matter,SO_(2),and NO_(x) in off gases,and examined synergies between CER and PER by employing cross elasticity for the period between 2022 and 2035.The results suggest that a reduction of 8.7%-11.7%in carbon emissions and 20%-31%in pollution emissions(except for particulate matter emissions)could be achieved by 2025 under a high steel scrap ratio(SSR)scenario.Here,the SSR and electric arc furnace(EAF)ratio serve critical roles in enhancing synergies between CER and PER(which vary with the type of pollutant).However,subject to a limited volume of steel scrap,a focused increase in the EAF ratio with neglection of the available supply of steel scrap to EAF facilities would lead to an increase carbon and pollution emissions.Although CER can be achieved through SSR and EAF ratio optimization,only when the crude steel production growth rate remains below 2.2%can these optimization measures maintain the emissions in 2030 at a similar level to that in 2021.Therefore,the synergistic effects between PER and CER should be considered when formulating a development route for the ISI in the future. 展开更多
关键词 Iron and steel industry Carbon and pollution emissions Synergistic reduction Technological structure Steel scrap Cross-elasticity
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2017 Top Ten News of China's Paper Industry
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《造纸信息》 2018年第8期110-111,共2页
On December 26th,2017,the meeting on the selection of the 2017 top ten news of China’s paper industry,sponsored by China Paper Newsletters,was held in China National Pulp and Paper Research Institute Co.,Ltd.,Beijing... On December 26th,2017,the meeting on the selection of the 2017 top ten news of China’s paper industry,sponsored by China Paper Newsletters,was held in China National Pulp and Paper Research Institute Co.,Ltd.,Beijing.The yearly selection of the top ten news,which began in 2000,has become a brand activity within the industry and is widely accepted and greatly appreciated throughout due to the care and support from leaders at all levels and industry colleagues as well as the attention of warm hearted reading public. 展开更多
关键词 China National PULP China’s paper industry
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