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Preparation of Multifunctional β-hemihydrate Gypsum using Oyster Shell Powder as the Partial Replacement of Ag/TiO2 Particle
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作者 万璐 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2020年第6期1073-1080,共8页
This work aimed to use oyster shell powder (OSP) as the partial replacement of Ag/TiO2 particle to obtain multifunctional β-hemihydrate gypsum.Thus,the β-hemihydrate gypsum was mixed with different contents of OSP a... This work aimed to use oyster shell powder (OSP) as the partial replacement of Ag/TiO2 particle to obtain multifunctional β-hemihydrate gypsum.Thus,the β-hemihydrate gypsum was mixed with different contents of OSP and Ag/TiO2 particle.Antibacterial and MB removal experiments were conducted to assess the antibacterial characteristic and photocatalytic activity of β-hemihydrate gypsum with Ag/TiO2 particle and OSP.Besides,the formaldehyde degradation test was carried out to evaluate its formaldehyde removal ratio.Moreover,their setting times,compressive and flexural strengths at 1,3,and 28 days were comparatively analyzed.The experimental results prove that the composite use of OSP and Ag/TiO2 particle provide feasible multifunction for the β-hemihydrate gypsum.They can further improve the bactericidal rates and exhibit extra MB removal ratios compared with the gypsum plasters with single Ag/TiO2 particle.Besides,they can increase the formaldehyde degradation ratios,and this promotion is related to the introduction of Ag/TiO2 particle.However,OSP delays the initial setting time but promotes the final setting time of β-hemihydrate gypsum,and Ag/TiO2 particle hardly affects the setting times.Furthermore,OSP reduces the strengths of plasters at 1,3,and 28 days.But in general,the composite addition of OSP and Ag/TiO2 particle increase the compressive and flexural strengths of gypsum plasters at 1,3,and 28 days.These results provide theoretical guidance for the recycling of OSP and the preparation of gypsum-based products with antibacterial and formaldehyde degradation capabilities. 展开更多
关键词 oyster shell powder Ag/TiO2 particle β-hemihydrate gypsum bactericidal rate setting times
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Transformation of Flue-Gas-Desulfurization Gypsum to α-Hemihydrated Gypsum in Salt Solution at Atmospheric Pressure 被引量:17
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作者 吴晓琴 童仕唐 +1 位作者 官宝红 吴忠标 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第2期349-355,共7页
在在气压的热盐答案的烟道气体 desulfurization 石膏的直接阶段转变被调查。温度,盐种类,盐集中,固体内容, pH 和修饰词的效果被检验。在与稳固的石膏的接触在钙硫酸盐的不同条件和溶解度下面获得的晶体也是坚定的。粗短的圆柱的... 在在气压的热盐答案的烟道气体 desulfurization 石膏的直接阶段转变被调查。温度,盐种类,盐集中,固体内容, pH 和修饰词的效果被检验。在与稳固的石膏的接触在钙硫酸盐的不同条件和溶解度下面获得的晶体也是坚定的。粗短的圆柱的形状和常规五面的方面的钙硫酸盐 hemihydrate 晶体在下列条件下面被获得:盐集中 20%30% ,操作温度 95100 敬? 展开更多
关键词 烟气脱硫石膏 盐溶液 二水硫酸钙 改造 常压 固形物含量 热力学分析 大气压力
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Gypsum-based Silica Gel Humidity-controlling Composite Materials:Preparation,Characterization,and Performance
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作者 李曦 冉茂宇 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第2期337-344,共8页
Gypsum was used as substrate,and silica gel was mixed into substrate at a certain mass ratio to prepare humidity-controlling composites;moreover,the moisture absorption and desorption properties of gypsum-based compos... Gypsum was used as substrate,and silica gel was mixed into substrate at a certain mass ratio to prepare humidity-controlling composites;moreover,the moisture absorption and desorption properties of gypsum-based composites were compared with adding different silica gel particle size and proportion.The morphological characteristics,the isothermal equilibrium moisture content curve,moisture absorption and desorption rate,moisture absorption and desorption stability,and humidity-conditioning performance were tested and analyzed.The experimental results show that,compared with pure-gypsum,the surface structure of the gypsum-based composites is relatively loose,the quantity,density and aperture of the pores in the structure increase.The absorption and desorption capacity increase along with the increase of silica gel particle size and silica gel proportion.When 3 mm silica gel particle size is added with a mass ratio of 40%,the maximum equilibrium moisture content of humidity-controlling composites is 0.161 g/g at 98% relative humidity(RH),3.22 times that of pure-gypsum.The moisture absorption and desorption rates are increased,the equilibrium moisture absorption and desorption rates are 2.68 times and 1.61 times that of pure-gypsum at 58.5% RH,respectively.The gypsum-based composites have a good stability,which has better timely response to dynamic humidity changes and can effectively regulate indoor humidity under natural conditions. 展开更多
关键词 humidity controlling composite materials gypsum silica gel
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New Data on Coal, Gypsum, Iron and Silica Sand Deposits and Geochemical Exploration (Pakistan): Revision of 25 Years History of Dinosaur Discoveries from Pakistan
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作者 Muhammad Sadiq Malkani 《Open Journal of Geology》 CAS 2024年第3期431-511,共81页
Discoveries of many coal seams at depths by drilling carried by Geological Survey of Pakistan in Sor Range and Harnai Gochina, extended the coal seams at depth which is challenge for mine owners to exploit feasibly. B... Discoveries of many coal seams at depths by drilling carried by Geological Survey of Pakistan in Sor Range and Harnai Gochina, extended the coal seams at depth which is challenge for mine owners to exploit feasibly. Bed to bed gypsum samplings (and their chemical analyses) of huge gypsum deposits from Sulaiman foldbelt is a base for industrialist and also planers to develop cement and gypsum industries to increase export and foreign exchange for the development of area and Pakistan. Low and high grade sedimentary iron deposits, silica sand and uranium host rocks and their extensions in Sulaiman and Kirthar foldbelts are presented. Anomalies of a few base metals arise as a result of geochemical exploration carried at part of Loralai District of Balochistan. Theropod dinosaurs were frequent in India, while Poripuchian titanosaurs (Sauropoda, Dinosauria) were frequent in Pakistan. Besides some ichnotaxa, many bone taxa such as 1 titanosauriform, 14 titanosaurian sauropod (including one new titanosaur), and 3 theropod dinosaurs are established from Pakistan. Among these 12 titanosaur species and 3 theropod species are named in about 10 km<sup>2</sup> area of Vitakri dome and 2 titanosaur species are named in about a few hundred square meter area of Mari Bohri (Kachi Bohri) which is about 10 km westward from Vitakri dome. Pakistan is a unique country which discoverd 14 diversified titanosaurs in a short area and also in a short period (67 - 66 million years ago/Ma). About 400 bones found from a few meter thick upper part of upper shale horizon of latest Maastrichtian Vitakri Formation which is base for titanosaur taxa. Cranial material is in low fraction (but include significant diverse snouts), caudal vertebrae are prominent, the cervicals, dorsals and sacrals have significant numbers, forelimb and hind limb bones have balanced fraction. Humeri, femora and tibiae are most common. To know the position of Pakistani titanosaurs among titanosaurs and sauropods, there is a need to extend list of characters for phylogenetic analyses. This broad feature list should include main characters of titanosaurs from Pakistan and also from global world. 展开更多
关键词 COAL gypsum IRONSTONE Silica sands Geochemical Exploration Dinosaurs TITANOSAURIFORMES Titanosaurs Theropods REVISION BALOCHISTAN Pakistan
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Evolution and Application of Sealing Ability of Gypsum Caprocks under Temperature-Pressure Coupling:An Example of the ZS5 Well in the Tazhong Area of the Tarim Basin
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作者 LIU Hua ZHAO Shan +3 位作者 YANG Xianzhang ZHU Yongfeng WANG Shen ZHANG Ke 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第1期168-184,共17页
Gypsum caprocks'sealing ability is affected by temperature-pressure coupling.Due to the limitations of experimental conditions,there is still a lack of triaxial stress-strain experiments that simultaneously consid... Gypsum caprocks'sealing ability is affected by temperature-pressure coupling.Due to the limitations of experimental conditions,there is still a lack of triaxial stress-strain experiments that simultaneously consider changes in temperature and pressure conditions,which limits the accuracy of the comprehensive evaluation of the brittle plastic evolution and sealing ability of gypsum rocks using temperature pressure coupling.Triaxial stress-strain tests were utilized to investigate the differences in the evolution of the confinement capacity of gypsum rocks under coupled temperaturepressure action and isothermal-variable pressure action on the basis of sample feasibility analysis.According to research,the gypsum rock's peak and residual strengths decrease under simultaneous increases in temperature and pressure over isothermal pressurization experimental conditions,and it becomes more ductile.This reduces the amount of time it takes for the rock to transition from brittle to plastic.When temperature is taken into account,both the brittle–plastic transformation's depth limit and the lithological transformation of gypsum rocks become shallower,and the evolution of gypsum rocks under variable temperature and pressure conditions is more complicated than that under isothermal pressurization.The sealing ability under the temperature-pressure coupling is more in line with the actual geological context when the application results of the Well#ZS5 are compared.This provides a theoretical basis for precisely determining the process of hydrocarbon accumulation and explains why the early hydrocarbon were not well preserved. 展开更多
关键词 temperature-pressure coupling gypsum caprocks brittle-plastic evolution sealing capacity Tarim Basin
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Preparation of α-High Strength Gypsum from Flue Gas Desulfurization Gypsum Pretreated by Hydrothermal-aging Method
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作者 苏一鑫 GAO Lili +3 位作者 陈学青 LI Zhishui 李雲 CAO Jilin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第1期75-81,共7页
The synthesis of α-calcium sulfate hemihydrate (α-CSH) from flue gas desulfurization (FGD)gypsum is a good way to realize the comprehensive utilization of FGD gypsum. To obtainα-CSH with the satisfactory performanc... The synthesis of α-calcium sulfate hemihydrate (α-CSH) from flue gas desulfurization (FGD)gypsum is a good way to realize the comprehensive utilization of FGD gypsum. To obtainα-CSH with the satisfactory performances, a facile hydrothermal-aging pretreatment process for FGD gypsum raw materials was proposed, where FGD gypsum was firstly hydrothermally converted to α-CSH whiskers, and α-CSH whiskers were further hydrated to synthesize CaSO4·2H2O (CSD) by aging under the regulation of N,N'-methylenebisacrylamide (MBA). The effects of aging time, MBA addition, aging temperature, and pH on the morphology of the synthesized CSD were investigated. The synthesized CSD crystals exhibit highly uniform prismatic morphology with the length of ca 100μm and the whiteness of 91.56%. The regulation mechanism of MBA was also illustrated. The synthesized CSD crystals with prismatic morphology were further used as raw materials to synthesize the short columnar α-CSH. The absolute dry compressive strength of paste prepared from the short columnar α-CSH is 40.85 MPa, which reaches α40 strength grade. 展开更多
关键词 flue gas desulphurization gypsum α-calcium sulfate hemihydrate hydrothermal-aging method N N'-methylenebisacrylamide prismatic CSD
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Efficacy of borneol-gypsum in skin regeneration and pain control in toxic epidermal necrolysis:A case report
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作者 Lu-Wei Yang Li-Juan Zhang +7 位作者 Bin-Bin Zhou Xin-Yu Lin Yu-Ting Chen Xiao-Yu Qin Hui-Ying Tian Li-Li Ma Ying Sun Lin-Di Jiang 《World Journal of Clinical Cases》 SCIE 2024年第7期1290-1295,共6页
BACKGROUND Toxic epidermal necrolysis(TEN)is a life-threatening dermatological emergency mainly induced by drug hypersensitivity reactions.Standard management includes discontinuation of culprit drug and application o... BACKGROUND Toxic epidermal necrolysis(TEN)is a life-threatening dermatological emergency mainly induced by drug hypersensitivity reactions.Standard management includes discontinuation of culprit drug and application of immunomodulatory therapy.However,mortality remains high due to complications like septic shock and multiorgan failures.Innovative approaches for skin care are crucial.This report introduces borneol-gypsum,a traditional Chinese drug but a novel dressing serving as an adjuvant of TEN therapy,might significantly improve skin conditions and patient outcomes in TEN.CASE SUMMARY A 38-year-old woman diagnosed with eosinophilic granulomatosis with polyangiitis experienced gangrenous complications and motor nerve involvement.After initial treatment of high-dose corticosteroids and cyclophosphamide,symptom of foot drop improved,absolute eosinophil counts decreased,while limb pain sustained.Duloxetine was added to alleviate her symptom.Subsequently,TEN developed.Additional topical application of borneol-gypsum dressing not only protected the skin lesions from infection but also significantly eased localized pain.This approach demonstrated its merit in TEN management by promoting skin healing and potentially reducing infection risks.CONCLUSION Borneol-gypsum dressing is a promising adjuvant that could significantly improve TEN management,skin regeneration,and patient comfort. 展开更多
关键词 Toxic epidermal necrolysis Eosinophilic granulomatosis with polyangiitis DULOXETINE BORNEOL gypsum Case report
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Research on the Performance of Titanium Gypsum Concrete Based on Calcium-Silicon-Sulfur Ratio
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作者 Lixia Guo Weikai Wang +1 位作者 Ling Zhong Yuhang Guo 《Journal of Renewable Materials》 SCIE EI 2023年第1期423-434,共12页
Based on the high sulfur content in titanium gypsum,the concept of the calcium-silicon-sulfur(Ca/Si/S)ratio was proposed.The Ca/Si/S ratio of concrete was adjusted by changing the titanium gypsum,fly ash,and cement co... Based on the high sulfur content in titanium gypsum,the concept of the calcium-silicon-sulfur(Ca/Si/S)ratio was proposed.The Ca/Si/S ratio of concrete was adjusted by changing the titanium gypsum,fly ash,and cement con-tent.The effects of different Ca/Si/S ratios on the mechanical properties,hydration products,and concrete micro-structure were investigated by nuclear magnetic resonance,uniaxial compression,and scanning electron microscopy.The result shows:(1)The compressive strength of concrete mixed with titanium gypsum increases first and then decreases with the Ca/Si/S ratio decrease.When the Ca/Si/S ratio is 1:0.85:0.10,the strength reaches the peak and is lower than the blank group.(2)The microstructure indicates the addition of titanium gypsum can effectively stimulate the activity of fly ash.Still,too much or too little titanium gypsum will hamper concrete strength development.(3)Titanium gypsum concrete’s nuclear magnetic resonance T2 spectrum has two characteristic peaks.With the Ca/Si/S ratio decreasing,the micropores in the concrete expand towards the macropores.The compressive strength is negatively correlated with the proportion of macropores and is positively correlated with the proportion of no-capillary pores. 展开更多
关键词 Titanium gypsum calcium-silicon-sulfur ratio compressive strength pore structure
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Evaluation of Cobalt Application Combined with Gypsum and Compost as a Regulator of Cabbage Plant Tolerance to Soil Salinity
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作者 Abd-Elbaset A. Alkharpotly Mohamed A. E. Soliman +11 位作者 Mohamed A. El-Sherpiny Ahmed G. Baddour Dina A. Ghazi Zinab A. Abdelgawad Mohamed A. Abdein Fahad Mohammed Alzuaibr Abdulrahman Alasmari Abdulaziz Albogami Mesfer M. Alqahtani Hebat-Allah A. Hussein Fatma M. A. Elkady Mohamed F. M. Abdelkader 《Open Journal of Ecology》 2023年第12期914-930,共17页
In response to the global food crisis and the imperative to address soil degradation, the international agricultural policy is actively working to alleviate the adverse impacts of soil salinity. As part of this initia... In response to the global food crisis and the imperative to address soil degradation, the international agricultural policy is actively working to alleviate the adverse impacts of soil salinity. As part of this initiative, a field trial spanning two consecutive seasons (2019/20-2020/21) was conducted under saline conditions. The primary objective was to evaluate the influence of various compost sources, including vermicompost at a rate of 0.5 ton·fed<sup>-1</sup> and plant residues compost at a rate of 5.0 ton·fed<sup>-1</sup>, as main plots. Subplots were established by applying agricultural gypsum, both in the presence and absence of gypsum requirements. Additionally, sub-subplots were created by externally applying cobalt at a rate of 10.0 mg·L<sup>-1</sup>, with one sub-subplot receiving foliar cobalt application and the other not. The trial sought to assess the growth performance, chemical composition, enzymatic antioxidants, yield, and quality of cabbage plants (Brassica oleracea var. capitata L.) cultivated in saline soil. According to the findings, cabbage plants exhibited the most favorable response in terms of plant height, chlorophyll content, carotene levels, leaf area, nitrogen (N), phosphorus (P), potassium (K), head yield, vitamin C, and total dissolved solids (TDS) when treated with vermicompost, followed by plant compost. Conversely, plants grown without compost exhibited the least improvement in performance. Cabbage treated with agricultural gypsum requirements showed better performance than those without gypsum amendment. Moreover, plants subjected to cobalt spray demonstrated the highest growth, yield, and quality parameters compared to those without cobalt foliar application. In contrast, the control group (plants without the studied treatments) displayed the highest levels of enzymatic antioxidants, specifically catalase and peroxidase. This indicates that soil salinity stress led to an increase in catalase and peroxidase production in cabbage plants as a defense against the harmful impact of reactive oxygen species (ROS) resulting from soil salinity stress. The applied treatments (compost, gypsum, and cobalt) led to a reduction in the cabbage plant’s inherent production of catalase and peroxidase. Generally, the combined treatment of vermicompost × gypsum requirements × cobalt proved effective in mitigating the detrimental effects of soil salinity on cabbage plants. These findings hold significance for farmers and policymakers aiming to enhance agricultural productivity in regions affected by soil salinity. Additionally, further research can explore the long-term effects of these treatments on soil health and crop sustainability. 展开更多
关键词 VERMICOMPOST Plant Compost gypsum Requirements COBALT Soil Health and Crop Sustainability
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Fluoride Ion Adsorption Effect and Adsorption Mechanism of Self-Supported Adsorbent Materials Based on Desulfurization Gypsum-Aluminate Cement
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作者 Xuefeng Song Minjuan Sun +1 位作者 Juan He Lei Wang 《Journal of Renewable Materials》 EI 2023年第12期4079-4095,共17页
The adsorption method has the advantages of low cost,high efficiency,and environmental friendliness in treating fluorinated wastewater,and the adsorbent material is the key.This study combines the inherent anion-excha... The adsorption method has the advantages of low cost,high efficiency,and environmental friendliness in treating fluorinated wastewater,and the adsorbent material is the key.This study combines the inherent anion-exchange adsorption properties of layered double hydroxides(LDHs).Self-supported porous adsorbent materials loaded with AFm and AFt were prepared from a composite cementitious system consisting of calcium aluminate cement(CAC)and flue gas desulfurization gypsum(FGDG)by chemical foaming technique.The mineral composition of the adsorbent material was characterized by X-ray diffraction(XRD)and Scanning electron microscopy(SEM).Through the static adsorption experiment,the adsorption effect of the mineral composition of the adsorbent on fluoride ions was deeply analyzed,and the adsorption mechanism was revealed.XRD and SEM showed that the main hydration phases of the composite cementitious system consisting of CAC and FGDG are AFm,AFt,AH_(3),and CaSO_(4)·2H_(2)O.FGDG accelerates the hydration process of CAC and inhibits the transformation of AFt to AFm.The AFt content increased,and the AFm content decreased or even disappeared as the amount of FGDG increased.Static adsorption experiment results showed that AFm and AFt in adsorbent materials could significantly enhance the adsorption of fluoride ions.The adsorption of F^(−)in aqueous solution by PAG tends more towards monolayer adsorption with a theoretical maximum capacity of 108.70 mg/g and is similar to the measured value of 112.77 mg/g. 展开更多
关键词 Flue gas desulfurization gypsum(FGDG) Calcium aluminate cement(CAC) AFM AFt Fluoride ions adsorption
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Roles of gypsum/salt-bearing sequence in hydrocarbon accumulation and storage
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作者 Wenhui Liu Yining Li +5 位作者 Quanyou Liu Xiaofeng Wang Qingqiang Meng Dianwei Zhang Longfei Lu Houyong Luo 《Energy Geoscience》 2023年第1期93-102,共10页
Gypsum/salt beds are widely developed in petroliferous basins across the world.Most basins with gypsum/salt beds have been proven to host abundant hydrocarbon resources.Previous studies on the effects of gypsum/salt b... Gypsum/salt beds are widely developed in petroliferous basins across the world.Most basins with gypsum/salt beds have been proven to host abundant hydrocarbon resources.Previous studies on the effects of gypsum/salt beds on hydrocarbon reservoirs primarily focused on their excellent sealing property as cap rocks.However,an increasing number of exploration discoveries have shown that gypsum/salt beds have the potential to promote the formation of high-quality source rocks and hydrocarbon reservoirs.Gypsum/salt beds influence the generation,preservation and accumulation of hydrocarbons.Based on the systematic analysis of the generation of hydrocarbons in global gypsum/saltbearing sequences,the study discussed the control of gypsum/salt beds on play elements,and explore the relationship between the development of gypsum/salt beds and global large-and medium-scale hydrocarbon reservoirs.Furthermore,we analyzed the correlation between typical gypsum/saltbearing sequences and their hydrocarbon generation potentials in China.In-depth analysis shows three patterns in terms of the spatial superimposition of gypsum/salt beds and source rocks,that is,postsalt pattern,inter-salt pattern and pre-salt pattern.Among others,the source rocks of the inter-salt pattern are widely developed in salt basins and of great potential for hydrocarbon exploration. 展开更多
关键词 gypsum/salt bed Hydrocarbon reservoir Source rock Play element
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Tensile and tear-type fracture toughness of gypsum material:Direct and indirect testing methods
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作者 Daniel Pietras M.R.M.Aliha +1 位作者 Hadi G.Kucheki Tomasz Sadowski 《Journal of Rock Mechanics and Geotechnical Engineering》 SCIE CSCD 2023年第7期1777-1796,共20页
In this context,four specimens,i.e.(i)circumferentially notched cylindrical torsion(CNCT),(ii)circum-ferentially notched cylindrical direct tension(CNCDT),(iii)edge notch disc bend(ENDB)and(iv)three-point bend beam(3P... In this context,four specimens,i.e.(i)circumferentially notched cylindrical torsion(CNCT),(ii)circum-ferentially notched cylindrical direct tension(CNCDT),(iii)edge notch disc bend(ENDB)and(iv)three-point bend beam(3PBB),were utilized to measure the modesⅠandⅢfracture toughness values of gypsum.While the CNCT specimen provides pure modeⅢloading in a direct manner,this pure mode condition is indirectly produced by the ENDB specimen.The ENDB specimen provided lower KⅢc and a non-coplanar(i.e.twisted)fracture surface compared with the CNCT specimen,which showed a planar modeⅢfracture surface.The ENDB specimen is also employed for conducting pure modeⅠ(with different crack depths)and mixed modeⅠ/Ⅲtests.KIc value was independent of the notch depth,and it was consistent with the RILEM and ASTM standard methods.But the modeⅢfracture results were highly sensitive to the notch depth.While the fracture resistance against modeⅢwas significantly lower than that of modeⅠ,the greater work of fracture under modeⅢwas noticeable. 展开更多
关键词 gypsum Pure modesⅠandⅢfracture toughness Mixed modeⅠ/Ⅲ Circumferentially notched cylindrical torsion(CNCT)specimen Circumferentially notched cylindrical direct tension(CNCDT)specimen Edge notch disc bend(ENDB)specimen Experimental measurement Geometry and loading type effects
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脱硫石膏制备α-半水石膏研究进展及应用
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作者 杨凤玲 乔国鑫 +4 位作者 杨普 任磊 王琼 吴海滨 程芳琴 《无机盐工业》 CAS CSCD 北大核心 2024年第2期11-20,29,共11页
随着中国工业的不断发展,产生了大量的脱硫石膏,目前脱硫石膏的综合利用量虽在逐年增加,但其利用率却在降低,探寻脱硫石膏的高值化利用途径迫在眉睫,其中脱硫石膏资源化利用途径之一是将其脱水转化成α-半水石膏。利用脱硫石膏来制备高... 随着中国工业的不断发展,产生了大量的脱硫石膏,目前脱硫石膏的综合利用量虽在逐年增加,但其利用率却在降低,探寻脱硫石膏的高值化利用途径迫在眉睫,其中脱硫石膏资源化利用途径之一是将其脱水转化成α-半水石膏。利用脱硫石膏来制备高性能、高附加值的α-半水石膏,不仅能减轻石膏堆积对环境的污染,减少天然石膏的开采,还能带来新的经济效益。基于此,系统地综述了国内外脱硫石膏制备α-半水石膏的研究现状及影响因素,总结了其生产工艺路径及应用,并对推进脱硫石膏的减量化、资源化利用提出了展望,旨在提高固废利用率,促进“碳中和、碳减排”。 展开更多
关键词 脱硫石膏 Α-半水石膏 工艺路径 资源化利用
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工业副产石膏制备高强石膏的方法及其应用技术
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作者 孙振平 金惠玲 +6 位作者 杨海静 田俊涛 李飞 李志林 杨春云 马跃飞 王至立 《混凝土世界》 2024年第1期74-81,共8页
本文论述了高强石膏的制备方法,从高强石膏传统的制备工艺入手,分析了蒸压法(饱和蒸汽法)、常压盐/酸溶液法和加压盐/酸溶液法的优点及缺点,阐释了在高强石膏的制备过程中转晶剂的应用以及优化颗粒级配对提高α-半水石膏性能的重要性,... 本文论述了高强石膏的制备方法,从高强石膏传统的制备工艺入手,分析了蒸压法(饱和蒸汽法)、常压盐/酸溶液法和加压盐/酸溶液法的优点及缺点,阐释了在高强石膏的制备过程中转晶剂的应用以及优化颗粒级配对提高α-半水石膏性能的重要性,论述了高强石膏的技术要求。在建材、模具铸造、航空航天、医疗以及美术制品等领域,高强石膏有非常广泛的应用,介绍了其出众的性能,最后讨论了水膏比对高强石膏硬化浆体强度的影响,以及高强石膏制品耐水性差的原因和解决方法。 展开更多
关键词 工业副产石膏 高强石膏 制备工艺 转晶剂 颗粒级配 强度 耐水性
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JC/T 2076-2022《石膏保温砂浆》标准分析
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作者 李逸晨 《硫酸工业》 CAS 2024年第2期11-14,共4页
从分类和标记、技术要求、主要试验情况等方面对JC/T 2076-2022《石膏保温砂浆》的主要内容进行解读。分析石膏保温砂浆的主要技术要求,与GB/T 20473-2021《建筑保温砂浆》技术要求进行对比研究。该标准的发布实施有利于促进石膏保温砂... 从分类和标记、技术要求、主要试验情况等方面对JC/T 2076-2022《石膏保温砂浆》的主要内容进行解读。分析石膏保温砂浆的主要技术要求,与GB/T 20473-2021《建筑保温砂浆》技术要求进行对比研究。该标准的发布实施有利于促进石膏保温砂浆产品的应用和推广,推动固废综合利用和循环经济发展。 展开更多
关键词 石膏保温砂浆 标准 分析 技术要求
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工业废渣固化淤泥力学特性及微观机理研究
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作者 王强 张赛全 张俊毅 《安徽理工大学学报(自然科学版)》 CAS 2024年第1期38-45,共8页
目的针对大宗固废难以消化、疏浚淤泥处理困难、传统水泥固化淤泥不符合新发展理念等问题,采用钢渣、石灰和脱硫石膏制备环保型复合固化剂,应用在淤泥质土固化处理领域,以达到“以废治废”的目的。方法对固化淤泥土开展无侧限抗压强度... 目的针对大宗固废难以消化、疏浚淤泥处理困难、传统水泥固化淤泥不符合新发展理念等问题,采用钢渣、石灰和脱硫石膏制备环保型复合固化剂,应用在淤泥质土固化处理领域,以达到“以废治废”的目的。方法对固化淤泥土开展无侧限抗压强度、pH、扫描电镜等试验及其固化机理探究。结果复合固化剂最优配比为钢渣5%、石灰9%、脱硫石膏6%,龄期28d时固化土的强度高达1.657MPa,略低于同掺量龄期的水泥固化淤泥土,但延性有显著提高。碱性环境主要由石灰提供,pH阈值约为13,当pH值约12~13时最有利于水化反应的进行。微观特性分析表明,AFt与C-S-H为固化土提供骨架结构作用,填充颗粒孔隙,使其形成更加致密的网状结构,显著提高了淤泥固化土的宏观力学特性。结论此环保型复合固化剂可以固化淤泥土用于建筑回填和路基填土,能有效提高淤泥的资源化利用率。 展开更多
关键词 钢渣 脱硫石膏 淤泥固化 无侧限抗压强度 微观特性
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脱硫石膏和磷石膏作调凝剂对水泥性能影响的对比研究
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作者 何廷树 马晓东 +1 位作者 田悦 荆彤 《中国水泥》 CAS 2024年第2期62-67,共6页
使用工业副产脱硫石膏和磷石膏替代天然石膏作水泥调凝剂,是大量消纳这些固废的有效途径之一。有鉴于此,本文在对硫石膏和磷石膏理化性质研究的基础上,系统对比研究了两类石膏作调凝剂对水泥性能的影响,结果表明:脱硫石膏呈中性,但磷石... 使用工业副产脱硫石膏和磷石膏替代天然石膏作水泥调凝剂,是大量消纳这些固废的有效途径之一。有鉴于此,本文在对硫石膏和磷石膏理化性质研究的基础上,系统对比研究了两类石膏作调凝剂对水泥性能的影响,结果表明:脱硫石膏呈中性,但磷石膏来源不同,可呈强酸性、中性和强碱性。试验所用四种石膏的F、P、重金属浸出特性和反射性均满足一类建材的要求。脱硫石膏所配水泥的性能稳定性较好,掺量波动对水泥性能影响也较小,但磷石膏杂质成分复杂,所配水泥的凝结时间较长,一般为脱硫石膏所配水泥凝结时间的二倍以上。磷石膏产地和掺量变化对所配水泥的凝结时间和强度影响较大,使用过程中需严格控制掺量,否则会导致水泥不合格。 展开更多
关键词 脱硫石膏 磷石膏 杂质 水泥调凝剂 水泥性能
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钛石膏不同方法制备的Ⅱ型硬石膏对硫铝酸盐水泥性能影响
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作者 管学茂 张紫涵 +1 位作者 狄红丰 刘松辉 《河南理工大学学报(自然科学版)》 CAS 北大核心 2024年第2期194-200,共7页
目的为促进工业固废钛石膏资源再利用,了解硬石膏对硫铝酸盐水泥熟料性能的影响,方法以钛石膏为原料,采用加压水热法和酸浸法合成Ⅱ型硬石膏,研究不同方法合成的硬石膏对硫铝酸盐水泥熟料性能的影响。结果加压水热法和酸浸法合成的硬石... 目的为促进工业固废钛石膏资源再利用,了解硬石膏对硫铝酸盐水泥熟料性能的影响,方法以钛石膏为原料,采用加压水热法和酸浸法合成Ⅱ型硬石膏,研究不同方法合成的硬石膏对硫铝酸盐水泥熟料性能的影响。结果加压水热法和酸浸法合成的硬石膏因合成方法不同,对粒径、形貌、孔隙和表面积等微观性能影响也不同;在硫铝酸盐水泥熟料中添加不同方法合成的硬石膏或天然硬石膏,且不同种类的硬石膏掺量为15%时,硫铝酸盐水泥熟料的抗压强度均达到最大值;随着养护时间延长,硫铝酸盐水泥熟料的抗压强度均明显提高;与掺入天然硬石膏相比,掺入酸浸法合成硬石膏的抗压强度较低,但在硬石膏相同掺量和相同水化时间下,掺入加压水热法合成的硬石膏的硫铝酸盐水泥熟料的抗压强度均高于掺入其他两种硬石膏的。结论加压水热法合成硬石膏在水泥熟料中应用前景广阔,是钛石膏再利用的重要途径。 展开更多
关键词 钛石膏 加压水热法 酸浸法 Ⅱ型硬石膏 硫铝酸盐水泥熟料 抗压强度
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脱硫石膏在碱土改良中的无机固碳作用 被引量:1
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作者 陈炳铭 冯文婷 +2 位作者 王玉刚 陈园园 李彦 《土壤学报》 CAS CSCD 北大核心 2024年第1期247-257,共11页
脱硫石膏溶解产生的Ca^(2+)会和土壤中含碳的阴离子(CO_(3)^(2–)、HCO_(3)^(–))发生反应,最终将CO_(2)吸收并固定为土壤无机碳。脱硫石膏在碱土改良中的无机固碳作用对实现“碳中和”具有重要意义。以新疆阜康三工河流域的荒漠碱土为... 脱硫石膏溶解产生的Ca^(2+)会和土壤中含碳的阴离子(CO_(3)^(2–)、HCO_(3)^(–))发生反应,最终将CO_(2)吸收并固定为土壤无机碳。脱硫石膏在碱土改良中的无机固碳作用对实现“碳中和”具有重要意义。以新疆阜康三工河流域的荒漠碱土为研究对象,以脱硫石膏为钙源物对0~20 cm土层进行改良。探究不同时间0~40 t·hm^(-2)脱硫石膏施用量下土壤无机碳(SIC)和土壤无机碳密度(SICD)的变化,从而研究碱土改良中的无机固碳作用。结果表明:施用脱硫石膏能显著减轻土壤碱害(pH下降),增加土壤盐分,同时具有无机固碳作用(SIC和SICD上升)(P<0.05)。脱硫石膏最佳施用量为30 t·hm^(-2),此时改良土层pH降至最低(8.24)。改良后0~46 d SIC含量相较对照组增加0.93 g·kg^(–1),SICD增加0.29 kg·m^(-2)(即CO_(2)固定量为1.06 kg·m^(-2))。改良过程中,脱硫石膏施用量与SIC、SO_(4)^(2–)和Ca^(2+)呈显著正相关(P<0.05),与pH、CO_(3)^(2–)、HCO_(3)^(–)和Na^(+)呈显著负相关(P<0.05)。气候因子对土壤无机固碳存在影响,增大相对湿度和降水量会抑制SIC含量和SICD增加,而增大风速、温度和太阳总辐射则有促进作用。研究结果为施用脱硫石膏改良碱土能增加土壤固碳潜力提供了直接证据。 展开更多
关键词 土壤改良 脱硫石膏 固碳 土壤无机碳 碱土
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脱硫石膏与粉煤灰配施对碱化土壤改良及苜蓿生长的影响
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作者 高富东 何俊 +4 位作者 李敏 雷梦媛 王燕 王宇 王月琴 《灌溉排水学报》 CAS CSCD 2024年第4期59-65,共7页
【目的】筛选适宜新垦龟裂碱化土壤改良和苜蓿生长的脱硫石膏和粉煤灰配比。【方法】采用小区试验,试验设置CK(脱硫石膏0、粉煤灰0)、T1(脱硫石膏30 t/hm^(2)、粉煤灰15 t/hm^(2))、T2(脱硫石膏30 t/hm^(2)、粉煤灰30 t/hm^(2))、T3(脱... 【目的】筛选适宜新垦龟裂碱化土壤改良和苜蓿生长的脱硫石膏和粉煤灰配比。【方法】采用小区试验,试验设置CK(脱硫石膏0、粉煤灰0)、T1(脱硫石膏30 t/hm^(2)、粉煤灰15 t/hm^(2))、T2(脱硫石膏30 t/hm^(2)、粉煤灰30 t/hm^(2))、T3(脱硫石膏30 t/hm^(2)、粉煤灰45 t/hm^(2))、T4(脱硫石膏45 t/hm^(2)、粉煤灰15 t/hm^(2))、T5(脱硫石膏45 t/hm^(2)、粉煤灰30 t/hm^(2))、T6(脱硫石膏45 t/hm^(2)、粉煤灰45 t/hm^(2))共7个处理,研究脱硫石膏和粉煤灰配施对土壤pH值、碱化度和可溶性盐量及苜蓿生长影响。【结果】脱硫石膏和粉煤灰配施显著改善龟裂碱化土壤物理性质,与CK相比,T3处理土壤体积质量降低7.69%,土壤孔隙度和田间持水率分别提高9.69%和18.70%;脱硫石膏和粉煤灰配施对0~40 cm土层土壤化学性质改良效果较好,T4处理0~10、10~20 cm土层土壤pH值分别降低10.51%、11.66%,碱化度分别降低56.76%和50.27%;T4处理0~10、10~20、20~40 cm土层土壤可溶性盐量分别下降32.33%、52.55%、3.04%;T4、T1处理苜蓿增产效果较好,与CK相比,苜蓿鲜质量分别提高61.76%、43.21%,干物质量分别提高48.80%、30.72%;但脱硫石膏和粉煤灰配施量过大则会造成减产,T6处理苜蓿鲜质量和干物质量分别较CK降低19.69%、10.24%。【结论】脱硫石膏和粉煤灰配合施用能有效降低龟裂碱化土壤的体积质量、pH值、碱化度和可溶性盐量,提高土壤孔隙度、田间持水率,从而有利于苜蓿的生长和发育,其中45 t/hm^(2)脱硫石膏与15 t/hm^(2)粉煤灰为最优配比组合。 展开更多
关键词 脱硫石膏 粉煤灰 碱化土壤 苜蓿 产量
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