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Mechanism of protective film formation during CO_2 corrosion of X65 pipeline steel 被引量:2
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作者 Tong Li Yonggjin Yang +1 位作者 Kewei Gao Minxu Lu 《Journal of University of Science and Technology Beijing》 CSCD 2008年第6期702-706,共5页
Electrochemical techniques, X-ray diffraction (XRD), and scanning electron microscopy (SEM) were applied to study the corrosion behaviors of X65 steel in static solution with carbon dioxide (CO2) at 65℃. The re... Electrochemical techniques, X-ray diffraction (XRD), and scanning electron microscopy (SEM) were applied to study the corrosion behaviors of X65 steel in static solution with carbon dioxide (CO2) at 65℃. The results show that iron carbonate (FeCO3) deposits on the steel surface as a corrosion product scale. This iron carbonate scale acts as a barrier to CO2 corrosion, and can reduce the general corrosion rate. The protection ability of the scale is closely related to the scale morphological characteristics. 展开更多
关键词 pipeline steel carbon dioxide corrosion product scale protective film iron carbonate
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Introduction to Enhanced Protective Film Systems
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作者 LIU Chunlin DAVID Palermo +2 位作者 LI Guoqiang SUN Jianyun CHEN Suwen 《Transactions of Tianjin University》 EI CAS 2008年第B10期491-494,共4页
An explosive blast mitigation alternative has increased the safety of structures by using " catcher" systems. These systems " catch" or repel the failure of the window or in-fill wall pro-tecting l... An explosive blast mitigation alternative has increased the safety of structures by using " catcher" systems. These systems " catch" or repel the failure of the window or in-fill wall pro-tecting life and property from ballistic shards or fragments. They can be designed to be stand-alone in new construction and structural retrofits or used to augment structural hardening tech-niques. Cables, fabrics, and thin gauge sheet steel are examples of catcher systems used in the past. A new and evolving category of catcher systems are based on polymeric materials that can be used for both wall and window upgrades. These products are a proven blast mitigation concept and K&C Protective Technologies Pte Ltd (KCPT) together with Sherwin-Williams(SW) use KCPT′s blast engineering capacity and SW′s material engineering principles to create engineered systems for even greater in-use performance. 展开更多
关键词 explosion blast mitigation catcher system protective film systems
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Magnetic field enhanced radio frequency ion source and its application for Si-incorporation diamond-like carbon film preparation
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作者 Jiping YIN Qing WANG +3 位作者 Xinlong WU Chunyu CHENG Dechun BA Zeng LIN 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第2期79-86,共8页
Various ion sources are key components to prepare functional coatings,such as diamond-like carbon(DLC)films.In this article,we present our trying of surface modification on basis of Si-incorporation diamond-like carbo... Various ion sources are key components to prepare functional coatings,such as diamond-like carbon(DLC)films.In this article,we present our trying of surface modification on basis of Si-incorporation diamond-like carbon(Si-DLC)produced by a magnetic field enhanced radio frequency ion source,which is established to get high density plasma with the help of magnetic field.Under proper deposition process,a contact angle of 111°hydrophobic surface was achieved without any surface patterning,where nanostructure SiC grains appeared within the amorphous microstructure.The surface property was influenced by ion flow parameters as well as the resultant surface microstructure.The magnetic field enhanced radio frequency ion source developed in this paper was useful for protective film applications. 展开更多
关键词 magnetic field enhanced radio frequency ion source Si-incorporation diamond-like carbon film MICROSTRUCTURE HYDROPHOBICITY protective film
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In situ formed cross-linked polymer networks as dual-functional layers for high-stable lithium metal batteries 被引量:1
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作者 Lei Shi Wanhui Wang +7 位作者 Chunjuan Wang Yang Zhou Yuezhan Feng Tiekun Jia Fang Wang Zhiyu Min Ji Hu Zhigang Xue 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第4期253-262,共10页
Lithium-metal anodes(LMAs)have been recognized as the ultimate anodes for next-generation batteries with high energy density,but stringent assembly-environment conditions derived from the poor moisture stability drama... Lithium-metal anodes(LMAs)have been recognized as the ultimate anodes for next-generation batteries with high energy density,but stringent assembly-environment conditions derived from the poor moisture stability dramatically hinder the transformation of LMAs from laboratory to industry.Herein,an in situ formed cross-linked polymer layer on LMAs is designed and constructed by a facile thiol-acrylate click chemistry reaction between poly(ethylene glycol)diacrylate(PEGDA)and the crosslinker containing multi thiol groups under UV irradiation.Owing to the hydrophobic nature of the layer,the treated LMAs demonstrate remarkable humid stability for more than 3 h in ambient air(70%relative humidity).The coating humid-resistant protective layer also possesses a dual-functional characterization as solid polymer electrolytes by introducing lithium bis(trifluoromethanesulfonyl)imide in the system in advance.The intimate contact between the polymer layer and LMAs reduces interfacial resistance in the assembled Li/LiFePO_(4)or Li/LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2)full cell effectively,and endows the cell with an outstanding cycle performance. 展开更多
关键词 Lithium-metal anode Humid-resistant protective film Solid-state polymer electrolytes Cross-linked polymers
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Quasi-in-situ Observation and SKPFM Studies on Phosphate Protective Film and Surface Micro-Galvanic Corrosion in Biological Mg-3Zn-xNd Alloys
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作者 Zhaochen Yu Kaixuan Feng +5 位作者 Shuyun Deng Yang Chen Hong Yan Honggun Song Chao Luo Zhi Hu 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2024年第4期648-664,共17页
The phosphate protective film and micro-galvanic corrosion of biological Mg-3Zn-xNd (x = 0, 0.6, 1.2) alloys were investigated by scanning and transmission electron microscopy, quasi-in-situ observation, scanning Kelv... The phosphate protective film and micro-galvanic corrosion of biological Mg-3Zn-xNd (x = 0, 0.6, 1.2) alloys were investigated by scanning and transmission electron microscopy, quasi-in-situ observation, scanning Kelvin probe force microscopy (SKPFM) and electrochemical tests. The results revealed the Mg-Zn-Nd phases formed in Mg-3Zn alloy contained with Nd. Adding Nd resulted in a significant decline in the cracks of the phosphate protective film and micro-galvanic corrosion of alloys, which were recorded by quasi-in-situ observation. In addition, the Volta potential difference of Mg-Zn-Nd/α-Mg (~ 188 mV) was lower than MgZn/α-Mg (~ 419 mV) and Zn-rich/α-Mg (~ 260 mV), and the corrosion rates of alloys markedly decreased after the addition of 0.6 wt% Nd. The improvement in corrosion resistance of Nd-containing alloys was mainly attributed to the following: (i) the addition of Nd reduced the Volta potential difference (second phases/α-Mg);(ii) the phosphate protective film containing Nd_(2)O_(3) deposited on the surface of the alloys, effectively preventing the penetration of harmful anions. 展开更多
关键词 Magnesium alloys Quasi-in-situ observation Phosphate protective film Scanning Kelvin probe force microscopy(SKPFM) Micro-galvanic corrosion
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Effect of intermetallic phases on the anodic oxidation and corrosion of 5A06 aluminum alloy 被引量:9
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作者 Song-mei Li Ying-dong Li +2 位作者 You Zhang Jian-hua Liu Mei Yu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第2期167-174,共8页
Intermetallic phases were found to influence the anodic oxidation and corrosion behavior of 5A06 aluminum alloy. Scattered in- termetallic particles were examined by scanning electron microscopy (SEM) and energy dis... Intermetallic phases were found to influence the anodic oxidation and corrosion behavior of 5A06 aluminum alloy. Scattered in- termetallic particles were examined by scanning electron microscopy (SEM) and energy dispersive spectroscopy (EDS) after pretreatment. The anodic film was investigated by transmission electron microscopy (TEM), and its corrosion resistance was analyzed by electrochemical impedance spectroscopy (EIS) and Tafel polarization in NaC1 solution. The results show that the size of A1-Fe-Mg-Mn particles gradually decreases with the iron content. During anodizing, these intermetallic particles are gradually dissolved, leading to the complex porosity in the anodic film beneath the particles. After anodizing, the residual particles are mainly silicon-containing phases, which are embedded in the an- odic film. Electrochemical measurements indicate that the porous anodic film layer is easily penetrated, and the barrier plays a dominant role in the overall protection. Meanwhile, self-healing behavior is observed during the long immersion time. 展开更多
关键词 aluminum alloys intermetallic particles anodic oxidation CORROSION protective films
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Suppressing by-product via stratified adsorption effect to assist highly reversible zinc anode in aqueous electrolyte 被引量:10
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作者 Miao Zhou Shan Guo +5 位作者 Guozhao Fang Hemeng Sun Xinxin Cao Jiang Zhou Anqiang Pan Shuquan Liang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第4期549-556,共8页
The development of promising zinc anodes mainly suffers from their low plating/stripping coulombic efficiencies when using aqueous electrolyte,which are mainly associated with the interfacial formation of irreversible... The development of promising zinc anodes mainly suffers from their low plating/stripping coulombic efficiencies when using aqueous electrolyte,which are mainly associated with the interfacial formation of irreversible by-products.It is urgent to develop technologies that can solve this issue fundamentally.Herein,we report an artificial Sc_(2)O_(3) protective film to construct a new class of interface for Zn anode.The density functional theory simulation and experimental results have proven that the interfacial side reaction was inhibited via a stratified adsorption effect between this artificial layer and Zn anode.Benefiting from this novel structure,the Sc_(2)O_(3)-coated Zn anode can run for more than 100 cycles without short circuit and exhibit low voltage hysteresis,and the coulombic efficiency increases by 1.2%.Importantly,it shows a good application prospect when matched with two of popular manganese-based and vanadium-based cathodes.The excellent electrochemical performance of the Sc_(2)O_(3)-coated Zn anode highlights the importance of rational design of anode materials and demonstrates a good way for developing high-performance Zn anodes with long lifespan and high efficiency. 展开更多
关键词 Zn anode Artificial protective film Stratified adsorption Interfacial reaction Zn4SO4(OH)6·H2O by-products
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Design of wear-out-failure in-situ repair parts by environment-friendly nanocopper additive
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作者 于鹤龙 徐滨士 +2 位作者 许一 王晓丽 刘谦 《Journal of Central South University》 SCIE EI CAS 2005年第S2期215-220,共6页
Oleic acid surface-modified Cu nanoparticles with an average size of 20 nm were prepared by liquid phase reducing reaction. The tribological performance and mechanism of nanocopper as additive were studied by means of... Oleic acid surface-modified Cu nanoparticles with an average size of 20 nm were prepared by liquid phase reducing reaction. The tribological performance and mechanism of nanocopper as additive were studied by means of tribotester, scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS) and nanoindentation instrument. The results indicate that the modified nanocopper additive can significantly improve the wear resistance and reduce friction coefficient of base oil. A copper protective film is formed and contributes to the excellent tribological properties of nanocopper additive. On the basis of the film forming mechanism, a new in-situ repair method was designed and used to repair wear-out-failure injection pump plunger and barrel. Furthermore, the current research progress of nanoparticles as green energy-saving lubricating oil additives were presented. 展开更多
关键词 Cu nanoparticles lubricating oil additive tribological performance Cu protective film in-situ repair injection pump plunger and barrel
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Corrosion of candidate materials for supercritical water-cooled reactor
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作者 ZHANG Lefu~(1)),BAO Yichen~(1)) and TANG Rui~(2)) 1) School of Nuclear Sci.&Eng,Shanghai Jiao Tong Univ.,Shanghai 200240,China 2) National Key Laboratory for Nuclear Fuel and Materials,Nuclear Power Institute of China,Chengdu 610041,China 《Baosteel Technical Research》 CAS 2010年第S1期71-,共1页
Supercritical water reactor(SCWR) was proposed as a GenerationⅣconcept for building large capacity nuclear power plants.Comparing with the present GenerationⅡandⅢlight water reactors,SCWR possesses great advantages... Supercritical water reactor(SCWR) was proposed as a GenerationⅣconcept for building large capacity nuclear power plants.Comparing with the present GenerationⅡandⅢlight water reactors,SCWR possesses great advantages of 10%higher efficiency,simpler system design,better sustainability,and so on. However,the selection of materials for fuel cladding and reactor internals of SCWR is facing a great challenge. Corrosion in supercritical steam is of the first important issue to be solved to meet the stringent requirement of the reactor internal components.Corrosion screening tests were conducted on candidate materials for nuclear fuel cladding and reactor internals of supercritical water reactor(SCWR) in static and re-circulating autoclave at the temperatures of 550,600 and 650℃,pressure of about 25 MPa,deaerated or saturated dissolved hydrogen(STP). Nickel base alloy type Hastelloy C276,austenitic stainless steels type 304NG,AL-6XN,HR3C.NF709 and SAVE 25,ferritic/martensitic(F/M) steel type P92,P122 and 410,and oxide dispersion strengthened steel MA 956,are tested.This paper presents corrosion rate,and focuses on the formation and breakdown of corrosion oxide film,and proposes the future trend for the development of SCWR internal structure materials. 展开更多
关键词 supercritical water cooled reactor cladding material CORROSION protective oxide film
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Experimental Observation on the Effects of Different Chitosan on Preventing Traumatic Peritoneal Adhesion in Rats
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作者 ZHANG Zhi-liang XU Si-wei ZHOU Xie-lai 《Chinese Journal of Biomedical Engineering(English Edition)》 2005年第3期130-138,共9页
objective:The effects of different chitosan on preventing traumatic peritoneal adhesion in rats was studied in this paper. METHODS: 96 SD rats with injured vermiform process were randomly divided into 4 groups as foll... objective:The effects of different chitosan on preventing traumatic peritoneal adhesion in rats was studied in this paper. METHODS: 96 SD rats with injured vermiform process were randomly divided into 4 groups as follows: group A without any treatment as control, group B treated with chitosan gel, group C treated with pure chitosan film and group D treated with chiston film containing 50% gelatin. 2 and 4 weeks after surgery, 12 rats in each group were respectively belly opened to observe chitosan degradation and evaluate peritoneal adhesion, and the adhesive vermiform processes tissues were histopathologically observed. RESULTS: 1.Degradation in the group D was faster than that in the group C but slower than that in the group B. 2. 2 weeks after surgery the adhesion in the group B was milder than that in the control group(goup A) (P<0.05), but that in the group C and D (both P<0.05) were more severe than that in the control group . 3. 4 weeks after surgery , the adhesion in the group B was milder than that in the control group (P<0.05), but that in the group C and D (both P<0.05) were more severe than that in the control group , whereas, there was no significant difference between adhesion in the group C and group D (P>0.05). 4.Histopathological examinaiton indicated that: 2 weeks after surgery ,inflammatory cell infiltration and fibroplastic proliferation dominated in local lesion and the response was most severe on the serous coat, furthermore, the response in the control group was more severe than that in the group B, but milder than that in the group C and D; 4 weeks after surgery, fibroplastic proliferation dominated in local lesion in each group , moreover, the response in the control group was more severe than that in the group B but milder than that in the group C and D. What’s more, integrated fibrous membrane formed around implanted materials in the group C and D, and the fibrous membranes were thinner in the group C than that in the group D. CONCLUSION: 1.Chitosan gel has perfect effect in protecting traumatic peritoneal adhesion in rats. 2.Pure chitosan film could exacerbate peritoneal adhesion and chitosan containing gelatin could exacerbate peritoneal adhesion further. 展开更多
关键词 CHITOSAN GEL GELATIN peritoneal adhesion film protecting adhesion
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Core-rim structured MXene@SiO_(2)composites as oil-based additives for enhanced tribological properties
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作者 Yuhong CUI Shenghua XUE +4 位作者 Tiantian WANG Shujuan LIU Qian YE Feng ZHOU Weimin LIU 《Friction》 SCIE EI CAS CSCD 2024年第8期1728-1740,共13页
Herein,we have prepared SiO_(2)particles uploaded MXene nanosheets via in-situ hydrolysis of tetraetholothosilicate.Due to the large number of groups at the edges of MXene,SiO_(2)grows at the edges first,forming MXene... Herein,we have prepared SiO_(2)particles uploaded MXene nanosheets via in-situ hydrolysis of tetraetholothosilicate.Due to the large number of groups at the edges of MXene,SiO_(2)grows at the edges first,forming MXene@SiO_(2)composites with a unique core-rim structure.The tribological properties of MXene@SiO_(2)as lubricating additive in 500 SN are evaluated by SRV-5.The results show that MXene@SiO_(2)can reduce the friction coefficient of 500 SN from 0.572 to 0.108,the wear volume is reduced by 73.7%,and the load capacity is increased to 800 N.The superior lubricity of MXene@SiO_(2)is attributed to the synergistic effect of MXene and SiO_(2).The rolling friction caused by SiO_(2)not only improves the bearing capacity but also increases the interlayer distance of MXene,avoiding accumulation and making it more prone to interlayer slip.MXene@SiO_(2)is adsorbed on the friction interface to form a physical adsorption film and isolate the friction pair.In addition,the high temperature and high load induce the tribochemical reaction and form a chemical protection film during in the friction process.Ultimately,the presence of these protective films results in MXene@SiO_(2)having good lubricating properties. 展开更多
关键词 Ti3C2Tx MXene SiO_(2)nanoparticles lubricating additives protective film
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A Protective Film Produced by Whey Protein for Photonic Crystals: Inspired by the Epidermis Structure of Chameleon
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作者 Xiaoyi Chen Hongbo Xu +3 位作者 Lei Pan Jiupeng Zhao Yao Li Ying Song 《Journal of Bionic Engineering》 SCIE EI CSCD 2018年第4期713-721,共9页
Self-assembly technology of sub-micrometer-sized colloidal particles is the most promising approach for the preparation of large-area Photonic Crystals (PCs). However, PCs obtained by this method are facile to be de... Self-assembly technology of sub-micrometer-sized colloidal particles is the most promising approach for the preparation of large-area Photonic Crystals (PCs). However, PCs obtained by this method are facile to be destroyed by external factors such as friction, impact, and pollutants. The highly keratinized epidermis of chameleon skin acts as a protective role for the dermis with photon ceils of the tunable band-gap structure. Inspired by the epidermis structure of chameleon, we use whey protein to develop a sort of protective film on the surface of artificially synthesized PCs. The film possesses positive mechanical properties that make the PCs friction and impact re- sistant. In addition, favorable resistance to water and C02 could prevent PCs from being destroyed by pollutants. Consequently, PCs with protective film are well preserved when subjected to external factors (such as friction) and the optical properties of the PCs are successfully maintained, that may significantly promote the utilization of PCs in optical devices. 展开更多
关键词 CHAMELEON photonic crystal bioinspired protective film whey protein
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Synergistic lubricating effect of graphene/ionic liquid composite material used as an additive 被引量:2
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作者 Lincong LIU Ming ZHOU +9 位作者 Youtang MO Pengpeng BAI Qilin WEI Long JIN Shengli YOU Mingyue WANG Liangchuan LI Xin CHEN Xiao LI Yu TIAN 《Friction》 SCIE EI CAS CSCD 2021年第6期1568-1579,共12页
We prepared a graphene/ionic liquid(G/IL)composite material by the hybridization of G and an IL for use as a lubricating oil additive.The friction coefficient and wear volume of a base oil containing 0.04 wt%of the G/... We prepared a graphene/ionic liquid(G/IL)composite material by the hybridization of G and an IL for use as a lubricating oil additive.The friction coefficient and wear volume of a base oil containing 0.04 wt%of the G/IL composite was reduced by 45%and 90%,respectively.Furthermore,the base oil containing the G/IL composite exhibited better lubricating properties than the base oil containing G,IL,or a mixture of IL and G at the same mass fraction.A synergistic lubrication mechanism was also revealed.The G/IL composite was adsorbed and deposited on the wear surface,forming a more ordered protective film and a unique tribochemical reaction film during rubbing.Therefore,the G/IL composite exhibited the synergistic lubricating effects of G and IL,which significantly improved the lubricating performance of the base oil.This study also suggested a way to limit the out-of-plane puckering of G at the macroscale. 展开更多
关键词 grapheme(G) ionic liquid(IL) synergistic lubrication protective films out-of-plane puckering mechanism
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Mitigating side reaction for high capacity retention in lithium-sulfur batteries 被引量:2
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作者 Yong Cai Qi Jin +2 位作者 Kaixin Zhao Xinzhi Ma Xitian Zhang 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第1期457-461,共5页
Li-S batteries have shown great potential as secondary energy batteries.However,the side reaction between Li anodes and polysulfides seriously limited their practical application.Herein,the artificial protective film,... Li-S batteries have shown great potential as secondary energy batteries.However,the side reaction between Li anodes and polysulfides seriously limited their practical application.Herein,the artificial protective film,which is consisted of Li-Nafion and TiO_(2),was designed and successfully prepared to achieve a corrosion-resistant Li anode in Li-S battery.In the composite protective film,the Li-Nafion could efficiently prevent the contact between Li anodes and polysulfides,and the incorporation of TiO_(2)nanoparticles into the Nafion could significantly increase the ionic conductivity and mechanical strength of the protective film.Li-Li symmetric cells with an optimal artificial protective film exhibited an extended cycle-life of 750 h at a current density of 1 mA/cm^(2)in Li_(2)S_(8)electrolyte.Moreover,the Li-S full battery with an optimal protective Li anode exhibited higher capacity retention of 777.4 mAh/g after 100 cycles at 0.1 C as well as better rate performance than the cell with a pure Li anode.This work provides alternative insights to suppress the side reaction for Li-S batteries with high capacity retention. 展开更多
关键词 Nafion/TiO_(2) Artificial protection film Li anode Side reaction Lithium-sulfur batteries
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