Uranium backup

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Uranium Backup, free and safe download. Uranium Backup latest version: Uranium Backup. Old versions of Uranium Backup. Latest Version. Uranium Backup 9. released: - 4 years ago. old Versions. Uranium Backup 9. released: - 7 years ago; Uranium Backup 9. released: - 7 years ago; Uranium Backup 9.

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For your business with a flexible approach.A lightweight client available in 12 languages, including free customer support and frequent updates. Increase your business with powerful features, easy licensing, and affordable prices. The backup solution built for MSPs and IT departmentsBuild and maintain a scalable business with backup software you can rely on Real stories, real satisfactionSee what our customers are saying“I had gone crazy looking for backup software after losing my files. I finally found Uranium Backup and I am very happy and confident. Also, for any questions the support is very attentive.”“We have been using Uranium for more than 10 years, we use it for our company and for all the clients to whom we provide support, client and server. Never had any problems, only satisfied customers.”“Thanks to Uranium Backup we have solved the issue of daily backups on numerous installations of our customers.Not only for files and folders but also for Database SQL Server and MySql”

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Uranium BackupThe complete and versatile backup softwareTrusted by thousands of users around the world Find out why more than 100,000 users in 120 countries use Uranium Backup Feature-richThe solution for all data protection needs. Scheduling, incremental copies, logs and reporting, encryption, and much more. TrustedMore than 700,000 devices are protected and 450 petabytes are successfully copied every month. InexpensiveExperience outstanding performance, easy management, and recovery at an affordable price. Everything you need to preserveProtect your data with the following backup options Files, folders and DatabasesFull, incremental and differential backup solutions for files and databases can be easily set up, with customisable scheduling, compression and encryption settings. Image DisqueEnsure disaster recovery with powerful system image/drive image backup.Recovery is easy, 100% Windows compatible, and hardware agnostic. Virtual MachinesSeamlessly perform hot and incremental backups of virtual machines on VMware vSphere and Hyper-V hosts. Wherever and whenever you want to store itEndless destinations for any need, anytime LocalReplicate your data on an external device(Hard Disk, Tape, or NAS) connected internally or via cable or network.Using devices away and disconnected from your computer except during backups protects you from any risk. CloudCloud is a scalable solution with expandable storage on demand. No physical media to catalog, protect, or preserve because data is stored over the network. FTP/FTPS/SFTP serverBack up your data to remote devices using a File Transfer Protocol (FTP). This is a convenient remote backup destination because it allows you to store critical files offsite. Why choose Uranium Backup? Packed with all the attributes for IT providers and MSPAES 256-bit encryption, protection against Cryptolocker, and centralized monitoring of all the running procedures. For a 100% RGPD-compliant endpoint security. SecurityIn today’s world, backup alone is no longer enough.Encrypting backups adds an extra layer of security by converting sensitive information and files into an unreadable structure. This ensures reliability and protection for all workloads. VersatilityThe rise in ransomware attacks calls for a strengthening of security.Automatically send encrypted backups to a local offsite repository or cloud storage. This eliminates a single point of failure and streamlines the implementation of the 3-2-1 backup strategy. FlexibilityConfigure the best setup

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Inventories. The final mix between quantities of U3O8 contained in ore inventories and quantities of U3O8 in finished product inventory at the end of 2025 will depend on the timing of the processing of stockpiled uranium ore at the Mill (which could occur in 2025 or be deferred to subsequent years), on any additional ore purchases from third-party miners, on any additional alternate feed and cleanup materials received, and on any spot uranium sales or purchases the Company may elect to complete in 2025 in response to uranium prices, market conditions, contract requirements, and other factors. The Company produced a total of 158,000 pounds of finished U3O8 during 2024 from stockpiled alternate feed materials and newly mined ore, which was at the lower end of our previous guidance of 150,000 to 200,000 pounds of finished U3O8 during 2024, due to voluntary delays in transporting ore from the Pinyon Plain mine to the Mill. On January 29, 2025, the Company announced the signing of an agreement with the Navajo Nation, facilitating the transport of uranium ore on the federal and state highways that traverse their land, subject to certain additional precautions and fees, and the Company assisting in the cleanup of Cold War era uranium mines left on Navajo land from government programs that started in the 1940s. Ore transport from the Pinyon Plain mine in northern Arizona to the Mill in southern Utah resumed in February 2025. During 2024, the Company produced ore containing approximately 208,000 pounds of U3O8 at the Pinyon Plain mine, which was stockpiled at the mine site. Ore containing approximately 142,000 pounds of U3O8 from the La Sal and Pandora mines was produced and/or delivered to the Mill. During 2024, the Company received positive results from drill holes during ongoing preparations at its Nichols Ranch in-situ recovery ("ISR") Project in Wyoming. Both the Nichols Ranch Project and Whirlwind Mine in Colorado are being prepared for production within one year of a "go" decision, as market conditions warrant. Production from these mines, when combined with production from Pinyon Plain, La Sal and Pandora, alternate feed materials, uranium from monazite, and third-party uranium ore purchases, would be expected to increase the Company's production run-rate to roughly two million pounds per year by as early as 2026. The Company continued advancing permitting and other pre-development activities on its large-scale Roca Honda and Bullfrog uranium projects in 2024, which together with its Sheep Mountain Project, have the potential to expand the Company's uranium production to a run-rate of up to five million pounds of U3O8 per year in the coming years. As of February 21, 2025, the spot price of U3O8 was $65.25 per pound and the long-term price of. Uranium Backup, free and safe download. Uranium Backup latest version: Uranium Backup.

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At ingesting around 0.21 grams of uranium per year. Using a red ceramic teacup daily would give you an estimated annual radiation dose of 400 mrem to your lips and 1200 mrem to the fingers, not counting the radiation from ingesting uranium. Basically, you're not doing yourself any favors eating off the dishes and you certainly don't want to sleep with one under your pillow. Ingestion of uranium could increase the risk of tumors or cancer, particularly in the gastrointestinal tract. However, Fiesta and other dishes are a lot less radioactive than many other items produced during the same era. Which Fiesta Ware Is Radioactive? Fiesta commenced commercial sales of colored dinnerware in 1936. Most colored ceramics made prior to World War II, including Fiesta ware, contained uranium oxide. In 1943, manufacturers stopped using the ingredient because the uranium was used for weapons. Homer Laughlin, the maker of Fiesta, resumed using the red glaze in the 1950s, using depleted uranium. The use of depleted uranium oxide ceased in 1972. Fiesta ware manufactured after this date is not radioactive. Fiesta dinnerware made from 1936-1972 may be radioactive. You can buy modern Fiesta ceramic dishes in just about any color of the rainbow, though the modern colors won't match the old colors. None of the dishes contain lead or uranium. None of the modern dishes are radioactive. Sources Buckley et al. Environmental Assessment of Consumer Products Containing Radioactive Material. Nuclear Regulatory Commission. NUREG/CR-1775. 1980. Landa, E. and Councell, T. Leaching of Uranium

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Rate of the eluent, e.g., 0.25 to 1.5 mL/min, in the cation exchange resin columns hinder their industrial application. This technique might be suitable in a downstream step where high purity is required. 5.2. Anion Exchange ResinThe anion exchange column is an alternative process for separating metal ions from the contaminating elements where chelating resins such as Dowex [99] and Amberlite [100,101,102,103,104,105,106] are employed. The efficiency of the separation depends on both the anion exchange resin and the type of acidic eluent [99,100,101,106]. A malonic acid eluent in methanol is employed to circulate impurities through the Dowex ion-exchange column, resulting in the adsorption of uranium with an efficiency of over 99%. However, thorium recovery was inefficient, and it remained with REE in the eluate. The Amberlite XAD-4 is another anion exchange resin that is applicable in a wide range of pH [100] and could achieve 99% recovery of uranium [107]. Compared to the XAD-4, the Amberlite XAD-2 has less surface area and larger pore diameter, and extracts uranium when impregnated with Cyanex 302; however, it also partially co-extract thorium (separation factor U/Th = 1.2 × 104) [101]. In some cases, methanol is employed to elute the collected uranium in the column [101,107].The anion exchange resin column is effective for uranium separation from REE, whereas it is inefficient for thorium separation [108]. Therefore, it can be used as the last step of REE purification. The Amberlite IRA 402 Cl resin was applied as a final purification step in a successive separation of thorium and uranium by precipitation. The low concentration uranium remained with the REE was then separated by anion chromatography, where REE recovery of 99% was achieved by the elution with NaCl. Next, 99% of uranium was recovered by water elution, Figure 8 adapted from [106]. In terms of the potential for the scale-up, in anion exchange resins, similar to cation exchange resins, the small flow rate of the feed solution, e.g., around 1 mL/min, is a significant limitation for an industrial-scale application [99,100,106]. 6. Separation by MembranesMembranes have emerged as a new method for recovering thorium and uranium from the REE. At first glance, membranes were used due to their selectivity to individually recover thorium and uranium from other metal ions in liquid solutions [109,110,111], e.g., recovery of thorium by either graphene oxide (GO) or a silica membrane [112,113]. Such a recovery occurred by the formation of a complex between the element of interest and the membrane. In general, membranes have proved to be efficient and selective in acidic conditions at a pH of 4 to 5.5 for recovery of uranium and lower than 4 to recover thorium. However, to increase the recovery of radioactive elements, it is required

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Overall recovery of REE, thorium, and uranium in leach liquor for the two-step cracking-leaching process. 3. Separation by PrecipitationThe REE can be separated from other elements in a liquor via precipitation method using an appropriate reagent such as oxalic acid, reaction 8 [39,40,41,42], To separate the REE from the radioactive elements through precipitation, the most important parameters, include the type of the liquor feed, REE concentration in the feed, the concentration of the precipitation reagent, and the mass ratio of the reagent to REE. The pH is another parameter that determines the performance of selective precipitation of uranium, thorium, and REE. The ideal case is to find distinct pH values to separate radioactive elements from REE. Uranium and REE precipitate at close pH values with a risk of co-precipitation, whereas a high recovery of thorium is achievable since its precipitation requires a different pH [43,44,45,46]. Table 3 presents the pH ranges required for the precipitation of uranium, thorium, and REE in both chloride and sulfate liquors. In an acid liquor, some of alkali precipitation reagents are preferred owing to higher selectivity towards radioactive elements [46,47,48,49]. For instance, ammonium hydroxide (NH4OH) at a pH close to 5 [50], and sodium hydroxide [47] precipitate thorium with a small loss of REE. Whereas, potassium iodate (KIO3) is inefficient in the precipitation of thorium due to the co-precipitation of REE [50]. In addition, ammonium hydroxide (NH4OH) precipitates uranium at a pH close to 4.5, which is far enough from the REE precipitation pH of about 6 [51]. 3.1. Types of the Liquor and ReagentTypically, the main liquors produced through the industrial hydrometallurgical processes are chloride and sulfate [4]. In the chloride liquor, precipitation of the radioactive elements is usually achieved by adding an alkali reagent. If the pH is kept close to or below 5.5, the total thorium and a part of uranium are likely precipitated and recovered while the loss of the REE is about 2% [44,45]. A lower pH for precipitation of radioactive elements has been reported in a sulfate liquor compared to the chloride liquor. Table 3 presents the pH range required for precipitating thorium and uranium from chloride and sulfate liquors. For example, 100% thorium is precipitated from sulfate liquor at a pH close to 1 using ammonium hydroxide. However, REE (44.7% La, 63.5% Ce, and 63.2% Nd) are also co-precipitated under such a highly acidic condition [43,46].In some cases, nitrate liquor has also been studied for separation of uranium from REE [51,52] wherein the uranium was precipitated by 90% using hydroxide reagents at a pH of 4.5 [51]. Further, a higher efficiency has also been obtained for a precipitation pH between 6 to 8, at which almost total recovery. Uranium Backup, free and safe download. Uranium Backup latest version: Uranium Backup. Old versions of Uranium Backup. Latest Version. Uranium Backup 9. released: - 4 years ago. old Versions. Uranium Backup 9. released: - 7 years ago; Uranium Backup 9. released: - 7 years ago; Uranium Backup 9.

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User7682

For your business with a flexible approach.A lightweight client available in 12 languages, including free customer support and frequent updates. Increase your business with powerful features, easy licensing, and affordable prices. The backup solution built for MSPs and IT departmentsBuild and maintain a scalable business with backup software you can rely on Real stories, real satisfactionSee what our customers are saying“I had gone crazy looking for backup software after losing my files. I finally found Uranium Backup and I am very happy and confident. Also, for any questions the support is very attentive.”“We have been using Uranium for more than 10 years, we use it for our company and for all the clients to whom we provide support, client and server. Never had any problems, only satisfied customers.”“Thanks to Uranium Backup we have solved the issue of daily backups on numerous installations of our customers.Not only for files and folders but also for Database SQL Server and MySql”

2025-04-22
User3867

Uranium BackupThe complete and versatile backup softwareTrusted by thousands of users around the world Find out why more than 100,000 users in 120 countries use Uranium Backup Feature-richThe solution for all data protection needs. Scheduling, incremental copies, logs and reporting, encryption, and much more. TrustedMore than 700,000 devices are protected and 450 petabytes are successfully copied every month. InexpensiveExperience outstanding performance, easy management, and recovery at an affordable price. Everything you need to preserveProtect your data with the following backup options Files, folders and DatabasesFull, incremental and differential backup solutions for files and databases can be easily set up, with customisable scheduling, compression and encryption settings. Image DisqueEnsure disaster recovery with powerful system image/drive image backup.Recovery is easy, 100% Windows compatible, and hardware agnostic. Virtual MachinesSeamlessly perform hot and incremental backups of virtual machines on VMware vSphere and Hyper-V hosts. Wherever and whenever you want to store itEndless destinations for any need, anytime LocalReplicate your data on an external device(Hard Disk, Tape, or NAS) connected internally or via cable or network.Using devices away and disconnected from your computer except during backups protects you from any risk. CloudCloud is a scalable solution with expandable storage on demand. No physical media to catalog, protect, or preserve because data is stored over the network. FTP/FTPS/SFTP serverBack up your data to remote devices using a File Transfer Protocol (FTP). This is a convenient remote backup destination because it allows you to store critical files offsite. Why choose Uranium Backup? Packed with all the attributes for IT providers and MSPAES 256-bit encryption, protection against Cryptolocker, and centralized monitoring of all the running procedures. For a 100% RGPD-compliant endpoint security. SecurityIn today’s world, backup alone is no longer enough.Encrypting backups adds an extra layer of security by converting sensitive information and files into an unreadable structure. This ensures reliability and protection for all workloads. VersatilityThe rise in ransomware attacks calls for a strengthening of security.Automatically send encrypted backups to a local offsite repository or cloud storage. This eliminates a single point of failure and streamlines the implementation of the 3-2-1 backup strategy. FlexibilityConfigure the best setup

2025-04-05
User2464

At ingesting around 0.21 grams of uranium per year. Using a red ceramic teacup daily would give you an estimated annual radiation dose of 400 mrem to your lips and 1200 mrem to the fingers, not counting the radiation from ingesting uranium. Basically, you're not doing yourself any favors eating off the dishes and you certainly don't want to sleep with one under your pillow. Ingestion of uranium could increase the risk of tumors or cancer, particularly in the gastrointestinal tract. However, Fiesta and other dishes are a lot less radioactive than many other items produced during the same era. Which Fiesta Ware Is Radioactive? Fiesta commenced commercial sales of colored dinnerware in 1936. Most colored ceramics made prior to World War II, including Fiesta ware, contained uranium oxide. In 1943, manufacturers stopped using the ingredient because the uranium was used for weapons. Homer Laughlin, the maker of Fiesta, resumed using the red glaze in the 1950s, using depleted uranium. The use of depleted uranium oxide ceased in 1972. Fiesta ware manufactured after this date is not radioactive. Fiesta dinnerware made from 1936-1972 may be radioactive. You can buy modern Fiesta ceramic dishes in just about any color of the rainbow, though the modern colors won't match the old colors. None of the dishes contain lead or uranium. None of the modern dishes are radioactive. Sources Buckley et al. Environmental Assessment of Consumer Products Containing Radioactive Material. Nuclear Regulatory Commission. NUREG/CR-1775. 1980. Landa, E. and Councell, T. Leaching of Uranium

2025-04-13

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