Work conducted by the Canadian Electrical Association(11) identified t terjemahan - Work conducted by the Canadian Electrical Association(11) identified t Bahasa Indonesia Bagaimana mengatakan

Work conducted by the Canadian Elec

Work conducted by the Canadian Electrical Association(11) identified the sodium-iron phosphate reactions that take place up to 360°C. The major iron reaction products that cause hideout (or more specifically in these experiments, “uptake by magnetite” at
Na / PO4 molar ratios near 2.5) were identified from batch experiments as NaFe++ PO4 (maricite) and Na4Fe+++ (OH)(PO4)2 • 1 / 3NaOH. At higher Na / PO4 ratios Na3-2xFex++ PO4 (a solid solution with Na3PO4) replaces maricite as the stable reaction product. At 360°C (680°F) “uptake by magnetite” behavior is similar except that there appears to be no significant amount of iron (+2) reaction products with Na / PO4 ratios of 2.5 or greater. If the Na / PO4 ratio is large (>3.5), no “uptake by magnetite” takes place.

Nickel (NiO) reportedly behaves similarly. The Na / PO4 ratio in boiler water required to avoid the formation of more acidic phosphate mixtures (maricite + iron III phases) increases from about 2.3 at 315°C (599°F) to about 2.7 at 360°C (680°F). The injection ofsolutions with Na / PO4 ratios above 3.0 causes little or no iron-containing phosphate deposit to form at 360°C (680°F).
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Work conducted by the Canadian Electrical Association(11) identified the sodium-iron phosphate reactions that take place up to 360°C. The major iron reaction products that cause hideout (or more specifically in these experiments, “uptake by magnetite” atNa / PO4 molar ratios near 2.5) were identified from batch experiments as NaFe++ PO4 (maricite) and Na4Fe+++ (OH)(PO4)2 • 1 / 3NaOH. At higher Na / PO4 ratios Na3-2xFex++ PO4 (a solid solution with Na3PO4) replaces maricite as the stable reaction product. At 360°C (680°F) “uptake by magnetite” behavior is similar except that there appears to be no significant amount of iron (+2) reaction products with Na / PO4 ratios of 2.5 or greater. If the Na / PO4 ratio is large (>3.5), no “uptake by magnetite” takes place.Nickel (NiO) reportedly behaves similarly. The Na / PO4 ratio in boiler water required to avoid the formation of more acidic phosphate mixtures (maricite + iron III phases) increases from about 2.3 at 315°C (599°F) to about 2.7 at 360°C (680°F). The injection ofsolutions with Na / PO4 ratios above 3.0 causes little or no iron-containing phosphate deposit to form at 360°C (680°F).
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Hasil (Bahasa Indonesia) 2:[Salinan]
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Pekerjaan yang dilakukan oleh Asosiasi Listrik Kanada (11) mengidentifikasi reaksi fosfat natrium-besi yang berlangsung sampai 360 ° C. Produk reaksi besi utama yang menyebabkan tempat persembunyian (atau lebih khusus dalam percobaan ini, "serapan oleh magnetit" di
Na / PO4 molar rasio dekat 2,5) diidentifikasi dari percobaan batch Nafe ++ PO4 (maricite) dan Na4Fe +++ (OH) (PO4) 2 • 1 / 3NaOH. Pada tinggi rasio Na / PO4 Na3-2xFex ++ PO4 (larutan padat dengan Na3PO4) menggantikan maricite sebagai produk reaksi yang stabil. Pada 360 ° C (680 ° F) "serapan oleh magnetit" perilaku mirip kecuali bahwa tampaknya ada tidak ada jumlah yang signifikan dari besi produk (2) reaksi dengan Na / PO4 rasio 2,5 atau lebih besar. Jika rasio Na / PO4 besar (> 3,5), tidak ada "serapan oleh magnetit" berlangsung. Nickel (NiO) dilaporkan berperilaku sama. Na / PO4 rasio dalam air boiler yang diperlukan untuk menghindari pembentukan campuran fosfat lebih asam (maricite + besi III fase) meningkat dari sekitar 2,3 pada 315 ° C (599 ° F) menjadi sekitar 2,7 pada 360 ° C (680 ° F) . The ofsolutions injeksi dengan rasio Na / PO4 atas 3,0 penyebab sedikit atau tidak ada deposito fosfat yang mengandung besi terbentuk pada 360 ° C (680 ° F).


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