| Код ТН ВЭД | |
| Название продукта | пропионат кальция |
| синонимы | пропаноат кальция; Кальций соль пропионовой кислоты |
| химическое имя | Дипропионат кальция |
| химическая формула | C6H10CaO4 |
| молекулярный вес | 186,22 г/моль (безводный) |
| Номер КАС | 4075-81-4 |
| E номер | E282 |
| внешность | Белый кристаллический порошок или гранулы |
| запах | Беззапах или легкий запах пропионовой кислоты |
| вкус | Легкий вкус соленого раствора или пропионата |
| Растворимость в воде | Свободно растворимый, приблизительно 49 г/100 мл при 20 °C |
| растворимость в этаноле | Немножко растворимый |
| точка плавления | > 300 ° C |
| температура разложения | Распадается при температуре выше 300 °C |
| рН | 8,0-10,5 (10% водный раствор) |
| плотность | 1,36 г/см³ при 20 °C, приблизительно |
| плотность насыпи | 0,6-0,9 г/см³, приблизительно |
| анализ | ≥99,0% на сухой основе |
| потеря при сушке | ≤5,0% |
| тяжелые металлы | ≤10 мг/кг |
| Мышьяк | ≤3 мг/кг |
| Лид | ≤5 мг/кг |
| Оценка | Пищевой класс; класс корма; Технический класс |
| Хранение | Хранить в прохладном, сухом, хорошо вентилируемом месте; держать запечатанным и подальше от влаги |
| срок годности | 24 месяца при надлежащих условиях хранения |
| Упаковка | 25 кг чистый бумажный мешок или тканный мешок с внутренней накладкой PE |
| заявка | пищевые консерванты; кормовые консерванты; фармацевтическое и техническое применение |
Как аккредитованная фабрика пропионата кальция, мы соблюдаем строгие протоколы качества - каждая партия подвергается строгим испытаниям для обеспечения последовательных стандартов эффективности и безопасности.
| Упаковка | Пропионат кальция упаковывается в многостенные бумажные пакеты с покрытием полиэтиленом весом 25 кг нетто, паллетизированы и упакованы для транспортировки. |
| Погрузка контейнера (20-футовый контейнер) | Пропионат кальция упаковывается в 25-кг пакеты, паллетизируется и загружается в 20-футовый контейнер FCL, надежно укладывается и привязывается. |
| Доставка | Пропионат кальция обычно отправляется в качестве неопасного белого порошка в запечатанных, влажностойких мешках, волокнных барабанах или насыпных сумках. Его следует держать сухим, подальше от сильных окислителей и перевозить в стандартных условиях перевозки. Хранить в прохладном, вентилируемом месте; Класс опасности ООН обычно не требуется. |
| Хранение | Храните пропионат кальция в прохладном, сухом, хорошо вентилируемом месте. Держите контейнеры плотно закрытыми и четко помеченными. Защитите от влаги, тепла и прямого солнечного света, так как он гигроскопичен. Отделяется от сильных окисляющих агентов и несовместимых материалов. Используйте вторичное содержание, когда это уместно. Поддерживайте хорошую уборку и избегайте пыли. Следуйте местным правилам и рекомендациям производителя. Храните подальше от еды, кормов и напитков. |
| Срок годности | Пропионат кальция обычно имеет двухлетний срок хранения, если он хранится сухим, прохладным и запечатанным в оригинальной упаковке. |
On high-speed pan bread lines where the baked crumb reaches 96–98°C at the point of slice and bag, the principal preservation target is rope-forming Bacillus spp. and Penicillium crust molds; calcium propionate is added to the dry stream at 0.15–0.30% on flour weight, with 0.20% the most widely used midpoint for white pan bread. The compound is blended with flour, salt, dry yeast, and enzyme conditioners in a horizontal spiral mixer that discharges at 26–28°C final dough temperature; dough pH falls from 5.8 to 5.3 during 45–60 min floor time and 50–60 min final proof at 38°C and 85% relative humidity. Because propionic acid has a pKa of 4.87 at 25°C, the un-dissociated fraction at crumb pH 5.3–5.6 is lower than in more acidic tortilla doughs; therefore the concentration–response curve flattens at the upper addition range and does not transfer linearly across product categories. On tunnel ovens with radiant and convection zones, the product is baked until crumb temperature exceeds 94°C, cooled in spiral towers to 32–35°C core temperature, sliced, and bagged; the residual calcium propionate remains in the crumb moisture and exerts inhibition during the mold risk window between cooling and closure. Terminal product types include sliced white pan bread, hamburger buns, hot dog rolls, dinner rolls, and sandwich bread for centralized commissary and in-store bakery supply. Published data for extended sponge-and-dough pre-ferments above 4 h combined with propionate above 0.30% is limited, but production trials on 150 kW horizontal mixers show gassing reductions of 7–12% when the upper bound is exceeded in lean doughs. The applicable compliance matrix is as follows.
| Jurisdiction /reference | Designation | Scope |
|---|---|---|
| United States | 21 CFR 184.1221 | GRAS antimicrobial agent; no numerical limit beyond GMP |
| European Union | Regulation (EC) No 1333/2008, Annex II, Part E | E 282 permitted in bread and rolls; quantum satis in category 07.1 |
| Codex | CXS 192-1995, food category 07.1.1 | Maximum use level 3000 mg/kg in bread and rolls |
Hot-press flour tortilla operations run at 60–120 cycles/min per press and generate a hot disk with residual surface moisture; calcium propionate is added at 0.20–0.40% on wheat flour weight in the dry mix. The salt is dispersed with wheat flour, sodium bicarbonate, sodium acid pyrophosphate, salt, and shortening in a horizontal batch mixer for 6–8 min, followed by water addition to a dough temperature of 30–32°C. After bench resting of 10–20 min, the dough is divided, rounded, and hot-pressed at platen temperatures of 190–210°C for 20–30 s, then cooled on multi-tier conveyors with dehumidified air at 45–50% RH to below 30°C before counting and bagging. If closure occurs while the core temperature remains above 32°C, condensation collects at the tortilla–tortilla contact interface and aw measured by dewpoint chilled-mirror per ISO 18787:2017 can exceed 0.94; this is the site where propionate partitioning into the aqueous phase suppresses Aspergillus and Penicillium growth. Package atmosphere is typically modified with 60–70% CO₂ and balance nitrogen in printed polypropylene film; the preservative is not a replacement for gas flushing or cooling-air dehumidification. Terminal products include flour tortillas, burrito wraps, fajita wraps, and soft flatbreads for retail and foodservice. Regulatory status is governed by FDA 21 CFR 184.1221, with EU labelling as E 282 under Regulation (EC) No 1333/2008 and Codex maximum levels in tortilla categories under CXS 192-1995. In lime-cooked corn masa systems, added calcium from propionate can shift the equilibrium of the nixtamalization matrix and alter rollability; published data for that specific configuration is limited.
In dry cake, muffin, pancake, and waffle mixes, the problem is not only microbial inhibition but the interaction between calcium propionate and the acidulant system during storage under fluctuating warehouse humidity. The material is metered at 0.10–0.25% on total dry mix basis; this lower range relative to bread reflects lower moisture in the finished baked crumb and a lower threshold for propionic off-notes in high-sugar, high-fat formulas. Batch blending occurs in a ribbon blender or paddle mixer jacketed at 20–25°C for 10–15 min; the discharged blend is packed into foil-lined polyethylene or polyester film pouches. If blend moisture measured by ISO 712 exceeds 10%, calcium propionate can partially dissolve and initiate acidulant pre-reaction with sodium bicarbonate, particularly with monocalcium phosphate and sodium acid pyrophosphate as leavening acids. Production control therefore holds mixer conditioning at 45–50% RH and delays addition of encapsulated acidulants until the final 3–4 min of mixing. Downstream, high-speed bakeries hydrate the dry mix and deposit batter at 20–24°C into pans or onto band ovens operating at 175–190°C; the buffering contribution of calcium propionate shifts the evolved CO₂ profile, so acid-to-base ratios require revalidation by bench rheometer or specific volume measurement. Terminal products include layer cake dry mixes, muffin mixes, pancake mixes, waffle mixes, and quick-bread mixes in pack sizes from 200 g to 25 kg. Regulatory coverage includes FDA 21 CFR 184.1221 and Regulation (EC) No 1333/2008 for fine bakery wares under E 282; export specifications should be checked against Codex CXS 192-1995 category 07.2, because maximum use levels in cakes and biscuits can be lower than in bread. Published data for the exact acidulant rebalancing response in high-ratio cake mixes is limited, so a flour–acid–base response surface trial is required before specification freeze.
Refrigerated biscuit, crescent roll, pizza crust, and par-baked bread lines operate with a cold-chain boundary that is narrower than ambient bakery; the preservative must function at 2–7°C where mold germination is slowed but not absent. Calcium propionate is added at 0.20–0.30% on flour weight, with the lower end used in laminated doughs because the calcium cation can tighten gluten and reduce laminate lift if water absorption is not corrected by 1–2%. Dough is mixed to a final temperature of 18–20°C, sheeted or laminated, cut on high-speed lines, and blast-chilled to 2–4°C within 90 min before packaging. Par-baked units are baked to 80–90% of full bake time, cooled to 35–40°C, and gas-flushed with 50–70% CO₂ in multi-layer barrier film; residual condensate on the package interior raises surface aw and creates a mold initiation site that propionate suppresses by diffusion from the crumb matrix during chilled storage. Terminal products include refrigerated biscuit dough in spiral-wound cans, unbaked pizza crusts, par-baked baguettes, part-baked ciabatta, and brown-and-serve rolls for foodservice. The applicable regulatory framework is US FDA 21 CFR 184.1221, with EU declarations as E 282 under Regulation (EC) No 1333/2008 for bread and fine bakery wares, and Codex CXS 192-1995 maximum levels in the corresponding bread categories. Above 0.30%, yeast viability after 72 h at 5°C can decline, leading to insufficient oven spring in raw dough formats; in laminated grades, calcium propionate at the upper end can increase extensional resistance and promote tearing at the sheeter, a fault observed on 25–30 cm wide sheeting rolls with roll gap below 2 mm. Published data for the specific interaction between propionate and encapsulated ascorbic acid or azodicarbonamide in refrigerated dough systems is limited.
In compound feed mills and TMR preparation yards, high-moisture ingredient streams such as brewer’s grain, apple pomace, and high-moisture corn create heating pockets within 24–48 h when mixer distribution is uneven. Calcium propionate is metered through a micro-ingredient dosing system at 0.10–0.30% of complete feed dry matter; for TMR batches of 12–18 t, a premix of 10% calcium propionate in ground corn is prepared to achieve a coefficient of variation below 5%, and the mixer is operated to 6–10 revolutions after the last liquid molasses injection to reduce smearing and particle-size segregation. In feed mill pelleting lines, the preservative is added before conditioning at 70–85°C because the salt remains stable under these steam conditions; post-pellet liquid application is reserved for high-moisture byproducts blended after the cooler. Terminal products include complete dairy compound feed, high-moisture corn treated for silo bag storage, TMR for lactating cattle, and poultry mash. The preservative effect is dose-dependent above 0.10% and plateaus above 0.30%; it suppresses yeast and mold heating but is not a mycotoxin binder and does not restore already heated feed. Regulatory status is provided by Regulation (EC) No 1831/2003 as a technological feed additive in the preservative functional group; in the United States, feed use follows AAFCO Official Publication ingredient definitions, with food-grade material tested against the Food Chemicals Codex monograph for calcium propionate. Batch-to-batch variance in TMR mixer geometry and molasses injection points can produce local underdosage, so total mixed ration samples should be checked for propionic acid recovery by steam distillation or ion chromatography. Published data for the exact dose-response relationship in farm-stored brewer’s grain under varying ambient moisture is limited.
Semi-moist pet food extrusion stabilised at aw 0.65–0.72 uses calcium propionate not as a broad-spectrum preservative but as a targeted inhibitor of osmotolerant Zygosaccharomyces and Aspergillus species that continue to metabolise at reduced water activity. The dry preblend is prepared by combining 0.10–0.30% calcium propionate on finished product weight with cereal flours, meat meals, and mineral premixes; this blend is conditioned in a single-shaft preconditioner at 80–90°C, extruded through a twin-screw extruder with barrel temperatures of 90–130°C, and dried in a continuous belt dryer at 60–80°C to 12–18% final moisture. The preservative is heat-stable under these extrusion conditions, but at moisture above 18% the finished piece can exceed aw 0.80, at which point propionate alone is insufficient without additional humectant or acidulant control. Terminal product types include semi-moist dog treats, soft training treats, dental chew sticks, and pillow- or tube-shaped cat treats packed in multilayer barrier pouches. Regulatory compliance follows FDA 21 CFR 184.1221 for food-grade calcium propionate used in pet food; for Europe, pet food falls under Regulation (EC) No 1831/2003 and Regulation (EC) No 767/2009, while label declarations must use E 282 or the feed additive category name as applicable. In high-palatability cat treats, the calcium cation can alter the perception of phosphate-based palatants; published data for the specific refusal threshold above 0.25% is limited, and production trials should include paired consumption panels. The final aw should be verified by chilled-mirror dewpoint per ISO 18787:2017, and water activity below 0.60 reduces the contribution of propionate because microbial growth is already strongly restricted.
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Пропионат кальция (CAS 4075-81-4) поставляется в виде белого кристаллического порошка или гранулированного твердого вещества с формулой Ca(CH3CH2COO)2 и молекулярной массой 186,22 г/моль. Добавка идентифицируется как E 282 в Европейском союзе и INS 282 в Codex Alimentarius; В США он утвержден как GRAS в соответствии с FDA 21 CFR 184.1221. Соединение функционирует как ингибитор плесени в пекарных изделиях и как консервант в кормах для животных, причем пропионатный анион мешает процветанию грибковых спор и продлению мицелии во время хранения. Продовольственный материал контролируется для анализа, потерь при сушке, нерастворяемого в воде вещества и тяжелых металлов; В коммерческих сертификатах анализа, как правило, указывается анализ при ≥98,0% на безводной основе, потеря при сушении ≤5,0%, нерастворимое в воде вещество ≤0,2%, а pH водного раствора 1% между 7,0 и 9,0. Доступные формы включают 30-сетка гранулированный, 100-сетка порошок, и пыль подавляемый гранулированный материал; Модельные обозначения, такие как CP-FG-100 или CP-FG-GR, являются специфическими для поставщика и соответствуют распределению размеров частиц, плотности объема и конфигурации упаковки, а не монографическому химическому варианту.