The 3 Men's Fish Smoking Process
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SMOKED FISH – Smoked Over Beech-Wood
Royal Greenland FIT FOR FOODSERVICE & GASTRO SMOKED FISH – smoked over beech-wood Smoked fish Highest quality World class food safety Smoked and marinated fish Royal Greenland has produced smoked and marinated fishsince 1988 and employs staff with over 30 years’ expertise in producing the very best quality. We use only fish of the highest quality for our production and follow a strict HACCP procedure in every step of the production and the factory is accredited with IFS higher level. Royal Greenland’s smoked product assortment has a very high food safety and the risk of listeria growth is stabilized for the entire shelf life - World class food safety - Highest quality raw material - Hot- and cold smoked varieties - Carefully and slowly smoked over beech wood - Variety of Greenland turbot, Atlantic cod and Norwegian salmon - Pleasant smoke flavor - Perfect lean texture Our Greenland turbot and Atlantic cod Our whitefish comes from our own fisheries in the North Atlantic and Arctic oceans. The quality of this raw mate- rial is always very high. The fish are filleted and trimmed right after catch and delivered to the Hirtshals ready for Our salmon production. Our salmon (Salmo salar) comes from selected suppliers in Norway, and the quality is always Greenland turbot is a flatfish that has very white and lean “Superior”, which is the best possible quality rating. fillets without pinbones. The fillets are trimmed free of In Hirtshals, the fish are filleted, the tailpiece is cut the frills and used either with or without skin. off and the pin bones are removed. Atlantic cod is trimmed similar to the salmons Trim D, The salmon is then trimmed by hand according to where the lean fillet is deboned and all belly fat and skin specification. -
F Is for Flavor.Pdf
!! ™ This is an introductory version of Chef Jacob’s Culinary Bootcamp Workbook and F-STEP™ curriculum. You can download the complete curriculum here. 2 !! Third Edition Copyright © 2015 Jacob Burton All rights reserved. 3 4 !! WHAT IS F-STEP?!.....................................................................................11 F IS FOR FLAVOR!.....................................................................................13 UNDERSTANDING FLAVOR STRUCTURE! 14 What is flavor?! 14 Salty! 15 Sweet! 20 Sour! 21 Bitter! 22 Umami! 22 Umami Ingredient Chart! 26 Piquancy! 28 Flavor And Aroma! 28 The Importance Of Fat And Flavor! 29 Texture! 30 Tannins! 30 Flavor’s X Factor! 31 Preventing Palate Fatigue! 32 Delivering A “Flavor Punch”! 33 Using “Flavor Interruptions”! 33 CHOOSING PRIMARY AND SECONDARY FLAVORS! 34 SELECTING NON SEASONAL INGREDIENTS! 35 Buying Spices! 35 Herbs! 36 Poultry! 37 5 Seafood! 37 Beef! 39 Pork! 41 GUIDE TO SEASONAL PRODUCE! 42 Winter! 42 December! 42 January! 44 February! 45 Spring! 46 March! 46 April! 47 May! 49 Summer! 49 June! 50 July! 50 August! 52 Fall! 54 September! 54 October! 55 November! 58 S IS FOR SAUCE!.......................................................................................60 CULINARY STOCKS! 62 Basic Recipe for Protein-Based Stocks! 63 SAUCE THICKENERS! 63 Roux! 64 6 !! Liaison! 65 Other Sauce Thickeners At A Glance! 66 The Three Modern Mother Sauces! 67 REDUCTION SAUCES! 67 Reduction Sauce Process! 69 Tips For Reinforcing Flavors! 70 Reduction Stage! 70 Tips For Reduction! 71 Pan Sauces! -
Salt Deposits in the UK
CORE Metadata, citation and similar papers at core.ac.uk Provided by NERC Open Research Archive Halite karst geohazards (natural and man-made) in the United Kingdom ANTHONY H. COOPER British Geological Survey, Keyworth, Nottingham, NG12 5GG, Great Britain COPYRIGHT © BGS/NERC e-mail [email protected] +44 (-0)115 936 3393 +44 (-0)115 936 3475 COOPER, A.H. 2002. Halite karst geohazards (natural and man-made) in the United Kingdom. Environmental Geology, Vol. 42, 505-512. This work is based on a paper presented to the 8th Multidisciplinary Conference on Sinkholes and the Engineering and Environmental impact of karst, Louisville, Kentucky, April 2001. In the United Kingdom Permian and Triassic halite (rock salt) deposits have been affected by natural and artificial dissolution producing karstic landforms and subsidence. Brine springs from the Triassic salt have been exploited since Roman times, or possibly earlier, indicating prolonged natural dissolution. Medieval salt extraction in England is indicated by the of place names ending in “wich” indicating brine spring exploitation at Northwich, Middlewich, Nantwich and Droitwich. Later, Victorian brine extraction in these areas accentuated salt karst development causing severe subsidence problems that remain a legacy. The salt was also mined, but the mines flooded and consequent brine extraction caused the workings to collapse, resulting in catastrophic surface subsidence. Legislation was enacted to pay for the damage and a levy is still charged for salt extraction. Some salt mines are still collapsing and the re-establishment of the post-brine extraction hydrogeological regimes means that salt springs may again flow causing further dissolution and potential collapse. -
City of Bennington Ordinance Book
CITY OF BENNINGTON ORDINANCE BOOK Chapter I (1) ADMINISTRATION Article 1 City Elections Article 2 Governing Body Article 3 Officers and Employees Article 4 Oaths and Bonds Article 5 Municipal Court Article 6 Fire Department Organization Article 7 Recreation Commission Article 8 Capital Improvement Fund Article 9 Equipment Reserve Fund Article 10 Ambulance Service Organization Chapter II (2) ANIMALS AND FOWL Article 1 Animals Article 2 Dogs and Cats Chapter III (3) BEVERAGES Article 1 Alcoholic Liquor Article 2 Cereal Malt Beverage Chapter IV (4) BUILDINGS AND CONSTRUCTION Article 1 Building Code Article 2 Dangerous Structures Article 3 City Planning Commission Article 4 Miscellaneous Article 5 Solar Energy Systems Article 6 Cross – Connections Chapter V (5) LICENSES AND BUSINESS REGULATIONS Article 1 Solicitors, Canvassers, and Peddlers Article 2 Operation Licenses – Amusement Chapter VI (6) FIRE REGULATIONS Article 1 Fire Limits Article 2 Fire Regulations Article 3 Fireworks Chapter VII (7) HEALTH AND SANITATION Article 1 Health Nuisances Article 2 Refuse Regulations Article 3 Sewer Regulations Chapter VIII (8) PUBLIC OFFENSES Article 1 Uniform Public Offense Code Article 2 Supplementary Offenses Chapter IX (9) STREETS, SIDEWALKS, AND PUBLIC PROPERTY Article 1 Street Regulations Article 2 Sidewalks Article 3 Curb Cuts Article 4 Consolidation Street and Highway Fund Chapter X (10) TRAFFIC Article 1 Standard Traffic Ordinance Article 2 Additional Traffic Regulations Chapter XI (11) UTILITIES Article 1 Water Service Article 2 Sewer Service -
Growth, Viability, and Death of Planktonic and Biofilm
Edinburgh Research Explorer Growth, Viability, and Death of Planktonic and Biofilm Sphingomonas desiccabilis in Simulated Martian Brines Citation for published version: Stevens, AH, Childers, D, Fox-Powell, M, Nicholson, N, Jhoti, E & Cockell, CS 2018, 'Growth, Viability, and Death of Planktonic and Biofilm Sphingomonas desiccabilis in Simulated Martian Brines', Astrobiology. https://doi.org/10.1089/ast.2018.1840 Digital Object Identifier (DOI): 10.1089/ast.2018.1840 Link: Link to publication record in Edinburgh Research Explorer Document Version: Publisher's PDF, also known as Version of record Published In: Astrobiology General rights Copyright for the publications made accessible via the Edinburgh Research Explorer is retained by the author(s) and / or other copyright owners and it is a condition of accessing these publications that users recognise and abide by the legal requirements associated with these rights. Take down policy The University of Edinburgh has made every reasonable effort to ensure that Edinburgh Research Explorer content complies with UK legislation. If you believe that the public display of this file breaches copyright please contact [email protected] providing details, and we will remove access to the work immediately and investigate your claim. Download date: 06. Oct. 2021 ASTROBIOLOGY Volume 19, Number 2, 2018 Research Article Mary Ann Liebert, Inc. DOI: 10.1089/ast.2018.1840 Growth, Viability, and Death of Planktonic and Biofilm Sphingomonas desiccabilis in Simulated Martian Brines Adam H. Stevens,1 Delma Childers,1,2 Mark Fox-Powell,1,3 Natasha Nicholson,1 Elisha Jhoti,1 and Charles S. Cockell1 Abstract Aqueous solutions on Mars are theorized to contain very different ion compositions than those on Earth. -
Effect of Chilled Temperature and Salt Concentration on Shelf Life of Herring (Clupea Harengus)
PO Box 1390, Skulagata 4 120 Reykjavik, Iceland FINAL REPORT 2008 EFFECT OF CHILLED TEMPERATURE AND SALT CONCENTRATION ON SHELF LIFE OF HERRING (CLUPEA HARENGUS) Won Sik An Fisheries Information Division, Ministry of Fisheries Democratic People´s Republic of Korea Botongmun-Dong, Central District, Pyongyang E-mail: [email protected] Supervisors: Kristin A. Thorarinsdottir ([email protected]), Icelandic Food Research Asbjorn Jonsson ([email protected]), Icelandic Food Research Irek Klonowski ([email protected]), Icelandic Food Research ABSTRACT Keeping the quality of fish and fish products at its best is the most important issue in fish processing. Based on the trend demanding that salted fish reduce salt content for dietary reasons as well as for further processing, this project focused on the extension of shelf life by investigating quality changes during brining in the cold storage of herring (Clupea harengus), the one of the popular foods in DPR Korea. Instead of the traditional salting method, an innovative method has been suggested called cold brining. Cold brining is a processing method expected either to provide a good salty flavour or to extend shelf life for further products by delaying microbiological growth and the chemical changes of the co- operation of ice and salt. In both experiments using fresh whole herring and fillets, five different brine concentrations of 8, 12, 14, 16 and 18%, and five different temperatures of 2, -1, -2, -4, -8 and -24 °C were used for 25 and 18 days, respectively, to select the optimum conditions for cold brining. The results were revealed that the 14% brine at -8 °C can be regarded as optimum condition for pre-cooling of herring. -
Download Brochure
Because Flavor is Everything Victoria Taylor’s® Seasonings ~ Jars & Tins Best Sellers Herbes de Provence is far more flavorful than the traditional variety. Smoky Paprika Chipotle is the first seasoning blend in the line with A blend of seven herbs is highlighted with lemon, lavender, and the the distinctive smoky flavor of mesquite. The two spices most famous added punch of garlic. It’s great with chicken, potatoes, and veal. Jar: for their smoky character, chipotle and smoked paprika, work together 00105, Tin: 01505 to deliver satisfying flavor. Great for chicken, tacos, chili, pork, beans & rice, and shrimp. Low Salt. Jar: 00146, Tin: 01546 Toasted Sesame Ginger is perfect for stir fry recipes and flavorful crusts on tuna and salmon steaks. It gets its flavor from 2 varieties of Ginger Citrus for chicken, salmon, and grains combines two of toasted sesame seeds, ginger, garlic, and a hint of red pepper. Low Victoria’s favorite ingredients to deliver the big flavor impact that Salt. Jar: 00140, Tin: 01540 Victoria Gourmet is known for. The warm pungent flavor of ginger and the tart bright taste of citrus notes from orange and lemon combine for Tuscan combines rosemary with toasted sesame, bell pepper, and a delicious taste experience. Low Salt. Jar: 00144, Tin: 01544 garlic. Perfect for pasta dishes and also great on pork, chicken, and veal. Very Low Salt. Jar: 00106. Tin: 01506 Honey Aleppo Pepper gets its flavor character from a truly unique combination of natural honey granules and Aleppo Pepper. On the Sicilian is a favorite for pizza, red sauce, salads, and fish. -
CANADIAN SALT PRODUCERS Explosives, Fertilizers, Glass, and Cosmetics
Salt Michel Dumont Although dietary intake can vary for people from various countries, on average an adult’s total salt intake should be The author is with the Minerals and Metals Sector, no more than 6 g per day and a child’s no more than 4 g. Natural Resources Canada. The average person’s diet incorporates at least 9 g per day. Telephone: 613-995-2917 Dietary sodium is measured in milligrams (mg). The most E-mail: [email protected] common form of sodium used is table salt, which is 40% sodium. One teaspoon of table salt contains 2300 mg of sodium. HIGHLIGHTS The salt markets in developed regions such as North • Salt is critical to human and animal health. In insuffi- America and Western Europe are both stable and mature. cient quantities, our muscles won’t contract, our blood The main consuming regions are North America, Asia and won’t circulate, our food won’t digest, and our hearts the Middle East, and Western Europe. World salt consump- won’t beat. tion is on the rise, mainly in response to increasing demand in Southeast Asia and other developing nations. China is • Due to severe North American winter (2007-08) weather the world’s leading producer of synthetic soda ash (source: conditions, 2008 data indicate Canadian shipments of U.S. Geological Survey [USGS] 2006 salt review), which salt increased by 18.4% (or 2.2 Mt) to 14.2 Mt valued at uses large quantities of salt as feedstock, and many of $537.8 million. China’s salt operations have not been able to keep up with the strong demand created by the rise in soda ash • Preliminary 2008 Canadian data indicate total salt production. -
Cooks Illustrated: Brining Basics
The Basics of Brining How salt, sugar, and water can improve texture and flavor in lean meats, poultry, and seafood. BY JULIA COLLIN Why are some roast turkeys dry as sawdust while others boast meat that’s firm, juicy, of weight—call it, for lack of a better phrase, water retention—that stays with it through and well seasoned? The answer is brining. Soaking a turkey in a brine—a solution of salt the cooking process. This weight gain translates into moist meat; the salt and sugar in (and often sugar) and a liquid (usually water)—provides it with a plump cushion of sea- the brine translate into seasoned, flavorful meat. And this applies to all likely candidates soned moisture that will sustain it throughout cooking. The turkey will actually gain a bit for brining (see below). For a complete understanding of the process, read on. HOW IT WORKS THE BEST CANDIDATES FOR BRINING Brining works in accordance with two principles, called diffusion and osmosis, that like things to be kept in Lean and often mildly flavored meats with a tendency equilibrium. When brining a turkey, there is a greater concentration of salt and sugar outside of the turkey to overcook—such as chicken, turkey, and pork—are (in the brine) than inside the turkey (in the cells that make up its flesh). The law of diffusion states that perfect candidates for brining, which leaves them plump the salt and sugar will naturally flow from the area of greater concentration (the brine) to lesser concen- and seasoned. Many types of seafood also take well to tration (the cells). -
About Brining
All About Brining Brining is a popular method for improving the flavor and moisture content of lean meats like chicken, turkey, pork and seafood. This topic explains how brining works, which cuts of meat benefit most from brining, and concludes with a couple of recipes to get you started. Background On Brining Historically, brining has been used as a method to preserve meat. Meat is soaked for many days in a very strong saltwater solution with the addition of sugar, spices, and other ingredients. This curing process binds the water in the meat or removes it altogether so it's not available for the growth of food- spoiling microorganisms. With the advent of mechanical refrigeration, traditional brining became less popular for food preservation, but is still used today in the production of some meat products. Introducing Flavor Brining Today there's a surge in popularity of "flavor brining", a term coined by Bruce Aidells and Denis Kelly in the book The Complete Meat Cookbook. While traditional brining was meant to preserve meat, the purpose of flavor brining is to improve the flavor, texture, and moisture content of lean cuts of meat. This is achieved by soaking the meat in a moderately salty solution for a few hours to a few days. Flavor brining also provides a temperature cushion during cooking--if you happen to overcook the meat a little, it will still be moist. At a minimum, a flavor brine consists of water and salt. Other ingredients may include sugar, brown sugar, honey, molasses, maple syrup, fruit juices, beer, liquor, bay leaves, pickling spices, cloves, garlic, onion, chilies, citrus fruits, peppercorns, and other herbs and spices. -
Seawater Bittern a Precursor for Magnesium Chloride Separation
l o rna f Wa ou s J te l a R n e Abdel-AAl et al., Int J Waste Resour 2017, 7:1 o s i o t u International Journal a r n c r DOI: 10.4172/2252-5211.1000267 e e t s n I ISSN: 2252-5211 of Waste Resources ResearchReview Article Article Open Access Seawater Bittern a Precursor for Magnesium Chloride Separation: Discussion and Assessment of Case Studies Hussein Abdel-Aal1*, Khaled Zohdy2 and Maha Abdelkreem2 1Emeritus of Chemical Engineering, NRC, Cairo, Egypt 2Department of Chemical Engineering, Higher Technological Institute, Tenth of Ramadan City, Egypt Abstract Sea water bitterns (SWB) are encountered in the processes of desalination and sea-salt production where large quantities of bitterns and brines are produced, either as by-products, or as waste products. They could be described as “exhausted brines”. In theory, for every ton of sea-salt produced about one cubic meter of bittern is produced and is available for further processing. To exploit valuable salt products, in particular MgCl2 from sea water in desalination plants and/or salt production, various methods were carried out, in particular by the author and his colleagues. Mainly they consist in applying the physical concept of preferential-type of salt separation, where Mg Cl2 is the most soluble salt, will separate at the very end. An experimental work was initiated by Kettani and Abdel-Aal and extended by Abdel-Aal et al. Two case studies are presented and discussed in this paper. Keywords: Desalination; Exhausted brines; Magnesium chloride out, yielding about 75% of the available sodium chloride (known as halide) in solution. -
(Catfish) and Tilapia Nilotica (Tilapia) Fishes
Available online a t www.pel agiaresearchlibrary.com Pelagia Research Library European Journal of Experimental Biology, 2013, 3(5):183-185 ISSN: 2248 –9215 CODEN (USA): EJEBAU Comparative nutritional studies on fresh and smoked Claras genepinus (Catfish) and Tilapia nilotica (Tilapia) fishes 1Salihu-Lasisi M., 2Akpabio C. J. and 3Ogunsola M. O. 1Biochemistry Unit, Biological sciences Department, Al-Hikmah University, Ilorin, Kwara State, Nigeria 2Department of Biochemistry, Basic Medical Sciences, University of Ibadan, Ibadan, Oyo State Nigeria 3Bowen University, Iwo, Osun State, Nigeria _____________________________________________________________________________________________ ABSTRACT This study compares the nutritional parameters of fresh and smoked Claras genepinus and Tilapia nilotica fishes based on the proximate analysis of the samples from major market in Ilorin metropolis using standard methods. The results shows that fresh and smoked Catfish and Tilapia fishes samples contain 72.72 ± 5.01%, 52.15 ± 3.51% and 17.12 ± 0.83%, 12.30 ±1.01% moisture content, total protein was 16.04 ± 3.00%, 18.24 ± 2.15%, and 57.61 ± 6.05%, 62.04 ± 4.21% and fats was 4.49 ± 0.23%, 12.10 ± 1.01% and 2.07 ± 0.04%, 5.88 ± 0.51. This study provides nutritional information on the two sampled fishes in their fresh and smoked forms. It thus confirms the hypothetical belief that smoked fishes has higher protein values than fresh fish and added that more fats are present in dry fish than fresh fish. Thus, recommended for aged and diseased in provision of much richer nutrients. Keywords: Fish, Nutrition, Proximate analysis, Claras genepinus , Tilapia nilotica _____________________________________________________________________________________________ INTRODUCTION Fish belongs to phylum chordate and class Pisces.