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Welcome to American Nettings & Fabric, Inc., one of the leading suppliers of nettings and fabrics in North America. American Nettings has been family owned and operated for 35 years. We offer a wide range of netting and fabric products for commercial and home applications.
Our nettings and fabrics are made in a variety of sizes, from packaged retail products to commercial size rolls. We have industry sector experts giving us constant updates and feedback to ensure that we offer our customers the highest quality products to suit their application.
A side of ham in a service counter is more attractive if it also has a rustic appearance, such as a barbecue grill pattern or roughened surface. Casing-NetTM and Ultra-KotTM casings combine appetizing looks with the convenience and benefits of industrial production. Kalle offers these closely-knit polyester nets in a range of elasticity's and patterns. This enables customers to create a signature look for their products. The nettings range also includes casings with specific characteristics, such as easy peel-ability. In addition, Kalle nettings are available with value-adding transfer capabilities. These allow customers to apply a surface structure, smoke color and/or seasoning in a single operation.
Compared with conventional collagen films, Casing-NetTM and Ultra-KotTM casings offer greater efficiency and product safety during the stuffing process. Fillings are added directly into the seamless casing, thereby preventing voids, surface blisters and deformations. As a further bonus, these nettings offer increased productivity.
Nitrosamines (NAs), which are catalogued as carcinogenic compounds, may be present in meat products due to the conversion of nitrites and as result of migration from elastic rubber nettings used. A method based on ultrasonic assisted extraction coupled with dispersive liquid-liquid microextraction as sample treatment and gas chromatography-mass spectrometry as separation and detection technique was proposed for the determination of twelve NAs in cooked ham samples. The method was validated by evaluating linearity (0.5-1000 ng g-1), matrix effect, sensitivity (detection limits were between 0.15 and 1.4 ng g-1) and precision, which was below 12%. Five NAs were found in the samples with levels ranging from not quantifiable to 40 ng g-1. The effect of the elastic rubber nettings on the nitrosamine content of meat was evaluated by comparing the levels found in products made with several plastics or thread in the presence of additives.
Garden nettings are nets that keep pests away from the garden. Nettings protect the plant without disrupting the normal flow of air and sunlight needed for plant survival. Gardening is a rewarding and fulfilling endeavor. You watch your plants grow from scratch to maturity before finally harvesting them. The fulfillment that comes with completing these stages of gardening is unmatched. However, you encounter pests that want to make a meal out of the items in your garden just like you. These unwanted visitors visit your garden as soon as the plants start to blossom and often leave a trail of destruction. From crawling insects to flying birds and deers, many pests have their eyes on your garden. Garden nettings are your top bet to safeguard your plants. In view of this, our expert reviewers decided to make the task of finding the greatest nettings easier by bringing you the top garden nettings in 2023.
Similar to insect nettings are butterfly nettings that keep butterflies out, which in turn ensures that our plant bed remains free of their larvae. It is a preemptive measure to prevent larvae from damaging plants. The size of the mesh on butterfly nettings is usually wider than the ones on insect netting.
Sometimes the pest disturbing our plants are not tiny flying and crawling insects; they are four-legged wild animals like deers. With deers, we are not trying to make the mesh small enough to prevent entry. Rather, we want to make it formidable enough to avoid breaching. Deer nettings are erected as perimeter fencing to keep deers out of the garden. It is important to make it high enough to stop deers from scaling it.
Rabbit nets are similar to deer nettings because they are also used to keep out four-legged pests. However, they are usually buried under the ground to ensure that rabbits do not burrow and gain access from below. The mesh on rabbit nettings is typically smaller than the mesh on deer nettings.
Nettings used to keep birds out of gardens and orchards are one of the most common with gardeners. When left unchecked, birds, especially frugivores, will peck on your fruits. The size of the mesh on bird nettings depends on the birds preying on your produce.
Galvanized steel and polypropylene are the two most common materials used to make deer nettings. If you are choosing a net made of galvanized steel, ensure that it is PVC coated. PVC-coated steel lasts longer than uncoated ones.
The new standard (D8123) will be used to help measure the opening size of geohazard nettings. Last year the subcommittee approved a related standard (D8122) on determining the mass per unit area of such nettings.
The geohazard nettings task group is also developing a standard on determining the tensile strength of geohazard nettings. All interested parties are welcome to join in the development of this proposed standards.
Glucosinolates (GSLs) accumulation is greatly influenced by environmental conditions including planting date and light quality and quantity. Photoselective nettings influence both the quality and quantity of light transmitted onto the crop canopy. The objective of this study was to determine yield and GSL concentrations in turnip (Brassica rapa subsp. rapa L.) roots and shoots grown under different photoselective nettings at different planting dates. Field studies were conducted with red and white turnip cultivars at May and August planting dates for two years using blue, red, and yellow photoselective nettings and a no netting control. Netting did not significantly affect the shoot yield and had an inconsistent effect on root yield. Cultivars differed in GSL concentrations with JR, the white turnip cultivar, having the highest gluconapin (3-butenyl GSL) concentrations in root and shoot tissues and the red turnip cultivar having the highest total GSL concentration in root tissues. Netting did not significantly influence total or individual GSLs in root tissues. Netting was only a significant factor for glucobrassicanapin (GBN; 4-pentenyl GSL) concentration in shoots with no netting treatments resulting in the highest GBN concentrations. May plantings resulted in 50% higher total GSL concentrations than August plantings. Planting date year interactions were significant for total and individual GSL concentrations. These interactions may be due to differences in mean air temperatures and solar radiation prior to harvest.
N2 - Glucosinolates (GSLs) accumulation is greatly influenced by environmental conditions including planting date and light quality and quantity. Photoselective nettings influence both the quality and quantity of light transmitted onto the crop canopy. The objective of this study was to determine yield and GSL concentrations in turnip (Brassica rapa subsp. rapa L.) roots and shoots grown under different photoselective nettings at different planting dates. Field studies were conducted with red and white turnip cultivars at May and August planting dates for two years using blue, red, and yellow photoselective nettings and a no netting control. Netting did not significantly affect the shoot yield and had an inconsistent effect on root yield. Cultivars differed in GSL concentrations with JR, the white turnip cultivar, having the highest gluconapin (3-butenyl GSL) concentrations in root and shoot tissues and the red turnip cultivar having the highest total GSL concentration in root tissues. Netting did not significantly influence total or individual GSLs in root tissues. Netting was only a significant factor for glucobrassicanapin (GBN; 4-pentenyl GSL) concentration in shoots with no netting treatments resulting in the highest GBN concentrations. May plantings resulted in 50% higher total GSL concentrations than August plantings. Planting date year interactions were significant for total and individual GSL concentrations. These interactions may be due to differences in mean air temperatures and solar radiation prior to harvest.
AB - Glucosinolates (GSLs) accumulation is greatly influenced by environmental conditions including planting date and light quality and quantity. Photoselective nettings influence both the quality and quantity of light transmitted onto the crop canopy. The objective of this study was to determine yield and GSL concentrations in turnip (Brassica rapa subsp. rapa L.) roots and shoots grown under different photoselective nettings at different planting dates. Field studies were conducted with red and white turnip cultivars at May and August planting dates for two years using blue, red, and yellow photoselective nettings and a no netting control. Netting did not significantly affect the shoot yield and had an inconsistent effect on root yield. Cultivars differed in GSL concentrations with JR, the white turnip cultivar, having the highest gluconapin (3-butenyl GSL) concentrations in root and shoot tissues and the red turnip cultivar having the highest total GSL concentration in root tissues. Netting did not significantly influence total or individual GSLs in root tissues. Netting was only a significant factor for glucobrassicanapin (GBN; 4-pentenyl GSL) concentration in shoots with no netting treatments resulting in the highest GBN concentrations. May plantings resulted in 50% higher total GSL concentrations than August plantings. Planting date year interactions were significant for total and individual GSL concentrations. These interactions may be due to differences in mean air temperatures and solar radiation prior to harvest. 153554b96e
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