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IV Fluids, I.V. solutions, Intravenous fluids, Normal Saline (NS, 0.9NaCl, or NSS), Lactated Ringers (LR, Ringers Lactate, or RL), Dextrose 5%, Normal Saline (Half Normal Saline, 0.45NaCl, .45NS), IV Fluids & Dialysis products - LVP/SVP Volume Parenteral

 

I V Fluids

Intravenous therapy (IV) is therapy that delivers fluids directly into a vein. The intravenous route of administration can be used both for injections, using a syringe at higher pressures; as well as for infusions, typically using only the pressure supplied by gravity. Intravenous infusions are commonly referred to as drips.

The intravenous route is the fastest way to deliver medications and fluid replacement throughout the body, because they are introduced directly into the circulation. Intravenous therapy may be used for fluid volume replacement, to correct electrolyte imbalances, to deliver medications, and for blood transfusions.

Infusion therapy as a basic toll of modern medical care enables the physician to restore and stabilize homeostasis states quickly and completely. In nursing homes and hospital where patients are suffering from acute dehydration or considerable debilitating conditions, the intra venous fluids are used as I.V. drips. The basic function of I.V. fluids is to replenish the body fluids. Although there are number of I.V. fluids, but generally three types of I.V. fluids are used in hospitals as I.V. drips. 1. Dextrose injection fluid. 2. Dextrose and sodium chloride injection fluid. 3. Sodium Chloride injection solution (Saline solution). Dextrose solution is used during postoperative period when sodium extraction of 10-15% are used as diuretic for increasing in urine flow. Saline solution is used when large amount of sodium has been lost by vomiting or by gastric or intestinal duodenal aspiration or through an alimentary fistula. Dextrose monohydrate is used as supplement to cow’s milk in part of feeding. Hypertonic dextrose solution (25-50%) is in medical treatment partly because they are believed to strengthen heart muscles. Hypertonic solutions are used in intravenous injection to relieve intractable pressure in-patient with hydrocephalus and meningitis. The drug industry has now achieved an impressive growth during the last four decades of planning and development. These I.V. fluids are the best alternative, which can yield sudden result in the health of a Patient by replenishing the body fluids.

Intravenous solutions have evolved with technologies and designs improving their overall functionalities. There are several combinations of packaged intravenous products that have come up in recent years. Manufacturers are introducing IV fluids and compounds that can be mixed with other liquid medicines and solutions for IV administration. The aforementioned factors will continue to drive the global intravenous (IV) solution market.  Some of the factors that are having positive impact on the growth of the intravenous (IV) solution market include increased prevalence of chronic disorders and growing popularity of IV led treatments and therapies intended towards curing cance.

Uses and Applications

There are main ranges of application of highly specialized intravenous infusion solutions:

• Treatment of discarded water and electrolyte metabolism, especially in severe cases.

• Therapy of acid base in balances.

• The volume substitution and volume replacement in surgery of accident victim suffering blood loss.

• Paratral nutrition for severally ill and post-operative patients.

Aqueous isotonic injection (5%) of dextrose is given as intravenous injections to increase the column of circulating blood in the shocks and hemorrhages and to counteract dehydration. When it is desired to replace excessive salt loss also glucose is injected along with sodium chloride. Intravenous fluids can also be used as a route of medication administration. If a doctor wants to delI.V.er a small amount of medication over an extended period of time, it can be dissolved in a bag of intravenous fluids and set on an infusion pump which delivers the medicated fluid directly into the blood.

They are also commonly used to assist with surgical recovery; people who receive fluids after surgery tend to experience better recovery than people who do not.

Global Intravenous Solutions Market Trends:

Over the past few years, the prevalence of hectic work schedules and unhealthy lifestyles has increased across the globe. The consequent decline in physical activity and proper nutrition has led to a rise in the incidences of chronic diseases, which in turn has boosted the demand for intravenous solutions. Besides, there has been significant growth in the production of IV fluids, particularly in developed countries. For instance, it was reported that due to the shortage of IV saline, the US Food and Drug Administration (FDA) and other market. The intravenous fluid bags market size will grow at a CAGR of 6% at an incremental growth of $ 667.51 MN during 2020-2024.

The increasing prevalence of chronic diseases such as the rise of cholera and growing acceptance of vitamin c intravenous for colorectal cancer are the major drivers propelling market growth. However, the presence of stringent government regulations, rising continuous demand for IV solutions in the US, and increasing vitamin C intravenous therapy prices constrain the growth of the market.

The rising number of surgeries, the need for a faster route of drug administration, growing preference for single-dose administration of vaccines and drugs, and an increase in local manufacturing is expected to drive the market for LVP. Parenteral route of administration helps provide an accurate dose of medication as the majority of the drug is directly absorbed in circulation, bypassing the gastrointestinal tract.

The drug serum level increases rapidly through parenteral administration. For instance, postoperative parenteral nutrition induces a substantial increase in serum leptin within six hours and helps reach a rise of more than four folds within 14 hours. Moreover, parenteral administration of ascorbate (Vitamin C) decreases the growth rate of murine hepatoma. However, oral administration of the same dosage does not exhibit similar anti-tumoral effects.

Advantages of BFS Technology:

Blow-fill-seal technology enables the manufacture of preservative-free single-unit doses. PreservatI.V.es are recognized as potentially harmful to the sensitive mucosae of the eyes, nose, and lungs, so this is an enormous benefit to sensitive patients. Another advantage of unit-doses is that they ensure that the patient takes the correct amount of product, especially when dealing with highly potent compounds, i.e. those therapeutically active at a low concentration.

Sterile unit-doses are portable and easy to use individually, excellent properties for today’s active lifestyles. Blow-fill-seal (BFS) single doses are an ideal solution for use in ophthalmology, respiratory diseases, rhinology, and antisepsis and wound care. Blow-fill-seal technology reduces personnel intervention making it a more robust method for the aseptic preparation of sterile pharmaceuticals. BFS is used for the filling of vials for parenteral preparations and infusions, eye drops, and inhalation products. Generally the plastic containers are made up of polyethylene and polypropylene. Polypropylene is more commonly used to form containers which are further sterilized by autoclaving as polypropylene has greater thermo stability.

Blow Fill and Seal technology is mainly used for pharmaceutical solutions. The examples of pharmaceutical solutions that can be packaged are injectable solutions, antibiotics, ophthalmological drops, suspensions, infusion solutions, solutions for dialysis, solutions for irrigation and solutions for hemofiltration. The basic concept of BFS is that a container is formed, filled, and sealed in a continuous process without human intervention, in a sterile enclosed area inside a machine. Thus this technology can be used to aseptically manufacture sterile pharmaceutical liquid dosage forms.

The process is multi-stepped: first, pharmaceutical-grade plastic resin is vertically heat extruded through a circular throat to form a hanging tube called the parison. This extruded tube is then enclosed within a two-part mould, and the tube is cut above the mould. The mould is transferred to the filling zone, or sterile filling space, where filling needles (mandrels) are lowered and used to inflate the plastic to form the container within the mould. Following the formation of the container, the mandrel is used to fill the container with liquid. Following filling the mandrels are retracted and a secondary top mould seals the container. All actions take place inside a sterile shrouded chamber inside the machine. The product is then discharged to a non-sterile area for labeling, packaging and distribution. The process begins with the Extrusion of plastic granules in the form of a hot hollow pipe of molten plastic called a parison.

The following step is the Blow molding of the container from the plastic granule. The parison is closed between the mould, and the container gets formed either by blowing sterile compressed air or by vacuum or by using vacuum as well as blowing. The container assumes the shape of the cavity in the mould. The container thus produced is open from the top and in its top part, the plastic is still hot and in molten state until the subsequent steps of filling and container sealing.

Features:

1. 100% film utilization: No waste edge between bags, reducing both material and energy consumption.

2. Special I.V. bag design: each bag saves 10mm film than others.

3. Reliable heating and welding system: Leakage rate less than 0.03%.

4. Quick changeover: 0.5-1 hour to switch from one size to another.

5. Stable transmission system: only needs 1 control system, 1 HMI and 1 operator.

6. Safe filling nozzle: No solution overflows, no particles generation.

7. Auto faulty rejection system detected by the machine.

8. Production line length is reduced by 1/3, both workshop and air conditioning and cleaning area are reduced by 1/3, greatly reducing the initial investment and future running cost.

9. Simple structure, more stable and reliable performance.

 

 

 

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Pre Feasibility Report on IV Cannula and Catheters Manufacturing

Despite the fact that the terms cannula and catheter are used to distinguish them, the functions of an IV catheter and a cannula are very similar. A cannula has a tapering diameter that permits it to be inserted into veins of varying sizes. Because a catheter is less flexible and cannot be tapered, it can only be placed into larger veins. Despite the fact that each device has its own set of features, they all have the same goal: to deliver fluids or drugs straight into the bloodstream via an intravenous line. An IV catheter and cannula, often known as an IV set or line, is the most common means to provide intravenous fluids, medicines, and nutritional supplements in the hospital or at home. Intravenous fluids are those that are injected straight into your vein rather than into your muscles or soft tissues (IV). An IV set, commonly known as a line, is made up of a catheter and a cannula. The IV cannula, which is a small flexible tube with a trocar needle, is used to penetrate the skin with a trocar needle. Once the needle has been removed, the cannula contains a fitting that can be linked to additional tubing or a port for medication administration. A cannula is a tube that can be used to collect blood samples for testing, as well as to help in hydration and drug administration. IV cannulas come in handy in a variety of scenarios. It is evident that environmental changes and technological improvements provide us with a significant advantage. A large percentage of inventions are aimed towards improving the quality and strength of certain items, which has a substantial impact on people's lives. While some innovations are designed to improve the quality and durability of an object, others are designed to change or tweak the structure of an object while maintaining the innovation. The accessibility of safety The I.V cannula is one of the IV cannula applications that has enhanced people's lives and made it easier for professionals to provide intravenous therapies. a healthy body An intravenous cannula is a regulated or indirect device that administers liquids to a patient's circulatory system. The cannula or cannula needle is inserted into a suitable vein, and the medication, fluids, and pharmaceuticals are supplied to the patient at that time. A catheter is a tiny tube that is composed of medical-grade materials and can be used for a variety of purposes. Catheters are medical devices that are put into the body for the purpose of treating or performing surgery. By changing the material or manufacturing technique, catheters can be customised for cardiovascular, urological, gastrointestinal, neurovascular, and ophthalmic uses. Catheterization is the procedure of inserting a catheter. A catheter is normally a thin, flexible tube (a "soft" catheter), though depending on the application, it can be stiffer or softer. An "indwelling catheter" is a catheter that is left inside the body, either temporarily or permanently (for example, a peripherally inserted central catheter). Catheters can be placed into the brain, skin, adipose tissue, or any cavity, duct, or vessel in the body. Drainage, the administration of fluids or gases, surgical instrument access, and a range of additional functions are all possible with catheters, depending on the type. A central line (also known as an intravenous catheter) is a little plastic tube that allows doctors to access your blood vessels. These devices are capable of slowly delivering water, nutrients, or drugs. In hospitals, there are two types of catheters: short-term and long-term. Your needs will dictate which type of line is inserted, however qualified nurses may sometimes use both. Permanent lines are another term for long-term lines. A cannula is a tube that uses a catheter to attach to your vein and allows you to quickly inject fluids into your body. If you're having chemotherapy or are about to have surgery that needs a general anaesthetic, you might need one. A cannula is usually put into one of three veins: the vein immediately below the elbow in either arm, the vein in the neck, or the vein around the collarbone. The growing importance of intravenous (IV) therapy is one of the primary factors driving the global rise of the IV catheter market. IV therapy is used in both surgical and non-surgical patients to treat a number of illnesses. The rising number of chronic disease cases around the world is another important driver driving the global IV catheter market. IV therapy is an important part of the treatment of a variety of disorders, and it is used in both surgical and non-surgical patients. It entails the administration of medicinal materials via a needle or catheter to patients who are unable to treat their illness successfully with oral medications or who require rehydration. It's the quickest and most bioavailable way to absorb any liquid or drug into your body. This strategy has substantial health benefits, especially when it comes to nutrition. IV nutritional therapy, which involves injecting vitamins, minerals, and other nutrients directly into the bloodstream, has been used to boost energy, strengthen the immune system, lower stress and anxiety, and, in the long run, act as a preventative ageing intervention. The expansion of the IV catheter market has been supported by the rising occurrence of cancer cases. Industry Major Market Players: • Becton Dickinson and Company. • B. Braun Melsungen AG. • Smith Medical. • Terumo Corporation. • C. R. Bard Inc. • Tangent Medical. • Vygon Group. • Boston Scientific
Plant capacity: IV Cannula with Wings & with Injection Port: 75,000 Pcs. per day | Catheters: 18,750 Pcs. per dayPlant & machinery: 16 Cr
Working capital: -T.C.I: Cost of Project:27 Cr
Return: 28.00%Break even: 55.00%
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Manufacturing Business of Double Wall Corrugated Pipes | Great Investment Opportunity

The material used to create double wall corrugated (DWC) pipes is high-density polyethylene (HDPE). They feature a smooth inner wall and an outside wall with corrugations. The pipe's corrugations provide it strength and stiffness, and its smooth inner wall improves water flow. The sizes, lengths, and thicknesses of DWC pipes vary. DWC (double wall corrugated) pipes are a sturdy and long-lasting option for irrigation systems. DWC pipes are constructed from two layers of high-density polyethylene (HDPE), one of which is corrugated and the other of which is smooth. Superior strength and flexibility are provided by this design, which also offers defense against damage from root incursion. If you wish to create your own sprinkler system or even utilize it as part of a bigger commercial application, DWC pipes work well in both gravity flow and pressure flow applications. Longevity is a hallmark of these pipes. To meet your demands, DWC pipes come in a range of sizes and lengths. Because they have an air space that acts as insulation against freezing water, which can lead to pipe breaks, WC pipes are great for protecting against frost. To boost strength and resistance to abrasion when buried underground, the interior of the pipe is ribbed. An underground drainage system using double wall corrugated (DWC) pipes is intended to remove extra water from the area around your property. It is an eco-friendly product that combines steel's tensile strength with plastic's resistance to corrosion. The pipe's corrugations provide it stiffness and strength, and its smooth inner layer facilitates simple water movement. Uses and Application 1. Double wall corrugated (DWC) pipes are best for irrigation systems that are buried underground. 2. DWC pipes are strong and corrosion-resistant due to their high-density polyethylene (HDPE) construction. 3. DWC pipes have a smooth inside surface that promotes greater water flow and less clogging. 4. To match your needs, DWC pipes come in a range of sizes and lengths. 5. Double wall corrugated pipe can be purchased in rolls or sections, making it simple to use on your own land. 6. Weep holes are constructed into the interior of a DWC pipe to help minimise pooling, stop roots from sprouting inside the pipe, and lessen clogs at low areas in the ground. 7. DWC pipes are seamless and available in black, grey, white, green, and blue, among other hues. 8. A variety of soil types, including clayey soils, sandy soils, salty soils, and loamy soils, can be drained using DWC pipes. 9. Despite being built of HDPE, they are not fragile, making it simple to cut them using hand tools like hacksaws. 10. In fact, most sectors, including breweries, use these pipes due to their longevity in their applications. 11. These pipes are affordable and quite simple to install. Indian Market Over the projection period, it is anticipated that the market for double wall corrugated pipes will expand at a CAGR of 5.5%. (2019-2024). the necessity for affordable and long-lasting piping systems, as well as the rising need for water and wastewater management, are the main factors driving this industry. The need for double-wall corrugated pipes is rising across a variety of industries, including construction, water treatment, municipal drainage, and others, which is what is driving the market expansion. One kind of plastic pipes created from high-density polyethylene is HDPE double-wall corrugated pipe. It is appropriate for application in a variety of industries, including the oil and gas, chemical, food processing, and beverage processing industries, thanks to its outstanding chemical and temperature resistant capabilities. Due to HDPE's exceptional flexibility, it can be installed in confined locations where other piping materials cannot. Industry Major Market Players: 1.Jain Irrigation Systems 2.POLIECO 3.ADS 4.KUZEYBORU 5.Corma Inc. 6.TIJARIA 7.Bina Plastic Industries Sdn Bhd 8.Euro EM 9.Pars Ethylene Kish 10. RESINTECH 11. WEIDA 12. HEBEISH 13. REHAU 14. VESBO 15. JM Eagle 16. Junxing Pipe Group 17. Rong Long Building Materials, 18. Oregon Plastic Tubing, 19. Contech Engineered, 20. Dura-Line (Audax Group), 21. Plasson USA, 22. WL Plastics, 23. Chevron Phillips Chemical, 24. Crumpler Plastic Pipe,
Plant capacity: Double Wall Corrugated Pipes:20 MT Per DayPlant & machinery: 449 Lakhs
Working capital: -T.C.I: Cost of Project:1271 Lakhs
Return: 27.00%Break even: 49.00%
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Manufacturing Business of Double Wall Corrugated Pipes Great|Investment Opportunity

The material used to create double wall corrugated (DWC) pipes is high-density polyethylene (HDPE). They feature a smooth inner wall and an outside wall with corrugations. The pipe's corrugations provide it strength and stiffness, and its smooth inner wall improves water flow. The sizes, lengths, and thicknesses of DWC pipes vary. DWC (double wall corrugated) pipes are a sturdy and long-lasting option for irrigation systems. DWC pipes are constructed from two layers of high-density polyethylene (HDPE), one of which is corrugated and the other of which is smooth. Superior strength and flexibility are provided by this design, which also offers defense against damage from root incursion. If you wish to create your own sprinkler system or even utilize it as part of a bigger commercial application, DWC pipes work well in both gravity flow and pressure flow applications. Longevity is a hallmark of these pipes. To meet your demands, DWC pipes come in a range of sizes and lengths. Because they have an air space that acts as insulation against freezing water, which can lead to pipe breaks, WC pipes are great for protecting against frost. To boost strength and resistance to abrasion when buried underground, the interior of the pipe is ribbed. An underground drainage system using double wall corrugated (DWC) pipes is intended to remove extra water from the area around your property. It is an eco-friendly product that combines steel's tensile strength with plastic's resistance to corrosion. The pipe's corrugations provide it stiffness and strength, and its smooth inner layer facilitates simple water movement. Uses and Application 1. Double wall corrugated (DWC) pipes are best for irrigation systems that are buried underground. 2. DWC pipes are strong and corrosion-resistant due to their high-density polyethylene (HDPE) construction. 3. DWC pipes have a smooth inside surface that promotes greater water flow and less clogging. 4. To match your needs, DWC pipes come in a range of sizes and lengths. 5. Double wall corrugated pipe can be purchased in rolls or sections, making it simple to use on your own land. 6. Weep holes are constructed into the interior of a DWC pipe to help minimise pooling, stop roots from sprouting inside the pipe, and lessen clogs at low areas in the ground. 7. DWC pipes are seamless and available in black, grey, white, green, and blue, among other hues. 8. A variety of soil types, including clayey soils, sandy soils, salty soils, and loamy soils, can be drained using DWC pipes. 9. Despite being built of HDPE, they are not fragile, making it simple to cut them using hand tools like hacksaws. 10. In fact, most sectors, including breweries, use these pipes due to their longevity in their applications. 11. These pipes are affordable and quite simple to install. Indian Market Over the projection period, it is anticipated that the market for double wall corrugated pipes will expand at a CAGR of 5.5%. (2019-2024). the necessity for affordable and long-lasting piping systems, as well as the rising need for water and wastewater management, are the main factors driving this industry. The need for double-wall corrugated pipes is rising across a variety of industries, including construction, water treatment, municipal drainage, and others, which is what is driving the market expansion. One kind of plastic pipes created from high-density polyethylene is HDPE double-wall corrugated pipe. It is appropriate for application in a variety of industries, including the oil and gas, chemical, food processing, and beverage processing industries, thanks to its outstanding chemical and temperature resistant capabilities. Due to HDPE's exceptional flexibility, it can be installed in confined locations where other piping materials cannot. Industry Major Market Players: 1.Jain Irrigation Systems 2.POLIECO 3.ADS 4.KUZEYBORU 5.Corma Inc. 6.TIJARIA 7.Bina Plastic Industries Sdn Bhd 8.Euro EM 9.Pars Ethylene Kish 10. RESINTECH 11. WEIDA 12. HEBEISH 13. REHAU 14. VESBO 15. JM Eagle 16. Junxing Pipe Group 17. Rong Long Building Materials, 18. Oregon Plastic Tubing, 19. Contech Engineered, 20. Dura-Line (Audax Group), 21. Plasson USA, 22. WL Plastics, 23. Chevron Phillips Chemical, 24. Crumpler Plastic Pipe,
Plant capacity: Double Wall Corrugated Pipes:20 MT Per DayPlant & machinery: 449 Lakhs
Working capital: -T.C.I: Cost of Project:1271 Lakhs
Return: 27.00%Break even: 49.00%
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Information
  • One Lac / Lakh / Lakhs is equivalent to one hundred thousand (100,000)
  • One Crore is equivalent to ten million (10,000,000)
  • T.C.I is Total Capital Investment
  • We can modify the project capacity and project cost as per your requirement.
  • We can also prepare project report on any subject as per your requirement.
  • Caution: The project's cost, capacity and return are subject to change without any notice. Future projects may have different values of project cost, capacity or return.

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