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NEW QUESTION 39
A brewery sells its beer in aluminum cans. It recycles the cans by using contractors to collect and mold the used cans. This is an example of...?

A. ReuseB. Closed-loop recyclingC. Open-loop recyclingD. Carbon recycling

Answer: B

Explanation:
There are two main processes of recycling - open loop recycling and closed loop recycling.
Open Loop Recycling
Open loop recycling is a method that delays disposal by converting manufactured goods and spent materials into both new raw materials, which can be used for a manufacturing purpose, as a fuel source for a different manufacturing process and waste products.
Typically, materials recycled through open-loop recycling will be used for purposes different from their original purpose.
This means that the input into the recycling process is converted to a new raw material, which can be used as an input into another manufacturing process.
Materials in an open loop recycling process are treated using various forms of treatment including heat, chemical reactions, or physical crushing.
Closed Loop Recycling
Closed loop recycling is a process where waste is collected, recycled and then used again to make the same product it came from. This process is restorative and regenerative by design and aims to keep materials at their highest utility and value always.
Closed loop recycling is focused on resource sustainability, which means that recycling of a material can be done indefinitely without degradation of properties. In this case, conversion of the used product back to raw material allows repeated making of the same product, which helps hazardous waste generators reduce carbon footprint and achieve corporate sustainability initiatives.
Closed-loop recycling is common in specialized industries, such as the computer and battery industries, which use expensive or complex goods that cannot easily be broken down post-consumption into constituent materials.
A prime example of a closed-loop recycling process is the recycling of aluminum cans. Aluminum can be recycled to form new cans with little material degradation or waste creation.
Reference:
- Open Loop Vs Closed Loop Recycling
- CIPS study guide page 203
LO 3, AC 3.3

 

NEW QUESTION 40
Which of the following refer to material used for filling the void left in the box but they have poor environmental profile?

A. Polystyrene chipsB. CagesC. Polypropylene strapsD. Metal racking

Answer: A

Explanation:
Void filling is the general term giving to the challenge of filling the space left in a box after the products have been packed. This means that if there is no void filling material, the product inside can move around and could be damaged. Materials to fill voids to secure contents
* Polystyrene (PS) is a synthetic aromatic hydrocarbon polymer made from the monomer known as styrene.[5] Polystyrene can be solid or foamed. General-purpose polystyrene is clear, hard, and rather brittle. It is an inexpensive resin per unit weight. It is a rather poor barrier to oxygen and water vapour and has a relatively low melting point.[6] Polystyrene is one of the most widely used plastics, the scale of its production being several million tonnes per year.[7] Polystyrene can be naturally transparent, but can be coloured with colourants. Uses include protective packaging (such as packing peanuts and CD and DVD cases), containers, lids, bottles, trays, tum-blers, disposable cutlery[6] and in the making of models. Polystyrene is generally considered to be non-biodegradable. However, certain organisms are able to degrade it, albeit very slowly.
* Chips made of bio-degradable materials
* Absorbent and fire-resistant material
* Shredded paper, cardboard or wood-Based material
* Paper or cardboard rolls
* Bubble wrap
* Air-filled cushions
* Self expanding foam
Straps are used to group items into unit load. Polypropylene or polyester are the materials most often used. The wider the strap, the stronger it will be. Using more than one strap and straps for length and width will create a strong place for stock.

Reference:
- Polystyrene (Wikipedia)
- CIPS study guide page 65
LO 1, AC 1.3

 

NEW QUESTION 41
The optimum balance in the standard ISO 18602:2013 (Packaging and the environment - Optimi-zation of the packaging system) considers which of the following factors?
1. Environmental impact of losses due to lack of packaging
2. The process for packaging design, including material selection
3. Procedures and requirements for packaging that are suitable for organic recycling
4. Environmental impact of excess packaging

A. 2 and 3 onlyB. 1 and 4 onlyC. 1 and 3 onlyD. 2 and 4 only

Answer: B

Explanation:
ISO 18602:2013 is about Packaging and the environment - Optimization of the packaging system. ISO 18602:2013 specifies requirements and a procedure for assessment of packaging to ensure that the weight or volume of its material content is optimized consistent with the functions of packaging. This is one of several options for reducing the impact of packaging on the environment.
It also provides methodologies and procedures for
- determining the amount and minimization of substances or mixtures hazardous to the environ-ment, and
- determining the amount of four heavy metals (lead, cadmium, mercury, hexavalent chromium) in packaging.
The optimum balance in this standard weighs the environmental impact of losses that may happen with no packaging or inadequate packaging against the environmental impact from excess packag-ing.
The process for packaging design, including material selection, is not part of ISO 18602:2013.
The procedure for applying ISO 18602:2013 is contained in ISO 18601.
Reference:
LO 1, AC 1.3

 

NEW QUESTION 42
Which of the following is the formula for calculating the re-order level?

A. Average usage in a lead-time / Required level of safety stockB. Required level of safety stock - Average usage in a lead-timeC. Average usage in a lead-time + Required level of safety stockD. Required level of safety stock x Average usage in a lead-time.

Answer: C

Explanation:
In management accounting, reorder level (or reorder point) is the inventory level at which a com-pany would place a new order or start a new manufacturing run.
Reorder level depends on a company's work-order lead time and its demand during that time and whether the company maintain a safety stock.
If a company maintains a safety stock, reorder level calculation changes are follows:
Reorder Level = Average Demand × Lead Time + Safety Stock
Reference:
LO 2, AC 2.3

 

NEW QUESTION 43
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