Quality
components of fruits and vegetables are classified into the external
such as size (weight, volume and dimensions), colour, shape
(diameter/depth ratio), external defects etc. and the internal such as
sugar content, acid content, firmness, maturity etc and internal
characteristics.
Agricultural products have the
characteristics of being ‘low value added’ as compared with other
industrial commodities. Because of this, application of start-of-the-art
technology to agricultural sectors has been relatively recently
activated and various up to date techniques have now reached the point
of practical implementation.
The market for fruit preparations continues to grow, in large part due to their health and natural image.
The
addition of fruit is immediately seen to add value, as well as
sophistication, to products, from yoghurt to fresh cheese and ice cream.
Consumers look for a high level of large fruit pieces, evenly
suspended, with a natural texture.
Today fruit preparations are
technologically advanced ingredients which can fit perfectly into the
end user’s applications – sweet and viscous or low in fat, but very high
in fruit content. The correct stabiliser system is also crucial for
obtaining the desired texture from the fruit preparation. Modified
starches, gums and gels are essential to control viscosity and texture
and to guarantee the stability of the fruit preparation.
Fruit Leather
A
fruit leather is made by drying a very thin layer of fruit puree or a
mixture of fruit juice concentrate and other ingredients on a flat
surface in an oven, desiccators or in direct sunlight, to obtain a
product with a chewy texture similar to soft leather.
Almost
any type of fruit is suitable for making fruit leathers. Fruit leather
is easy to eat, convenient to pack, and makes an ideal popular snack
almost anywhere for a mouth-watering sugar boost. When dried, the
product is usually pulled from the surface, rolled and consumed. The
control of the drying temperature is very important, as very high
temperatures may cause case hardening, hindering the outflow of water.
Too thin a layer of purée, on the other hand, can make the product
brittle and difficult to be pulled from the surface.
Measuring Firm Paste Texture
Texture
is a very important property of fruit pastes since they are often used
as fillings for energy bars and other products containing fruits.
Among
all textural properties, hardness and stickiness are the most
important, since they can dictate the possibility of application onto a
product. Usually fruit pastes are applied by lightly heated rollers. If
the paste is too hard or sticky it may not be properly applied.
Fresh
fruits are in many ways ideal snacks, but suffer from difficulties in
distribution and lack of universal seasonal availability.
Convenience,
therefore, dictates that frequently some preparation and preservation
needs to be carried out to ensure their availability throughout the
year, ensure consistency of quality and even enhancement of particular
attributes.
Whilst dried fruits retain a great deal of their nutritive
value they often come under criticism for texture as drying can cause
considerable loss of textural integrity.
Measuring Detachment Force
Table
grapes are highly perishable, non-climacteric fruits. Their shelf life
is shortened by loss of firmness, berry drop, discoloration of the stem,
desiccation and fungal rots.
The berry drop is due
basically to dry-drop (or abscission) – ethylene in conjunction with
falling auxin levels, induces the formation of an abscission zone at the
pedicel-berry junction, thus stimulating their drop. Grape varieties
susceptible to berry drop present a huge problem for successful storage
and marketing. For this reason it is required to predict and control the
harvested abscission of grape berries, which is not only of inherent
scientific interest, but it also has considerable commercial
significance.
Testing
fruits of non-homogenous nature or variable texture, such as water
melons where there is a high seed content, is not only tricky by any
puncture, shearing or compression method, but often results in low
reproducibility and misleading data.
In any of these tests,
the data may show wide variances between maximum and minimum force
resistance, depending upon whether the probe or fixture meets with less
or more seeds or variable texture when tested. By penetrating the
product in several areas at the same time, the Multiple Puncture Probe
produces an averaging effect and is therefore more representative.
A
compression test may be the preferred test method, but where fruit
samples vary in size this will immediately reflect in the magnitude of
force measured as it is subject to surface area differences and
consequently the reproducibility of results will be poor.
In this instance, the fruit will be required to be prepared into pieces of accurate dimensions – usually cubes or cylinders.