The present invention concerns a sampling pod system and method of use; in particular for sampling solids; semi-solids, creams; and all forms of liquids, using a type of sampling tool commonly known as a “sampling thief”.
Sampling tools such as “sampling thieves” are commonly used to sample granular materials and the like, and also liquids such as oils. Sometimes materials being sampled are potentially hazardous to human beings or to the environment. Typically, following sampling of a solid or liquid, the sample is transferred (usually manually) to a sample container, in which it is kept during transfer/transport to the location where it is analysed. Such transfer (from the sampling thief) can be time consuming, especially when stringent safety precautions need to be taken. Also, sometimes during such transfer the sample can become contaminated, or can contaminate the environment. Such transfer can also result in changes in the average sample composition (sample error); for example, retention (after sample transfer), of fine particles on the sampling pod inner surface, where a solid material is being sampled and the composition varies with particle size.
Sample thieves typically comprise a sample rod/tube configured to accommodate one or more open-topped sample pods and means of entirely enclosing the sample pod within the rod/tube; typically using a moveable outer sleeve, that in use surrounds the main body of the rod and also any sample pods held within. In use, following transfer of the sampled material (see above), the pods are typically cleaned and re-used.
The present invention aims to provide an improved apparatus and method of sampling granular (and the like) solids and also liquids; especially viscous liquids. A further aim/objective is to provide an apparatus and a method that allow safer, and simpler/faster transport of samples to a location for analysis than known systems; and also reduce the risk of environmental contamination and associated risk to operators, when sampling hazardous materials. Further aims are: to reduce the chance of samples being contaminated during the overall sampling and analysis process; and to reduce sample error by minimizing transfer of the sample between vessels, prior to an analysis.
In one aspect the present invention comprises a sampling tool sampling pod having a main body portion with at least one sample collecting cavity and a removable/opening lid portion that in use fits/closes over at least part of said main body portion and thereby covers said at least one cavity. Preferably, the lid portion also substantially seals said at least one cavity.
Preferably, the lid portion snap-fits over or slide-fits onto said main body portion; preferably, by engaging grooves or indents located along the upper side edges of the body portion. This advantageously allows the sample to be rapidly sealed following the taking of a material sample. Alternatively, the lid portion may be pivotally mounted/hinged to the main body portion. The lid portion can also be attached/secured to the main body by: magnetic means; by a screw/bolt (particularly if the sampling pod is circular); or by heat sealing.
In another aspect the invention comprises a sampling tool having a sampling rod with at least one sampling pod receiving cavity wherein said at least one receiving cavity is configured to receive a sampling pod according to the invention and where said receiving cavity allows said lid portion to be attached to said main body portion after sampling and prior to removal of said sampling pod from said sampling rod.
Preferably, the sampling tool receiving cavity further comprises at least one recess located on the upper portion of a side or end wall of the cavity that facilitates removal of said lid portion by a user. Preferably, the recess further comprises an approximately semi-circular ledge portion configured to assist manual removal by a user locating a thumb or index finger therein to grip part of a side portion of said sampling pod.
In another aspect the present invention comprises a method of sampling taking a solid or liquid sample using a sampling tool and/or sampling pod main body comprising the following steps: (a) Inserting said sampling pod main body within a sampling rod and taking a solid or liquid sample from a vessel/container containing said solid or liquid; (b) removing sampling rod from said vessel or container and covering said collecting cavity to substantially seal said cavity; (c) transporting said sample within said sampling pod to place of a analysis; and (d) at place of analysis removing at least part of said covering from main body portion to expose sample for analysis.
In another aspect the invention comprises a method of taking a solid or liquid sample using a sampling tool and/or sampling pod according to the invention comprising the following steps: (a) Inserting said sampling pod main body within a sampling rod and taking a solid or liquid sample from a vessel or container containing said solid or liquid; (b) removing sampling rod from said vessel or container and fitting a lid portion or other sealing means onto said main body portion over said collecting cavity to cover and/or seal said cavity; (c) transporting said sample within said sampling pod to place of analysis; and (d) at place of analysis, removing the lid portion from the main body portion to expose the sample for analysis. The lid portion may be held in place (fitted to the main body) by sliding onto grooves located on the outside edge of the main body; by snap-fitting onto grooves or indents located on a side face of the main body; by impulse sealing the lid; by adhesive; by magnetic means; by heat sealing; by a screw/bolt; and by sealing tape. The other sealing means may comprise encapsulating the main body portion with a plastics film or the like.
The following diagrammatic drawings illustrate salient features of the present invention, where:
A preferred embodiment of the present invention is diagrammatically illustrated in
The sample pod (10) comprises a main body portion (12) and a lid portion (16). The main body portion (12) has a sample collecting cavity (14) bounded by a curved floor face (18); vertical flat side faces (20); and two curved end faces (22) and a curved (as viewed from side) top face (8). The lid portion (16) can be detached from the main body portion (12) to reveal the sample collecting cavity (14); which has an open top. The sampling pod is preferably made from a plastics material and preferably the lid portion is a softer or more compliant material than that used for the main body portion; this facilitates a snap-fit attachment by means of overhanging side members (24) integrally formed with the lid (16) and extending first sideways; then downwards and finally inwards; these side members (24) being configured to engage a pair of linear horizontal grooves (26) one located on an upper portion of each outside side face of the main body. Thus, when the lid portion (16) is attached to the main body (12) it covers, and at least substantially seals, the otherwise open top of the sampling collecting cavity (14) and thereby prevents loss of any solid or liquid that has been sampled before its attachment.
FIGS. (a) to 9(k) show part of a sampling tool having an outer sleeve (122) which can be rotated about the longitudinal axis of the rod/sleeve by means of a handle (not illustrated). The outer sleeve (122) has at least one aperture (124) that corresponds in size and shape to the open top face of the sample collecting cavity (14). In use by rotating the outer sleeve (122) relative to the tube/rod 110 the sample collecting cavities can be exposed; thus allowing sample material to enter the sample collecting cavities.
In a further aspect of the method of the invention, after collecting a material sample the sampling pod is sealed by a self-adhesive film or by a shrink-wrapped covering prior to being transported in the thus-sealed pod to a location where it is analysed. At the time of analysis the sample is released either by removing the film or puncturing of the covering and then removing the material sample.
Discrete sampling pods are typically held in cavities/pockets (112) spaced (longitudinally) along a sampling tool/rod (110), and this spacing determines the depths that individual samples are taken when the tool/rod (110) is inserted within the material to be sampled. The Sampling pods have cavities/pockets (112) that may vary in size and can have one or more cavity per collecting pod. The cavities (112) may be unequal in size. The sampling pod (10) may be fabricated from various materials: e.g. polymer, metal, ceramics.
The sampling pod of the present invention provides various means of sealing the sampling cavity after sample collection. Typically, this is a lid/cover or the like, applied to the sampling pod when it is still within the tool/rod. Preferably, the lid/cover is fitted to the main body by a snap-fit action or by sliding engagement of grooves on an outside face of the main body. Preferably, the sampling pod (10) is made by moulding a plastics material, and the lid/cover portion (16) is similarly made, but using a more compliant/flexible plastics material; thereby providing enhanced containment performance.
Alternatively, after sampling the sampling pod cavity/cavities may be sealed by other means e.g. shrink-wrap covering, application of a self-adhesive film, sliding the sampling pod within a (surrounding) tube etc. In general, the sampling pod (10) will be made from materials able to withstand the chemical challenges of materials being sampled.
Upon arrival at the sample analysis location lid is removed or cover penetrated to allow recovery of the sampled material within. For example, the lid can be progressively slid off to reveal one or more samples. Alternatively, at this time, the sample may be removed for analysis using an automated sample handling systems. In this event it may be preferable to use a cover (such as shrink-wrap), rather than a lid, which can be punctured to allow the sample to be removed by an automated system. This is particularly desirable when hazardous materials are being sampled and analysed; providing greater protection (than the prior-art) to both the operators and the environment.
The apparatus and method of the present invention advantageously allow: simplified sample recovery; and reduces transfer errors.□ When the pod lid is fitted the closed pod provides a discrete container for the sampled material that is easy to handle. Preferably, sampling pods are only used one, and then disposed of, this eliminates cross contamination risk. However, if necessary they can also be reused following (where appropriate) sterilization and/or cleaning.
Number | Date | Country | Kind |
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1510388.0 | Jun 2015 | GB | national |
Number | Name | Date | Kind |
---|---|---|---|
1078847 | Grauenfels et al. | Nov 1913 | A |
1256413 | Wiswell | Feb 1918 | A |
1780597 | Mayhall | Nov 1930 | A |
2968184 | Archer | Jan 1961 | A |
3091968 | Platzer | Jun 1963 | A |
3218869 | Fields | Nov 1965 | A |
3597980 | Beuker | Aug 1971 | A |
3960021 | Jones | Jun 1976 | A |
4088025 | Foster | May 1978 | A |
4179930 | Chrisp | Dec 1979 | A |
4790198 | Awtry | Dec 1988 | A |
4800765 | Nelson | Jan 1989 | A |
5179859 | Van Niekerk | Jan 1993 | A |
5337620 | Kalidini | Aug 1994 | A |
5440941 | Kalidindi | Aug 1995 | A |
5442970 | Hutchins | Aug 1995 | A |
5471886 | Kalidindi | Dec 1995 | A |
5726363 | Kalidindi | Mar 1998 | A |
5928164 | Burbank | Jul 1999 | A |
5962215 | Douglas | Oct 1999 | A |
6094999 | Dubois | Aug 2000 | A |
6153147 | Craig | Nov 2000 | A |
6241687 | Voegele | Jun 2001 | B1 |
6318193 | Brock | Nov 2001 | B1 |
6339966 | Kalidindi | Jan 2002 | B1 |
6575303 | Brock | Jun 2003 | B1 |
6585507 | Kalidindi | Jul 2003 | B1 |
6796194 | Ryan | Sep 2004 | B1 |
6835180 | Rudnick | Dec 2004 | B2 |
6862943 | Tibbets | Mar 2005 | B2 |
7472614 | Kalidindi | Jan 2009 | B1 |
8770048 | Khuzwayo | Jul 2014 | B2 |
8911990 | Samadpour | Dec 2014 | B2 |
20030205098 | Kalidindi | Nov 2003 | A1 |
20110000322 | Chen | Jan 2011 | A1 |
20110244461 | Tanigami | Oct 2011 | A1 |
Number | Date | Country |
---|---|---|
2272476 | Nov 2000 | CA |
105403436 | Mar 2016 | CN |
Entry |
---|
Intellectual Property Office Search Report under Section 17 dated Jul. 27, 2016 regarding application No. GB1510388.0. |
European Search Report dated Oct. 31, 2016 regarding application No. EP16020227. |
Number | Date | Country | |
---|---|---|---|
20160363512 A1 | Dec 2016 | US |