EN 13655:2018
Current
The latest, up-to-date edition.
Plastics - Thermoplastic mulch films recoverable after use, for use in agriculture and horticulture
28-02-2018
European foreword
1 Scope
2 Normative references
3 Terms and definitions
4 Types and use
5 Materials
6 Durability
7 Requirements
8 Test methods
9 Roll acceptance, storage and handling
10 Designation
11 Marking
12 Functions and factors of degradability of mulch films
13 Conditions for installation and use of mulch films
14 Removal instructions and end of life
Annex A (informative) - Exposure to other light sources
Annex B (informative) - Numerical correlation between
durations of mulching films exposed to artificial
weathering and a natural exposure
Annex C (normative) - Determination of solar reflectance
Annex D (normative) - Determination of the relative light
transmission
Annex E (informative) - Guidance for conditions for
installation, use and removal of mulch films
Bibliography
This document specifies the requirements related to dimensional, mechanical, optical and thermal characteristics of thermoplastic films for mulching applications in agriculture and horticulture.These mulch films are intended to be removed after use and not incorporated in the soil.These mulch films are not intended to be used for soil disinfection by fumigation. Films for this application are in the scope of prEN 17098-1[1].It specifies a classification for durability of mulching films and the test methods referred to in this document.This document is applicable to thermoplastic mulch films, used for agriculture and horticulture in Europe, based on polyethylene and/or ethylene copolymers, of the following types:-transparent films;-black films;-reflective films (e.g. white films, black/white films and black/silver films);-films of other colour(s) for weed control (e.g. green, brown).This document also defines installation, use and removal conditions of mulch films.NOTEMulch films are considered as highly contaminated by soil and vegetal residues: the observed rates (or levels) of contamination of mulch films can vary from 70 % to 90 %. Therefore the film thickness is a key factor on the rate of contamination, the thinnest films (e.g. less than 25 µm) will be the mostly contaminated, difficult, expensive to remove, recover and recycle.
Committee |
CEN/TC 249
|
DevelopmentNote |
Supersedes PREN 13655. (03/2018)
|
DocumentType |
Standard
|
PublisherName |
Comite Europeen de Normalisation
|
Status |
Current
|
Standards | Relationship |
UNE-EN 13655:2018 | Identical |
NF EN 13655 : 2018 | Identical |
DIN EN 13655:2003-01 | Identical |
SN EN 13655 : 2003 | Identical |
UNI EN 13655 : 2003 | Identical |
NEN EN 13655 : 2018 | Identical |
SN EN 13655:2018 | Identical |
DIN EN 13655:2018-05 | Identical |
PN EN 13655:2018 | Identical |
PN EN 13655 : 2004 | Identical |
SS-EN 13655:2018 | Identical |
UNI EN 13655:2018 | Identical |
I.S. EN 13655:2018 | Identical |
BS EN 13655:2002 | Identical |
NS EN 13655 : 2018 | Identical |
I.S. EN 13655:2002 | Identical |
ONORM EN 13655 : 2018 | Identical |
UNE-EN 13655:2003 | Identical |
NBN EN 13655 : 2002 | Identical |
BS EN 13655:2018 | Identical |
ISO 15270:2008 | Plastics — Guidelines for the recovery and recycling of plastics waste |
ISO 4892-1:2016 | Plastics — Methods of exposure to laboratory light sources — Part 1: General guidance |
ISO 16378:2013 | Space systems — Measurements of thermo-optical properties of thermal control materials |
ISO 9845-1:1992 | Solar energy — Reference solar spectral irradiance at the ground at different receiving conditions — Part 1: Direct normal and hemispherical solar irradiance for air mass 1,5 |
EN ISO 4892-1:2016 | Plastics - Methods of exposure to laboratory light sources - Part 1: General guidance (ISO 4892-1:2016) |
EN ISO 4892-3:2016 | Plastics - Methods of exposure to laboratory light sources - Part 3: Fluorescent UV lamps (ISO 4892-3:2016) |
EN 15343:2007 | Plastics - Recycled Plastics - Plastics recycling traceability and assessment of conformity and recycled content |
EN ISO 7765-1:2004 | Plastics film and sheeting - Determination of impact resistance by the free-falling dart method - Part 1: Staircase methods (ISO 7765-1:1988) |
ISO 7765-1:1988 | Plastics film and sheeting Determination of impact resistance by the free-falling dart method Part 1: Staircase methods |
EN ISO 527-1:2012 | Plastics - Determination of tensile properties - Part 1: General principles (ISO 527-1:2012) |
ISO 4591:1992 | Plastics — Film and sheeting — Determination of average thickness of a sample, and average thickness and yield of a roll, by gravimetric techniques (gravimetric thickness) |
ISO/TR 19032:2006 | Plastics Use of polyethylene reference specimens (PERS) for monitoring laboratory and outdoor weathering conditions |
ISO 4892-3:2016 | Plastics — Methods of exposure to laboratory light sources — Part 3: Fluorescent UV lamps |
ASTM D 1003 : 2013 : REDLINE | Standard Test Method for Haze and Luminous Transmittance of Transparent Plastics |
EN 15347:2007 | Plastics - Recycled Plastics - Characterisation of plastics wastes |
EN 16472:2014 | Plastics - Method for artificial accelerated photoageing using medium pressure mercury vapour lamps |
ISO 4892-2:2013 | Plastics — Methods of exposure to laboratory light sources — Part 2: Xenon-arc lamps |
EN 15344:2007 | Plastics - Recycled Plastics - Characterisation of Polyethylene (PE) recyclates |
ISO 9370:2017 | Plastics — Instrumental determination of radiant exposure in weathering tests — General guidance and basic test method |
ISO 10640:2011 | Plastics Methodology for assessing polymer photoageing by FTIR and UV/visible spectroscopy |
ISO 527-3:1995 | Plastics Determination of tensile properties Part 3: Test conditions for films and sheets |
ISO 4592:1992 | Plastics — Film and sheeting — Determination of length and width |
EN ISO 4892-2:2013 | Plastics - Methods of exposure to laboratory light sources - Part 2: Xenon-arc lamps (ISO 4892-2:2013) |
ISO 527-1:2012 | Plastics Determination of tensile properties Part 1: General principles |
ISO 4593:1993 | Plastics Film and sheeting Determination of thickness by mechanical scanning |
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