Natural Gas Hydrofracking Terms Inference Matrix 2 - Hydrofracking Contaminants

Overview

Natural Gas Hydrofracking Terms Inference Matrix 2 – Hydrofracking Contaminants

This dataset is the base or anchor of Hydrofracking chemical contaminants where
each respectively will have their own dataset.

This dataset is based on the chemicals found in Hydrofracking processes and or
“Produced water”; the water that remains or returns from Hydrofracking listed by the
Pennsylvania Department of Environmental Protection (DEP):

http://www.dep.state.pa.us/dep/deputate/minres/oilgas/new_forms/marcellus/Reports/Frac%20list%206-30-2010.pdf

The “Inference matrix” is a powerful reformat of the “base data” I generate from
my app where from inference or extrapolation of currently up to 255 terms the user
can make an unprecedentedly accurate determination if the given web page or online
.PDF document warrants further scrutiny and examination.

The “terms” can be any combination of proper, place or company names, technical,
medical or generic terms and/or just "regular words in any language or better put
any language’s alphabet or character set that is represented on the Internet.

The idea is basic search terms are put through a search engine and then respectively
for each of the each web page or online PDF document links (URLs) that are returned
(i.e. search results), the HTML or text of the given web page/PDF doc is further searched
for the presence of the up to 255 user names, terms and words just mentioned; the
maximum number of columns in an Excel spreadsheet.

There are currently several free examples here on Infochimps.com that should
give you a better idea of gist. These examples are the standard format where
the web page URL/link is the “key” and the terms are associated with the web
page.

http://infochimps.org/datasets/ex-oakland-raiders-jamarcus-russells-large-internet-footprint
http://www.infochimps.com/datasets/native-arabic-internet-footprint-of-the-washington-institute-mid

The new format has the terms as the key and the URLs/links as the data. Thus,
if you want to quickly see the Internet presence or “Internet footprint” of a
Hydrofracking chemical that may be the root of your rare form of cancer you look
down the column of the Excel file. If you quickly want to see other chemical names
that may be on the same web page or .PDF doc, you look at the rows.

For those of you familiar with Microsoft Excel I want to remind you of and for those
of you new to Excel I want to relate to you a nifty Excel feature that will enhance
your viewing of these Hydrofracking Inference Matrices.

It is the “Freeze Frame” feature. The idea here is to freeze the first row of the
spreadsheet which are located all the “Auxiliary” terms which are the headers for
the columns containing the URLs/links that contain the given Auxiliary term.

Thus as you scroll down you don’t need to make time consuming notes what
column is for what Auxiliary term or constantly return to row 1 for reference.

To implement the Freeze frame by an easy keyboard sequence first set set your
Excel focus (cursor) to Cell B1. Now press [Alt][w] in combination as you press
the [Shift] key to capitalize a letter. An Excel drop down menu should appear
showing Freeze Panes with the F of Freeze underlined. Now merely press F.
The case does not matter for the W or F.

There – The first row should be frozen as you scroll down the spreadsheet. To
undo just repeat the two step procedure.

As you probably know Hydrofracking abounds with controversy. The
Inference Matrix is an unprecedented tool to get to the web pages
closest to or exactly in the ballpark of your interest.

The “Primary” search terms for this dataset are:

Hydrofracking Contaminants

The “Auxiliary” search terms for this dataset: those that are searched for
their presence from each URL (web page, online .PDF document) returned from
the search engine search results of the Primary terms are:

Acetic Acid Acie Alcohol Alkanol Alphatic Aluminum Ammonia Ammonium Anhydride Aromatic Ash Bicarbonate Bifluoride Bisulfite Boric Butan butoxyethanol Butyl Carbonate Cellosolve chloride chloro Citric Cristobalite Crystalline Dazomet Diatomaceus Dibromo Diesel Diethylbenzene diol distillate Distillates Distilled Doclecylbenzene Earth Enzyme Ethane Ether Ethers Ethoxlated Ethoxylated Ethylbenzene Ethylhexanol Ethylhexanol Ferrous Formaldehyde Glutaraldehyde Glycol Guar Gum Hemicellulase Heptahydrate Hydrocarbon Hydrochloric Hydrotreated Hydroxide Iron Isopropanol Isopropyl isothiazolin isothiazotin Kerosine Ketones light Magnesium Mesh Methanol methyl Mineral Mist Mixture Monoethanolamine Naphtha Naphthalene Nitrate Nitrilopropionamide Nitrilotriacetamide Octylphenol Oil one Oxide Pensurf Persulfate Petroleum Polyethoxylated Polyethylene Polyglycol Polysaccharide Potassium Prop Propan Propargyl Propylene Quartz Sand Silica Sodium Spirits Sucrose Sulfate Sulfonic Tetramethylammonium Titaniaum Toluene Trimethylbenzene Xylene yn