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Avalon Reports Assay Results from 2018 Winter Drilling Program at Separation Rapids Lithium Project, Kenora, ON

Drill Results

Avalon Reports Assay Results from 2018 Winter Drilling

Program at Separation Rapids Lithium Project, Kenora,

ON

Toronto, Ontario--(Newsfile Corp. - April 3, 2018) -

Avalon Advanced Materials Inc.

(TSX: AVL) (OTCQX: AVLNF) ("Avalon"

or the "Company") is pleased to report assay results from its successful 2018 winter drilling program at its Separation Rapids

Lithium Project near Kenora, Ontario. The results were highlighted by a 37.75 metre intersection of lepidolite-rich mineralization

in hole SR18-80 that averaged 1.58% Li

2

O. Six holes totalling 1,548 metres were completed. All holes intersected significant

lithium mineralization, both petalite and lepidolite-petalite bearing, as detailed in the tables below. An updated resource

estimate is being prepared which is expected to be completed by the end of April. Metallurgical process optimization and

environmental work is also continuing and the results of this work, along with the revised resource estimate, will be used to

complete an updated technical report this spring.

The drilling program consisted of four holes (SR18-77 to 80) on the main deposit. Two additional holes (SR18-75 and 76) were

drilled on the Western Pegmatite, about 700 metres to the west of the main deposit. Both intersected significant petalite

mineralization over true widths of up to three metres, confirming lateral continuity of the deposit to the west over relatively narrow

widths. All four holes in the main deposit yielded significant intersections of both Petalite Zone ("PZ") and Lepidolite-Petalite

Zone ("LPZ") mineralization outside of the existing mineral resource that will result in additions to the total resource tonnage.

Holes 77 and 78 tested depth extensions on the west side of the main deposit to approximately 250 metres below surface and

intersected mainly PZ mineralization outside the existing deposit resource volume. The intercepts of 1.1% Li

2

O over 50.9 metres

cumulative thickness in hole 77 and 1.33% Li

2

O over a 18.7 metre thickness in hole 78 will add to the total lithium resources.

Holes 79 and 80 tested the east side of the main deposit to similar depths and intersected a wider zone of lepidolite-rich LPZ

lithium mineralization than expected. Hole 79 intersected 62.27 metres of LPZ mineralization within an interval of 77.05 metres

averaging 1.27% Li

2

O, which also includes other zones of PZ mineralization. This represents an estimated true thickness of

33.46 metres of LPZ mineralization. Hole 80 intersected 1.51% Li

2

O over a cumulative thickness of 62.85 metres of which 37.75

metres was LPZ mineralization and the remainder was PZ petalite mineralization. The LPZ mineralization in these two holes is

largely outside the existing resource model, thus increasing the overall resource and confidence levels in this part of the deposit.

Metallurgical and Environmental Update

Metallurgical process optimization work is focused on further improving process efficiencies to reduce costs and maximizing the

number of valuable products recoverable from the resource.

Flotation testwork has just been completed with regards to the recovery of both lepidolite and petalite concentrates from the LPZ

mineralization. Initial results are demonstrating high (>85%) overall lithium recoveries and concentrate compositions in line with

market requirements. Investigations on incorporating lithium selective membrane(s) into the lithium hydroxide production

process are also nearing completion and results to date suggest the anticipated reductions in CAPEX, OPEX and

environmental footprint are likely. Lastly, optimization of the petalite concentrate decrepitation and acid leaching processes is

also proving to be very successful, with results either matching or exceeding expectations for this critical and complex part of the

lithium hydroxide hydrometallurgical process. Final results from all three of these programs are expected during April.

These process advances will also have positive environmental benefits, including significant reductions in waste materials,

reagent and energy use and associated greenhouse gas emissions. This will result in decreases in associated environmental

management costs. Drill holes were also utilized to collect water samples that indicated very clean water from the area of the

lithium resource. Most of the field work to complete the validation of the extensive historical environmental baseline database

has been completed and will be finalized in the second quarter. This work will be utilized to continue the positive engagement

activities with the local Indigenous communities and will also be utilized in ongoing permitting activities.

The technical information included in this news release has been reviewed and approved by the Company's Vice President,

Exploration, Dr. William Mercer, P. Geo (Ont), and Dave Marsh, FAusIMM (CP), Senior Vice President, Metallurgy and

Technology Development, both Qualified Persons under NI 43-101.

About Avalon Advanced Materials Inc.

Avalon Advanced Materials Inc. is a Canadian mineral development company specializing in niche market metals and minerals

with growing demand in new technology. The Company has three advanced stage projects, all 100%-owned, providing investors

with exposure to lithium, tin and indium, as well as rare earth elements, tantalum, niobium, and zirconium. Avalon is currently

focusing on its Separation Rapids Lithium Project, Kenora, ON and its East Kemptville Tin-Indium Project, Yarmouth, NS. Social

responsibility and environmental stewardship are corporate cornerstones. For questions and feedback, please e-mail the

Company at

[email protected]

, or phone Don Bubar, President & CEO at 416-364-4938.

This news release contains "forward-looking statements" within the meaning of the United States Private Securities Litigation

Reform Act of 1995 and applicable Canadian securities legislation. Forward-looking statements include, but are not limited to

statements that an updated resource estimate is being prepared which is expected to be completed by the end of April, that

results of metallurgical work, along with the revised resource estimate, will be used to complete an updated technical report

this spring, that intercepts will add to the total lithium resources, that results to date suggest the anticipated reductions in

CAPEX, OPEX and environmental footprint are likely, that final results from all three of the programs are expected during

April, that these process advances will also have positive environmental benefits, that this will result in decreases in

associated environmental management costs, that field work to complete the validation of the extensive historical

environmental baseline database will be finalized in the second quarter, and that this work will be utilized to continue the

positive engagement activities with the local Indigenous communities and will also be utilized in ongoing permitting activities.

Generally, these forward-looking statements can be identified by the use of forward-looking terminology such as "potential",

"scheduled", "anticipates", "continues", "expects" or "does not expect", "is expected", "scheduled", "targeted", "planned", or

"believes", or variations of such words and phrases or state that certain actions, events or results "may", "could", "would",

"might" or "will be" or "will not be" taken, reached or result, "will occur" or "be achieved". Forward-looking statements are

subject to known and unknown risks, uncertainties and other factors that may cause the actual results, level of activity,

performance or achievements of Avalon to be materially different from those expressed or implied by such forward-looking

statements. Forward-looking statements are based on assumptions management believes to be reasonable at the time such

statements are made. Although Avalon has attempted to identify important factors that could cause actual results to differ

materially from those contained in forward-looking statements, there may be other factors that cause results not to be as

anticipated, estimated or intended. Factors that may cause actual results to differ materially from expected results described

in forward-looking statements include, but are not limited to market conditions, and the possibility of cost overruns or

unanticipated costs and expenses as well as those risk factors set out in the Company's current Annual Information Form,

Management's Discussion and Analysis and other disclosure documents available under the Company's profile at

www.SEDAR.com

. There can be no assurance that such statements will prove to be accurate, as actual results and future

events could differ materially from those anticipated in such statements. Such forward-looking statements have been

provided for the purpose of assisting investors in understanding the Company's plans and objectives and may not be

appropriate for other purposes. Accordingly, readers should not place undue reliance on forward-looking statements. Avalon

does not undertake to update any forward-looking statements that are contained herein, except in accordance with applicable

securities laws.

Table 1: Drill Hole Location and Specifications. Core Size HQ

Hole ID

Easting [m]

Northing [m]

Collar dip [°]

Collar azimuth [°]

Final depth [m]

SR18-75

387528

5569171

-50

180

109

SR18-76

387528

5569171

-65

180

157

SR18-77

388201

5569175

-65

180

316

SR18-78

388326

5569136

-65

178

343

SR18-79

388500

5569090

-67

175

313

SR18-80

388552

5569068

-67

175

310

TOTAL 1,548

Notes

1

.

All locations in UTM NAD83, Zone 15N

2

.

Collar locations surveyed by licenced Ontario Land

Surveyor/Canada Land Surveyor

3

.

Downhole surveys completed using Devico DeviShot Survey

Tool

Table 2: Significant Drill Hole intersections with lithium grades expressed as % lithium oxide

Drill Hole

From

To

Drilled Width (m)

Estimated True Width

(m)

Li

2

O %

Lithology

SR18-75

72.36

78.84

6.48

2.94

1.04

PZ

81.46

83.90

2.44

1.15

1.41

PZ

SR18-76

116.50

117.35

0.85

0.40

2.28

PZ

SR18-77

188.10

196.60

8.50

3.86

1.50

PZ

244.30

286.70

42.40

19.91

1.02

PZ, LPZ

SR18-78

256.40

275.10

18.70

7.61

1.33

PZ

SR18-79

Including

and

162.50

239.55

77.05

41.40

1.27

PZ, LPZ

167.93

201.50

33.57

18.04

1.38

LPZ

210.85

239.55

28.70

15.42

1.60

LPZ

SR18-80

72.00

74.90

2.90

1.32

1.20

PZ

117.65

128.70

11.05

5.02

1.72

PZ

172.85

184.00

11.15

5.58

1.15

PZ

222.15

259.90

37.75

20.00

1.58

LPZ

Notes:

1

.

PZ indicates petalite mineralization, LPZ indicates

lepidolite-petalite mixture and PZ,LPZ indicates interbanded petalite

and

lepidolite- petalite mineralization.

2

.

Not presented: any intervals below 1% Li

2

O and

any isolated intercepts less than 2m drilled length (except DH

SR18-76).

3

.

Estimated true widths assume the mineralized zones are

vertical. The near vertical nature is clearly apparent in drill

sections.

4

.

All drill core was split by Avalon staff on site near

Kenora and shipped to ALS Global in Thunder Bay for preparation and

on to

Vancouver for analysis by methods ME-4ACD81 and ME-MS81 for multielement

analysis including Li, Ta, Cs and

Rb. Samples over 0.5% Li

2

O

were reanalyzed by Li-OG63, the lithium specific analytical method

conducted by ALS

Global.

5

.

Avalon inserted company certified lithium standards and

blanks into the sample stream for QAQC purposes. The results of

the Avalon

and laboratory standards and blanks were reviewed by Avalon's QP prior to

accepting the laboratory results.

6

.

Lithium (Li) analyses in ppm were converted to

Li

2

O values by multiplying by 2.1527